An integral casting mold for casting bay windows and air conditioning panels

By designing a detachable and connected integral casting mold, the problem of neutral molding and mold removal in cast-in-place construction of bay windows and air-conditioning boards is solved, and the simultaneous casting and layer-by-layer construction of bay windows and air-conditioning boards is realized.

CN115506582BActive Publication Date: 2025-08-12SHAANXI PAYUAN ROAD & BRIDGE CONSTR CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202211277092.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-18
Publication Date
2025-08-12
Estimated Expiration
2042-10-18

AI Technical Summary

Technical Problem

It is difficult to vertically and dismantle the bay window and air-conditioning board structures for cast-in-place construction, which affects construction efficiency.

Method used

An integral casting mold including a forward air conditioning board module, a lateral air conditioning board module, a first side plate template, a second side plate template, a forward cover frame, a lateral cover frame and two sets of bay window modules is designed, and the mold is quickly erected and demolded through a detachable connection structure.

Benefits of technology

The simultaneous pouring of bay windows and air conditioning panels is realized, which improves construction efficiency and supports the pouring of multi-story buildings layer by layer.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115506582B_ABST
    Figure CN115506582B_ABST
Patent Text Reader

Abstract

The present invention proposes an integral casting mold for casting bay windows and air conditioning panels, which relates to the technical field of cast-in-place molds and includes a forward air conditioning panel module, a lateral air conditioning panel module, a first side panel mold, a second side panel mold, a forward cover plate frame, a lateral cover plate frame, and two groups of bay window modules. The two groups of bay window modules cooperate with the forward cover plate frame to cast two bay windows, the forward air conditioning panel module cooperates with the forward cover plate frame to cast the air conditioning panel between the two bay windows, and the lateral cover plate frame cooperates with the lateral air conditioning panel module to cast the air conditioning panel located at the corner of the building wall. The first side panel mold, the first bay window module, the forward air conditioning panel module, the second bay window module, the lateral air conditioning panel module, and the second side panel mold are arranged horizontally and spaced in sequence along the direction of the outer wall of the building wall, and the gaps between adjacent ones are used to cast the vertical panel structures on both sides of the bay windows and air conditioning panels. After the integral casting mold is erected, two rows of bay windows and two rows of air conditioning panels can be cast simultaneously, which is convenient for construction.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of cast-in-situ moulds, and more particularly to an integral casting mould for casting bay windows and air-conditioning panels. Background Art

[0002] As people's living standards improve, their requirements for living environment are getting higher and higher. In order to improve indoor lighting and transparency and form a broad field of vision, bay windows, as a special building structure, have been widely used in house construction; building air-conditioning panels are protruding concrete panels attached to the exterior wall for placing air-conditioning outdoor units.

[0003] With current construction methods, bay windows and air conditioning panels can be constructed using cast-in-place methods. However, cast-in-place methods are limited by the construction site environment and the structural style of bay windows and air conditioning panels, which may increase the difficulty of formwork erection. For example, Figure 1 The bay windows and air conditioning panels as a whole shown include two rows of bay windows, air conditioning panels located between the two rows of bay windows, and another row of air conditioning panels located on the side of one of the bay windows and at the corner of the building wall.

[0004] If the bay window and air conditioning panel of this structure are cast in one piece by cast-in-place method, it is difficult to set up and remove the formwork, which greatly affects the construction efficiency. Therefore, a kind of mold that can be easily set up and removed for the above-mentioned Figure 1 An integral casting mold for casting bay windows and air conditioning panels. Summary of the Invention

[0005] The present invention provides an integral casting mold for casting bay windows and air-conditioning panels, which is convenient for on-site erection and disassembly, improves the efficiency of mold erection and demoulding, and solves the problems in the above-mentioned background technology.

[0006] The embodiment of the present invention is achieved as follows:

[0007] In some embodiments of the present invention, an integral casting mold for casting a bay window and an air conditioning panel is provided, comprising a front air conditioning panel module, a side air conditioning panel module, a first side panel mold, a second side panel mold, a front cover panel frame, a side cover panel frame, and two sets of bay window modules; the front air conditioning panel module, the side air conditioning panel module, the first side panel mold, the second side panel mold, and the two sets of bay window modules are all provided with a connection structure for detachable connection to a building wall;

[0008] The first side panel formwork, the first bay window module, the forward air-conditioning panel module, the second bay window module, the side air-conditioning panel module and the second side panel formwork are horizontally spaced in sequence along the surface extension direction of the outer wall of the building wall, and the side air-conditioning panel formwork is located at the corner of the building wall; the forward cover panel frame is detachably connected to the first side panel formwork, the forward air-conditioning panel module and the two bay window modules, and the side cover panel frame is detachably connected to the second side panel formwork and the side air-conditioning panel module; the forward cover panel frame covers and closes the gap between the first side panel formwork, the first bay window module, the forward air-conditioning panel module, the second bay window module and the side air-conditioning panel module, and the side cover panel frame covers and closes the gap between the side air-conditioning panel module and the second side panel.

[0009] In some embodiments of the present invention, the connection structure is a bolt hole opened on the forward air-conditioning panel module, the lateral air-conditioning panel module, the first side panel module, the second side panel module and the two groups of bay window modules. The forward air-conditioning panel module, the lateral air-conditioning panel module, the first side panel module, the second side panel module and the two groups of bay window modules are all connected to the building wall by bolts passing through the bolt holes.

[0010] In some embodiments of the present invention, the front cover frame is connected to the front air-conditioning panel module and the two bay window modules by bolts, and the side cover frame is connected to the side air-conditioning panel module by bolts.

[0011] In some embodiments of the present invention, a bay window module includes a window split mold, a first frame, and two second frames. The window split mold is used to cast the bay window structure. The window split mold and the second frame are both detachably connected to the building wall. The first frame is detachably connected to the window split mold.

[0012] The first frame and the window split mold are arranged in parallel, the two second frames are respectively arranged at the top and bottom of the first frame, the forward cover frame is connected to the first frame and the two second frames at the same time, and the forward cover frame covers and closes the gap between the first frame and the second frame.

[0013] In some embodiments of the present invention, the window disassembly mold includes a frame body, embedded nuts and embedded bolts. Circumferential sealing plates are provided on the top, bottom and both sides of the frame body. The circumferential sealing plates seal the circumference of the frame body. The embedded nuts are distributed on the side walls of the circumferential sealing plates facing away from the frame body. The embedded bolts pass through the circumferential sealing plates from the inner side of the frame body and are screwed into the embedded nuts.

[0014] In some embodiments of the present invention, the frame body includes a first support member, two right-angled triangular frames with oblique sides spaced apart, and two first corner support assemblies, and the circumferential sealing plate is located on the right-angled sides of the right-angled triangular frames;

[0015] The first support member is located between the two right-angled triangle frames and is bolted to the two right-angled triangle frames. The first corner support assembly is detachably connected to both ends of the oblique sides of the two right-angled triangle frames.

[0016] In some embodiments of the present invention, the first corner support assembly includes a first support rod, an L-shaped first right-angle plate, a first fastening nut, and a first support member, wherein the end of the first support rod is provided with a first threaded portion, and the inner corner of the first right-angle plate is provided with a first support portion;

[0017] Both ends of the first right-angle plate are in contact with the circumferential sealing plate, and both ends of the first support rod are respectively in contact with the inner side walls of the ends of the oblique sides of the two right-angled triangle frames. The end of the first support rod away from the first threaded portion is connected to the first support member, and the end of the first support rod close to the first threaded portion passes through the first support member and is screwed with the first fastening nut.

[0018] In some embodiments of the present invention, the window split mold is bolted to the first frame.

[0019] In some embodiments of the present invention, the first frame includes a first top sealing plate, a first side sealing plate, a first connecting member, a second connecting member, and two first unit frames;

[0020] The two first unit frames are arranged in parallel and spaced apart in a horizontal direction, the first connecting member is located between the two first unit frames and is bolted to the two first unit frames, and the side wall of each first unit frame facing away from the other first unit frame is covered with a first side sealing plate; the first top sealing plate is arranged at intervals on the top of the two first unit frames, the second connecting member is arranged between the first unit frame and the first top sealing plate, and the two ends of the second connecting member are respectively bolted to the first unit frame and the first top sealing plate, and the first side sealing plate and the first top sealing plate seal the two sides and top of the first frame.

[0021] In some embodiments of the present invention, a second corner support assembly is provided at the top corner of the first frame;

[0022] The second corner support assembly includes a second support rod, an L-shaped second right-angle plate, a second fastening nut and a second support member, the end of the second support rod is provided with a second threaded portion, the inner corner of the second right-angle plate is provided with a second support portion, and the first top sealing plate is provided with a first support frame on the side wall facing the first unit frame;

[0023] The two ends of the second right-angle plate are respectively abutted against the first top sealing plate and the first side sealing plate, the two ends of the second support rod are respectively abutted against the inner sides of the first unit frame and the first support frame, the end of the second support rod away from the second threaded portion is connected to the second support member, and the end of the second support rod close to the second threaded portion passes through the second support member and is screwed with the second fastening nut.

[0024] In some embodiments of the present invention, the second frame includes a third connecting member and two second unit frames arranged in parallel and spaced relation, the third connecting member is located between the two second unit frames and is bolted to the two second unit frames;

[0025] The side wall of each second unit frame facing away from the other second unit frame is provided with a second side sealing plate, the top of each second unit frame is provided with a second top sealing plate, the top of the gap between the two second unit frames is removably covered with a first sealing plate assembly, the second side sealing plate, the second top sealing plate and the first sealing plate assembly enclose the top and both sides of the second frame; the bottom ends of the two second unit frames are detachably connected to the first vertical support structure.

[0026] In some embodiments of the present invention, the first sealing plate assembly includes a second supporting frame, a first plate body disposed in contact with the second supporting frame, a third supporting rod, a third fastening nut, and a third supporting member;

[0027] The first plate body is fitted and connected to the top of the second supporting frame, and the two ends of the first plate body are overlapped on the second top sealing plates of the two second unit frames, and the two ends of the third support member are respectively abutted on the top inner walls of the two second unit frames; the top end of the third support rod is connected to the second supporting frame, and the bottom end of the third support rod is provided with a third threaded portion, and the third threaded portion passes through the third support member and is screwed with a third fastening nut.

[0028] In some embodiments of the present invention, the first vertical support structure includes a first support plate, a first fixing nut, a first connecting nut, a first connecting bolt, and a first abutment bolt;

[0029] The first support plate includes a first side wall and a second side wall with vertical edges, the first side wall is in contact with the side wall of the second side sealing plate facing away from the second unit frame, the first fixing nut is located on the side of the first side wall facing away from the second side sealing plate, and the first side wall is connected to the second unit frame by a first connecting bolt which is sequentially passed through the second unit frame and the first side wall and screwed into the first fixing nut;

[0030] The second side wall is spaced apart at the bottom end of the second unit frame, the first connecting nut is welded to the inner side wall of the second unit frame and is arranged opposite to the second side wall, and the first abutting bolt is screwed into the first connecting nut, passes through the second unit frame and abuts the second side wall.

[0031] In some embodiments of the present invention, the forward air conditioning panel module includes two first frame groups that are spaced apart and arranged in parallel laterally and detachably connected to each other, the tops of the two first frame groups are covered with a third top sealing plate, the side walls of each first frame group facing away from the other first frame group are covered with a third side sealing plate, and the top of the gap between the two first frame groups is detachably covered with a second sealing plate assembly; the bottom of each first frame group is detachably connected to a second vertical support structure;

[0032] The positive cover frame includes a first front wall, which is arranged on the side of the first frame group facing away from the building wall. The top of the first front wall extends out of the top of the positive air-conditioning panel module, and the two ends of the first front wall extend to the two groups of bay window modules respectively.

[0033] In some embodiments of the present invention, the first frame group includes a third unit frame, a fourth unit frame, and a fifth unit frame; the fourth unit frame and the fifth unit frame are bolted to the top of the third unit frame, the fifth unit frame and the fourth unit frame are spaced apart in a direction perpendicular to the building wall, and the second vertical support structure is detachably mounted on the bottom of the third unit frame;

[0034] The top of the fourth unit frame has a first casting step arranged away from the building wall, the side wall of the first casting step is sealed with a first step sealing plate, and the first front wall is arranged to shield the side of the first casting step away from the building wall;

[0035] The tops of the fourth unit frame and the fifth unit frame are both covered with a third top sealing plate, and the side walls of each third unit frame, each fourth unit frame and each fifth unit frame facing away from the other first frame group are all covered with a third side sealing plate; the second sealing plate assembly is removably covered between the top sealing plate of the fourth unit frame and the top sealing plate of the fifth unit frame, between the side sealing plate of the fourth unit frame and the corresponding side sealing plate of the fifth unit frame, and between the first step sealing plates of the two third unit frames.

[0036] In some embodiments of the present invention, a fourth connecting member and a fifth connecting member are further included. The fourth connecting member is located between the two third unit frames and is bolted to the two third unit frames. A fifth connecting member is bolted between the fourth unit frame and the fifth unit frame of each first frame group, between the fourth unit frames of the two first frame groups, and between the fifth unit frames of the two first frame groups.

