CN206859483U - A kind of new greenhouse is with reinforcing the roof - Google Patents

A kind of new greenhouse is with reinforcing the roof Download PDF

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Publication number
CN206859483U
CN206859483U CN201720732762.XU CN201720732762U CN206859483U CN 206859483 U CN206859483 U CN 206859483U CN 201720732762 U CN201720732762 U CN 201720732762U CN 206859483 U CN206859483 U CN 206859483U
Authority
CN
China
Prior art keywords
cant beam
crossbeam
plate
cant
neck
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201720732762.XU
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Chinese (zh)
Inventor
刘建中
李付友
张良俊
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Qingdao Evergreen Horticultural Products Co Ltd
Original Assignee
Qingdao Evergreen Horticultural Products Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Qingdao Evergreen Horticultural Products Co Ltd filed Critical Qingdao Evergreen Horticultural Products Co Ltd
Priority to CN201720732762.XU priority Critical patent/CN206859483U/en
Application granted granted Critical
Publication of CN206859483U publication Critical patent/CN206859483U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/10Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture
    • Y02A40/25Greenhouse technology, e.g. cooling systems therefor

Abstract

The utility model discloses a kind of new greenhouse with reinforcing the roof, and belongs to greenhouse constructing technology field.It includes the hexagon framework being in turn connected to form by six first crossbeam head and the tail, and the cant beam being coaxially disposed positioned at the top of hexagon framework and with the axis of hexagon framework overlaps component, multiple first cant beams are evenly equipped with around cant beam overlap joint component, one end of each first cant beam is connected with cant beam overlap joint component, and the other end of the first cant beam is connected with the connection end of two adjacent first crossbeams.The hexagon framework that the utility model is in turn connected to form by first crossbeam head and the tail is used as the basic load-bearing carrier on roof, first cant beam is arranged between upper strata shrouding disc and lower floor's bond pads in gap, and the first central compartment plate is caused to form overlap edge with joining place and align, then it is fixed on by fixing bolt on corresponding lapping plate, the mode of this upper strata shrouding disc and lower floor's bond pads interlayer, so that the connection of the first cant beam is more firm, stability is good, and reliability is high.

