A gable roof assembly

By using a detachable structure for the installation profiles and frame profiles, combined with the design of circular arc grooves and arc walls, the problem of high labor costs in the assembly process of mobile homes is solved, achieving rapid assembly and self-sufficient power supply.

CN120367306BActive Publication Date: 2025-10-21PRANCE METALWORK BUILDING MATERIAL CO LTD
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Patent Information

Application Number
CN202510645983.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2025-10-21
Estimated Expiration
2045-05-20

AI Technical Summary

Technical Problem

The existing mobile homes require specialized glue application during assembly, resulting in high labor costs and wasted time.

Method used

The structure employs a detachable design for the mounting profiles and frame profiles, combined with the design of circular arc grooves and arc walls, enabling the A-frame roof to be disassembled and its angle adjusted. It also provides self-sufficient electricity through a power-generating combination glass.

Benefits of technology

It simplifies the assembly process, saves labor costs, and enables the rapid assembly of mobile homes and self-sufficiency in electricity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a gable roof assembly structure and relates to the technical field of mobile houses, which comprises a floor module, a wall module, a roof module and a plurality of fasteners, the top surface four edges of the floor module and the bottom surface four edges of the roof module are both fixed with mounting profiles through corner codes, one side of the mounting profiles facing the wall module is provided with mounting grooves A, the top and bottom of the wall module are provided with detachable frame profiles, one side of the frame profiles facing the wall module is provided with fixing grooves, the frame profiles are arranged directly above or below the mounting profiles, the fasteners pass through the fixing grooves and the mounting grooves A at the same time, the side of the frame profiles facing the mounting profiles is provided with limiting grooves A, sealing rubber strips A are defined in the limiting grooves A, and the sealing rubber strips A are extruded between the frame profiles and the mounting profiles, so that the structure is simple to assemble and saves labor cost.
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Description

Technical Field

[0001] The invention relates to the technical field of mobile houses, in particular to an assembly structure of a gable house. Background Art

[0002] A mobile home is a type of living space that can be easily assembled and moved. This type of house is generally installed outdoors. Due to its large overall size, it needs to be assembled on-site. Currently, the walls of mobile homes are usually fixed and sealed with glue when assembled with the floor and roof. Gluing requires skilled staff to operate on-site and has certain technical requirements. In addition, the gluing area is large, which not only requires expensive labor costs but also wastes time. Summary of the Invention

[0003] In view of the above-mentioned defects in the prior art, the object of the present invention is to provide a gable roof assembly structure to reduce the assembly difficulty and save assembly time.

[0004] The purpose of the present invention is achieved by adopting the following technical solutions:

[0005] A gable roof assembly structure includes a floor module, a wall module, a roof module and several fasteners. The four sides of the top surface of the floor module and the four sides of the bottom surface of the roof module are fixed with mounting profiles through corner brackets. The mounting profile is provided with a mounting groove A on the side facing the wall module. The top and bottom of the wall module are provided with detachable frame profiles. The side of the frame profile facing the wall module is provided with a fixing groove. The frame profile is arranged directly above or below the mounting profile. The fasteners pass through the fixing groove and the mounting groove A at the same time. The frame profile is provided with a limiting groove A on the side facing the mounting profile. A sealing strip A is defined in the limiting groove A. The sealing strip A is squeezed between the frame profile and the mounting profile.

[0006] Furthermore, the roof module includes a crossbeam, a sloping roof wall and a keel frame, and a first circular arc wall is provided on each side of the crossbeam. The sloping roof wall has two and is installed on the crossbeam in an inverted V shape. The top of the sloping roof wall is provided with a first circular arc groove in contact with the first circular arc wall, the first circular arc groove is rotatable relative to the first circular arc wall, and the first circular arc groove and the first circular arc wall are fixed by fasteners; the bottom surface of the keel frame is fixed to the mounting profile by fasteners, and the top surface is provided with a protruding second circular arc wall, the bottom of the sloping roof wall is provided with a second circular arc groove in contact with the second circular arc wall, the second circular arc groove is rotatable relative to the second circular arc wall, and the second circular arc groove and the second circular arc wall are fixed to the mounting profile by fasteners.

[0007] Furthermore, the roof module also includes two triangular roof panels, which are arranged at both ends of the sloping roof wall. The bottom of the triangular roof panel is provided with a mounting profile. The mounting profile and the frame profile at the top of the wall module are fixed by fasteners. The two side edges of the triangular roof panel are clamped on the inner wall of the sloping roof wall.

[0008] Furthermore, the sloping roof wall includes a base plate, a supporting composite plate and a power generation composite glass. The base plate is clamped on the keel frame or the triangular roof plate, or the base plate is fixed to the triangular roof plate by screws. The supporting composite plate is arranged between the base plate and the power generation composite glass. The top of the supporting composite plate is detachably arranged on the beam and the bottom is detachably arranged on the wall module. The power generation composite glass is installed on the supporting composite plate through a connecting piece.

