A thermal insulation enclosure integrated plate type mold and a thermal insulation enclosure integrated plate production method
By designing molds suitable for integrated thermal insulation enclosure panels with different curvatures, and utilizing a combination of elastic and fixed plates, the problems of long production cycles and high costs of curved integrated thermal insulation enclosure panels were solved, resulting in shorter production cycles and lower costs, while also reducing template damage.
Patent Information
- Application Number
- CN202511478080.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-16
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2045-10-16
AI Technical Summary
In the existing technology, the production cycle of curved integrated thermal insulation enclosure panels is long and the cost is high. They require redesign and processing of molds, and the molds are easily damaged during demolding.
A mold for an integrated thermal insulation enclosure panel is provided, comprising two templates and a blocking component. The templates consist of an elastic plate and a fixed plate. By adjusting the included angle and distance of the fixed plate, it can be adapted to the production of integrated thermal insulation enclosure panels with different curvatures. Furthermore, the fixed plate can be rotated horizontally during demolding to reduce damage.
It shortens the production cycle of curved insulated enclosure panels, reduces production costs, minimizes damage to templates, and is easy to operate and adjust in thickness.
Smart Images

Figure CN120962831B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of building board mold, belongs to the special equipment for producing energy-saving building materials, in particular to a thermal insulation and enclosure integrated board mold and a thermal insulation and enclosure integrated board production method. BACKGROUND
[0002] The thermal insulation and enclosure integrated board is a building assembly integrating functions of thermal insulation, decoration and the like, and is widely used in building outer walls and building inner partition walls, and has the advantages of low energy consumption for construction and maintenance, small environmental influence, short construction period, high installation precision, reduced thermal bridge effect, good fireproof performance and strong durability.
[0003] With the increasing demand of the building industry for the curved modeling (arc or wavy shape) of the thermal insulation and enclosure integrated board, the mold needs to be customized according to the curved modeling of the thermal insulation and enclosure integrated board, and the mold is usually made of metal material or plastic material, so that the mold needs to be redesigned and processed for each type of curved modeling of the thermal insulation and enclosure integrated board, resulting in a long production period and high production cost of the curved modeling of the thermal insulation and enclosure integrated board. SUMMARY
[0004] The technical problem to be solved by the present application is to overcome the defects of the prior art, and to provide a thermal insulation and enclosure integrated board mold and a thermal insulation and enclosure integrated board production method.
[0005] The technical solution adopted by the present application to solve the technical problem comprises:
[0006] On the one hand, a thermal insulation and enclosure integrated board mold is provided, which comprises two blocking pieces and two molds, the mold comprises an elastic plate, a plurality of parallel fixing plates are fixed on one side surface of the elastic plate along the length direction of the elastic plate, and the length direction of the fixing plate is perpendicular to the length direction of the elastic plate, a limiting piece is fixed on each fixing plate, any two adjacent fixing plates are rotationally connected through a rotating connecting piece, and an angle limiting piece is installed between any two adjacent limiting pieces.
[0007] Among them, the two molds are placed opposite on a flat operation plane, a positioning piece is installed between the two molds, the length direction of any one fixing plate is perpendicular to the operation plane, and the fixing plate is located on the outer side surface of the elastic plate, a filler space is formed between the two elastic plates, a thermal insulation plate is arranged in the filler space, and a detachable blocking piece is installed at both ends of the filler space in the length direction, the thermal insulation plate divides the filler space into a first forming cavity and a second forming cavity.
[0008] As a preferred technical scheme of the present application, the positioning member comprises a first screw rod, a sleeve and a second screw rod, a first helical groove adapted to the first screw rod is formed at one end of the sleeve inner cavity, a second helical groove adapted to the second screw rod is formed at the other end of the sleeve inner cavity, the helical direction of the first helical groove is opposite to that of the second helical groove, one end of the first screw rod is rotationally connected with the first clamping member, and one end of the second screw rod is rotationally connected with the second clamping member.
[0009] As a preferred technical scheme of the present application, the blocking member comprises a first supporting plate, a second supporting plate and a fixing member.
[0010] The first supporting plate and the second supporting plate are located in the filler space, the overlapping width of the first supporting plate and the second supporting plate is adjusted, the first supporting plate and the second supporting plate are respectively abutted on the two elastic plates, and the first supporting plate and the second supporting plate are fixedly connected through the fixing member.