Description

A kind of new greenhouse is with reinforcing the roof
Technical field
Greenhouse constructing technology field is the utility model is related to, especially a kind of new greenhouse is with reinforcing the roof.
Background technology
Greenhouse typically refers to unlimited or half open design, the house for sheltering from heat or light and taking shelter from rain is provided for flowers and plants.Can be according to synoptic climate Situations such as, watering in real time, fertilising.Plantation flowers and plants can not only cultivate the moral character and nourish the nature, and also have certain catharsis to the air of interior.With People's living standards continue to improve, increasing love flower personage, which is added to, purchases the ranks that private greenhouse is raised flowers. Existing private greenhouse is mostly the structure type that steel structure frame is equipped with glass epoxy, and each floor space is about six square metres, Compact, easy to remove, glass epoxy provides for flowers and plants in greenhouse while keep out wind and rain function, additionally it is possible to so that outdoor Sunlight transmission is come in, and necessary condition is provided for the photosynthesis of flowers and plants.
But current existing such steel construction greenhouse, its roof structure stability is low, poor reliability, is carrying out greenhouse When mobile lifting and assembling, easily deform, can seriously collapse, can not meet to actually use needs.Therefore it provides one Kind stability is more preferable, and the higher greenhouse roof construction of reliability turns into urgent problem.
Utility model content
The purpose of this utility model is to overcome above-mentioned the deficiencies in the prior art, there is provided a kind of new greenhouse reinforcing room Top.The utility model is in order to solve current existing such steel construction greenhouse, and its roof structure stability is low, poor reliability, When carrying out greenhouse movement lifting and assembling, easily deform, can seriously collapse, can not meet to actually use asking for needs Topic.
The utility model uses following technical proposals:With reinforcing the roof, it includes horizontal by six first a kind of new greenhouse The hexagon framework that is in turn connected to form of beam head and the tail, and positioned at the top of hexagon framework and with the axis of hexagon framework The cant beam overlap joint component being coaxially disposed, multiple first cant beams are evenly equipped with around cant beam overlap joint component, each described first is oblique One end of beam is connected with cant beam overlap joint component, and the other end of the first cant beam is connected with the connection end of two adjacent first crossbeams; Two the second cant beams are additionally provided between two adjacent the first cant beams, one end of each second cant beam and cant beam overlap joint group Part connects, and the other end of the second cant beam connects with corresponding first crossbeam;
The cant beam overlap joint component includes upper strata shrouding disc, lower floor's bond pads, overlap joint bolt and top and bottom and opened up There is the support tube of screw, spacer sleeve and supporting plate, the overlap joint are additionally provided between the upper strata shrouding disc and lower floor's bond pads Screw bolt passes upper strata shrouding disc, spacer sleeve, supporting plate, lower floor's bond pads are connected with the screw of support tube upper end;
Lower floor's bond pads include the lapping plate that welds together successively of six head and the tail, between adjacent two lapping plates Joining place formed overlap edge;
First cant beam includes the first central compartment plate and its symmetrically set at left and right sides of the first central compartment plate The the first cant beam supporting part put, each first cant beam supporting part include being connected with the first central compartment plate top the One cant beam point water plate, the first cant beam glass epoxy neck and the first cant beam rhone are provided with below the first cant beam point water plate, The first cant beam is connected with the bottom surface of the first cant beam glass epoxy neck and separates projection by the first cant beam glass epoxy Neck is divided into neck and the first lower bayonet slot on first;