[0009] Furthermore, the supporting combination plate includes several supporting plates, the power generation combination glass includes several power generation glasses, the connecting part includes a transverse splicing profile, two protruding parallel clips are provided on the four sides of the support plate, and a card slot for the clip to be inserted is provided on the side of the transverse splicing profile, a first limiting groove is provided on both sides of the top surface of the transverse splicing profile and a support rod protruding upward is provided in the middle of the top surface, a first sealing strip is defined in the first limiting groove, and sealing grooves are provided on both sides of the support rod, the transverse edge of the power generation glass is inserted in the sealing groove and the first sealing strip is in contact with the lower surface of the power generation glass.

[0010] Furthermore, the supporting combination plate includes several supporting plates, and two protruding parallel clips are provided on the four sides of the supporting plate. The power generation combination glass includes several power generation glasses. The connecting part includes a longitudinal splicing profile, and the longitudinal splicing profile includes a splicing piece A and a splicing piece B. The two side surfaces of the splicing piece A are provided with a clip-on slot for the clip to be inserted into. The top surface of the splicing piece A is provided with a second limiting groove on both sides, and a second sealing strip is defined in the second limiting groove. A fixing rod is provided in the middle of the top surface of the splicing piece A; the bottom surface of the splicing piece B is provided with a third limiting groove on both sides, and a third sealing strip is defined in the third limiting groove. The longitudinal edge of the power generation glass is squeezed between the second sealing strip and the third sealing strip, and the fixing rod extends out of the gap between adjacent power generation glasses. The splicing piece B and the fixing rod are fixed together by fasteners.

[0011] Furthermore, the top of the supporting combination plate is provided with a first connecting profile, the top surface of the first connecting profile is installed on the cross beam, and its bottom surface is provided with a second card groove for the edge of the supporting combination plate to be snapped in, and one side of the first connecting profile is provided with a fourth limiting groove, and a fourth sealing strip is defined in the fourth limiting groove, and the lower surface of the power generation combination glass contacts the fourth sealing strip, and a fifth limiting groove is provided on the cross beam, and a fifth sealing strip is defined in the fifth limiting groove, and the fifth sealing strip contacts the upper surface of the power generation combination glass; the bottom of the supporting combination plate is provided with a second connecting profile, the top surface of the second connecting profile is provided with a second card groove for the edge of the supporting combination plate to be snapped in, and the bottom surface of the second connecting profile is fixed to the mounting profile by a fastener, and a sixth limiting groove is provided on one side of the second connecting profile and an insertion groove is provided at the side end, and the bottom of the power generation combination glass is inserted in the insertion groove, and a sixth sealing strip is defined in the sixth limiting groove, and the sixth sealing strip contacts the lower surface of the power generation combination glass.

[0012] Furthermore, the floor module includes a floor frame, several transverse support columns, longitudinal support columns, a floor unit and a support block, the transverse support columns are evenly fixed in the transverse direction of the floor frame by angle brackets, the longitudinal support columns are evenly fixed between the floor frame and the transverse support columns by angle brackets, the floor unit is laid on the transverse support columns and the longitudinal support columns, and the support block is fixed to the bottom of the floor frame by angle brackets.

[0013] Furthermore, the wall module includes a support arm, a wall unit and a door and window unit. There are four support arms, which are fixed to the four corners of the floor module by corner brackets. The wall unit and the door and window unit are installed between adjacent support arms. Removable frame profiles are provided on all four sides of the wall unit. The support arm is provided with an installation groove B at the connection position with the wall unit. The installation groove B and the fixing groove on the frame profile are fixed by fasteners.

[0014] Furthermore, the crossbeam includes a disassembly and assembly part and an adjustment part, the disassembly and assembly part includes a fixed baffle and a shielding plate, the shielding plate is detachably covered on the fixed baffle, the adjustment part includes a second support rod and an adjustment body, the second support rod is defined under the fixed baffle, the adjustment body is arranged under the second support rod, and the first circular arc wall is arranged on both sides of the adjustment body.

[0015] The beneficial effects of the present invention are:

[0016] This invention utilizes mounting and frame profiles to create a detachable gable roof structure, eliminating the need for specialized gable application personnel. Circular arc grooves and walls allow for angle adjustment of the gable roof, facilitating on-site assembly and adjustment. Power-generating glass panels ensure self-sufficiency in electricity consumption, resolving the inconvenience of mobile homes. This invention simplifies assembly and reduces labor costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a structural diagram of a gable house;

[0018] Figure 2 This is a structural diagram of a gable house with some wall units removed;

[0019] Figure 3 It is a structural schematic diagram of the wall unit in the present invention;

[0020] Figure 4 It is a structural diagram of the frame profile and the mounting profile in the present invention;

[0021] Figure 5 It is a structural diagram of the frame profile in the present invention;

[0022] Figure 6 This is a schematic diagram of the splicing structure of the power generation glass and the support plate in the present invention;