[0011] As a preferred technical scheme of the present application, the blocking member comprises a blocking plate and two clamping seats, and a clamping groove adapted to the blocking plate and the limiting member is formed on the clamping seat.
[0012] As a preferred technical scheme of the present application, the angle limiting member comprises a connecting member, a sliding block is rotationally installed at each end of the connecting member, a limiting member is installed on each sliding block, and the length direction of the limiting member is parallel to the length direction of the fixed plate.
[0013] The sliding block can slide along any one limiting member.
[0014] As a preferred technical scheme of the present application, the inner side surface of at least one elastic plate is provided with a reinforcing net.
[0015] As a preferred technical scheme of the present application, a plurality of insertion rods are inserted in the heat preservation plate, and both ends of the insertion rod extend out of the heat preservation plate.
[0016] As a preferred technical scheme of the present application, a base is arranged below the template, the base comprises a plurality of parallel arranged supporting plates, and adjacent two supporting plates are slidingly abutted.
[0017] On the other hand, a heat preservation and enclosure integrated plate production method is also provided, and the method applies any one of the heat preservation and enclosure integrated plate molds, and comprises the following steps:
[0018] The two templates are placed opposite to each other on a flat operation plane, the positioning member is installed between the two templates, the length direction of any one fixed plate is perpendicular to the operation plane, the fixed plate is located on the outer side surface of the elastic plate, a part of the number of fixed plates in the template are horizontally rotated, the angle limiting member is operated to fix the angle of any adjacent two fixed plates, and the filler space is formed between the two elastic plates.
[0019] The thermal insulation board is placed in the filler space, and the filler space is divided into a first forming cavity and a second forming cavity by the thermal insulation board.
[0020] The mortar is added into the first forming cavity and the second forming cavity respectively, and the difference between the height of the mortar in the first forming cavity and the height of the mortar in the second forming cavity is less than 10.0 cm during the adding process, and the mortar in the first forming cavity and the mortar in the second forming cavity are vibrated when the height of the mortar in the first forming cavity and the height of the mortar in the second forming cavity reach the set height.
[0021] As a preferred technical solution of the present application, the following steps are further included:
[0022] When the formwork is removed, the operation angle limiting piece is used to make any two adjacent fixed plates relatively horizontally rotate, and then the fixed plates are sequentially rotated from the horizontal end of the formwork.
[0023] Compared with the prior art, the present application has the following advantages:
[0024] 1. The thermal insulation enclosure integrated board forming die of the present application can adjust the curvature of the elastic plate by adjusting the included angle of the two adjacent fixed plates, which is suitable for the production of thermal insulation enclosure integrated boards with different curvatures, and does not need to additionally manufacture a forming die, thereby shortening the production cycle of the curved thermal insulation enclosure integrated board and reducing the production cost.
[0025] 2. When the elastic plate of the thermal insulation enclosure integrated board forming die of the present application is stretched along the length direction, the elastic plate has an elastic potential energy bending inward, thereby eliminating the wrinkles caused by the inward bending of the elastic plate, and making the surface of the thermal insulation enclosure integrated board free of depressions.
[0026] 3. The thermal insulation enclosure integrated board forming die of the present application can adjust the distance between the two elastic plates by rotating the sleeve in the forward or reverse direction to adjust the distance between the first clamping piece and the second clamping piece, thereby making the thickness adjustment of the thermal insulation enclosure integrated board convenient.
[0027] 4. The thermal insulation enclosure integrated board production method of the present application is simple to operate, shortens the production cycle of the thermal insulation enclosure integrated board and reduces the production cost, and is convenient for removing the formwork and reducing the damage to the formwork during the formwork removal. BRIEF DESCRIPTION OF DRAWINGS
[0028] Figure 1 The structure schematic diagram of an embodiment of the present application;
[0029] Figure 2 is a structure enlarged schematic view of A in Figure 1
[0030] Figure 3 is another view structure schematic view of Figure 1
[0031] Figure 4 is a top view structure schematic view of Figure 1
[0032] Figure 5 is a part structure schematic view of the template of the present application;
[0033] Figure 6 is a positioning member structure schematic view of the present application;
[0034] Figure 7 is an angle limiting member structure schematic view of the present application;
[0035] Figure 8 is a structure schematic view of one embodiment of the blocking member of the present application.