Second cant beam includes the second cant beam support frame, and the top of the second cant beam support frame is connected with second Central compartment plate, the second cant beam point water plate is symmetrically arranged with left and right sides of the second central compartment plate top, it is each described The second cant beam glass epoxy neck, and the second cant beam glass are formed between second cant beam point water plate and the second cant beam support frame The second cant beam separation projection is connected with the bottom surface of glass steel plate neck the second cant beam glass epoxy neck is divided into second Upper neck and the second lower bayonet slot;
In adjacent the first cant beam and the second cant beam, the first cant beam first on block on neck and the second of the second cant beam Upper strata glass epoxy is equipped between groove;
In adjacent the first cant beam and the second cant beam, the first lower bayonet slot of the first cant beam and second time card of the second cant beam Lower floor's glass epoxy is equipped between groove;
The first crossbeam includes the outer riser of riser, first crossbeam in the first crossbeam that is set up in parallel, and is arranged on institute State the first crossbeam rhone between riser and the outer riser of first crossbeam in first crossbeam;
The water-drainage tube part that catchments, the water-drainage tube part that catchments are additionally provided with the junction of two adjacent first crossbeams Including the drainpipe vertically set, the U-shaped baffle plate that catchments that side carries gap is connected with the upper end of the drainpipe, The gap both sides of the U-shaped baffle plate that catchments respectively are communicated with a water leg, on each water leg and a first crossbeam First crossbeam rhone docks UNICOM.
Preferably, second cross beam, and adjacent two are connected with by fixing bolt between two adjacent the first cant beams First crossbeam between individual first cant beam is parallel with second cross beam.
Preferably, it is also equipped with first crossbeam protective plate on the outer riser of first crossbeam in the first crossbeam.
Preferably, the top of riser is connected with first crossbeam transition plate in first crossbeam in the first crossbeam, and described First crossbeam glass epoxy supporting plate is connected with by fixing bolt in one crossbeam transition plate.
The beneficial effects of the utility model are:The hexagon that the utility model is in turn connected to form by first crossbeam head and the tail Basic load-bearing carrier of the framework as roof, its lower end can connect the wall body structure of greenhouse, pass through above hexagon framework Arrange the main load-bearing carrier of the first cant beam and the second cant beam as roof;First cant beam is arranged on upper strata shrouding disc and overlapped with lower floor Between disk in gap, and the first central compartment plate is formed overlap edge with joining place and is aligned, then fixed by fixing bolt On corresponding lapping plate, the mode of this upper strata shrouding disc and lower floor's bond pads interlayer so that the connection of the first cant beam is more firm Gu stability is good, reliability is high, while the setting of upper strata shrouding disc effectively avoids rainwater Exposure to Sunlight oblique to first in lower floor's bond pads The erosion corruption of beam and the second cant beam, ensures Stability Analysis of Structures, increases the service life;Upper strata glass epoxy and lower floor's glass epoxy Set, ensure that the daylighting effect of greenhouse, in rainy days, rainwater can be taken advantage of a situation and reach first crossbeam rhone by upper strata glass epoxy It is interior, and then discharged by the water-drainage tube part that catchments.The utility model is when carrying out the mobile lifting of greenhouse, Stability Analysis of Structures, stress Uniformly, stability is good, and reliability is high.
Brief description of the drawings
Fig. 1 is the utility model overall structure diagram;
Fig. 2 is the cant beam overlap joint component explosive view in Fig. 1;
Fig. 3 is lower floor's bond pads structural representation in Fig. 2;
Fig. 4 is the end partial structural diagram of the first cant beam in Fig. 1;
Fig. 5 is the end partial structural diagram of the second cant beam in Fig. 1;
Fig. 6 is the first cant beam and upper strata glass epoxy, the assembling structure schematic diagram of lower floor's glass epoxy;