[0023] Figure 7 yes Figure 6 Exploded diagram of the structure;

[0024] Figure 8 It is a structural diagram of the transversely spliced ​​profile in the present invention;

[0025] Figure 9 It is a structural diagram of the longitudinally spliced ​​profiles in the present invention;

[0026] Figure 10 It is a schematic diagram of the splicing structure of longitudinally spliced ​​profiles in the present invention;

[0027] Figure 11 This is a cross-section of a gabled house;

[0028] Figure 12 yes Figure 11 A magnified view of the structure of area A in the middle;

[0029] Figure 13 yes Figure 11 A magnified view of the structure of the middle B area;

[0030] Figure 14 yes Figure 11 A magnified view of the structure of the middle C region;

[0031] Figure 15It is a structural schematic diagram of the crossbeam in the present invention;

[0032] Figure: 1. Wall module; 11. Support arm; 12. Wall unit; 13. Door and window unit; 14. Mounting slot B; 15. Wall panel; 2. Corner bracket; 3. Frame profile; 31. Fixing slot; 32. Limiting slot A; 33. Sealing strip A; 34. Card slot three; 4. Floor module; 41. Floor frame; 42. Horizontal support column; 43. Vertical support column; 44. Floor unit; 45. Support block; 5. Mounting profile; 51. Mounting slot A; 6 , roof module; 61, crossbeam; 6101, disassembly and assembly parts; 61011, fixed baffle; 61012, shielding plate; 62, adjustment parts; 63, inclined roof wall; 64, keel frame; 65, first circular arc wall; 66, first circular arc groove; 67, second circular arc wall; 68, second circular arc groove; 69, triangular roof board; 610, bottom plate; 611, support plate; 61101, plate; 61102, support frame; 612, power generation glass Glass; 613, horizontal splicing profile; 614, vertical splicing profile; 615, card strip; 616, card slot 1; 617, first limiting slot; 618, support rod 1; 619, first sealing strip; 620, sealing slot; 621, splicing piece A; 622, splicing piece B; 623, second limiting slot; 624, second sealing strip; 625, fixing rod; 626, third limiting slot; 627, third sealing strip; 628, fixing piece; 6 29. Movable part; 630. Slide; 631. Slide bar; 632. Baffle; 633. Drain trough; 634. First connecting profile; 635. Second card slot; 636. Fourth limiting slot; 637. Fourth sealing strip; 638. Fifth limiting slot; 639. Fifth sealing strip; 640. Second connecting profile; 641. Sixth limiting slot; 642. Insertion slot; 643. Sixth sealing strip; 644. Second support rod; 645. Adjustment body. DETAILED DESCRIPTION

[0033] In order to make the technical problems, technical solutions and beneficial effects solved by the invention more clearly understood, the invention is further described below with reference to the accompanying drawings and embodiments.

[0034] Example 1

[0035] like Figure 1-5 As shown, this embodiment provides a wall module 1, which includes support arms 11, wall units 12 and door and window units 13. There are four support arms 11, which are fixed to the four corners of the floor module 4 through corner brackets 2. The wall units 12 and the door and window units 13 are installed between adjacent support arms 11; removable frame profiles 3 are provided on all four sides of the wall unit 12, and the support arm 11 is provided with a mounting groove B14 at the connection position with the wall unit 12. The mounting groove B14 and the fixing groove 31 on the frame profile 3 are fixed by fasteners.

[0036] The wall unit 12 is fixed and installed on all four sides by means of fixing grooves 31, installation grooves and fasteners. The door and window unit 13 includes a house door and windows, etc. The door and window unit 13 is generally arranged between two wall units 12 or between the wall unit 12 and the support arm 11. When the door and window unit 13 is installed on the support arm 11, the connection surface between the door and window unit 13 and the support arm 11 is provided with a detachable frame profile 3, which can be used as a door frame or window frame. The support arm 11 is also provided with a mounting groove B14 at the connection position with the door and window unit 13. The mounting groove B14 and the fixing groove 31 on the frame profile 3 are fixed by fasteners.

[0037] When the door and window unit 13 is installed on the wall unit 12, the door and window unit 13 is provided with a mounting groove C on the connection surface with the support arm 11, and the wall unit 12 is provided with a detachable frame profile 3 on the connection surface with the door and window unit 13. The mounting groove C and the fixing groove 31 on the frame profile 3 are fixed by fasteners. In the above manner, the installation of doors and windows of mobile houses can be realized.

[0038] The frame profile 3 is provided with a limiting groove A32 on the back side of the fixing groove 31, and a sealing strip A33 is defined in the limiting groove A32. The sealing strip A33 is squeezed between the frame profile 3 and the mounting profile 5. By setting the sealing strip A33, the sealing between the frame profile 3 and the mounting profile 5 is increased to prevent water leakage.

