CN208563632U - A kind of assembled architecture shock-damping structure - Google Patents

A kind of assembled architecture shock-damping structure Download PDF

Info

Publication number
CN208563632U
CN208563632U CN201821114782.1U CN201821114782U CN208563632U CN 208563632 U CN208563632 U CN 208563632U CN 201821114782 U CN201821114782 U CN 201821114782U CN 208563632 U CN208563632 U CN 208563632U
Authority
CN
China
Prior art keywords
wall
damping
shock
damping structure
fixedly connected
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
CN201821114782.1U
Other languages
Chinese (zh)
Inventor
胡强
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.)
Qionglai Sanshao Construction Machinery Co Ltd
Original Assignee
Qionglai Sanshao Construction Machinery 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 Qionglai Sanshao Construction Machinery Co Ltd filed Critical Qionglai Sanshao Construction Machinery Co Ltd
Priority to CN201821114782.1U priority Critical patent/CN208563632U/en
Application granted granted Critical
Publication of CN208563632U publication Critical patent/CN208563632U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Buildings Adapted To Withstand Abnormal External Influences (AREA)
  • Vibration Prevention Devices (AREA)

Abstract

The utility model discloses a kind of assembled architecture shock-damping structures, including shock-damping structure main body, wall and net like skeleton, the intermediate position of shock-damping structure main body is provided with wall, wall is fixedly connected with shock-damping structure main body, the inclined bottom of the bosom of wall is provided with buffer layer, buffer layer is fitted closely with wall, the bottom of buffer layer is provided with damping plate, damping plate is fitted closely with buffer layer, damping plate is to generate vibration pressure by the external world to run, when wall is clashed or generates vibration with ground face contact, damping plate can be cut down by the damping performance of itself, make the damage that wall is not shaken, effectively raise the working efficiency of shock-damping structure main body, strengthen the structural strength of shock-damping structure main body, the material damping alloy of damping plate, damping performance is high, strengthen shock-damping structure main body Stability, it is light-weight, be conducive to easy for construction, improve the practicability of shock-damping structure main body.