Fig. 7 is the second cant beam and upper strata glass epoxy, the assembling structure schematic diagram of lower floor's glass epoxy;
Fig. 8 is the cross section structure schematic diagram of first crossbeam in Fig. 1;
Fig. 9 is the overall structure diagram of the water-drainage tube part that catchments in Fig. 1;
Figure 10 is the assembling structure schematic diagram of water-drainage tube part and first crossbeam of catchmenting.
Embodiment
Need exist for explanation, the noun of locality is left and right, it is upper and lower be to be defined on the basis of the view shown in Fig. 1 , it will be appreciated that the use of the noun of locality should not limit the protection domain that the application is asked.
The utility model is further illustrated with reference to the accompanying drawings and examples.
As shown in Figures 1 to 10, with reinforcing the roof, it is included by six head and the tail of first crossbeam 1 successively a kind of new greenhouse The hexagon framework 2 formed is connected, and is coaxially set positioned at the top of hexagon framework 2 and with the axis of hexagon framework 2 The cant beam overlap joint component 3 put, multiple first cant beams 4 are evenly equipped with around cant beam overlap joint component 3, each first cant beam 4 One end and cant beam overlap joint component 3 be connected, the other end of the first cant beam 4 is connected with the connection end of two adjacent first crossbeams 1; Two the second cant beams 5 are additionally provided between two adjacent the first cant beams 4, one end of each second cant beam 5 is taken with cant beam Connected components 3 connect, and the other end of the second cant beam 5 connects with corresponding first crossbeam 1;
The cant beam overlap joint component 3 includes upper strata shrouding disc 3a, lower floor bond pads 3b, overlap joint bolt 3c and top and bottom The support tube 3d of screw is offered, spacer sleeve 3e and branch are additionally provided between the upper strata shrouding disc 3a and lower floor bond pads 3b Fagging 3f, the overlap joint bolt 3c sequentially pass through upper strata shrouding disc 3a, spacer sleeve 3e, supporting plate 3f, lower floor bond pads 3b and branch The screw connection of stay tube 3d upper ends;
Lower floor's bond pads 3b includes the lapping plate 3g that six head and the tail weld together successively, adjacent two lapping plates Joining place between 3g forms overlap edge 3h;
First cant beam 4 is right including the first central compartment plate 4a and its at left and right sides of the first central compartment plate 4a The the first cant beam supporting part 4b set, each first cant beam supporting part 4b is claimed to include pushing up with the first central compartment plate 4a Hold connection the first cant beam point water plate 4c, the first cant beam point water plate 4c below be provided with the first cant beam glass epoxy neck 4d with First cant beam rhone 4e, be connected with the bottom surface of the first cant beam glass epoxy neck 4d the first cant beam separate projection 4f will The first cant beam glass epoxy neck 4d is divided into neck 4g and the first lower bayonet slot 4h on first;
Second cant beam 5 includes the second cant beam support frame 5a, and the top of the second cant beam support frame 5a is affixed There is the second central compartment plate 5b, the second cant beam point water plate is symmetrically arranged with left and right sides of the second central compartment plate 5b tops 5c, the second cant beam glass epoxy neck is each formed between the second cant beam point water plate 5c and the second cant beam support frame 5a 5d, and the second cant beam is connected with the bottom surface of the second cant beam glass epoxy neck 5d and separates projection 5f by second cant beam Glass epoxy neck 5d is divided into neck 5g and the second lower bayonet slot 5h on second;
In adjacent the first cant beam 4 and the second cant beam 5, the first cant beam 4 first on neck 4g and the second cant beam 5 Upper strata glass epoxy 6a is equipped with two between neck 5g;
In adjacent the first cant beam 4 and the second cant beam 5, the first lower bayonet slot 4h of the first cant beam 4 and the of the second cant beam 5 Lower floor glass epoxy 6b is equipped between two lower bayonet slot 5h;
The first crossbeam 1 includes the outer riser 1b of riser 1a, first crossbeam in the first crossbeam that is set up in parallel, and sets First crossbeam rhone 1c in the first crossbeam outside riser 1a and first crossbeam between riser 1b;