[0039] The fixing groove 31 is arranged in the middle of the frame profile 3, and two card slots 34 are also provided on the frame profile 3. The two card slots 34 are respectively arranged on both sides of the fixing groove 31. Each wall unit 12 includes two wall panels 15. The edges of the wall panels 15 are clamped in the card slots 34. The detachable structure between the wall panels 15 and the frame profile 3 is realized through the clamping structure.

[0040] Example 2

[0041] like Figure 2 As shown, based on Example 1, this embodiment provides a floor module 4, which includes a floor frame 41, several transverse support columns 42, longitudinal support columns 43, floor units 44 and support blocks 45. The transverse support columns 42 are evenly fixed to the transverse direction of the floor frame 41 by angle brackets 2, and the longitudinal support columns 43 are evenly fixed between the floor frame 41 and the transverse support columns 42 by angle brackets 2. The floor units 44 are laid on the transverse support columns 42 and the longitudinal support columns 43. The existing splicing structure can be adopted between the floor units 44, which will not be repeated here. The support blocks 45 are fixed to the bottom of the floor frame 41 by angle brackets 2, so that the floor frame 41 does not contact the ground. Specifically, the floor frame 41 includes four long frames, which surround a rectangle and are fixed to the support arm 11 by angle brackets 2.

[0042] The four sides of the top surface of the floor frame 41 are fixed with mounting profiles 5 through corner brackets 2. The side of the mounting profile 5 facing the wall unit 12 is provided with a mounting groove A51. The four sides of the wall unit 12 are provided with removable frame profiles 3. The side of the frame profile 3 facing the wall unit 12 is provided with a fixing groove 31. The frame profile 3 is arranged directly above the mounting profile 5. The fastener passes through the fixing groove 31 and the mounting groove A51 at the same time. The frame profile 3 is provided with a limiting groove A32 on the side facing the mounting profile 5. A sealing strip A33 is defined in the limiting groove A32. The sealing strip A33 is squeezed between the frame profile 3 and the mounting profile 5.

[0043] Example 3

[0044] like Figure 6-15 As shown, on the basis of Example 1, this embodiment provides a roof module 6, which includes a crossbeam 61, a sloping roof wall 63 and a keel frame 64. A first circular arc wall 65 is provided on both sides of the crossbeam 61. The sloping roof wall 63 has two inverted V-shaped parts installed on the crossbeam 61. The top of the sloping roof wall 63 is provided with a first circular arc groove 66 in contact with the first circular arc wall 65. The first circular arc groove 66 is rotatable relative to the first circular arc wall 65. The first circular arc groove 66 and the first circular arc wall 65 are fixed by fasteners; the bottom surface of the keel frame 64 is fixed to the mounting profile 5 by fasteners, and the top surface is provided with a protruding second circular arc wall 67. The bottom of the sloping roof wall 63 is provided with a second circular arc groove 68 in contact with the second circular arc wall 67. The second circular arc groove 68 is rotatable relative to the second circular arc wall 67. The second circular arc groove 68 and the second circular arc wall 67 are fixed to the mounting profile 5 by fasteners.

[0045] When assembling a gable roof, the first circular arc walls 65 on both sides of the crossbeam 61 are respectively pressed against the first circular arc grooves 66 on the two sloping roof walls 63. The angle between the two sloping roof walls 63 is adjusted according to the actual angle requirements. After the adjustment, the two sloping roof walls 63 are fixed to the crossbeam 61 by fasteners; the mounting profile 5 is respectively fixed to the keel frame 64 and the frame profile 3 at the top of the wall unit 12 by locking pieces, and the second circular arc groove 68 at the bottom of the sloping roof wall 63 is adjusted to press against the second circular arc wall 67 on the top surface of the keel frame 64, and then the second circular arc groove 68 and the second circular arc wall 67 are fixed together by fasteners.

[0046] Since the first circular arc wall 65, the first circular arc groove 66, the second circular arc groove 68 and the second circular arc wall 67 are a portion of a circle, no matter how the first circular arc groove 66 rotates along the first circular arc wall 65, and no matter how the second circular arc groove 68 rotates along the second circular arc wall 67, the first circular arc wall 65 and the first circular arc groove 66, as well as the second circular arc groove 68 and the second circular arc wall 67 can fit perfectly, and the angle of the gable roof can be adjusted at will. At the same time, no matter what size the gable roof is, the manufacturer only needs to produce this structure to achieve angle adjustment and fixation, saving costs.

[0047] The roof module 6 also includes two triangular roof panels 69, which are arranged at both ends of the sloping roof wall 63. The bottom of the triangular roof panel 69 is provided with a mounting profile 5, and the mounting profile 5 and the frame profile 3 at the top of the wall module 1 are fixed by fasteners. The two side edges of the triangular roof panel 69 are clamped on the inner wall of the sloping roof wall 63, and can also be fixed to the inner wall of the sloping roof wall 63 by fasteners.