[0037] In some embodiments of the present invention, the second sealing plate assembly includes a third supporting frame, a second plate body disposed in contact with the third supporting frame, a fourth supporting rod, a second fixing nut, and a fourth supporting member;

[0038] The second plate body is attached and connected to the side wall of the third support frame. The opposite top edges of the two first frame groups are respectively clamped between the two ends of the second plate body and the two ends of the fourth tension member. One end of the fourth tension rod is connected to the third support frame, and the other end of the fourth tension rod is provided with a fourth threaded portion. The fourth threaded portion passes through the fourth tension member and is screwed with a second fixing nut.

[0039] In some embodiments of the present invention, the second vertical support structure includes a second support plate, a third fixing nut, a second connecting nut, a second connecting bolt, and a second abutting bolt;

[0040] The second support plate includes a third side wall and a fourth side wall with perpendicular edges. The third side wall is fitted to the side wall of the third side sealing plate facing away from the first frame group. The third fixing nut is located on the side of the third side wall facing away from the third side sealing plate. The third side wall is connected to the first frame group by a second connecting bolt that sequentially passes through the first frame group and the third side wall and is screwed to the third fixing nut;

[0041] The fourth side wall is spaced from the bottom end of the first frame group. The second connecting nut is welded to the inner side wall of the bottom end of the first frame group and is disposed opposite to the fourth side wall. The second abutting bolt is screwed to the second connecting nut, passes through the first frame group, and abuts against the fourth side wall.

[0042] In some embodiments of the present invention, a first bottom edge channel is opened at the bottom end of the side of the second support plate facing away from the building wall. A first mold plate in an inverted "凵" shape is bolted to the inner wall of the first bottom edge channel.

[0043] In some embodiments of the present invention, the lateral air-conditioning plate module includes a second frame group and a third frame group that are horizontally arranged side by side at intervals and are detachably connected to each other; the second frame group is installed at the corner of the building wall, and second side plate molds are spaced on the side of the third frame group facing away from the second frame group; a third vertical support structure is provided at the bottom end of the second frame group, and a fourth vertical support structure is provided at the bottom end of the third frame group; the tops of the second frame group and the third frame group are both covered with a fourth top sealing plate, the side wall of the third frame group facing the second side plate mold is covered with a fourth side sealing plate, and the side wall of the second frame group facing the bay window module is covered with a front sealing plate; the top of the gap between the second frame group and the third frame group is detachably covered with a third sealing plate assembly;

[0044] The lateral cover frame includes a second front wall. The second front wall is fitted to the side of the lateral air-conditioning plate module facing away from the building side wall. The top of the second front wall extends out of the top of the lateral air-conditioning plate module, and the two ends of the second front wall respectively extend to the front cover frame and the second side plate mold.

[0045] In some embodiments of the present invention, a second casting step is provided on the top of the second frame group and the third frame group in a direction away from the side wall of the building, the side wall of the second casting step is covered with a second step sealing plate, and the second front wall is provided to block the side of the second casting step away from the side wall of the building; the second step sealing plate of the second frame group and the second step sealing plate of the third frame group are both removably covered with a third sealing plate assembly.

[0046] In some embodiments of the present invention, the second frame assembly includes a sixth unit frame, a seventh unit frame detachably connected to the top of the sixth unit frame, and an eighth unit frame spaced apart on a side of the seventh unit frame away from the bay window module and detachably connected to the seventh unit frame; the third vertical support structure is located at the bottom of the sixth unit frame;

[0047] The second casting step is set on the seventh unit frame, the top of the gap between the seventh unit frame and the eighth unit frame is covered with a third sealing plate assembly, the front sides of the sixth unit frame and the seventh unit frame are covered with front side sealing plates, and the tops of the seventh unit frame and the eighth unit frame are covered with a fourth top sealing plate.

[0048] In some embodiments of the present invention, the third vertical support structure includes a third connecting nut and a third abutment bolt, the third connecting nut is welded to the inner wall of the sixth unit frame, and the third abutment bolt is screwed into the third connecting nut from the inner side of the sixth unit frame and extends out of the bottom end of the sixth unit frame.

[0049] In some embodiments of the present invention, the third frame group includes a ninth unit frame, a tenth unit frame, and an eleventh unit frame; the tenth unit frame and the eleventh unit frame are both detachably connected to the top of the ninth unit frame, the tenth unit frame and the eleventh unit frame are arranged at intervals, the second casting step is arranged on the tenth unit frame, and the fourth vertical support structure is located at the bottom of the ninth unit frame;

[0050] The tops of the tenth unit frame and the eleventh unit frame are covered with a fourth top sealing plate, and the side walls of the ninth unit frame, the tenth unit frame and the eleventh unit frame facing away from the second frame group are covered with a fourth side sealing plate; the top of the gap between the tenth unit frame and the eleventh unit frame, the side of the gap between the tenth unit frame and the eleventh unit frame facing the second side plate mold, the top of the gap between the seventh unit frame and the tenth unit frame, and the top of the gap between the eighth unit frame and the eleventh unit frame are all covered with a third sealing plate assembly.

[0051] In some embodiments of the present invention, the fourth vertical support structure includes a third support plate, a fourth fixing nut, a fourth connecting nut, a third connecting bolt, and a fourth abutting bolt;

[0052] The third support plate includes a fifth side wall and a sixth side wall with perpendicular edges. The fifth side wall is fitted to the side wall of the fourth side sealing plate facing away from the ninth unit frame. The fourth fixing nut is located on the side of the fifth side wall facing away from the fourth side sealing plate. The fifth side wall is connected to the ninth unit frame by a third connecting bolt that sequentially passes through the ninth unit frame and the fifth side wall and is screwed to the fourth fixing nut.

[0053] The sixth side wall is spaced apart at the bottom end of the ninth unit frame. The fourth connecting nut is welded to the inner side wall of the bottom end of the ninth unit frame and is arranged opposite to the sixth side wall. The fourth abutting bolt is screwed to the fourth connecting nut and abuts against the sixth side wall.

[0054] In some embodiments of the present invention, a second bottom edge channel is provided at the front side of the bottom end of the third support plate. The second bottom edge channel runs through and communicates with the gap between the second bay window module and the side air conditioner panel module. The inner side wall of the second bottom edge channel is provided with a second mold plate in an inverted "U" shape.

[0055] In some embodiments of the present invention, the seventh unit frame is bolted to the sixth unit frame, and the tenth unit frame and the eleventh unit frame are both bolted to the ninth unit frame. Sixth connecting members are bolted between the seventh unit frame and the eighth unit frame, between the tenth unit frame and the eleventh unit frame, between the seventh unit frame and the tenth unit frame, and between the eighth unit frame and the eleventh unit frame.

[0056] In some embodiments of the present invention, the third sealing plate assembly includes a fourth support frame, a fifth stay bar, a fifth fixing nut, a fifth stay member, and a third plate body fitted to the fourth support frame.

[0057] The top edges of the second frame group and the third frame group are clamped between the third plate body and the fifth stay member. One end of the fifth stay bar is connected to the fourth support frame, and the other end of the fifth stay bar is provided with a fifth threaded portion. The fifth threaded portion passes through the fifth stay member and is provided with the fifth fixing nut screwed thereon.

[0058] Compared with the prior art, the embodiments of the present invention at least have the following advantages or beneficial effects:

[0059] The present invention provides an integral casting mold for casting bay windows and air-conditioning panels, wherein two groups of bay window modules cooperate with a front cover plate frame to cast two bay window structures, a front air-conditioning panel module cooperates with the front cover plate frame to cast the air-conditioning panel structure between the two bay windows, and a side cover plate frame cooperates with a side air-conditioning panel module to cast the air-conditioning panel structure located at the corner of a building wall. A first side panel mold, a first bay window module, a front air-conditioning panel module, a second bay window module, a side air-conditioning panel module, and a second side panel mold are horizontally spaced in sequence along the surface extension direction of the outer wall of the building wall, and the gaps between adjacent ones are used to cast the vertical panel structures on both sides of the bay windows and the air-conditioning panels. Through the above arrangement, the integral casting mold can simultaneously cast two rows of bay windows and two rows of air-conditioning panels after it is erected, facilitating construction.

[0060] The front air conditioning panel module, the side air conditioning panel module, the first side panel module, the second side panel module, and the two bay window modules are all equipped with connection structures for detachable connection to the building wall, preferably connected to the building wall via studs. The front cover panel frame is simultaneously detachably connected to the first side panel module, the front air conditioning panel module, and the two bay window modules, preferably connected via bolts. The side cover panel frame is detachably connected to the second side panel module and the side air conditioning panel module, preferably connected via bolts. This arrangement allows each of the above components to be quickly and independently assembled and disassembled from the wall, facilitating formwork erection and demolding.

[0061] At the same time, for multi-story buildings, after the bay windows and air-conditioning panels on the first floor are cast and solidified, the overall casting mold can be disassembled and moved to the building wall of the top floor to continue casting, thereby realizing layer-by-layer casting. BRIEF DESCRIPTION OF THE DRAWINGS

[0062] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.

[0063] Figure 1 This is a schematic diagram of the bay window and air conditioning panel structure constructed according to an embodiment of the present invention;

[0064] Figure 2 This is a schematic diagram of the connection structure between the integral casting mold and the building wall according to an embodiment of the present invention;

[0065] Figure 3 for Figure 2 Cross-sectional view at AA in the middle;

[0066] Figure 4This is a schematic diagram of the structure of the connection between the front cover frame, the side cover frame and the second side plate formwork after the integral casting mold and the building wall are hidden according to an embodiment of the present invention;

[0067] Figure 5 for Figure 4 Cross-sectional view at the middle BB;

[0068] Figure 6 This is a schematic diagram of the forward cover frame structure of an embodiment of the present invention;

[0069] Figure 7 This is a front view of the window disassembly mold structure according to an embodiment of the present invention;

[0070] Figure 8 This is a schematic diagram of the wall reinforcement structure at the window;

[0071] Figure 9 This is a schematic diagram of the connection structure between a wall casting template and a building wall according to an embodiment of the present invention;

[0072] Figure 10 for Figure 7 Cross-sectional view at CC;

[0073] Figure 11 This is a schematic structural diagram of a first corner support assembly according to an embodiment of the present invention;

[0074] Figure 12 This is a front view of the first frame structure according to an embodiment of the present invention;

[0075] Figure 13 This is a bottom view of the first frame structure according to an embodiment of the present invention;

[0076] Figure 14 for Figure 12 A partial enlarged view of the middle part;

[0077] Figure 15 This is a schematic structural diagram of a second corner support assembly according to an embodiment of the present invention;

[0078] Figure 16 This is a front view of the second frame structure according to an embodiment of the present invention;

[0079] Figure 17 This is a pitch view of the second frame structure according to an embodiment of the present invention;

[0080] Figure 18 for Figure 16 A partial enlarged view of point B in the middle;

[0081] Figure 19 for Figure 16 A partial enlarged view of point C in the middle;

[0082] Figure 20 This is a front view of the air conditioning panel module structure according to an embodiment of the present invention;

[0083] Figure 21 This is a side view of the forward air conditioning panel module structure according to an embodiment of the present invention;

[0084] Figure 22 This is a top view of the forward air conditioning panel module structure according to an embodiment of the present invention;

[0085] Figure 23 for Figure 20 A partial enlarged view of point D in the middle;

[0086] Figure 24 for Figure 20 A partial enlarged view of point E in the middle;

[0087] Figure 25 for Figure 21 A partial enlarged view of point F in the middle;

[0088] Figure 26 This is a top view of the lateral air conditioning panel module structure according to an embodiment of the present invention;

[0089] Figure 27 This is a side view of the second frame assembly structure according to an embodiment of the present invention;

[0090] Figure 28 for Figure 5 A partial enlarged view of point G in the middle;

[0091] Figure 29 for Figure 5 A partial enlarged view of point H in the middle;

[0092] Figure 30 for Figure 5 A partial enlarged view of point I in the middle;

[0093] Figure 31 This is a side view of the third frame assembly structure according to an embodiment of the present invention;

[0094] Figure 32 for Figure 31 A partial enlarged view of point J in the middle.