[0036] In the figure: 1 base, 2 heat preservation plate, 3 template, 31 fixed plate, 32 limiting member, 33 elastic plate, 34 rotating connecting member, 4 positioning member, 41 first clamping member, 42 first screw rod, 43 sleeve, 44 second screw rod, 45 second clamping member, 5 reinforcing net, 6 blocking member, 61 first supporting plate, 62 second supporting plate, 63 fixed member, 7 angle limiting member, 71 limiting member, 72 sliding block, 73 connecting member, 8 first forming cavity, 9 second forming cavity, 10 inserting rod, 11 clamping seat, 12 clamping groove. DETAILED DESCRIPTION
[0037] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the present application.
[0038] Embodiment one: please refer to Figures 1-8 The present embodiment discloses a heat preservation and enclosure integrated plate type mold, which comprises two blocking members 6 and two templates 3. The template 3 comprises an elastic plate 33. A plurality of parallel fixed plates 31 are fixed on one side of the elastic plate 33 along the length direction of the elastic plate 33. The length direction of the fixed plate 31 is perpendicular to the length direction of the elastic plate 33. A limiting member 32 is fixed on each fixed plate 31. Any two adjacent fixed plates 31 are rotationally connected through a rotating connecting member 34. An angle limiting member 7 is installed between any two adjacent limiting members 32.
[0039] Two templates 3 are placed on a flat operation plane, and no less than two positioning members 4 are installed between the two templates 3, the length direction of any one fixed plate 31 is perpendicular to the operation plane, the fixed plate 31 is located on the outer side of the elastic plate 33, the filler space is formed between the two elastic plates 33, the thermal insulation board 2 is arranged in the filler space, the two ends of the filler space in the length direction are provided with detachable blocking members 6, the inner side of the thermal insulation board 2 and one of the elastic plates 33 form a first forming cavity 8, and the inner side of the thermal insulation board 2 and the other elastic plate 33 form a second forming cavity 9.
[0040] Preferably, the rotating connecting member 34 is a connecting belt, a hinged seat or a hinge, the elastic plate 33 is an elastic rubber plate or an elastic silica gel plate, and the thermal insulation board 2 is an expanded perlite thermal insulation board, a rock wool thermal insulation board or a polystyrene foam board.
[0041] Further, one side of the elastic plate 33 provided with the fixed plate 31 is the outer side, and the side of the elastic plate 33 away from the fixed plate 31 is the inner side.
[0042] The working process and principle of the embodiment are as follows:
[0043] The worker places two templates 3 on a flat operation plane with the inner sides of the two elastic plates 33 facing each other, connects one fixed plate 31 on one template 3 and one fixed plate 31 on the other template 3 through the positioning member 4, makes the length direction of any one fixed plate 31 perpendicular to the operation plane, and makes the bottom of the fixed plate 31 and the bottom of the elastic plate 33 contact with the operation plane, rotates a part of the fixed plates 31 in the template 3 horizontally, and then fixes the angle between any two adjacent fixed plates 31 by operating the angle limiting member 7, so that the filler space between the two templates 3 is arc-shaped or wavy.
[0044] The worker puts the thermal insulation board 2 into the filler space, and installs the blocking member 6 at both ends of the filler space in the length direction, so that the thermal insulation board 2 divides the filler space into the first forming cavity 8 and the second forming cavity 9.
[0045] The worker adds mortar into the first forming cavity 8 and the second forming cavity 9 respectively, and the difference between the height of the mortar in the first forming cavity 8 and the height of the mortar in the second forming cavity 9 is less than 10.0 cm during the process of adding mortar, the worker vibrates the mortar in the first forming cavity 8 and the mortar in the second forming cavity 9 when the height of the mortar in the first forming cavity 8 and the height of the mortar in the second forming cavity 9 reach the set height, and the mortar in the first forming cavity 8 and the mortar in the second forming cavity 9 are adhered to the thermal insulation board 2 after solidification, so that the solidified mortar in the filler space and the thermal insulation board 2 form the thermal insulation enclosure integrated board.