Description

A kind of assembled architecture shock-damping structure
Technical field
The utility model relates to shock-damping structure technical field, specially a kind of assembled architecture shock-damping structure.
Background technique
Assembled architecture begins to arouse people's interest in earlier 1900s, realizes finally to the sixties, due to dress Construction speed with formula building is fast, and lower production costs, promotes come all over the world rapidly, by the form of prefabricated components It is divided into building block building, plate building, boxlike building, frame board material construction structural and lift slab with construction method and rises five types such as layer building Type.
But existing assembled architecture shock-damping structure, safety is not high, using unidirectional skeleton, the stress surface of wall Product is uneven, and in the case where there is vibration, wall is easy to happen the phenomenon that metope collapses, and reduces the safety used, damping effect Fruit is bad, when inside wall by external pressure, cannot be effectively obtained buffering and protection, reduce the use of wall Service life, common metope mounting rod are not connected firmly between wall and are leaned on, reduce the practicability of main body using smooth surface.
So how to design a kind of assembled architecture shock-damping structure, becoming us will currently be solved the problems, such as.
Utility model content
The purpose of this utility model is to provide a kind of assembled architecture shock-damping structures, to solve to mention in above-mentioned background technique Safety out is not high, damping effect it is bad and be not connected firmly by the problems such as.
To achieve the above object, the utility model provides the following technical solutions: a kind of assembled architecture shock-damping structure, including Shock-damping structure main body, wall and net like skeleton, the intermediate position of the shock-damping structure main body are provided with wall, the wall with Shock-damping structure main body is fixedly connected, and the inside top of the wall is provided with insulating layer, and the insulating layer is fitted closely with wall, The inclined bottom of the bosom of the wall is provided with buffer layer, and the buffer layer is fitted closely with wall, outside the insulating layer It encloses and is provided with fixed edge, the fixed edge is fixedly connected with insulating layer, and the top periphery of the wall is provided with top margin, the top Side is fixedly connected with wall, and the right end of the wall is provided with wall side panel, and the wall side panel is fixedly connected with wall, described The intermediate position of wall side panel is provided with screw-type mounting hole, and the screw-type mounting hole is fixedly connected with wall side panel, described The left end of wall is provided with wall top panel, and the wall top panel is fixedly connected with wall, and the bottom of the wall is provided with wall bottom Panel, the wall bottom panel are fixedly connected with wall, and the surface of the wall bottom panel is provided with male and fomale(M&F), the male and fomale(M&F) and wall Bottom panel fits closely, and the bottom periphery of the wall bottom panel is provided with bottom edge, and the bottom edge is fixedly connected with wall bottom panel, institute It states and is provided with side on the right side of wall side panel, the side is fixedly connected with wall side panel.
Further, the bosom position of the wall is provided with net like skeleton, the net like skeleton and wall It is fixedly connected.
Further, the bottom of the buffer layer is provided with damping plate, and the damping plate is fitted closely with buffer layer.
Further, the intermediate position of the wall top panel is provided with screw-type mounting rod, the screw-type mounting rod with Wall top panel is fixedly connected.
Further, the inside hollow out position of the wall is provided with spring paving, and the spring paving and wall are close Fitting.
Further, the male and fomale(M&F) is provided with one layer.
Further, the material of the damping plate is damping performance height, light-weight damping alloy.
Compared with prior art, the utility model has the beneficial effects that this kind of assembled architecture shock-damping structure, is provided with net Shape formula skeleton is the weight by bearing to generate when interconnection between wall and wall to run, on the one hand net like skeleton has It is more uniform conducive to the bearing capacity of wall, so that wall is less likely to occur the phenomenon that metope collapses when being shaken, improving makes The safety of user, another aspect net like skeletal distribution is relatively uniform, has certain damping effect, is conducive to wall use It gets up more stable, effectively raise the practicability of shock-damping structure main body, be provided with damping plate, is generated by the external world The pressure of vibration is come what is run, and when wall is clashed or generates vibration with ground face contact, damping plate can be by certainly The damping performance of body cuts down vibration, come the damage for protecting wall not shaken, keeps wall more durable, has The working efficiency for improving shock-damping structure main body of effect, strengthens the structural strength of shock-damping structure main body, is provided with screw-type peace Bar is filled, is to be spliced by screw-type mounting rod and mounting hole to metope when administrative staff are when assembling metope, screw thread Formula mounting rod is conducive to increase frictional force interconnected between metope and metope, so that wall connecting is got up more stable, prevents Stopped being not connected firmly between wall and lean on, and occur metope collapse injure personnel by a crashing object and caused by economic loss, effectively raising makes The safety of user strengthens the structural strength of shock-damping structure main body, is provided with spring paving, when administrative staff are in assembling metope Or metope by clashing when, net like skeleton can generate a large amount of vibration, and spring paving on the one hand can be to net like bone Frame skeleton achievees the effect that a buffering, on the other hand may also reach up the effect of damping, effectively strengthens net like skeleton Use, use wall more stable, strengthen the working efficiency of net like skeleton, be provided with one layer of male and fomale(M&F), Have the effect of certain damping performance and abatement noise, effectively raises the working efficiency of shock-damping structure main body, be provided with The material of damping plate is damping alloy, and the damping performance of damping alloy is high, is conducive to the stability for reinforcing shock-damping structure main body, Damping alloy it is light-weight, be conducive to easy for construction, effectively raise the practicability of shock-damping structure main body.
Detailed description of the invention
Fig. 1 is the overall structure figure of the utility model.
Fig. 2 is the whole sectional view of the utility model.
Fig. 3 is the wall bottom panel structure chart of the utility model.