The water-drainage tube part 7 that catchments, the drainpipe that catchments are additionally provided with the junction of two adjacent first crossbeams 1 Part 7 includes the drainpipe 7a vertically set, and the U-shaped collection that side carries gap is connected with the upper end of the drainpipe 7a Water baffle plate 7b, the gap both sides of the U-shaped baffle plate 7b that catchments respectively are communicated with a water leg 7c, each water leg 7c and one First crossbeam rhone 1c docking UNICOM on individual first crossbeam 1.
The utility model greenhouse with reinforcing the roof, make by the hexagon framework 2 being in turn connected to form by the head and the tail of first crossbeam 1 For the basic load-bearing carrier on roof, its lower end can connect the wall body structure of greenhouse, pass through arrangement the in the top of hexagon framework 2 The main load-bearing carrier of one cant beam 4 and the second cant beam 5 as roof, one end of the first cant beam 4 is connected with first crossbeam 1, another End is connected with cant beam overlap joint component 3, by setting between the wherein upper strata shrouding disc 3a and lower floor bond pads 3b in cant beam overlap joint component 3 Putting spacer sleeve 3e has certain interval and is fixed by supporting plate 3f progress screens, and the other end of the first cant beam 4 is arranged on Between layer shrouding disc 3a and lower floor bond pads 3b in gap, and the first central compartment plate 4a is caused to form 3h pairs of overlap edge with joining place Just, then it is fixed on by fixing bolt on corresponding lapping plate 3g, this upper strata shrouding disc 3a and lower floor's bond pads 3b interlayers Mode so that the connection of the first cant beam 4 is more firm, and stability is good, and reliability is high, while upper strata shrouding disc 3a setting is effectively kept away Exempt from erosion corruption of the rainwater Exposure to Sunlight to the first cant beam 4 on lower floor bond pads 3b and the second cant beam 5, ensure Stability Analysis of Structures, extend Service life;Upper strata glass epoxy 6a and lower floor glass epoxy 6b setting, ensure that the daylighting effect of greenhouse, in rainy days, Upper strata shrouding disc 3a and the first cant beam point water plate 4c rainwater transmitted can be taken advantage of a situation and reached in first crossbeam 1 by upper strata glass epoxy 6a In first crossbeam rhone 1c, and then discharged by the water-drainage tube part 7 that catchments.
On the basis of above-mentioned technical proposal, second is connected with by fixing bolt between two adjacent the first cant beams 4 Crossbeam 8, and the first crossbeam 1 between adjacent two the first cant beams 4 is parallel with second cross beam 8.It is arranged such, by setting up Two crossbeams 8, the resistance to overturning and reliability of greenhouse roof structure are improved, meet actual use needs.
On the basis of above-mentioned technical proposal, the first horizontal stroke is also equipped with the outer riser 1b of first crossbeam in the first crossbeam 1 Beam protective plate 1d.It is arranged such, by setting up first crossbeam protective plate 1d, barrier protection is carried out to first crossbeam rhone 1c, Prevent outside debris from entering first crossbeam rhone 1c and the water-drainage tube part 7 that catchments, result in blockage, cause impeded drainage.
On the basis of above-mentioned technical proposal, riser 1a top is connected with first in first crossbeam in the first crossbeam 1 First crossbeam glass epoxy supporting plate is connected with by fixing bolt on crossbeam transition plate 1e, the first crossbeam transition plate 1e 1f.It is arranged such, first crossbeam glass epoxy supporting plate 1f is set up on first crossbeam 1 and carrys out upper strata glass epoxy 6a to laying And lower floor glass epoxy 6b is supported and entrusted, and then ensure the firm of upper strata glass epoxy 6a and lower floor glass epoxy 6b installations Property and reliability, meet actual use needs.
Limitation to scope of protection of the utility model, one of ordinary skill in the art should be understood that in skill of the present utility model On the basis of art scheme, those skilled in the art need not pay the various modifications that creative work can make or deformation still exists Within the scope of protection of the utility model.