[0095] Icons: 101-building wall; 102-building side wall; 103-bay window; 104-air conditioning panel; 105-vertical board; 106-window; 107-bay window top plate; 108-bay window bottom plate; 109-wall reinforcement; 110-wall casting template; 111-mold groove; 112-through nut; 113-through screw; 114-first top edge; 115-first air conditioning panel top plate; 116-first air conditioning panel bottom plate; 117-first bottom edge; 118-second top edge; 119-second air conditioning panel top plate; 120-second air conditioning panel bottom plate; 121-second bottom edge; 200-bay window module; 201-window split mold; 202-bolt hole; 203-first support member; 204-right angle triangle frame; 20 5-first corner support assembly; 206-first support rod; 207-first right-angle plate; 208-first fastening bolt; 209-first support member; 210-first threaded portion; 211-first support member; 212-seventh connecting member; 213-connecting wall; 214-embedded nut; 215-embedded bolt; 216-circumferential sealing plate; 217-first frame; 218-first top sealing plate; 219-first lateral sealing plate; 220-first connecting member; 221-second connecting member; 222-first unit frame; 223-second corner support assembly; 224-second support rod; 225-second right-angle plate; 226-second fastening bolt; 227-second support member; 228-second threaded portion; 229- Second supporting part; 230-first supporting frame; 231-second frame; 232-third connecting member; 233-second unit frame; 234-second side sealing plate; 235-second top sealing plate; 236-first sealing plate assembly; 237-first vertical supporting structure; 238-second supporting frame; 239-first plate body; 240-third supporting rod; 241-third fastening nut; 242-third supporting member; 243-third threaded portion; 244-first supporting plate; 245-first fixing nut; 246-first connecting nut; 247-first connecting bolt; 248-first abutting bolt; 249-first side wall; 250-second side wall; 300-forward air conditioning panel module; 301-first frame assembly ;302-third unit frame;303-fourth unit frame;304-fifth unit frame;305-first casting step;306-first step sealing plate;307-fourth connecting piece;308-fifth connecting piece;309-third top sealing plate;310-third side sealing plate;311-second sealing plate assembly;312-third supporting frame;313-second plate body;314-fourth supporting rod;315-second fixing nut;316-fourth supporting piece;317-fourth threaded portion;318-second vertical supporting structure;319-second supporting plate;320-third fixing nut;321-second connecting nut;322-second connecting bolt;323-second abutting bolt;324-third side wall;325-fourth side wall; 326-first bottom channel; 327-first mold plate; 400-lateral air conditioning panel module; 401-second frame group; 402-third vertical support structure; 403-fourth top sealing plate; 404-fourth side sealing plate; 405-front sealing plate; 406-second casting step; 407-second step sealing plate; 408-sixth unit frame; 409-seventh unit frame; 410-eighth unit frame; 411-third connecting nut; 412-third abutting bolt; 413-groove; 414-third frame group; 415-fourth vertical support structure; 416-ninth unit frame; 417-tenth unit frame; 418-eleventh unit frame; 419-third support Plate; 420 - fourth fixing nut; 421 - fourth connecting nut; 422 - third connecting bolt; 423 - fourth abutting bolt; 424 - fifth side wall; 425 - sixth side wall; 426 - sixth connecting member; 427 - second bottom edge channel; 428 - second mold plate; 429 - third sealing plate assembly; 430 - fourth supporting frame; 431 - fifth supporting rod; 432 - fifth fixing nut; 433 - fifth supporting member; 434 - third plate body; 435 - fifth threaded portion; 500 - front cover frame; 501 - first front wall; 502 - horizontal plate; 503 - vertical plate; 600 - lateral cover frame; 601 - second front wall; 602 - side wall; 700 - first side plate mold; 800 - second side plate mold. DETAILED DESCRIPTION

[0096] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings herein can be arranged and designed in various different configurations.

[0097] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the invention as claimed, but rather merely represents selected embodiments of the present invention. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort shall fall within the scope of protection of the present invention.

[0098] It should be noted that similar reference numerals and letters denote similar items in the following drawings, and therefore, once an item is defined in one drawing, it does not need to be further defined or explained in subsequent drawings.

[0099] In the description of the embodiments of the present invention, it should be noted that if the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. appear, the orientation or position relationship indicated is based on the orientation or position relationship shown in the accompanying drawings, or the orientation or position relationship in which the product of the invention is usually placed when in use. It is only for the convenience of describing the present invention and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation. Therefore, it should not be understood as limiting the present invention. In addition, the terms "first", "second", etc. are only used to distinguish the description and should not be understood as indicating or implying relative importance.

[0100] Furthermore, the use of terms such as "horizontal," "vertical," and "overhanging" does not necessarily imply that the component must be absolutely horizontal or overhanging, but rather that it can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal than "vertical," not that the structure must be completely horizontal, but rather that it can be slightly tilted.

[0101] In the description of the embodiments of the present invention, "a plurality of" means at least two.

[0102] In the description of the embodiments of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "disposed," "installed," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.

[0103] Example 1

[0104] Please refer to Figure 1-Figure 5 .

[0105] The structures of the bay window 103 and the air conditioning panel 104 to be cast are as follows: Figure 1 As shown, it includes a building wall 101 with a corner. The building wall 101 at the corner is a building side wall 102. The building wall 101 has two rows of bay windows 103. A row of air conditioning panels 104 is located between the two rows of bay windows 103. Another row of air conditioning panels 104 is located at the corner of the building wall 101 and is attached to the building side wall 102. Each air conditioning panel 104 and each row of bay windows 103 are provided with vertical panels 105 on both sides.

[0106] This embodiment provides an integral casting mold for casting a bay window 103 and an air conditioning panel 104, including a forward air conditioning panel module 300, a side air conditioning panel module 400, a first side panel mold 700, a second side panel mold 800, a forward cover plate frame 500, a side cover plate frame 600 and two groups of bay window modules 200; the forward air conditioning panel module 300, the side air conditioning panel module 400, the first side panel mold 700, the second side panel mold 800 and the two groups of bay window modules 200 are all provided with a connection structure for detachable connection with the building wall 101; the first side panel mold 700, the first bay window module 200, the forward air conditioning panel module 300, the second bay window module 200, the side air conditioning panel module 400 and the second side panel mold 800 The side air-conditioning panels 104 are arranged horizontally at intervals along the surface extension direction of the outer wall of the building wall 101, and the side air-conditioning panel module 104 is located at the corner of the building wall 101; the front cover frame 500 is detachably connected to the first side panel mold 700, the front air-conditioning panel module 300 and the two bay window modules 200, and the side cover frame 600 is detachably connected to the second side panel mold 800 and the side air-conditioning panel module 400; the front cover frame 500 covers and closes the gap between the first side panel mold 700, the first bay window module 200, the front air-conditioning panel module 300, the second bay window module 200 and the side air-conditioning panel module 400, and the side cover frame 600 covers and closes the gap between the side air-conditioning panel module 400 and the second side panel.

[0107] In this embodiment, two sets of bay window modules 200 are used in conjunction with a front cover plate frame 500 to cast the two bay window 103 structures, a front air conditioning panel module 300 is used in conjunction with the front cover plate frame 500 to cast the air conditioning panel 104 structure between the two bay windows 103, and a side cover plate frame 600 is used in conjunction with a side air conditioning panel module 400 to cast the air conditioning panel 104 structure located at the corner of the building wall 101. The first side panel mold 700, the first bay window module 200, the front air conditioning panel module 300, the second bay window module 200, the side air conditioning panel module 400, and the second side panel mold 800 are arranged horizontally and spaced apart in sequence along the surface extension direction of the outer wall of the building wall 101. The gaps between any two adjacent ones are used to cast the vertical panels 105 structures on both sides of the bay window 103 and the air conditioning panel 104. Through the above arrangement, after the integral casting mold is erected, two rows of bay windows 103 and two rows of air conditioning panels 104 can be cast simultaneously, facilitating construction. The forward air conditioning panel module 300, the lateral air conditioning panel module 400, the first side panel mold 700, the second side panel mold 800 and the two groups of bay window modules 200 are all provided with a connection structure for detachably connecting to the building wall 101. Preferably, the connection structure is a bolt hole 202 opened on the forward air conditioning panel module 300, the lateral air conditioning panel module 400, the first side panel mold 700, the second side panel mold 800 and the two groups of bay window modules 200. The air conditioning panel module 400, the first side panel module 700, the second side panel module 800 and the two bay window modules 200 are all connected to the building wall 101 by means of bolts passing through the bolt holes 202; the forward cover panel frame 500 is detachably connected to the first side panel module 700, the forward air conditioning panel module 300 and the two bay window modules 200, preferably by bolts; the lateral cover panel frame 600 is detachably connected to the second side panel module 800 and the lateral air conditioning panel module 400, preferably by bolts. This arrangement enables the above-mentioned components to be quickly and independently assembled and disassembled on the wall, making it convenient to erect and demould the mold. At the same time, for multi-story buildings, after the bay windows 103 and air conditioning panels 104 on one floor are cast and solidified, the integral casting mold can be disassembled and moved to the building wall 101 on the top floor to continue casting, thereby achieving layer-by-layer casting.

[0108] Example 2

[0109] Please refer to Figures 1-19 .

[0110] This embodiment is based on the solution of embodiment 1 and proposes: the bay window module 200 includes a window 106 disassembly mold 201, a first frame 217 and two second frames 231. The window 106 disassembly mold 201 is used to cast the bay window 103 window 106 structure; the window 106 disassembly mold 201 and the second frame 231 are both detachably connected to the building wall 101, and the first frame 217 is detachably connected to the window 106 disassembly mold 201; the first frame 217 and the window 106 disassembly mold 201 are arranged in parallel, and the two second frames 231 are respectively arranged at intervals at the top and bottom of the first frame 217; the forward cover frame 500 is connected to the first frame 217 and the two second frames 231 at the same time, and the forward cover frame 500 covers and closes the gap between the first frame 217 and the second frame 231.

[0111] The structure of the bay window 103 to be cast is as follows Figure 1 As shown, it includes a rectangular window 106, a bay window top plate 107 located at the top of the window 106, and a bay window bottom plate 108 located at the bottom of the window 106. Both sides of the bay window top plate 107 and the bay window bottom plate 108 extend to the vertical plates 105 on both sides respectively. There is a gap between the bay window top plate 107 of each layer of bay window 103 and the bay window bottom plate 108 of the top layer, and the vertical plates 105 of the two adjacent layers are seamlessly connected.

[0112] In this embodiment, the main portions of the first side panel formwork 700 and the front cover panel frame 500 are both made of sheet material. The first side panel formwork 700 is spaced laterally from the bay window module 200 at the edge and connected to the building wall 101 via bolts. The front cover panel frame 500 includes four horizontal panels 502 and three vertical panels 503. The front cover panel frame 500 is bolted to the first side panel, the first frame 217, the two second frames 231, and the front air conditioning panel module 300. At this time, the three vertical plates 503 are respectively covered with the gap between the first side plate and the left bay window module 200, the gap between the left bay window module 200 and the forward air conditioning panel module 300, and the gap between the forward air conditioning panel module 300 and the right bay window module 200, so as to respectively enclose the casting space for casting the three left vertical plates 105; the four horizontal plates 502 are respectively covered with the gap between the first frame 217 and the two second frames 231 in the left bay window module 200, and the gap between the first frame 217 and the two second frames 231 in the right bay window module 200, so as to respectively form the casting space for casting the bay window top plate 107 and the bay window bottom plate 108 (the left and right sides are both in the direction shown in the figure). At this time, concrete can be poured from the top of the above-mentioned casting space.

[0113] 1. The structure of the window 106 and the mold 201 is as follows:

[0114] The window 106 disassembly mold 201 includes a frame body, embedded nuts 214 and embedded bolts 215. Circumferential sealing plates 216 are provided on the top, bottom and both sides of the frame body. The circumferential sealing plates 216 seal the circumferential arrangement of the frame body. The embedded nuts 214 are distributed on the side wall of the circumferential sealing plate 216 away from the frame body. The embedded bolts 215 pass through the circumferential sealing plate 216 from the inner side of the frame body and are screwed into the embedded nuts 214.

[0115] In detail, the frame body adopts a cubic structural frame, and the main part of the frame body is welded with square tubes. The top, bottom and both sides of the frame body are welded or bolted with circumferential sealing plates 216. The circumferential sealing plates 216 seal the circumference of the frame body to prevent concrete from entering the frame body during pouring. There are two embedded nuts 214 evenly distributed on the outer side of each circumferential sealing plate 216 along the extension direction of the side length of the frame body. In other embodiments, the number of embedded nuts 214 on each circumferential sealing plate 216 can be set to three or four according to the size and strength of the frame body. The embedded bolts 215 pass through the circumferential sealing plate 216 from the inside of the frame body and are screwed together to connect to the embedded nuts 214.

[0116] During use, before pouring concrete for the building wall 101, the window 106 disassembly mold 201 is set up at a specific location on the steel bars of the building wall 101, and forms a pouring space with the wall casting template 110. Specifically, the wall steel bars 109 and the wall casting template 110 form a wall concrete pouring space, and the wall steel bars 109 are bent at the location of the window 106 to form a mold groove 111. The window 106 disassembly mold 201 is placed in the mold groove 111, and its front and back surfaces are both sealed by the wall casting template 110 that is in contact with the steel bars. The wall casting template 110 is a mold used for pouring concrete for the building wall 101 in conventional construction. It is a prior art, and its use method will not be described in detail. It should be noted that for the wall casting templates 110 on both sides of the building wall 101, the opposite side walls are provided with through nuts 112 and are screwed together by through screws 113. The through screws 113 need to be set from the inside through the window 106 to dismantle the mold 201. At this time, the top, bottom and both sides of the window 106 dismantling mold 201 are limited by the wall reinforcement 109, and the front and back sides are covered and limited by the wall casting template 110 to achieve position fixation. When the concrete pouring is completed, the concrete solidifies around the circumferential sealing plate 216 of the frame body to form the window 106. At this time, the embedded nuts 214 are embedded in the building wall 101. After the concrete solidifies, the embedded bolts 215 are removed from the embedded nuts 214, and the entire frame body can be removed from the window 106 to achieve demoulding. After demoulding, the embedded nuts 214 will remain permanently in the concrete. This method enables the entire dismantling mold to be quickly disassembled and easy to operate, thereby improving construction efficiency.