[0048] The sloping roof wall 63 includes a base plate 610, a supporting composite plate and a power generation composite glass. The base plate 610 is clamped on the keel frame 64 or the triangular roof plate 69, or the base plate 610 is fixed to the triangular roof plate 69 by screws. The supporting composite plate is arranged between the base plate 610 and the power generation composite glass. The top of the supporting composite plate is detachably arranged on the beam 61 and the bottom is detachably arranged on the wall module 1. The power generation composite glass is installed on the supporting composite plate through a connector.

[0049] Gaps are provided between the base plate 610 and the supporting composite panels, and between the supporting composite panels and the power-generating composite glass. The photovoltaic power generation system connected to the power-generating composite glass can be installed within these gaps, thereby concealing it within the gable roof, preventing exposure and enhancing its aesthetics. The power-generating composite glass, combined with the photovoltaic power generation system, converts solar energy into electricity, which can be used to power the gable roof's electrical appliances, making the gable roof self-sufficient in electricity.

[0050] Since the bottom plate 610 mainly serves a decorative purpose and is not used for bearing weight, the bottom plate 610 can be fixed by snapping or fasteners, as long as the bottom plate 610 can be fixed to the roof.

[0051] The supporting composite panel includes several supporting panels 611, and the power generation composite glass includes several power generation glass 612. The number of power generation glass 612 and supporting panels 611 is the same and corresponds to each other. The connecting parts include transverse splicing profiles 613 and longitudinal splicing profiles 614. The transverse splicing profiles 613 are detachably installed between adjacent supporting panels 611 and adjacent power generation glass 612 in the transverse direction, and the longitudinal splicing profiles 614 are detachably installed between adjacent supporting panels 611 and adjacent power generation glass 612 in the longitudinal direction. In other words, the transverse splicing profiles 613 and longitudinal splicing profiles 614 connect multiple supporting panels 611 and multiple power generation glass 612 at the same time. Given the large overall area of ​​the gable roof, the supporting composite panel and power generation composite glass are made of multiple pieces, which is more practical and safer.

[0052] Two parallel clips 615 are provided on the four sides of the support plate 611. Figure 7 The support plate 611 includes a plate 61101 and a support frame 61102. The plate 61101 is fixed in the support frame 61102. Parallel clips 615 are arranged on the four sides of the support frame 61102. The sides of the horizontal splicing profile 613 and the vertical splicing profile 614 are provided with a slot 616 for the clip 615 to be inserted. The clip 615 is inserted into the slot 616, so that the support plate 611 is spliced ​​together in the horizontal and vertical directions. The material of the plate 61101 can be set according to needs. The support frame 61102 is made of metal and is not easy to deform.

[0053] The top surface of the transverse splicing profile 613 is defined by first retaining grooves 617 on either side, and an upwardly protruding support rod 1 618 is located in the middle of the top surface. A first sealing strip 619 is defined within the first retaining groove 617, and sealing grooves 620 are defined on either side of the support rod 1 618. The lateral edges of the power generation glass 612 are inserted into the sealing grooves 620, and the first sealing strip 619 abuts against the bottom surface of the power generation glass 612. Under the pressure and sealing of the first sealing strip 619, the lateral edges of the power generation glass 612 are firmly confined within the sealing grooves 620, thereby allowing the power generation glass 612 to be horizontally spliced ​​together by the transverse splicing profile 613.

[0054] refer to Figure 9 and Figure 10The longitudinal splicing profile 614 includes a splicing piece A621 and a splicing piece B622. A card slot 616 for the card strip 615 to be inserted into is provided on both sides of the splicing piece A621. Second limiting grooves 623 are provided on both sides of the top surface of the splicing piece A621. A second sealing strip 624 is defined in the second limiting groove 623. A fixing rod 625 is provided in the middle of the top surface of the splicing piece A621; third limiting grooves 626 are provided on both sides of the bottom surface of the splicing piece B622. A third sealing strip 627 is defined in the third limiting groove 626. The longitudinal edge of the power generation glass 612 is squeezed between the second sealing strip 624 and the third sealing strip 627. The fixing rod 625 extends out of the gap between adjacent power generation glasses 612. The splicing piece B622 and the fixing rod 625 are fixed together by fasteners.

[0055] By providing the second sealing strip 624 , the third sealing strip 627 and the fasteners, the longitudinal edges of the glass units are firmly fixed between the second sealing strip 624 and the third sealing strip 627 , whereby the glass units are longitudinally spliced ​​together by the second splicing profile.

[0056] Specifically, splicing piece B622 includes a fixed piece 628 and a movable piece 629. The fixed piece 628 is secured to the fixed rod 625 by fasteners. Third limiting grooves 626 are defined on both sides of the bottom surface of the fixed piece 628, and sliding grooves 630 are defined on the sides of the fixed piece 628. The movable piece 629 is open at the bottom and hollow inside. Slide bars 631 are defined on both sides of the inner wall of the movable piece 629, and the slide bars 631 can slide along the sliding grooves 630. During installation, the fixed piece 628 and the fixed rod 625 are first fastened together by fasteners, and then the movable piece 629 is slid into place from the end of the fixed piece 628 until it completely covers the fixed piece 628 and the gap between adjacent glass units.