[0046] The type mold of the thermal insulation and enclosure integrated plate adjusts the angle of the adjacent two fixed plates 31 to adjust the arc of the elastic plate 33, is suitable for the production of the thermal insulation and enclosure integrated plate with different curvatures, does not need to additionally make a type mold, shortens the production cycle of the curved thermal insulation and enclosure integrated plate, and reduces the production cost.
[0047] When the formwork 3 is removed, the worker operates the angle limiting piece 7 to make any adjacent two fixed plates 31 relatively rotate horizontally, and then the worker rotates the fixed plate 31 from one end of the formwork 3 to make the fixed plate 31 correspond to the elastic plate 33 and the thermal insulation and enclosure integrated plate to be separated, and reduce the damage of the formwork 3 when the formwork is removed.
[0048] In the prior art, the arc-shaped type mold or the wave-shaped type mold is directly removed, and the type mold is usually separated along a fixed direction, but the normal direction of each point of the arc-shaped type mold or the wave-shaped type mold is different, so that the type mold is subjected to an oblique force when the type mold is removed in some areas, and the type mold is easily damaged in some areas.
[0049] Further, the thickness of the elastic plate 33 gradually increases along the direction from top to bottom, and after the first forming cavity 8 and the second forming cavity 9 are filled with the mortar, the thickness of each part of the elastic plate 33 in contact with the mortar is similar.
[0050] Further, when the elastic plate 33 is stretched along the length direction, the elastic plate 33 has an elastic potential energy of bending inward, so that the wrinkles generated by the inward bending of the elastic plate 33 are eliminated, and the surface of the thermal insulation and enclosure integrated plate is not concave.
[0051] Further, the inner side surfaces of the two elastic plates 33 and the inner side surfaces of the two blocking pieces 6 are coated with a release agent.
[0052] Further, the distance between the adjacent two fixed plates 31 is 0.0 cm-1.0 cm, the width of the fixed plate 31 is 2.0 cm-15.0 cm, and the thickness of the elastic plate 33 is 2.0 cm-15.0 cm.
[0053] Embodiment two: as Figure 6As shown, the embodiment discloses a thermal insulation and enclosure integrated plate type mold, which has substantially the same structure as that of the first embodiment, but differs from the first embodiment in that the positioning member 4 comprises a first screw rod 42, a sleeve 43 and a second screw rod 44, the inner cavity of the sleeve 43 is provided with a first spiral groove at one end which is adapted to the first screw rod 42, and is provided with a second spiral groove at the other end which is adapted to the second screw rod 44, the spiral direction of the first spiral groove is opposite to that of the second spiral groove, one end of the first screw rod 42 is connected with the first clamping member 41 through a hinge or a hinged seat, the other end of the first screw rod 42 is rotated into the first spiral groove, one end of the second screw rod 44 is connected with the second clamping member 45 through a hinge or a hinged seat, the other end of the second screw rod 44 is rotated into the second spiral groove, the rotation axis of the first clamping member 41 is parallel to that of the second clamping member 45, and the rotation axis of the first clamping member 41 is perpendicular to the length direction of the sleeve 43.
[0054] Further, the first clamping member 41 and the second clamping member 45 are both provided with a clamping groove which is adapted to the limiting member 32, and the clamping groove of the first clamping member 41 and the clamping groove of the second clamping member 45 can be clamped on the limiting member 32.
[0055] The working process and principle of the embodiment are as follows:
[0056] The worker makes the first clamping member 41 abut against the fixed plate 31 of one of the mold plates 3, and makes the second clamping member 45 abut against the fixed plate 31 of the other of the mold plates 3, and makes the rotation axis of the first clamping member 41 vertical, and then the worker rotates the sleeve 43 in the forward direction or the reverse direction to adjust the distance between the first clamping member 41 and the second clamping member 45, so as to adjust the distance between the two elastic plates 33, and thus the thickness of the thermal insulation and enclosure integrated plate is adjusted conveniently.
[0057] Preferably, the first screw rod 42, the sleeve 43 and the second screw rod 44 are replaced by telescopic rods with controllable length, and the two ends of the telescopic rods are respectively rotationally connected with the first clamping member 41 and the second clamping member 45.