[0117] Furthermore, the frame body includes a first support member 203, two right-angled triangular frames 204 spaced apart by hypotenuses, and two first corner support assemblies 205, and the circumferential sealing plate 216 is located on the right-angled sides of the right-angled triangular frames 204; the first support member 203 is located between the two right-angled triangular frames 204 and is bolted to the two right-angled triangular frames 204, and the first corner support assemblies 205 are detachably connected to the two ends of the hypotenuses of the two right-angled triangular frames 204.

[0118] In this embodiment, the two right-angled triangular frames 204 have the same specifications and are both welded from square tubes. The hypotenuses of the two right-angled triangular frames 204 are arranged relative to each other and are detachably connected through the first support member 203. The first support member 203 is preferably made of a plate material. In other embodiments, the first support member 203 can also be made of a rod material. The first corner support assembly 205 has two functions: one is to support the two right-angled triangular frames 204, and the other is to seal the gap between the hypotenuse ends of the two right-angled triangular frames 204 to prevent concrete leakage. During demoulding, due to the large extrusion force between the concrete and the window 106 demoulding mold 201, it is difficult to directly remove the window 106 demoulding mold 201 from the window 106. Therefore, it is necessary to appropriately move the frame body toward the inside of the window 106 to separate the circumferential sealing plate 216 from the concrete. Specifically, all embedded bolts 215 on the circumferential sealing plate 216 are removed, and then the first corner support assembly 205 and the first support member 203 are removed. At this point, the two right-angled triangular frames 204 can be moved toward the inside of the window 106, separating the circumferential sealing plate 216 from the concrete. The two separated right-angled triangular frames 204 can then be directly removed, which is very convenient. At the same time, the frame body is divided into two right-angled triangular frames 204, each of which is relatively light. In the case of a lightweight frame such as aluminum alloy, the right-angled triangular frames 204 can be manually lifted by a single person, making the demoulding process manual and convenient.

[0119] Preferably, a seventh connecting member 212 is further included. The seventh connecting member 212 includes two connecting walls 213 with perpendicular edges. One connecting wall 213 is welded or bolted to the hypotenuse of the right-angled triangular frame 204, and the other connecting wall 213 is bolted to the edge of the first support member 203, thereby achieving a detachable connection between the first support member 203. There is a gap between the two side edges of the first support member 203 and the hypotenuse of the two right-angled triangular frames 204. This ensures that during the disassembly process, the first support member 203 will not be squeezed between the hypotenuse of the two right-angled triangular frames 204, and will not be difficult to remove due to such squeezing.

[0120] Furthermore, the first corner support assembly 205 includes a first support rod 206, an L-shaped first right-angle plate 207, a first fastening nut and a first support member 209. The end of the first support rod 206 is provided with a first threaded portion 210, and the internal corner of the first right-angle plate 207 is provided with a first support portion 211; both ends of the first right-angle plate 207 are abutted against the circumferential sealing plate 216, and the two ends of the first support rod 206 are respectively abutted on the inner side walls of the ends of the oblique sides of the two right-angled triangle frames 204, and the end of the first support rod 206 away from the first threaded portion 210 is connected to the first support member 209, and the end of the first support rod 206 close to the first threaded portion 210 passes through the first support member 209 and is screwed with the first fastening nut.

[0121] In this embodiment, the first right-angle plate 207 is formed by bending a sheet material, with the edges of its two side walls respectively overlapping the edges of the adjacent circumferential sealing plates 216 of the two right-angled triangular frames 204, thereby covering the gap between the two circumferential sealing plates 216. Furthermore, to secure the first right-angle plate 207, a first bracing rod 206, a first bracing member 209, and a first fastening nut are provided. A first bracing portion 211 is welded to the inner corner of the first right-angle plate 207. Specifically, the first bracing member 209 is made of square tubing, with its two ends respectively abutting against the inner sidewalls of the ends of the hypotenuses of the two right-angled triangular frames 204. The first support rod 206 is connected to the first support portion 211. The first threaded portion 210 of the first support rod 206 passes through the first support member 209 and is screwed into the first fastening nut. The first threaded portion 210 and the first fastening nut are tightened and pulled together to secure the first right-angle plate 207 between the two right-angled triangle frames 204. To disassemble, simply separate the first fastening nut from the first threaded portion 210.

[0122] Preferably, the first support rod 206 is U-shaped, with first threaded portions 210 provided at both ends of the first support rod 206, and the middle portion of the first support rod 206 passing through the first support portion 211. The first support member 209 is two independent square tubes, with the ends of the first support rod 206 passing through the two square tubes and screwed with the first fastening nut.

[0123] 2. The structure of the first frame 217 is as follows:

[0124] The first frame 217 includes a first top sealing plate 218, a first side sealing plate 219, a first connecting member 220, a second connecting member 221 and two first unit frames 222; the two first unit frames 222 are arranged in parallel and spaced apart in a horizontal manner, the first connecting member 220 is located between the two first unit frames 222 and is bolted to the two first unit frames 222, and the side walls of each first unit frame 222 facing away from the other first unit frame 222 are covered with the first side sealing plate 219; the first top sealing plate 218 is arranged at intervals on the top of the two first unit frames 222, the second connecting member 221 is arranged between the first unit frame 222 and the first top sealing plate 218, and the two ends of the second connecting member 221 are respectively bolted to the first unit frame 222 and the first top sealing plate 218, the first side sealing plate 219 and the first top sealing plate 218 seal the two sides and top of the first frame 217.

[0125] In this embodiment, the two first unit frames 222 are each welded from square tubes and spaced apart in parallel. The first connecting member 220 is formed from sheet metal, with its ends bolted to the two first unit frames 222 to achieve a removable connection between the first unit frames 222. To ensure connection strength, the number of first connecting members 220 can be two, three, or more. Furthermore, the surface of the first connecting member 220, which is formed from sheet metal, can be provided with ridges to increase strength. Two first side sealing plates 219 are provided, each welded or bolted to the side wall of the two first unit frames 222 facing away from the other first unit frame 222. The first top sealing plates 218 are spaced apart at the tops of the two first unit frames 222. The second connecting member 221 is formed from sheet metal, with its ends bolted to the first top sealing plate 218 and the first unit frames 222 to achieve a removable connection between the first top sealing plate 218 and the two first unit frames 222. At the same time, the window 106 is bolted to the disassembly mold 201 and the first frame 217 to achieve a detachable connection between the two.

[0126] During use, after the concrete solidifies, the first frame 217 needs to be disassembled. Because the concrete exerts a significant circumferential pressure on the first frame 217 after solidification, the specific method for disassembling the first frame 217 is to remove the bolts of the first connecting member 220 and the second connecting member 221. Because there are gaps between the two first unit frames 222 and between the first unit frame 222 and the first top sealing plate 218, all three can be moved away from the concrete to separate from the concrete, allowing the two first unit frames 222 and the first top sealing plate 218 to be removed. This structure of the first frame 217 facilitates connection and disassembly, facilitating construction and improving the efficiency of formwork erection and demolding. Similarly, this method divides the entire first frame 217 into smaller components, such as the two first unit frames 222 and the first top sealing plate 218. After disassembly, construction workers can remove each component manually. Construction workers can also use scaffolding or a lift for convenient disassembly.

[0127] Preferably, the side walls opposite to the two first unit frames 222 and the side walls opposite to the first unit frame 222 and the first top sealing plate 218 are also connected with the above-mentioned L-shaped seventh connecting member 212. There are gaps between the two side edges of the first connecting member 220 and the two first unit frames 222, and there are gaps between the two ends of the second connecting member 221 and the first unit frame 222 and the first top sealing plate 218 respectively, so that after the bolts are removed, the first connecting member 220 and the second connecting member 221 will not be squeezed, and they are easy to remove.

[0128] In other embodiments, the first connecting member 220 and the second connecting member 221 may also be made of rod material.

[0129] Furthermore, a second corner support assembly 223 is provided at the top corner of the first frame 217; the second corner support assembly 223 includes a second support rod 224, an L-shaped second right-angle plate 225, a second fastening nut and a second support member 227, the end of the second support rod 224 is provided with a second threaded portion 228, a second support portion 229 is provided at the inner corner of the second right-angle plate 225, and the first top sealing plate 218 is provided with a first side wall facing the first unit frame 222. Support frame 230; the two ends of the second right-angle plate 225 are respectively abutted against the first top sealing plate 218 and the first side sealing plate 219, and the two ends of the second support rod 224 are respectively abutted against the inner sides of the first unit frame 222 and the first support frame 230, and the end of the second support rod 224 away from the second threaded portion 228 is connected to the second support member 227, and the end of the second support rod 224 close to the second threaded portion 228 passes through the second support member 227 and is screwed with the second fastening nut.

[0130] In this embodiment, due to the gap between the first top sealing plate 218 and the first unit frame 222, the corners at both ends of the top of the first frame 217 are not closed. Therefore, it is necessary to provide a second corner support assembly 223 at the top corner of the first frame 217. In detail, the second right-angle plate 225 is formed by bending a plate, and the edges of its two side walls are respectively overlapped with the edges of the first top sealing plate 218 and the first side sealing plate 219 to cover the gap at the corner. In order to fix the second right-angle plate 225, a second support rod 224, a second support member 227 and a second fastening nut are also provided. A second support portion 229 is welded at the inner corner of the second right-angle plate 225. The first support frame 230 is welded by square tubes, and the first top sealing plate 218 is welded to the top of the first support frame 230.

[0131] The second support member 227 is made of a square tube, and its side walls at both ends abut against the inner side walls of the first unit frame 222 and the inner side walls of the first support frame 230 respectively. The second support rod 224 is connected to the second support portion 229, and the second threaded portion 228 of the second support rod 224 passes through the second support member 227 and is screwed into the second fastening nut. The second right-angle plate 225 is fixed between the first top sealing plate 218 and the first unit frame 222 by the tightening and pulling action of the second threaded portion 228 and the second fastening nut. When disassembling, it is only necessary to separate the second fastening nut from the second threaded portion 228. Preferably, the second support rod 224 is U-shaped, and the second threaded portion 228 is provided at both ends of the second support rod 224, and the middle part of the second support rod 224 passes through the second support portion 229. The second bracing member 227 is two independent square tubes, and the two ends of the second bracing rod 224 are respectively passed through the two square tubes and screwed with the second fastening nut 25. In other embodiments, the second bracing rod 224 can also be directly welded to the second bracing portion 229.

[0132] 3. The structure of the second frame 231 is as follows:

[0133] The second frame 231 includes a third connecting member 232 and two second unit frames 233 arranged in parallel and spaced apart in a horizontal direction. The third connecting member 232 is located between the two second unit frames 233 and is bolted to the two second unit frames 233. The side wall of each second unit frame 233 facing away from the other second unit frame 233 is provided with a second side sealing plate 234. The top of each second unit frame 233 is provided with a second top sealing plate 235. The top of the gap between the two second unit frames 233 is removably covered with a first sealing plate assembly 236. The second side sealing plate 234, the second top sealing plate 235 and the first sealing plate assembly 236 close the top and both sides of the second frame 231. The bottom ends of the two second unit frames 233 are detachably connected to the first vertical support structure 237.

[0134] In this embodiment, the two second unit frames 233 are welded from square tubes, and the two second unit frames 233 are arranged laterally spaced apart. The third connecting member 232 is made of sheet metal, and its ends are connected to the two second unit frames 233 by bolts, respectively, to achieve detachability between the two second unit frames 233. At the same time, to ensure connection strength, the number of third connecting members 232 can be two or three, or more. In addition, the surface of the third connecting member 232 made from sheet metal can be provided with convex patterns to increase strength. Similarly, the L-shaped seventh connecting member 212 is welded or bolted to the opposing side walls of the two second unit frames 233. The ends of the third connecting member 232 are bolted to the seventh connecting member 212. There is a gap between the two side edges of the third connecting member 232 and the two second unit frames 233. After the bolts are removed, the third connecting member 232 will not be squeezed by the two second unit frames 233, making it easier to remove. The two second top sealing plates 235 are respectively welded or bolted to the tops of the two second unit frames 233, and the two second side sealing plates 234 are respectively welded or bolted to the opposite side walls of the two second unit frames 233. The first sealing plate assembly 236 covers the top between the two second top sealing plates 235. The second side sealing plates 234, the second top sealing plate 235 and the first sealing plate assembly 236 seal the top and both sides of the second frame 231. The bottom ends of the two second unit frames 233 are detachably connected to the first vertical support structure 237. When the first vertical support structure 237 is detached from the second unit frame 233, the second unit frame 233 can be moved vertically. Bolt holes 202 are distributed on the two second unit frames 233, and the second frame 231 is connected to the building wall 101 through bolts.

[0135] When the concrete pouring and solidification are completed and the mold needs to be demolded, it is difficult to directly remove the entire second frame 231 due to the large squeezing force of the concrete on the second frame 231. Therefore, before disassembling the mold, the bolts connected to the wall are first removed, and then the first vertical support structure 237, the first sealing plate assembly 236 and the third connecting member 232 are removed. At this time, the two second unit frames 233 can be moved to the side away from the direction of the concrete to separate from the concrete, facilitate removal, and improve demolding efficiency.

[0136] In other embodiments, the third connecting member 232 may also be made of a rod.