[0057] Baffles 632 are provided on both sides of the bottom plate 610. The baffles 632 can shield and seal both sides of the sloping roof wall 63, making it more beautiful. At the same time, a drainage trough 633 is fixed at the bottom of the sloping roof wall 63 to increase drainage.

[0058] refer to Figure 12 A first connecting profile 634 is provided on the top of the supporting combination panel, and a first circular arc groove 66 is provided on the first connecting profile 634. The top surface of the first connecting profile 634 is installed on the crossbeam 61, and a second card groove 635 is provided on the bottom surface thereof for the edge of the supporting combination panel to be snapped into. A fourth limiting groove 636 is provided on one side of the first connecting profile 634, and a fourth sealing strip 637 is defined in the fourth limiting groove 636. The lower surface of the power generation combination glass contacts the fourth sealing strip 637. A fifth limiting groove 638 is provided on the crossbeam 61, and a fifth sealing strip 639 is defined in the fifth limiting groove 638. The fifth sealing strip 639 contacts the upper surface of the power generation combination glass.

[0059] refer to Figure 13 A second connecting profile 640 is provided at the bottom of the supporting combination plate, and a second circular arc groove 68 is provided on the second connecting profile 640. A second card slot 635 is provided on the top surface of the second connecting profile 640 for the edge of the supporting combination plate to be inserted into. The bottom surface of the second connecting profile 640 is fixed to the mounting profile 5 by fasteners, specifically fixed to the keel frame 64. A sixth limiting groove 641 is provided on one side of the second connecting profile 640 and an insertion groove 642 is provided at the end of the side surface. The bottom of the power generation combination glass is inserted into the insertion groove 642. A sixth sealing strip 643 is defined in the sixth limiting groove 641, and the sixth sealing strip 643 contacts the lower surface of the power generation combination glass.

[0060] The crossbeam 61 includes a disassembly component 6101 and an adjustment component 62. The disassembly component 6101 includes a fixed baffle 61011 and a shielding plate 61012. The shielding plate 61012 can be detachably covered on the fixed baffle 61011. The adjustment component 62 includes a second support rod 644 and an adjustment body 645. The second support rod 644 is limited under the fixed baffle 61011. The adjustment body 645 is arranged under the second support rod 644. The first circular arc wall 65 is arranged on both sides of the adjustment body 645. The fifth limiting groove 638 is opened at the bottom of the fixed baffle 61011.

[0061] The baffle 61012 can be detachably covered on the fixed baffle 61011 in the form of a sliding rail groove 630. The support rod 2 644 and the adjustment body 645 are an integrally formed structure. By setting the support rod 2 644, the distance between the fixed baffle 61011 and the adjustment body 645 is increased, providing space for the power generation glass 612 to extend. At the same time, the power generation glass 612 is installed under the fixed baffle 61011, and the two are sealed to avoid water leakage. At the same time, the baffle 61012 covers the fixed baffle 61011, which is more beautiful.

[0062] Example 4

[0063] refer to Figure 1-15 Based on Examples 1-3, this embodiment provides a gable roof assembly structure, including the floor module 4 of Example 2, the wall module 1 of Example 1, the roof module 6 of Example 3, and a number of fasteners. Fasteners are mentioned in many places in the specification, and the fasteners can be ordinary screws or tension screws, etc. depending on the situation.

[0064] The four sides of the top surface of the floor module 4 and the four sides of the bottom surface of the roof module 6 are fixed with mounting profiles 5 through corner brackets 2. The mounting profile 5 is provided with a mounting groove A51 on the side facing the wall module 1. The top and bottom of the wall module 1 are provided with removable frame profiles 3. The frame profile 3 is provided with a fixing groove 31 on the side facing the wall module 1. The frame profile 3 is arranged directly above or below the mounting profile 5. The fastener passes through the fixing groove 31 and the mounting groove A51 at the same time. The frame profile 3 is provided with a limiting groove A32 on the side facing the mounting profile 5. A sealing strip A33 is defined in the limiting groove A32. The sealing strip A33 is squeezed between the frame profile 3 and the mounting profile 5.

[0065] Assembly method:

[0066] S1. Assembling floor modules 4: First, evenly secure several support blocks 45 to the bottoms of four floor frames 41 using angle brackets 2. Then, secure four support arms 11 to the ends of floor frames 41 (i.e., to the four corners of floor modules 4) using angle brackets 2. Then, evenly secure transverse support columns 42 to the floor frames 41 in the transverse direction using angle brackets 2. Evenly secure longitudinal support columns 43 between floor frames 41 and transverse support columns 42 using angle brackets 2. Lay floor modules 44 on transverse support columns 42 and longitudinal support columns 43. Secure four mounting profiles 5 to the four floor frames 41 using angle brackets 2.