[0058] Embodiment three: as shown in Figure 1 , Figure 2 and Figure 4 The embodiment discloses a thermal insulation and enclosure integrated plate type mold, which has substantially the same structure as that of the first embodiment or the second embodiment, but differs from the first embodiment or the second embodiment in that the blocking member 6 comprises a first branch plate 61, a second branch plate 62 and a fixing member 63.
[0059] Preferably, the fixing member 63 is a plate material fixing clamp, or the fixing member 63 is a screw rod fixed on the first branch plate 61, and a nut is mounted on the screw rod, and a long slot which is adapted to the screw rod is provided on the second branch plate 62.
[0060] The working process and principle of the embodiment are as follows:
[0061] The worker makes the first and second supporting plates 61 and 62 both in the filler space, then adjusts the coinciding width of the first and second supporting plates 61 and 62, so that the first and second supporting plates 61 and 62 abut against the two elastic plates 33 respectively, the worker fixes the first and second supporting plates 61 and 62 together through the fixing piece 63, the blocking piece 6 blocks the two horizontal ends of the filler space, and the two ends of the insulation board 2 abut against the two blocking pieces 6 respectively.
[0062] Further, the two elastic plates 33 directly abut against the positioning piece 4, and the first and second clamping pieces 41 and 45 both contact the outer side of the blocking piece 6, so that the blocking piece 6 is fixed firmly between the two elastic plates 33.
[0063] Embodiment four: Figure 3 and Figure 8 As shown in the figure, the embodiment discloses a kind of insulation enclosure integrated plate type mould, its structure is substantially same with the structure of embodiment one, different is, the blocking piece 6 of this embodiment includes blocking plate and two clamping seats 11, clamping seat 11 is equipped with the clamping slot 12 of being adapted with blocking plate and limiting piece 32.
[0064] The working process and principle of this embodiment are:
[0065] The worker places the blocking plate at one end of the filler space in length direction, then makes the two clamping slots 12 on clamping seat 11 respectively clamped on blocking plate and limiting piece 32, and blocking plate is installed and disassembled conveniently.
[0066] Embodiment five: Figure 5 and Figure 7 As shown in the figure, the embodiment discloses a kind of insulation enclosure integrated plate type mould, its structure is substantially same with the structure of embodiment one, different is, the angle limiting piece 7 of this embodiment includes connecting piece 73, the two ends of connecting piece 73 are both equipped with sliding block 72 by spherical universal joint, and each sliding block 72 is equipped with limiting piece 71, and the length direction of limiting piece 32 and the length direction of fixed plate 31 are parallel.
[0067] Among them, sliding block 72 can slide along any one limiting piece 32.
[0068] Preferably, limiting piece 32 is T-shaped plate or I-shaped plate, limiting piece 71 is bolt or clamp, and connecting piece 73 is connecting rod or connecting plate.
[0069] The working process and principle of this embodiment are:
[0070] Before the worker adjusts the angle of the two adjacent fixed plates 31, the worker fixes the position of the sliding block 72 on one of the fixed plates 31 through the limiting piece 71, and then the worker fixes the position of the sliding block 72 on the other of the fixed plates 31 through the limiting piece 71 after the angle of the two adjacent fixed plates 31 is adjusted, so that the angle adjustment of the two adjacent fixed plates 31 is convenient.
[0071] Embodiment six: as shown in Figure 1 , Figure 3 and Figure 4 indicate, the embodiment discloses a thermal insulation enclosure integrated plate type mold, and the structure is basically same as that of the embodiment two, and the difference is that the angle limiting piece 7 is replaced by the positioning piece 4 in the embodiment, and the bottom of the first clamping piece 41 and the bottom of the second clamping piece 45 are provided with clamping grooves matched with the limiting piece 32.
[0072] Preferably, the limiting piece 32 is a T-shaped plate or an I-shaped plate.
[0073] The working process and principle of the embodiment are as follows:
[0074] After the worker adjusts the angle of the two adjacent fixed plates 31, the worker makes the clamping grooves of the first clamping piece 41 and the second clamping piece 45 respectively clamped with the limiting pieces 32 of the two adjacent fixed plates 31, so that the angle of the two adjacent fixed plates 31 is fixed conveniently.
[0075] Embodiment seven: as shown in Figures 1-4 , the embodiment discloses a thermal insulation enclosure integrated plate type mold, and the structure is basically same as that of the embodiment one, and the difference is that the inner side of at least one elastic plate 33 is provided with the reinforcing net 5, and the thermal insulation plate 2 is provided with a plurality of plug rods 10, and the two ends of the plug rod 10 extend out of the thermal insulation plate 2.