[0137] Furthermore, the first sealing plate assembly 236 includes a second support frame 238, a first plate body 239 fitted with the second support frame 238, a third support rod 240, a third fastening nut 241 and a third support member 242; the first plate body 239 is fittedly connected to the top of the second support frame 238, and both ends of the first plate body 239 are overlapped on the second top sealing plate 235 of the two second unit frames 233, and both ends of the third support member 242 are respectively abutted on the top inner walls of the two second unit frames 233; the top end of the third support rod 240 is connected to the second support frame 238, and the bottom end of the third support rod 240 is provided with a third threaded portion 243, and the third threaded portion 243 passes through the third support member 242 and is screwed with the third fastening nut 241.

[0138] In this embodiment, the second support frame 238 is welded from hollow square tubes, and the first plate 239 is welded or bolted to the top of the second support frame 238. Both ends of the first plate 239 extend beyond the ends of the second support frame 238 to overlap the second top sealing plates 235 of the two second unit frames 233. At this point, the second top sealing plate 235, the second side sealing plates 234, and the first plate 239 seal the top and sides of the entire second frame 231 to prevent concrete from passing through. To removably connect the first plate 239 between the two second unit frames 233, the first sealing plate assembly 236 is further provided with a third bracing rod 240, a third fastening nut 241, and a third bracing member 242. The third support member 242 is made of a square tube, and its two ends are respectively abutted against the top inner walls of the two second unit frames 233. The top end of the third support rod 240 is connected to the second support frame 238, and the bottom end of the third support rod 240 is passed through the third support member 242. The third fastening nut 241 is screwed onto the third threaded portion 243 at the bottom end of the third support rod 240 to achieve connection. When disassembly is required, only the third fastening nut 241 needs to be removed. Preferably, the top end of the third support rod 240 is bent into an L shape, and its bend extends into the interior of the hollow second support frame 238 rod body to achieve its connection with the second support frame 238. Under the tensioning action of the third fastening nut 241, the connection between the two can be guaranteed to be stable. In other embodiments, the third support rod 240 can also be welded and fixed to the second support frame 238.

[0139] Furthermore, the first vertical support structure 237 includes a first support plate 244, a first fixing nut 245, a first connecting nut 246, a first connecting bolt 247 and a first abutting bolt 248; the first support plate 244 includes a first side wall 249 and a second side wall 250 with vertical edges, the first side wall 249 is in contact with the side wall of the second side sealing plate 234 away from the second unit frame 233, the first fixing nut 245 is located on the side of the first side wall 249 away from the second side sealing plate 234, and the first side wall 250 is in contact with the second side sealing plate 234. 49 is connected to the second unit frame 233 by a first connecting bolt 247 which passes through the second unit frame 233 and the first side wall 249 in sequence and is screwed on the first fixing nut 245; the second side wall 250 is spaced apart at the bottom end of the second unit frame 233, the first connecting nut 246 is welded to the inner wall of the second unit frame 233 and is arranged opposite to the second side wall 250, and the first abutting bolt 248 is screwed on the first connecting nut 246, passes through the second unit frame 233 and abuts against the second side wall 250.

[0140] In this embodiment, the first support plate 244 is formed by bending a plate into an L-shape, which includes a first side wall 249 and a second side wall 250 with vertical edges. The first side wall 249 is in contact with the side wall of the second side sealing plate 234 facing away from the second unit frame 233 to prevent concrete from passing through. At the same time, a first fixing nut 245 is provided on the first side wall 249. The first connecting bolt 247 is sequentially passed through the second unit frame 233 and the first side wall 249 and screwed into the first fixing nut 245 to achieve a connection between the three. The second side wall 250 is spaced apart at the bottom end of the second unit frame 233. After the concrete is poured, the second side wall 250 abuts against the concrete. The bottom end of the first abutting bolt 248 abuts against the second side wall 250 to ensure the stability of the first support plate 244.

[0141] After the concrete pouring is complete, the second side wall 250 contacts the concrete. The first contact bolt 248 is then unscrewed from the second side wall 250, the first connecting bolt 247 is removed, and the two second unit frames 233 are disassembled from each other. Vertical relative movement occurs between the first support plate 244 and the second unit frame 233. The second unit frame 233 is then moved downward to separate the second top sealing plate 235 from the concrete, facilitating the disassembly of the second unit frame 233. After disassembly, the first fixing nut 245 remains in the concrete.

[0142] Example 3

[0143] Please refer to Figure 1-Figure 5 , Figure 20-25 .

[0144] This embodiment is based on the solution of embodiment 2: the forward air-conditioning panel module 300 includes two first frame groups 301 that are arranged in parallel and spaced apart in a horizontal direction and detachably connected to each other, the tops of the two first frame groups 301 are covered with a third top sealing plate 309, the side walls of each first frame group 301 facing away from the other first frame group 301 are covered with a third side sealing plate 310, and the top of the gap between the two first frame groups 301 is detachably covered with a second sealing plate assembly 311; the bottom of each first frame group 301 is detachably connected to a second vertical support structure 318; the forward cover frame 500 includes a first front wall 501, the first front wall 501 is attached to the side of the first frame group 301 facing away from the building wall 101, the top of the first front wall 501 extends out of the top of the forward air-conditioning panel module 300, and the two ends of the first front wall 501 extend to the two groups of bay window modules 200 respectively.

[0145] In this embodiment, the air conditioning panel 104 to be cast is located between two rows of bay windows 103 structures. Figure 1 As shown, it includes a first air conditioning panel top plate 115 and a first air conditioning panel bottom plate 116. In the actual casting process, for a multi-layer air conditioning panel 104 structure, after one layer is cast, the cast first air conditioning panel top plate 115 will serve as the first air conditioning panel bottom plate 116 of the top layer. Therefore, the forward air conditioning panel module 300 shown in this embodiment is actually used to cast the first air conditioning panel top plate 115.

[0146] In this embodiment, the main parts of the two first frame groups 301 are welded by square tubes, and the bolt holes 202 are distributed on the side walls of the two first frame groups facing the building wall 101. The third top sealing plate 309 is welded or bolted to the top of the first frame group 301, and it cooperates with the second sealing plate assembly 311 to seal the top of the entire forward air-conditioning panel module 300. The third side sealing plate 310 is welded or bolted to the opposite side walls of the two first frame groups 301 to seal the two sides of the forward air-conditioning panel module 300. The third side sealing plate 310, together with the adjacent first side sealing plate 219, the second side sealing plate 234 and the vertical plate 503, forms a casting space for casting the vertical plates 105 on both sides of the air-conditioning panel 104 there. At the same time, the portion of the first front wall 501 extending toward the top of the air conditioning panel module 300, together with the third top sealing plate 309, the second sealing plate assembly 311, and the adjacent second side sealing plate 234, forms a pouring space for pouring the first air conditioning panel top plate 115. Concrete can be poured from the top of this pouring space.

[0147] When the concrete pouring is completed, the concrete will squeeze the circumference of the forward air-conditioning panel module 300, making it inconvenient to remove directly. Therefore, when disassembling, the bolts used to connect with the building wall 101 will be removed, the forward panel frame bolts will be removed, the second vertical support structure 318 will be disassembled, the two first frame groups 301 will be disassembled from each other, and then the second sealing plate assembly 311 will be disassembled. The two first frame groups 301 can be moved in a direction away from the concrete and separated from the concrete, making it easy to remove.

[0148] Furthermore, for the air-conditioning panel 104 structure in which a first top edge 114 is provided at the bottom edge of the first air-conditioning panel top plate 115, it is necessary to further improve the structure of the forward air-conditioning panel module 300 to achieve the synchronous casting of the first top edge 114 and facilitate the disassembly of the forward air-conditioning panel module 300.

[0149] In detail, the first frame group 301 includes a third unit frame 302, a fourth unit frame 303 and a fifth unit frame 304; the fourth unit frame 303 and the fifth unit frame 304 are bolted to the top of the third unit frame 302, the fifth unit frame 304 and the fourth unit frame 303 are spaced apart in a direction perpendicular to the building wall 101, and the second vertical support structure 318 is detachably mounted on the bottom of the third unit frame 302; the top of the fourth unit frame 303 has a first casting step 305 set away from the building wall 101, the side wall of the first casting step 305 is sealed with a first step sealing plate 306, and the first front wall 501 blocks the first casting step 305 It is arranged on the side away from the building wall 101; the tops of the fourth unit frame 303 and the fifth unit frame 304 are covered with a third top sealing plate 309, and the side walls of each third unit frame 302, each fourth unit frame 303 and each fifth unit frame 304 facing away from the other first frame group 301 are covered with a third side sealing plate 310; the second sealing plate assembly 311 is removably covered between the top sealing plate of the fourth unit frame 303 and the top sealing plate of the fifth unit frame 304, between the side sealing plate of the fourth unit frame 303 and the corresponding side sealing plate of the fifth unit frame 304, and between the first step sealing plates 306 of the two third unit frames 302.

[0150] In this embodiment, bolt holes 202 are provided on the fifth unit frame 304 and the third unit frame 302. The fifth unit frame 304 and the third unit frame 302 are attached to the building wall 101 and connected via bolts. The top of the fourth unit frame 303 has a first casting step 305, the sidewalls of which are sealed with a first step sealing plate 306 to prevent concrete from passing through. A second sealing plate assembly 311 is provided between the third top sealing plates 309 on the fourth unit frame 303 and the fifth unit frame 304, between the third side sealing plates 310 between the fourth and fifth frames, between the tops of the two first frame assemblies 301, and between the first step sealing plates 306 of the two first frame assemblies 301, thereby sealing the top and sides of the forward air conditioning panel module 300. When the forward cover plate frame 500 is closed, the first front wall 501 , the first step sealing plate 306 and the second sealing plate assembly 311 located between the first step sealing plates 306 form a casting space for casting the first top edge 114 .

[0151] When pouring is complete and demolding is required, the forward cover plate frame 500 is bolted off, the second vertical support structure 318 is removed, the third unit frames 302 of the two first frame groups 301 are disassembled from each other, the third unit frames 302 are bolted to the fourth unit frames 303 and the fifth unit frames 304, and the bolts connecting the third unit frames 302 to the building wall 101 are removed. At this point, the two third unit frames 302 can move relative to each other and vertically toward the bottom, separating the third unit frames 302 from the concrete of the vertical plate 105 and the fourth unit frames 303 and the fifth unit frames 304. The fourth unit frames 303 and the fifth unit frames 304 are disassembled from each other, and all second sealing plate assemblies 311 are removed. At this point, the fourth unit frames 303 and the fifth unit frames 304 can be moved away from the concrete so that they can be removed individually.

[0152] Furthermore, it also includes a fourth connecting member 307 and a fifth connecting member 308. The fourth connecting member 307 is located between the two third unit frames 302 and is bolted to the two third unit frames 302. The fifth connecting member 308 is bolted between the fourth unit frame 303 and the fifth unit frame 304 of each first frame group 301, between the fourth unit frames 303 of the two first frame groups 301, and between the fifth unit frames 304 of the two first frame groups 301.

[0153] In this embodiment, the fourth connecting member 307 and the fifth connecting member 308 are both made of sheet metal. The ends of the fourth connecting member 307 are respectively bolted to the two third unit frames 302 to achieve a detachable connection between the two third unit frames 302. Preferably, the seventh connecting member 212 is welded or bolted to the opposing side walls of the two third unit frames 302. The ends of the fourth connecting member 307 are bolted to the seventh connecting member 212. There is a gap between the ends of the fourth connecting member 307 and the two third unit frames 302 to prevent the fourth connecting member 307 from being compressed by the two third unit frames 302 and difficult to remove. The fifth connecting member 308 enables detachable connection between the two fourth unit frames 303 and the two fifth unit frames 304.

[0154] In other embodiments, the fourth connecting member 307 and the fifth connecting member 308 may also be made of rod material.

[0155] Furthermore, the second sealing plate assembly 311 includes a third support frame 312, a second plate body 313 fitted with the third support frame 312, a fourth support rod 314, a second fixing nut 315 and a fourth support member 316; the second plate body 313 is fitted and connected to the side wall of the third support frame 312, and the opposite top edges of the two first frame groups 301 are respectively clamped between the two ends of the second plate body 313 and the two ends of the fourth support member 316, one end of the fourth support rod 314 is connected to the third support frame 312, and the other end of the fourth support rod 314 is provided with a fourth threaded portion 317, and the fourth threaded portion 317 passes through the fourth support member 316 and is screwed with the second fixing nut 315.

[0156] In this embodiment, the second plate body 313 is welded or bolted to the side wall of the third support frame 312. Both ends of the second plate body 313 extend out of the two ends of the third support frame 312 to overlap on both sides of the gap that needs to be sealed. At the same time, in order to achieve the detachable connection of the second plate body 313, the second sealing plate assembly 311 is also provided with a fourth support rod 314, a second fixing nut 315 and a fourth support member 316. The fourth support member 316 is made of a square tube, and its two ends respectively abut against the inner side of the square tube of the unit frame that needs to be sealed. For example, for the sealing between the two fifth unit frames 304, the two ends of the fourth support member 316 abut against the inner side of the square tube on the fifth unit frame 304, and the square tube is clamped between the second plate body 313 and the fourth support rod 314. The third support frame 312 is made of a hollow square tube welded together, and one end of the fourth support rod 314 is bent and extends into the inside of the square tube of the third support frame 312 to achieve the connection between the two. In other embodiments, one end of the fourth bracing rod 314 can be welded or bolted to the third support frame 312. The other end of the fourth bracing rod 314 is passed through the fourth bracing member 316, and the second fixing nut 315 is screwed onto the fourth threaded portion 317 of the fourth bracing rod 314 to complete the connection. When disassembly is required, only the second fixing nut 315 needs to be removed.