Claims (4)

1. a kind of new greenhouse is with reinforcing the roof, it is characterised in that:It includes being sequentially connected shape from beginning to end by six first crossbeams (1) Into hexagon framework (2), and coaxially set positioned at the top of hexagon framework (2) and with the axis of hexagon framework (2) The cant beam overlap joint component (3) put, multiple first cant beams (4) are evenly equipped with around cant beam overlap joint component (3), each described first One end of cant beam (4) is connected with cant beam overlap joint component (3), the other end of the first cant beam (4) and two adjacent first crossbeams (1) Connection end be connected;Two the second cant beams (5) are additionally provided between two adjacent the first cant beams (4), each described second is oblique One end of beam (5) is connected with cant beam overlap joint component (3), and the other end of the second cant beam (5) connects with corresponding first crossbeam (1);
Cant beam overlap joint component (3) include upper strata shrouding disc (3a), lower floor's bond pads (3b), overlap joint bolt (3c) and upper end with Lower end offers the support tube (3d) of screw, and interval is additionally provided between the upper strata shrouding disc (3a) and lower floor's bond pads (3b) Sleeve (3e) and supporting plate (3f), the overlap joint bolt (3c) sequentially pass through upper strata shrouding disc (3a), spacer sleeve (3e), supporting plate (3f), lower floor's bond pads (3b) are connected with the screw of support tube (3d) upper end;
Lower floor's bond pads (3b) include the lapping plate (3g) that six head and the tail weld together successively, adjacent two lapping plates Joining place between (3g) forms overlap edge (3h);
First cant beam (4) includes the first central compartment plate (4a) and its at left and right sides of the first central compartment plate (4a) Symmetrically arranged first cant beam supporting part (4b), each first cant beam supporting part (4b) include and first central compartment First cant beam point water plate (4c) of plate (4a) top connection, is provided with the first cant beam glass below the first cant beam point water plate (4c) Steel plate neck (4d) and the first cant beam rhone (4e), the is connected with the bottom surface of the first cant beam glass epoxy neck (4d) One cant beam separates projection (4f) and the first cant beam glass epoxy neck (4d) is divided under neck on first (4g) and first Neck (4h);
Second cant beam (5) includes the second cant beam support frame (5a), and the top of the second cant beam support frame (5a) is consolidated The second central compartment plate (5b) is connected to, the second cant beam is symmetrically arranged with left and right sides of the second central compartment plate (5b) top Point water plate (5c), each form the second cant beam glass between the second cant beam point water plate (5c) and the second cant beam support frame (5a) Glass steel plate neck (5d), and the second cant beam is connected with the bottom surface of the second cant beam glass epoxy neck (5d) and separates projection The second cant beam glass epoxy neck (5d) is divided into neck on second (5g) and the second lower bayonet slot (5h) by (5f);
In adjacent the first cant beam (4) and the second cant beam (5), the first cant beam (4) first on neck (4g) and the second cant beam (5) upper strata glass epoxy (6a) is equipped with second between neck (5g);
In adjacent the first cant beam (4) and the second cant beam (5), the first lower bayonet slot (4h) and the second cant beam of the first cant beam (4) (5) lower floor's glass epoxy (6b) is equipped between the second lower bayonet slot (5h);
The first crossbeam (1) includes the outer riser (1b) of riser (1a), first crossbeam in the first crossbeam that is set up in parallel, Yi Jishe Put the first crossbeam rhone (1c) between riser (1a) and the outer riser (1b) of first crossbeam in the first crossbeam;
The water-drainage tube part that catchments (7), the drainpipe that catchments are additionally provided with the junction of two adjacent first crossbeams (1) Part (7) includes the drainpipe (7a) vertically set, is connected with side in the upper end of the drainpipe (7a) and carries gap The U-shaped baffle plate that catchments (7b), the gap both sides of the U-shaped baffle plate that catchments (7b) are respectively communicated with a water leg (7c), Mei Gesuo State water leg (7c) and dock UNICOM with the first crossbeam rhone (1c) on a first crossbeam (1).
2. a kind of new greenhouse according to claim 1 is with reinforcing the roof, it is characterised in that:It is first oblique at adjacent two Second cross beam (8), and the first crossbeam between adjacent two the first cant beams (4) are connected with by fixing bolt between beam (4) (1) it is parallel with second cross beam (8).
3. a kind of new greenhouse according to claim 1 or 2 is with reinforcing the roof, it is characterised in that:The first crossbeam (1) First crossbeam protective plate (1d) is also equipped with the outer riser (1b) of middle first crossbeam.
4. a kind of new greenhouse according to claim 3 is with reinforcing the roof, it is characterised in that:In the first crossbeam (1) The top of riser (1a) is connected with first crossbeam transition plate (1e) in first crossbeam, passes through on the first crossbeam transition plate (1e) Fixing bolt is connected with first crossbeam glass epoxy supporting plate (1f).
CN201720732762.XU 2017-06-22 2017-06-22 A kind of new greenhouse is with reinforcing the roof Expired - Fee Related CN206859483U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720732762.XU CN206859483U (en) 2017-06-22 2017-06-22 A kind of new greenhouse is with reinforcing the roof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720732762.XU CN206859483U (en) 2017-06-22 2017-06-22 A kind of new greenhouse is with reinforcing the roof

Publications (1)

Publication Number Publication Date
CN206859483U true CN206859483U (en) 2018-01-09

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ID=60827277

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201720732762.XU Expired - Fee Related CN206859483U (en) 2017-06-22 2017-06-22 A kind of new greenhouse is with reinforcing the roof

Country Status (1)

Country Link
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108286309A (en) * 2018-03-20 2018-07-17 王承辉 The roofing Vierendeel girder of integrated house
CN109519033A (en) * 2018-12-29 2019-03-26 盛基家居用品开发(嘉善)有限公司 Metal roof tent skeleton component

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108286309A (en) * 2018-03-20 2018-07-17 王承辉 The roofing Vierendeel girder of integrated house
CN108286309B (en) * 2018-03-20 2023-11-17 王承辉 Roof frame beam of integrated house
CN109519033A (en) * 2018-12-29 2019-03-26 盛基家居用品开发(嘉善)有限公司 Metal roof tent skeleton component
CN109519033B (en) * 2018-12-29 2020-07-28 盛基家居用品开发(嘉善)有限公司 Framework assembly for metal roof tent

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Granted publication date: 20180109

Termination date: 20180622