[0076] Preferably, the reinforcing net 5 is a metal net or a fiber net, and the plug rod 10 is made of carbon fiber material, plastic material or rubber material.
[0077] The working process and principle of the embodiment are as follows:
[0078] The reinforcing net 5 and the plug rod 10 enhance the structural strength of the thermal insulation enclosure integrated plate.
[0079] Embodiment eight: as shown in Figure 1 , Figure 3 and Figure 4 , the embodiment discloses a thermal insulation enclosure integrated plate type mold, and the structure is basically same as that of the embodiment one, and the difference is that the lower part of the template 3 is provided with the base 1, the base 1 includes a plurality of parallel arranged supporting plates, and the two adjacent supporting plates are slidingly abutted.
[0080] The working process and principle of the embodiment are as follows:
[0081] The staff can move the support plate along the length direction of the support plate, so that the template 3 is always located on the base 1, and the requirement of the site for the present thermal insulation enclosure integrated plate mold is reduced.
[0082] Further, a limiting seat is fixed on the operation plane, and the limiting seat allows the two support plates located at the edge to slide along the length direction of the support plate.
[0083] Embodiment nine: as shown in the embodiment, a thermal insulation enclosure integrated plate production method is disclosed, which is applied to the thermal insulation enclosure integrated plate mold of any one of embodiments one to eight, and includes the following steps: Figures 1-8 The two templates 3 are placed on the flat operation plane, the positioning piece 4 is installed between the two templates 3, the length direction of any one fixed plate 31 is perpendicular to the operation plane, and the fixed plate 31 is located on the outer side of the elastic plate 33, so that a part of the number of fixed plates 31 in the template 3 is horizontally rotated, then the operation angle limiting piece 7 fixes the angle of any two adjacent fixed plates 31, and the filler space is formed between the two elastic plates 33.
[0084] The thermal insulation plate 2 is placed in the filler space, the blocking piece 6 is installed at both ends of the filler space in the length direction, and the thermal insulation plate 2 divides the filler space into the first forming cavity 8 and the second forming cavity 9.
[0085] The mortar is added into the first forming cavity 8 and the second forming cavity 9 respectively, and the difference between the height of the mortar in the first forming cavity 8 and the height of the mortar in the second forming cavity 9 is less than 10.0 cm during the process of adding the mortar, when the height of the mortar in the first forming cavity 8 and the height of the mortar in the second forming cavity 9 both reach the set height, the mortar in the first forming cavity 8 and the mortar in the second forming cavity 9 are vibrated.
[0086] The present thermal insulation enclosure integrated plate production method is simple to operate, shortens the production cycle of the thermal insulation enclosure integrated plate, and reduces the production cost.
[0087] Embodiment ten: as shown in the embodiment, a thermal insulation enclosure integrated plate production method is disclosed, and the steps of the embodiment are basically the same as those of embodiment nine, and the difference lies in that the following steps are further included:
[0088] Figure 1 When the template 3 is removed, the operation angle limiting piece 7 allows any two adjacent fixed plates 31 to relatively horizontally rotate, and then the fixed plates 31 are sequentially rotated from the horizontal end of the template 3. Figure 2 Figure 4
[0089]
[0090] The production method of the thermal insulation envelope integrated plate is convenient for removing the formwork 3 and reduces damage to the formwork 3 during form removal.
[0091] While embodiments of the application have been shown and described, it is to be understood that the embodiments described are merely divergences of the principles and spirit of the application and that numerous modifications, changes, substitutions, and alterations can be made thereto without departing from the spirit and scope of the application.