[0157] Furthermore, the second vertical support structure 318 includes a second support plate 319, a third fixing nut 320, a second connecting nut 321, a second connecting bolt 322 and a second abutting bolt 323; the second support plate 319 includes a third side wall 324 and a fourth side wall 325 with vertical edges, the third side wall 324 is in contact with the side wall of the third side sealing plate 310 away from the first frame group 301, the third fixing nut 320 is located on the side of the third side wall 324 away from the third side sealing plate 310, and the third side wall 325 is in contact with the third side sealing plate 310. The side wall 324 is connected to the first frame group 301 through a second connecting bolt 322 that passes through the first frame group 301 and the third side wall 324 in sequence and is screwed into the third fixing nut 320; the fourth side wall 325 is arranged at intervals at the bottom end of the first frame group 301, the second connecting nut 321 is welded to the inner side wall of the bottom end of the first frame group 301 and is arranged opposite to the fourth side wall 325, and the second abutting bolt 323 is screwed into the second connecting nut 321, passes through the first frame group 301 and abuts against the fourth side wall 325.

[0158] In this embodiment, the second support plate 319 is formed by bending a plate into an L shape, which includes a third side wall 324 and a fourth side wall 325 with perpendicular edges. The third side wall 324 is fitted to the side wall of the third side sealing plate 310 facing away from the third unit frame 302 to prevent concrete from passing through. At the same time, a third fixing nut 320 is provided on the third side wall 324. The second connecting bolt 322 passes through the third unit frame 302 and the third side wall 324 in sequence and is screwed onto the third fixing nut 320 to achieve the connection of the three. The fourth side wall 325 is spaced at the bottom end of the third unit frame 302, and the fourth side wall 325 abuts against the concrete. The bottom end of the second abutting bolt 323 abuts against the fourth side wall 325 to ensure the stability of the second support plate 319.

[0159] During actual use, when the concrete pouring is completed, the fourth side wall 325 abuts against the concrete. At this time, the second abutting bolt 323 is unscrewed from the fourth side wall 325, and the second connecting bolt 322 is disassembled. A vertical relative movement can occur between the second support plate 319 and the third unit frame 302, and there is space for the third unit frame 302 to move downward. After disassembly, the third fixing nut 320 remains in the concrete.

[0160] Further, for Figure 2 the air-conditioning plate 104 structure with a first bottom edge 117 provided at the top edge of the bottom of the first air-conditioning plate bottom plate 116 (i.e., the top edge of the first air-conditioning plate top plate 115 at the bottom layer), the structure of the forward air-conditioning plate module 300 needs to be further improved to realize the construction of the first bottom edge 117. Specifically, a first bottom edge channel 326 is opened at the bottom end of the second support plate 319 on the side背离 the building wall 101. The inner wall of the first bottom edge channel 326 is bolted with a first mold plate 327 in an inverted "凵" shape. At this time, the first mold plate 327 and the first air-conditioning plate bottom plate 116 (i.e., the first air-conditioning plate top plate 115 at the bottom layer that has been poured) enclose a pouring space for pouring the first bottom edge 117, and the first mold plate 327 is bolted at the two second vertical support structures 318 at the bottom. The first bottom edge channel 326 is connected to the pouring spaces for pouring the vertical plates 105 on both sides.

[0161] Embodiment 4

[0162] Please refer to Figure 1-Figure 5 , Figures 26-32 。

[0163] This embodiment is based on the solution of embodiment 2: the lateral air-conditioning panel module 400 includes a second frame group 401 and a third frame group 414 that are arranged in parallel and detachably connected to each other; the second frame group 401 is installed at the corner of the building wall 101, and the second side panel mold 800 is arranged at intervals on the side of the third frame group 414 away from the second frame group 401; the bottom end of the second frame group 401 is provided with a third vertical support structure 402, and the bottom end of the third frame group 414 is provided with a fourth vertical support structure 415; the tops of the second frame group 401 and the third frame group 414 are both covered with a fourth top sealing plate 403, and the third frame group 414 faces the fourth vertical support structure 415. The side walls of the two side plate molds 800 are covered with the fourth side sealing plate 404, and the side walls of the second frame group 401 facing the bay window module 200 are covered with the front side sealing plate 405; the top of the gap between the second frame group 401 and the third frame group 414 is removably covered with the third sealing plate assembly 429; the side cover frame 600 includes a second front wall 601, and the second front wall 601 is arranged on the side of the side air-conditioning panel module 400 away from the building side wall 102, and the top of the second front wall 601 extends out of the top of the side air-conditioning panel module 400, and the two ends of the second front wall 601 extend to the forward cover frame 500 and the second side plate mold 800 respectively.

[0164] In this embodiment, the air conditioning panel 104 to be cast is located at the corner of the building wall 101 and is in contact with the building side wall 102. Figure 1 As shown, it includes a second air-conditioning panel top plate 119 and a second air-conditioning panel top plate 120. In the actual casting process, for a multi-layer air-conditioning panel 104 structure, after one layer is cast, the cast second air-conditioning panel top plate 119 will be used as the second air-conditioning panel top plate 120 of the top layer. Therefore, the forward air-conditioning panel module 300 shown in this embodiment is actually used to cast the second air-conditioning panel top plate 119.

[0165] The main portions of the second and third frame assemblies 401 and 414 are welded from square tubes, while the main portions of the lateral cover plate frame 600 and the second side plate formwork 800 are made from sheet metal. Each of the second and third frame assemblies 401, 414, and second side plate formwork 800 is provided with bolt holes 202, and all three are connected to the building side wall 102 via bolts. The front side of the second frame assemblies 401 is provided with a groove 413, the inner sidewall of which is welded or bolted to the front sealing plate 405. The third frame assemblies 414 are connected to the second frame assemblies 401. The top of the gap between the second and third frame assemblies 401 and 414 is removably covered with a third sealing plate assembly 429. The third sealing plate assembly 429, in conjunction with the fourth top sealing plate 403, covers the top of the lateral air conditioning panel module 400, preventing concrete from penetrating. The lateral cover plate frame 600 is simultaneously connected to the second and third frame assemblies 401, 414, and second side plate formwork 800 via bolts. The lateral cover frame 600 has a second front wall 601 and a side wall 602. After connection, the side wall 602, the fourth lateral sealing plate, and the second side plate formwork 800 enclose a casting space for casting the vertical plate 105; the portion of the second front wall 601 extending from the top of the lateral air conditioning panel module 400, together with the fourth top sealing plate 403 and the third sealing plate assembly 429, enclose a casting space for casting the second air conditioning panel top plate 119; the third lateral sealing plate 310 covers the opening of the groove 413, and the third lateral sealing plate 310 and the front sealing plate 405 enclose a casting space for casting the bay window 103 and the vertical plate 105 located between the lateral air conditioning panels 104 of the building. By pouring concrete from the top, the second air conditioning panel top plate 119 and the vertical plates 105 located on both sides of the lateral air conditioning panel module 400 at that location can be cast simultaneously.

[0166] After the pouring is completed and the concrete has solidified, the bolts of the side cover frame 600 are removed, and the studs connecting the second side plate formwork 800 to the building side wall 102 are removed. The side cover frame 600 and the second side plate formwork 800 can then be removed in sequence. The second frame assembly 401 and the third frame assembly 414 are then disassembled from each other, and the third sealing plate assembly 429 is removed. The third vertical support structure 402 at the bottom of the second frame assembly 401 is loosened, and the fourth vertical support structure 415 at the bottom of the third frame assembly 414 is removed. Finally, the studs connecting the second frame assembly 401 and the third frame assembly 414 to the building side wall 102 are removed. This allows the second frame assembly 401 and the third frame assembly 414 to be separated from the circumferential concrete. At this point, the third frame assembly 414 and the second frame assembly 401 will not be squeezed by the concrete, and both can be removed from the opening between the two vertical plates 105 at the side of the building.

[0167] Furthermore, for the case where the second top edge 118 is provided at the bottom edge of the second air-conditioning panel top plate 119, it is necessary to further improve the lateral air-conditioning panel module 400. In detail, the second frame group 401 and the third frame group 414 are both provided with a second casting step 406 on the top facing away from the building side wall 102, and the side wall of the second casting step 406 is covered with a second step sealing plate 407. The second front wall 601 is provided to block the second casting step 406 from the side facing away from the building side wall 102; the second step sealing plate 407 of the second frame group 401 and the second step sealing plate 407 of the third frame group 414 can be removably covered with a third sealing plate assembly 429. At this time, the second front wall 601, the second step sealing plate 407 and the third sealing plate assembly 429 can enclose a casting space for casting the second top edge 118, which can be cast together when casting the second air-conditioning panel top plate 119.

[0168] Furthermore, since the second top edge 118 blocks the disassembly of the second frame assembly 401 and the third frame assembly 414 , it is necessary to improve the structures of the second frame assembly 401 and the third frame assembly 414 .

[0169] 1. The structure of the second frame assembly 401 is as follows:

[0170] The second frame assembly 401 includes a sixth unit frame 408, a seventh unit frame 409 detachably connected to the top of the sixth unit frame 408, and an eighth unit frame 410 spaced apart on the side of the seventh unit frame 409 facing away from the bay window module 200 and detachably connected to the seventh unit frame 409. The sixth and seventh unit frames 408, 409 are preferably bolted together. A third vertical support structure 402 is located at the bottom of the sixth unit frame 408; a second casting step 406 is provided on the seventh unit frame 409. The top of the gap between the seventh and eighth unit frames 409, 410, is covered with a third sealing plate assembly 429. A groove 413 is located on the side of the sixth and seventh unit frames 408, 409 facing away from the building side wall 102. The groove 413 vertically extends through the sixth and seventh unit frames 408, 409, and the front sealing plate 405 is affixed to the inner wall of the groove 413. The tops of the seventh and eighth unit frames 409, 410, are both covered with a fourth top sealing plate 403. The fourth top sealing plate 403 and the third sealing plate assembly 429 seal the top of the second frame assembly 401. The sixth unit frame 408, the seventh unit frame 409, and the eighth unit frame 410 are all provided with stud holes 202. The sixth unit frame 408 and the seventh unit frame 409 are connected to the building wall 101, and the eighth unit frame 410 is connected to the building side wall 102.

[0171] After disassembling the third frame assembly 414, the second frame assembly 401 needs to be disassembled. To do this, first loosen the third vertical support structure 402 and remove the bolts between the seventh and sixth frame units 409, 408. This allows the sixth frame unit 408 to move vertically toward the back of the concrete, enabling separation and disassembly. Simultaneously, the seventh and eighth frame units 409, 410, are disassembled from each other, the third sealing plate assembly 429 between them is removed, and the bolts connecting them to the building wall 101 or building side wall 102 are removed. At this point, the seventh and eighth frame units 409, 410 can move relative to each other and separate from the concrete, enabling separation and disassembly.

[0172] Preferably, the third vertical support structure 402 includes a third connecting nut 411 and a third abutting bolt 412. The third connecting nut 411 is welded to the inner sidewall of the sixth unit frame 408. The third abutting bolt 412 is screwed into the third connecting nut 411 from the inner side of the sixth unit frame 408 and extends out of the bottom end of the sixth unit frame 408. When supporting, the bottom end of the third abutting bolt 412 abuts the top of the second air conditioning panel top plate 120. During disassembly, the third connecting nut 411 is loosened to provide vertical movement margin for the sixth unit frame 408.

[0173] 2. The structure of the third frame group 414 is as follows:

[0174] The third frame assembly 414 includes a ninth unit frame 416 , a tenth unit frame 417 and an eleventh unit frame 418 ; the tenth unit frame 417 and the eleventh unit frame 418 are both detachably connected to the top of the ninth unit frame 416 , preferably by bolts. The tenth unit frame 417 and the eleventh unit frame 418 are arranged at intervals, the second casting step 406 is arranged on the tenth unit frame 417, and the fourth vertical support structure 415 is located at the bottom of the ninth unit frame 416; the tops of the tenth unit frame 417 and the eleventh unit frame 418 are covered with the fourth top sealing plate 403, and the top of the gap between the tenth unit frame 417 and the eleventh unit frame 418 is covered with the third sealing plate assembly 429 to seal the top of the third frame group 414; the side walls of the ninth unit frame 416, the tenth unit frame 417 and the eleventh unit frame 418 facing away from the second frame group 401 are covered with the fourth side sealing plate 404, and the side of the gap between the tenth unit frame 417 and the eleventh unit frame 418 facing the second side plate formwork 800 is covered with the third sealing plate assembly 429 to seal the side of the third frame group 414 facing the second side plate formwork 800. The top of the gap between the seventh unit frame 409 and the tenth unit frame 417 and the top of the gap between the eighth unit frame 410 and the eleventh unit frame 418 are covered with a third sealing plate assembly 429 to seal the top of the gap between the second frame group 401 and the third frame group 414.