[0067] S2. Assemble the wall module 1: Fix the frame profile 3 to the mounting profile 5 with fasteners, then install the wall unit 12 on the frame profile 3, and then install it between the support arms 11 in sequence. Then, install the four mounting profiles 5 on the frame profile 3 at the top of the wall unit 12 with fasteners, and install the keel 64 on the mounting profile 5 with fasteners;

[0068] S3. Assemble the roof module 6: Splice the support plate 611 and the power generation glass 612 together through the horizontal splicing profile 613 and the vertical splicing profile 614, fix the first connecting profile 634 and the second connecting profile 640 to the top and bottom of the support plate 611 respectively, adjust the angle, fix the first connecting profile 634 and the second connecting profile 640 to the beam 61 and the keel frame 64 respectively, then install the bottom plate 610 in the roof, and finally install the two triangular roof panels 69 at both ends of the sloping roof wall 63 to finally form a complete gable roof.

[0069] The present invention utilizes mounting profiles 5 and frame profiles 3 to achieve a detachable gable roof structure, eliminating the need for a gable-roof installation process and the need for specialized gable-roofing personnel. The provision of circular arc grooves and arc walls allows for angle adjustment of the gable roof, facilitating on-site assembly and adjustment. The provision of power-generating composite glass allows for self-sufficiency in electricity consumption, resolving the inconvenience of electricity use in mobile homes. The present invention simplifies assembly and saves labor costs.

[0070] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present invention should fall within the scope of protection of the present invention.

Claims

1. A gable roof assembly structure, characterized in that: The invention comprises a floor module (4), a wall module (1), a roof module (6) and a plurality of fasteners, wherein the four sides of the top surface of the floor module (4) and the four sides of the bottom surface of the roof module (6) are fixed with mounting profiles (5) through corner brackets (2), the mounting profile (5) is provided with a mounting groove A (51) on a side facing the wall module (1), the top and bottom of the wall module (1) are provided with detachable frame profiles (3), the side of the frame profile (3) facing the wall module (1) is provided with a fixing groove (31), the frame profile (3) is arranged directly above or directly below the mounting profile (5), the fasteners pass through the fixing groove (31) and the mounting groove A (51) at the same time, the frame profile (3) is provided with a limiting groove A (32) on a side facing the mounting profile (5), a sealing strip A (33) is defined in the limiting groove A (32), and the sealing strip A (33) is squeezed between the frame profile (3) and the mounting profile (5); The roof module (6) comprises a crossbeam (61), a sloping roof wall (63) and a keel frame (64), wherein first circular arc walls (65) are respectively provided on both sides of the crossbeam (61), the sloping roof wall (63) has two and is installed on the crossbeam (61) in an inverted V shape, and the top of the sloping roof wall (63) is provided with a first circular arc groove (66) in contact with the first circular arc wall (65), the first circular arc groove (66) is rotatable relative to the first circular arc wall (65), and the first circular arc groove (66) and the first circular arc groove (66) are in contact with each other. A circular arc wall (65) is fixed by fasteners; the bottom surface of the keel frame (64) is fixed to the installation profile (5) by fasteners, and the top surface is provided with a protruding second circular arc wall (67); the bottom of the sloping roof wall (63) is provided with a second circular arc groove (68) in contact with the second circular arc wall (67); the second circular arc groove (68) is rotatable relative to the second circular arc wall (67); the second circular arc groove (68) and the second circular arc wall (67) are fixed to the installation profile (5) by fasteners.

2. The gable roof assembly structure according to claim 1, characterized in that: The roof module (6) further comprises two triangular roof panels (69), which are arranged at both ends of the sloping roof wall (63). The bottom of the triangular roof panels (69) is provided with a mounting profile (5), and the mounting profile (5) and the frame profile (3) at the top of the wall module (1) are fixed by fasteners. The two side edges of the triangular roof panels (69) are clamped on the inner wall of the sloping roof wall (63).

3. The gable roof assembly structure according to claim 2, characterized in that: The sloping roof wall (63) includes a base plate (610), a supporting composite plate, and a power generation composite glass. The base plate (610) is mounted on the keel frame (64) or the triangular roof plate (69), or the base plate (610) is fixed to the triangular roof plate (69) by screws. The supporting composite plate is arranged between the base plate (610) and the power generation composite glass. The top of the supporting composite plate is detachably mounted on the crossbeam (61) and the bottom is detachably mounted on the wall module (1). The power generation composite glass is mounted on the supporting composite plate by a connector.