Claims
1. A type of integrated thermal insulation enclosure panel mold, characterized in that: It includes two blocking components (6) and two templates (3). The template (3) includes an elastic plate (33). Several parallel fixing plates (31) are fixed on one side of the elastic plate (33) along the length direction of the elastic plate (33). The length direction of the fixing plates (31) is perpendicular to the length direction of the elastic plate (33). Each fixing plate (31) is fixed with a limiting component (32). Any two adjacent fixing plates (31) are rotatably connected by a rotating connector (34). An angle limiting component (7) is installed between any two adjacent limiting components (32). The blocking component (6) includes a first support plate (61), a second support plate (62), and a fixing component (63); The angle limiting member (7) includes a connector (73), and both ends of the connector (73) are rotatably mounted with sliders (72). Each slider (72) is equipped with a limiting member (71), and the length direction of the limiting member (32) is parallel to the length direction of the fixing plate (31). Two templates (3) are placed opposite each other on a flat operating surface. A positioning component (4) is installed between the two templates (3). The length direction of any fixed plate (31) is perpendicular to the operating surface, and the fixed plate (31) is located on the outer side of the elastic plate (33). A filling space is formed between the two elastic plates (33). A heat insulation plate (2) is provided in the filling space. Removable plugs (6) are installed at both ends of the filling space in the length direction. The heat insulation plate (2) divides the filling space into a first molding cavity (8) and a second molding cavity (9). The first support plate (61) and the second support plate (62) are located in the filling space. The overlap width of the first support plate (61) and the second support plate (62) is adjusted. The first support plate (61) and the second support plate (62) abut against two elastic plates (33) respectively. The first support plate (61) and the second support plate (62) are fixedly connected by fasteners (63). The slider (72) can slide along any of the limiting members (32).
2. The integrated thermal insulation enclosure panel mold according to claim 1, characterized in that: The positioning component (4) includes a first screw (42), a sleeve (43), and a second screw (44). One end of the inner cavity of the sleeve (43) is provided with a first spiral groove adapted to the first screw (42), and the other end of the inner cavity of the sleeve (43) is provided with a second spiral groove adapted to the second screw (44). The spiral direction of the first spiral groove is opposite to that of the second spiral groove. One end of the first screw (42) is rotatably connected to the first clamp (41), and one end of the second screw (44) is rotatably connected to the second clamp (45).
3. The integrated thermal insulation enclosure panel mold according to claim 1, characterized in that: The blocking component (6) is replaced by a sealing plate and two card holders (11), and the card holders (11) are provided with card slots (12) that are adapted to the sealing plate and the limiting component (32).
4. The integrated thermal insulation enclosure panel mold according to claim 1, characterized in that: At least one elastic plate (33) has a reinforcing mesh (5) on its inner side.
5. The integrated thermal insulation enclosure panel mold according to claim 4, characterized in that: The insulation board (2) is provided with a number of insert rods (10), and both ends of the insert rods (10) extend outside the insulation board (2).
6. The integrated thermal insulation enclosure panel mold according to claim 1, characterized in that: The template (3) is provided with a base (1) below it. The base (1) includes several parallel support plates, and two adjacent support plates slide against each other.
7. A method for producing an integrated thermal insulation enclosure panel, applied to the mold of the integrated thermal insulation enclosure panel as described in any one of claims 1-6, characterized in that, Includes the following steps: Two templates (3) are placed opposite each other on a flat operating surface. A positioning component (4) is installed between the two templates (3). The length direction of any fixed plate (31) is perpendicular to the operating surface, and the fixed plate (31) is located on the outer side of the elastic plate (33). This allows a portion of the fixed plates (31) in the template (3) to rotate horizontally. Then, the angle limiting component (7) is used to fix the angle of any two adjacent fixed plates (31), and a filling space is formed between the two elastic plates (33). An insulation board (2) is placed in the filling space, and plugs (6) are installed at both ends of the filling space along its length. The insulation board (2) divides the filling space into a first forming cavity (8) and a second forming cavity (9). Mortar is added to the first molding cavity (8) and the second molding cavity (9) respectively. During the mortar addition process, the difference between the height of the mortar in the first molding cavity (8) and the height of the mortar in the second molding cavity (9) is less than 10.0 cm. When the height of the mortar in the first molding cavity (8) and the height of the mortar in the second molding cavity (9) both reach the set height, the mortar in the first molding cavity (8) and the mortar in the second molding cavity (9) are vibrated.
8. The method for producing integrated thermal insulation enclosure panels according to claim 7, characterized in that, It also includes the following steps: When removing the template (3), the angle limiting piece (7) is operated so that any two adjacent fixed plates (31) can rotate horizontally relative to each other. Then, starting from the horizontal end of the template (3), the fixed plates (31) are rotated sequentially.
Citation Information
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