[0175] During disassembly, the fourth vertical support structure 415 is removed, and the bolts connecting the ninth unit frame 416 to the tenth unit frame 417 and the eleventh unit frame 418 are removed. The ninth unit frame 416 can then be moved vertically away from the concrete and removed. Simultaneously, all third sealing plate assemblies 429 are removed, allowing the tenth unit frame 417 and the eleventh unit frame 418 to move relative to each other and separate from the concrete, completing disassembly.

[0176] Furthermore, the fourth vertical support structure 415 includes a third support plate 419, a fourth fixing nut 420, a fourth connecting nut 421, a third connecting bolt 422 and a fourth abutting bolt 423; the third support plate 419 includes a fifth side wall 424 and a sixth side wall 425 with vertical edges, the fifth side wall 424 is in contact with the side wall of the fourth side sealing plate 404 away from the ninth unit frame 416, and the fourth fixing nut 420 is located on the side of the fifth side wall 424 away from the fourth side sealing plate 404 The fifth side wall 424 is connected to the ninth unit frame 416 by a third connecting bolt 422 which passes through the ninth unit frame 416 and the fifth side wall 424 in sequence and is screwed into the fourth fixing nut 420; the sixth side wall 425 is spaced apart at the bottom end of the ninth unit frame 416, the fourth connecting nut 421 is welded to the inner side wall of the bottom end of the ninth unit frame 416 and is arranged opposite to the sixth side wall 425, and the fourth abutting bolt 423 is screwed into the fourth connecting nut 421 and abuts against the sixth side wall 425.

[0177] In this embodiment, the third support plate 419 is formed by bending a plate into an L-shape, which includes a fifth side wall 424 and a sixth side wall 425 with vertical edges. The fifth side wall 424 is in contact with the side wall of the fourth side sealing plate 404 facing away from the ninth unit frame 416 to prevent concrete from passing through. At the same time, a fourth fixing nut 420 is provided on the fifth side wall 424, and the third connecting bolt 422 is sequentially passed through the ninth unit frame 416 and the fifth side wall 424 and screwed into the fourth fixing nut 420 to achieve the connection between the three. The sixth side wall 425 is spaced apart at the bottom end of the ninth unit frame 416, and the sixth side wall 425 abuts the top of the second air conditioning panel top plate 120. The bottom end of the fourth abutting bolt 423 abuts against the sixth side wall 425 to ensure the stability of the third support plate 419.

[0178] In actual use, after the concrete pouring is completed, the sixth side wall 425 abuts against the concrete. At this time, the fourth abutment bolt 423 is unscrewed from the sixth side wall 425, and the third connecting bolt 422 is removed. This allows vertical relative movement between the third support plate 419 and the ninth unit frame 416, allowing the ninth unit frame 416 to move downward, facilitating disassembly. After disassembly, the fourth fixing nut 420 remains in the concrete.

[0179] Furthermore, for Figure 3 the air-conditioning plate 104 structure in which a second bottom edge 121 is provided at the top edge of the second air-conditioning plate top plate 120 shown (i.e., the top edge of the second air-conditioning plate top plate 119 of the bottom layer), the structure of the lateral air-conditioning plate module 400 needs to be further improved to realize the construction of the second bottom edge 121. Specifically, a second bottom edge channel 427 is opened at the front side of the bottom end of the third support plate 419, and the second bottom edge channel 427 runs through and communicates to the gap between the second bay window module 200 and the lateral air-conditioning plate module 400 (i.e., the groove 413), and the inner side wall of the second bottom edge channel 427 is provided with a second die plate 428 in an inverted "U" shape. At this time, the second die plate 428 and the second air-conditioning plate top plate 120 (i.e., the second air-conditioning plate top plate 119 of the bottom layer that has been poured) enclose a pouring space for pouring the second bottom edge 121, and the second die plate 428 is bolted to the sixth unit frame 408 at the bottom and two fourth vertical support structures 415. The second bottom edge channel 427 communicates with the pouring spaces for pouring the vertical plates 105 on both sides.

[0180] Furthermore, sixth connecting pieces 426 are bolted between the seventh unit frame 409 and the eighth unit frame 410, between the tenth unit frame 417 and the eleventh unit frame 418, between the seventh unit frame 409 and the tenth unit frame 417, and between the eighth unit frame 410 and the eleventh unit frame 418 to realize the sequentially spaced detachable connection of the four. The sixth connecting piece 426 is preferably processed from a plate. At the same time, since the sixth unit frame 408 is bolted to the seventh unit frame 409 and the eighth unit frame 410, and the ninth unit frame 416 is bolted to the tenth unit frame 417 and the eleventh unit frame 418, the sixth connecting piece 426 realizes the indirect detachable connection between the sixth unit frame 408 and the ninth unit frame 416.

[0181] Furthermore, the third sealing plate assembly 429 includes a fourth support frame 430, a fifth stay bar 431, a fifth fixing nut 432, a fifth stay member 433, and a third plate body 434 that is disposed in contact with the fourth support frame 430; the top edges of the second frame group 401 and the third frame group 414 are clamped between the third plate body 434 and the fifth stay member 433, one end of the fifth stay bar 431 is connected to the fourth support frame 430, the other end of the fifth stay bar 431 is provided with a fifth threaded portion 435, and the fifth threaded portion 435 passes through the fifth stay member 433 and is screwed with the fifth fixing nut 432.

[0182] In this embodiment, the third plate 434 is welded or bolted to the side wall of the fourth support frame 430. The two ends of the third plate 434 are respectively overlapped at the opposite edges of the unit frames to be connected to cover the gap. At the same time, the fifth bracing member 433 is made of square tube, and its two ends are respectively abutted against the inner side walls of the unit frames to be connected. For example, for the connection between the second frame group 401 and the third frame group, the square tubes at the opposite top edges of the two are clamped between the third plate 434 and the fifth bracing member 433. The same applies to the gaps between the other unit frames that need to be covered by the third sealing plate assembly 429, which will not be described in detail. One end of the fifth bracing rod 431 is connected to the fourth support frame 430, and the other end of the fifth bracing rod 431 is provided with a fifth threaded portion 435. The fifth threaded portion 435 passes through the fifth bracing member 433 and is screwed into the fifth fixing nut 432, thereby bracing and fixing the third plate 434. When disassembling, the fifth fixing nut 432 can be removed.

[0183] Preferably, the fourth support frame 430 is formed by welding a hollow square tube, and the end of the fifth support rod 431 is bent and extends into the interior of the hollow square tube to achieve the connection between the fifth support rod 431 and the fourth support frame 430. In other embodiments, the fifth support rod 431 can also be welded or bolted to the fourth support frame 430.

[0184] In summary, the present invention provides an integral casting mold for casting bay windows 103 and air-conditioning panels 104, wherein two groups of bay window modules 200 cooperate with the forward cover plate frame 500 for casting the two bay windows 103 structures, the forward air-conditioning panel module 300 cooperates with the forward cover plate frame 500 for casting the air-conditioning panel 104 structure between the two bay windows 103, and the side cover plate frame 600 cooperates with the side air-conditioning panel module 400 for casting the air-conditioning panel 104 structure located at the corner of the building wall 101. The first side panel mold 700, the first bay window module 200, the forward air-conditioning panel module 300, the second bay window module 200, the side air-conditioning panel module 400 and the second side panel mold 800 are arranged horizontally at intervals in sequence along the surface extension direction of the outer wall of the building wall 101, and the gap between adjacent two of them is used to cast the vertical panel 105 structures on both sides of the bay window 103 and the air-conditioning panel 104. Through the above arrangement, the integral casting mold can cast two rows of bay windows 103 and two rows of air-conditioning panels 104 at the same time after being erected, which facilitates construction.

[0185] The forward air conditioning panel module 300, the lateral air conditioning panel module 400, the first side panel formwork 700, the second side panel formwork 800, and the two bay window modules 200 are all provided with a connection structure for detachable connection to the building wall 101; the forward cover frame 500 is detachably connected to the first side panel formwork 700, the forward air conditioning panel module 300, and the two bay window modules 200; the lateral cover frame 600 is detachably connected to the second side panel formwork 800 and the lateral air conditioning panel module 400. This arrangement enables the above-mentioned components to be quickly and independently assembled and disassembled on the wall, facilitating mold erection and demoulding. At the same time, for multi-story buildings, after the bay windows 103 and air conditioning panels 104 on the first floor are cast and solidified, the integral casting mold can be disassembled and moved to the building wall 101 on the top floor to continue casting, thereby achieving layer-by-layer casting.

[0186] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. It is obvious to those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and that the present application can be implemented in other specific forms without departing from the spirit or basic features of the present application.

[0187] Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present application is defined by the appended claims rather than the foregoing description, and all changes that come within the meaning and range of equivalents of the claims are intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

[0188] It will be apparent to those skilled in the art that the present invention may be subject to various modifications and variations. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. An integral casting mold for casting bay windows and air conditioning panels, characterized in that: It includes a front air conditioning panel module, a side air conditioning panel module, a first side panel mold, a second side panel mold, a front cover plate frame, a side cover plate frame and two groups of bay window modules; the front air conditioning panel module, the side air conditioning panel module, the first side panel mold, the second side panel mold and the two groups of bay window modules are all provided with a connection structure for detachable connection with the building wall; The first side panel formwork, the first bay window module, the forward air-conditioning panel module, the second bay window module, the side air-conditioning panel module and the second side panel formwork are horizontally spaced in sequence along the surface extension direction of the outer wall of the building wall, and the side air-conditioning panel formwork is located at the corner of the building wall; the forward cover panel frame is detachably connected to the first side panel formwork, the forward air-conditioning panel module and the two bay window modules, and the side cover panel frame is detachably connected to the second side panel formwork and the side air-conditioning panel module; the forward cover panel frame covers and closes the gap between the first side panel formwork, the first bay window module, the forward air-conditioning panel module, the second bay window module and the side air-conditioning panel module, and the side cover panel frame covers and closes the gap between the side air-conditioning panel module and the second side panel.

2. The integral casting mold for casting bay windows and air conditioning panels according to claim 1, characterized in that: The connecting structure is a set of bolt holes provided on the forward air-conditioning panel module, the lateral air-conditioning panel module, the first side panel module, the second side panel module and the two groups of bay window modules. The forward air-conditioning panel module, the lateral air-conditioning panel module, the first side panel module, the second side panel module and the two groups of bay window modules are all connected to the building wall by bolts passing through the bolt holes.

3. The integral casting mold for casting bay windows and air conditioning panels according to claim 1, characterized in that: The front cover frame is connected to the front air-conditioning panel module and the two bay window modules by bolts, and the side cover frame is connected to the side air-conditioning panel module by bolts.

4. The integral casting mold for casting bay windows and air conditioning panels according to claim 1, characterized in that: The bay window module includes a window split mold, a first frame, and two second frames. The window split mold is used to cast the bay window structure. The window split mold and the second frames are both detachably connected to the building wall, and the first frame is detachably connected to the window split mold. The first frame and the window splitting mold are arranged in parallel, and the two second frames are respectively arranged at intervals on the top and bottom of the first frame. The forward cover frame is connected to the first frame and the two second frames at the same time, and the forward cover frame covers and closes the gap between the first frame and the second frame.

5. The integral casting mold for casting bay windows and air conditioning panels according to claim 4, characterized in that: The window disassembly mold includes a frame body, embedded nuts and embedded bolts. Circumferential sealing plates are provided on the top, bottom and both sides of the frame body. The circumferential sealing plates seal the circumference of the frame body. The embedded nuts are distributed on the side walls of the circumferential sealing plates facing away from the frame body. The embedded bolts pass through the circumferential sealing plates from the inner side of the frame body and are screwed into the embedded nuts.

6. The integral casting mold for casting bay windows and air conditioning panels according to claim 5, characterized in that: The frame body includes a first support member, two right-angled triangular frames with oblique sides spaced apart, and two first corner support assemblies, and the circumferential sealing plate is located on the right-angled sides of the right-angled triangular frames; The first support member is located between the two right-angled triangle frames and is bolted to the two right-angled triangle frames. The first corner support assembly is detachably connected to both ends of the oblique sides of the two right-angled triangle frames.

7. The integral casting mold for casting bay windows and air conditioning panels according to claim 6, characterized in that: The first corner support assembly includes a first support rod, an L-shaped first right-angle plate, a first fastening nut and a first support member, wherein the end of the first support rod is provided with a first threaded portion, and the inner corner of the first right-angle plate is provided with a first support portion; Both ends of the first right-angle plate are in contact with the circumferential sealing plate, and both ends of the first support rod are respectively in contact with the inner side walls of the ends of the two oblique sides of the right-angled triangle frames. The end of the first support rod away from the first threaded portion is connected to the first support member, and the end of the first support rod close to the first threaded portion passes through the first support member and is screwed with the first fastening nut.

8. The integral casting mold for casting bay windows and air conditioning panels according to claim 4, characterized in that: The window split mold is connected to the first frame bolts.

9. The integral casting mold for casting bay windows and air conditioning panels according to claim 4, characterized in that: The first frame includes a first top sealing plate, a first side sealing plate, a first connecting member, a second connecting member and two first unit frames; The two first unit frames are arranged in parallel and spaced apart in a horizontal direction, the first connecting member is located between the two first unit frames and is bolted to the two first unit frames, and the side wall of each first unit frame facing away from the other first unit frame is covered with the first side sealing plate; the first top sealing plate is arranged at intervals on the top of the two first unit frames, the second connecting member is arranged between the first unit frame and the first top sealing plate, and the two ends of the second connecting member are respectively bolted to the first unit frame and the first top sealing plate, and the first side sealing plate and the first top sealing plate seal the two sides and top of the first frame.