4. The gable roof assembly structure according to claim 3, characterized in that: The supporting assembly plate includes a plurality of supporting plates (611), the power generation assembly glass includes a plurality of power generation glasses (612), the connecting member includes a transverse splicing profile (613), the four sides of the supporting plate (611) are provided with two protruding parallel clips (615), the side of the transverse splicing profile (613) is provided with a clipping groove (616) for the clipping strip (615) to be clipped in, the top surface of the transverse splicing profile (613) is provided with a first limiting groove (617) on both sides, and the middle of the top surface is provided with a support rod (618) protruding upward, a first sealing strip (619) is defined in the first limiting groove (617), and sealing grooves (620) are provided on both sides of the support rod (618), the transverse edge of the power generation glass (612) is inserted into the sealing groove (620), and the first sealing strip (619) is in contact with the lower surface of the power generation glass (612).

5. The gable roof assembly structure according to claim 3, characterized in that: The supporting assembly plate comprises a plurality of supporting plates (611), and two parallel clips (615) are provided on four sides of the supporting plate (611). The power generation assembly glass comprises a plurality of power generation glasses (612). The connecting member comprises a longitudinal splicing profile (614), and the longitudinal splicing profile (614) comprises a splicing piece A (621) and a splicing piece B (622). A card slot (616) for the clips (615) to be inserted is provided on both sides of the splicing piece A (621), and a second limiting groove (623) is provided on both sides of the top surface of the splicing piece A (621). The second limiting groove (623) defines a A second sealing strip (624) is provided, and a fixing rod (625) is provided in the middle of the top surface of the splicing piece A (621); third limiting grooves (626) are provided on both sides of the bottom surface of the splicing piece B (622), and a third sealing strip (627) is defined in the third limiting groove (626); the longitudinal edge of the power generation glass (612) is squeezed between the second sealing strip (624) and the third sealing strip (627), and the fixing rod (625) extends out of the gap between adjacent power generation glasses (612), and the splicing piece B (622) and the fixing rod (625) are fixed together by fasteners.

6. The gable roof assembly structure according to claim 3, characterized in that: A first connecting profile (634) is provided on the top of the supporting composite plate. The top surface of the first connecting profile (634) is mounted on the crossbeam (61). The bottom surface of the first connecting profile (634) is provided with a second card slot (635) for the edge of the supporting composite plate to be inserted into. A fourth limiting groove (636) is provided on one side of the first connecting profile (634). A fourth sealing strip (637) is defined in the fourth limiting groove (636). The lower surface of the power generation composite glass contacts the fourth sealing strip (637). A fifth limiting groove (638) is provided on the crossbeam (61). A fifth sealing strip (639) is defined in the fifth limiting groove (638). The fifth sealing strip (639) contacts the power generation composite glass. The upper surface of the combined glass; the bottom of the supporting combined plate is provided with a second connecting profile (640), the top surface of the second connecting profile (640) is provided with a second card slot (635) for the edge of the supporting combined plate to be inserted, the bottom surface of the second connecting profile (640) is fixed to the mounting profile (5) by a fastener, a sixth limiting groove (641) is provided on one side of the second connecting profile (640) and an insertion groove (642) is provided at the end of the side surface, the bottom of the power generation combined glass is inserted into the insertion groove (642), the sixth limiting groove (641) is defined with a sixth sealing strip (643), and the sixth sealing strip (643) is in contact with the lower surface of the power generation combined glass.

7. The gable roof assembly structure according to claim 1, characterized in that: The floor module (4) comprises a floor frame (41), a plurality of transverse support columns (42), a longitudinal support column (43), a floor unit (44) and a support block (45). The transverse support columns (42) are evenly fixed in the transverse direction of the floor frame (41) through angle brackets (2). The longitudinal support columns (43) are evenly fixed between the floor frame (41) and the transverse support columns (42) through angle brackets (2). The floor unit (44) is laid on the transverse support columns (42) and the longitudinal support columns (43). The support block (45) is fixed to the bottom of the floor frame (41) through angle brackets (2).

8. The gable roof assembly structure according to claim 1, characterized in that: The wall module (1) comprises a support arm (11), a wall unit (12) and a door and window unit (13). The support arms (11) are four and fixed to the four corners of the floor module (4) via corner brackets (2). The wall units (12) and the door and window units (13) are installed between adjacent support arms (11). The wall units (12) are provided with detachable frame profiles (3) on all four sides. The support arms (11) are provided with mounting grooves B (14) at the connection positions with the wall units (12). The mounting grooves B (14) and the fixing grooves (31) on the frame profiles (3) are fixed via fasteners.

9. The gable roof assembly structure according to claim 1, characterized in that: The crossbeam (61) includes a disassembly component (6101) and an adjustment component (62), the disassembly component (6101) includes a fixed baffle (61011) and a shielding plate (61012), the shielding plate (61012) is detachably covered on the fixed baffle (61011), the adjustment component (62) includes a second support rod (644) and an adjustment body (645), the second support rod (644) is defined under the fixed baffle (61011), the adjustment body (645) is arranged under the second support rod (644), and the first circular arc wall (65) is arranged on both sides of the adjustment body (645).

Citation Information

Patent Citations

  • House plate and application structure

    CN119466218A