10. The integral casting mold for casting bay windows and air conditioning panels according to claim 9, characterized in that: A second corner support assembly is provided at the top corner of the first frame; The second corner support assembly includes a second support rod, an L-shaped second right-angle plate, a second fastening nut and a second support member, the end of the second support rod is provided with a second threaded portion, the inner corner of the second right-angle plate is provided with a second support portion, and the first top sealing plate is provided with a first support frame on the side wall facing the first unit frame; The two ends of the second right-angle plate are respectively abutted against the first top sealing plate and the first side sealing plate, and the two ends of the second support rod are respectively abutted against the inner sides of the first unit frame and the first support frame. The end of the second support rod away from the second threaded portion is connected to the second support member, and the end of the second support rod close to the second threaded portion passes through the second support member and is screwed with the second fastening nut.

11. The integral casting mold for casting bay windows and air conditioning panels according to claim 4, characterized in that: The second frame includes a third connecting member and two second unit frames arranged in parallel and spaced apart in a transverse direction, wherein the third connecting member is located between the two second unit frames and is bolted to the two second unit frames; The side wall of each second unit frame facing away from the other second unit frame is provided with a second side sealing plate, the top of each second unit frame is provided with a second top sealing plate, the top of the gap between the two second unit frames is removably covered with a first sealing plate assembly, the second side sealing plate, the second top sealing plate and the first sealing plate assembly enclose the top and both sides of the second frame; the bottom ends of the two second unit frames are detachably connected to the first vertical support structure.

12. The integral casting mold for casting bay windows and air conditioning panels according to claim 11, characterized in that: The first sealing plate assembly includes a second supporting frame, a first plate body fitted with the second supporting frame, a third supporting rod, a third fastening nut and a third supporting member; The first plate body is fitted and connected to the top of the second supporting frame, and the two ends of the first plate body are overlapped on the second top sealing plates of the two second unit frames, and the two ends of the third support member are respectively abutted on the top inner walls of the two second unit frames; the top end of the third support rod is connected to the second supporting frame, and the bottom end of the third support rod is provided with a third threaded portion, and the third threaded portion passes through the third support member and is screwed with the third fastening nut.

13. The integral casting mold for casting bay windows and air conditioning panels according to claim 11, characterized in that: The first vertical support structure includes a first support plate, a first fixing nut, a first connecting nut, a first connecting bolt and a first abutting bolt; The first support plate includes a first side wall and a second side wall with vertical edges, the first side wall is in contact with a side wall of the second side sealing plate facing away from the second unit frame, the first fixing nut is located on a side of the first side wall facing away from the second side sealing plate, and the first side wall is connected to the second unit frame by a first connecting bolt that is sequentially provided through the second unit frame and the first side wall and screwed into the first fixing nut; The second side wall is spaced apart at the bottom end of the second unit frame, the first connecting nut is welded to the inner side wall of the second unit frame and is arranged opposite to the second side wall, and the first abutment bolt is screwed into the first connecting nut, passes through the second unit frame and abuts the second side wall.

14. The integral casting mold for casting bay windows and air conditioning panels according to claim 1, characterized in that: The forward air conditioning panel module includes two first frame groups that are spaced apart and arranged in parallel laterally and detachably connected to each other, the tops of the two first frame groups are covered with a third top sealing plate, the side walls of each first frame group facing away from the other first frame group are covered with a third side sealing plate, and the top of the gap between the two first frame groups is detachably covered with a second sealing plate assembly; the bottom of each first frame group is detachably connected to a second vertical support structure; The forward cover frame includes a first front wall, which is attached to the side of the first frame group facing away from the building wall. The top of the first front wall extends out of the top of the forward air-conditioning panel module, and the two ends of the first front wall extend to the two groups of bay window modules respectively.

15. The integral casting mold for casting bay windows and air conditioning panels according to claim 14, characterized in that: The first frame group includes a third unit frame, a fourth unit frame and a fifth unit frame; the fourth unit frame and the fifth unit frame are bolted to the top of the third unit frame, the fifth unit frame and the fourth unit frame are spaced apart in a direction perpendicular to the building wall, and the second vertical support structure is detachably mounted on the bottom of the third unit frame; The top of the fourth unit frame has a first casting step arranged away from the building wall, the side wall of the first casting step is sealed with a first step sealing plate, and the first front wall is arranged to shield the side of the first casting step away from the building wall; The tops of the fourth unit frame and the fifth unit frame are both covered with the third top sealing plate, and the side walls of each of the third unit frame, each of the fourth unit frame and each of the fifth unit frame facing away from the other first frame group are covered with the third side sealing plate; the second sealing plate assembly is removably covered between the top sealing plate of the fourth unit frame and the top sealing plate of the fifth unit frame, between the side sealing plate of the fourth unit frame and the corresponding side sealing plate of the fifth unit frame, and between the first step sealing plates of the two third unit frames.

16. The integral casting mold for casting bay windows and air conditioning panels according to claim 15, characterized in that: It also includes a fourth connecting member and a fifth connecting member, the fourth connecting member is located between the two third unit frames and is bolted to the two third unit frames, and a fifth connecting member is bolted between the fourth unit frame and the fifth unit frame of each first frame group, between the fourth unit frames of two first frame groups, and between the fifth unit frames of two first frame groups.

17. The integral casting mold for casting bay windows and air conditioning panels according to claim 14, characterized in that: The second sealing plate assembly includes a third supporting frame, a second plate body fitted with the third supporting frame, a fourth supporting rod, a second fixing nut and a fourth supporting member; The second plate body is fitted and connected to the side wall of the third supporting frame, and the opposite top edges of the two first frame groups are respectively clamped between the two ends of the second plate body and the two ends of the fourth support member. One end of the fourth support rod is connected to the third supporting frame, and the other end of the fourth support rod is provided with a fourth threaded portion, and the fourth threaded portion passes through the fourth support member and is screwed with the second fixing nut.

18. The integral casting mold for casting bay windows and air conditioning panels according to claim 14, characterized in that: The second vertical support structure includes a second support plate, a third fixing nut, a second connecting nut, a second connecting bolt and a second abutting bolt; The second support plate includes a third side wall and a fourth side wall with vertical edges, the third side wall is in contact with the side wall of the third side sealing plate facing away from the first frame assembly, the third fixing nut is located on a side of the third side wall facing away from the third side sealing plate, and the third side wall is connected to the first frame assembly via a second connecting bolt which is sequentially passed through the first frame assembly and the third side wall and screwed into the third fixing nut; The fourth side wall is spaced apart from the bottom end of the first frame group. The second connecting nut is welded to the inner side wall of the bottom end of the first frame group and is disposed opposite to the fourth side wall. The second abutting bolt is screwed into the second connecting nut, passes through the first frame group and abuts against the fourth side wall.

19. The integral casting mold for casting bay windows and air conditioning panels according to claim 18, characterized in that: A first bottom edge channel is formed at the bottom end of the side of the second support plate facing away from the building wall. A first die plate in an inverted "U" shape is bolted to the inner wall of the first bottom edge channel.

20. The integral casting mold for casting bay windows and air conditioning panels according to claim 1, characterized in that: The lateral air-conditioning plate module includes a second frame group and a third frame group that are arranged horizontally side by side at intervals and are detachably connected to each other. The second frame group is installed at the corner of the building wall. The second side plate mold is spaced apart from the side of the third frame group facing away from the second frame group. A third vertical support structure is provided at the bottom end of the second frame group, and a fourth vertical support structure is provided at the bottom end of the third frame group. The tops of the second frame group and the third frame group are both covered with a fourth top sealing plate. The side wall of the third frame group facing the second side plate mold is covered with a fourth side sealing plate. The side wall of the second frame group facing the bay window module is covered with a front sealing plate. A third sealing plate assembly is detachably covered at the top of the gap between the second frame group and the third frame group. The lateral cover frame includes a second front wall, which is disposed on the side of the lateral air-conditioning plate module facing away from the building side wall. The top of the second front wall extends beyond the top of the lateral air-conditioning plate module. The two ends of the second front wall respectively extend to the front cover frame and the second side plate mold.

21. The integral casting mold for casting bay windows and air conditioning panels according to claim 20, characterized in that: Second pouring steps are provided in the direction away from the building side wall at the tops of the second frame group and the third frame group. The side walls of the second pouring steps are covered with second step sealing plates. The second front wall shields the side of the second pouring steps facing away from the building side wall. The third sealing plate assembly is detachably covered between the second step sealing plate of the second frame group and the second step sealing plate of the third frame group.

22. The integral casting mold for casting bay windows and air conditioning panels according to claim 21, characterized in that: The second frame group includes a sixth unit frame, a seventh unit frame detachably connected to the top of the sixth unit frame, and an eighth unit frame spaced apart from the side of the seventh unit frame facing away from the bay window module and detachably connected to the seventh unit frame. The third vertical support structure is located at the bottom of the sixth unit frame. The second pouring step is provided in the seventh unit frame. The third sealing plate assembly is covered at the top of the gap between the seventh unit frame and the eighth unit frame. The front sides of the sixth unit frame and the seventh unit frame are both covered with front sealing plates. The tops of the seventh unit frame and the eighth unit frame are both covered with the fourth top sealing plate.

23. The integral casting mold for casting bay windows and air conditioning panels according to claim 22, characterized in that: The third vertical support structure includes a third connecting nut and a third abutting bolt. The third connecting nut is welded to the inner side wall of the sixth unit frame. The third abutting bolt is screwed into the third connecting nut from the inside of the sixth unit frame and extends out of the bottom end of the sixth unit frame.

24. The integral casting mold for casting bay windows and air conditioning panels according to claim 22, characterized in that: The third frame group includes a ninth unit frame, a tenth unit frame, and an eleventh unit frame; the tenth unit frame and the eleventh unit frame are both detachably connected to the top of the ninth unit frame, the tenth unit frame and the eleventh unit frame are spaced apart, the second pouring step is provided on the tenth unit frame, and the fourth vertical support structure is located at the bottom of the ninth unit frame; The tops of the tenth unit frame and the eleventh unit frame are both covered with the fourth top sealing plate, and the side walls of the ninth unit frame, the tenth unit frame, and the eleventh unit frame facing away from the second frame group are all covered with the fourth side sealing plate; the top of the gap between the tenth unit frame and the eleventh unit frame, the side of the gap between the tenth unit frame and the eleventh unit frame facing the second side formwork, the top of the gap between the seventh unit frame and the tenth unit frame, and the top of the gap between the eighth unit frame and the eleventh unit frame are all covered with the third sealing plate assembly.

25. The integral casting mold for casting bay windows and air conditioning panels according to claim 24, characterized in that: The fourth vertical support structure includes a third support plate, a fourth fixing nut, a fourth connecting nut, a third connecting bolt, and a fourth abutting bolt; The third support plate includes a fifth side wall and a sixth side wall with perpendicular edges, the fifth side wall is fitted to the side wall of the fourth side sealing plate facing away from the ninth unit frame, the fourth fixing nut is located on the side of the fifth side wall facing away from the fourth side sealing plate, and the fifth side wall is connected to the ninth unit frame by a third connecting bolt that sequentially passes through the ninth unit frame and the fifth side wall and is screwed into the fourth fixing nut; The sixth side wall is spaced from the bottom end of the ninth unit frame, the fourth connecting nut is welded to the inner side wall of the bottom end of the ninth unit frame and is arranged opposite to the sixth side wall, and the fourth abutting bolt is screwed into the fourth connecting nut and abuts against the sixth side wall.

26. The integral casting mold for casting bay windows and air conditioning panels according to claim 25, characterized in that: A second bottom edge channel is provided at the front side of the bottom end of the third support plate, the second bottom edge channel runs through and communicates with the gap between the second bay window module and the lateral air conditioner panel module, and the inner side wall of the second bottom edge channel is provided with a second mold plate in an inverted "凵" shape.

27. The integral casting mold for casting bay windows and air conditioning panels according to claim 24, characterized in that: The seventh unit frame is bolted to the sixth unit frame, the tenth unit frame and the eleventh unit frame are both bolted to the ninth unit frame, and sixth connecting members are bolted between the seventh unit frame and the eighth unit frame, between the tenth unit frame and the eleventh unit frame, between the seventh unit frame and the tenth unit frame, and between the eighth unit frame and the eleventh unit frame.

28. The integral casting mold for casting bay windows and air conditioning panels according to claim 20, characterized in that: The third sealing plate assembly includes a fourth support frame, a fifth stay bar, a fifth fixing nut, a fifth stay member, and a third plate body fitted to the fourth support frame; The top edges of the second frame group and the third frame group are clamped between the third plate and the fifth support member, one end of the fifth support rod is connected to the fourth support frame, and the other end of the fifth support rod is provided with a fifth threaded portion, and the fifth threaded portion passes through the fifth support member and is screwed into the fifth fixing nut.

Citation Information

Patent Citations

  • Integral pouring mold for pouring bay window and air conditioner plate

    CN218715104U