In figure: 1, shock-damping structure main body, 2, wall, 201, insulating layer, 202, net like skeleton, 203, buffer layer, 204, Damping plate, 205, fixed edge, 206, spring paving, 3, top margin, 4, wall side panel, 5, screw-type mounting hole, 6, side, 7, wall Top panel, 8, screw-type mounting rod, 9, wall bottom panel, 901, male and fomale(M&F), 10, bottom edge.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work Every other embodiment obtained, fall within the protection scope of the utility model.
Fig. 1-3 is please referred to, the utility model provides a kind of technical solution: a kind of assembled architecture shock-damping structure, including subtract Shake main structure body 1, wall 2 and net like skeleton 202, the intermediate position of shock-damping structure main body 1 is provided with wall 2, wall 2 with subtract Shake main structure body 1 is fixedly connected, and the inside top of wall 2 is provided with insulating layer 201, and the insulating layer 201 is closely pasted with wall 2 It closes, the inclined bottom of the bosom of wall 2 is provided with buffer layer 203, and buffer layer 203 is fitted closely with wall 2, insulating layer 201 Periphery is provided with fixed edge 205, and fixed edge 205 is fixedly connected with insulating layer 201, and the top periphery of wall 2 is provided with top margin 3, Top margin 3 is fixedly connected with wall 2, and the right end of wall 2 is provided with wall side panel 4, and wall side panel 4 is fixedly connected with wall 2, wall side The intermediate position of panel 4 is provided with screw-type mounting hole 5, and screw-type mounting hole 5 is fixedly connected with wall side panel 4, a left side for wall 2 End is provided with wall top panel 7, and wall top panel 7 is fixedly connected with wall 2, and the bottom of wall 2 is provided with wall bottom panel 9, wall bottom surface Plate 9 is fixedly connected with wall 2, and the surface of wall bottom panel 9 is provided with male and fomale(M&F) 901, and male and fomale(M&F) 901 and wall bottom panel 9 closely paste It closes, the bottom periphery of wall bottom panel 9 is provided with bottom edge 10, and bottom edge 10 is fixedly connected with wall bottom panel 9, the right side of wall side panel 4 It is provided with side 6, side 6 is fixedly connected with wall side panel 4.
Further, the bosom position of wall 2 is provided with net like skeleton 202, net like skeleton 202 and wall 2 It is fixedly connected, net like skeleton 202 is the weight by bearing to generate when interconnection between wall and wall to run, net like The bearing capacity that 202 one side of skeleton is conducive to wall 2 is more uniform, makes wall 2 that wall be less likely to occur when by vibration is generated The phenomenon that face is collapsed, improves the safety of user, and another aspect net like skeleton 202 is distributed relatively uniform, has certain Damping effect, be conducive to wall 2 and use more stable, effectively raise the practicability of shock-damping structure main body 1.
Further, the bottom of buffer layer 203 is provided with damping plate 204, and damping plate 204 and buffer layer 203 are close Fitting, damping plate 204 are run by the extraneous pressure for generating vibration, when wall 2 is clashed or and ground When contact generates vibration, damping plate 204 can cut down vibration by the damping performance of itself, to protect wall 2 not The damage shaken keeps wall 2 more durable, effectively raises the working efficiency of shock-damping structure main body 1, strengthens The structural strength of shock-damping structure main body 1.
Further, the intermediate position of wall top panel 7 is provided with screw-type mounting rod 8, screw-type mounting rod 8 and wall top face Plate 7 is fixedly connected, and is to be spliced by screw-type mounting rod 5 and mounting hole 8 to metope when administrative staff are when assembling metope , screw-type mounting rod 5 is conducive to increase frictional force interconnected between metope and metope, connects wall 2 more Stabilization, it is therefore prevented that be not connected firmly and lean between wall 2, and occur metope collapse injure personnel by a crashing object and caused by economic loss, effectively The safety for improving user, strengthen the structural strength of shock-damping structure main body 1.
Further, the inside hollow out position of wall 2 is provided with spring paving 206, and spring paving 206 and wall 2 are close Fitting, when administrative staff are when assembling metope or metope by clashing, net like skeleton 202 can generate a large amount of vibration, 206 one side of spring paving can achieve the effect that a buffering to 202 skeleton of net like skeleton, on the other hand may also reach up The effect of damping effectively strengthens the use of net like skeleton 202, uses wall 2 more stable, strengthens net The working efficiency of shape formula skeleton 202.
Further, male and fomale(M&F) 901 is provided with one layer, and male and fomale(M&F) 901 has certain damping performance and abatement noise Effect effectively raises the working efficiency of shock-damping structure main body 1.
Further, the damping performance of the material damping alloy of damping plate 204, damping alloy is high, is conducive to reinforce subtracting Shake the stability of main structure body 1, damping alloy it is light-weight, be conducive to easy for construction, effectively raise shock-damping structure main body Practicability.
Working principle: firstly, install and use shock-damping structure main body 1, then, net like skeleton 202 be by bear wall with For the weight generated when being connected with each other between wall come what is run, 202 one side of net like skeleton is conducive to the bearing capacity of wall 2 more Uniformly, so that wall 2 is less likely to occur the phenomenon that metope collapses when being shaken, improve the safety of user, another party Face net like skeleton 202 be distributed it is relatively uniform, have certain damping effect, be conducive to wall 2 use it is more stable, Effectively raise the practicability of shock-damping structure main body 1, then, damping plate 204 be by the extraneous pressure for generating vibration come Operation, when wall 2 is clashed or is shaken with the generation of ground face contact, damping plate 204 can pass through the damping of itself Performance cuts down vibration, come the damage for protecting wall 2 not shaken, keeps wall 2 more durable, effectively mentions The high working efficiency of shock-damping structure main body 1, strengthens the structural strength of shock-damping structure main body 1, and then, when administrative staff exist It is to be spliced by screw-type mounting rod 5 and mounting hole 8 to metope, screw-type mounting rod 5 is conducive to increase when assembling metope Add frictional force interconnected between metope and metope, connects wall 2 more stable, it is therefore prevented that connect between wall 2 It is not firm to connect, and occur metope collapse injure personnel by a crashing object and caused by economic loss, effectively raise the safety of user, add The strong structural strength of shock-damping structure main body 1, finally, when administrative staff are when assembling metope or metope by clashing, net Shape formula skeleton 202 can generate a large amount of vibration, and 206 one side of spring paving can reach one to 202 skeleton of net like skeleton The effect of buffering, on the other hand may also reach up the effect of damping, effectively strengthens the use of net like skeleton 202, makes wall Body 2 uses more stable, strengthens the working efficiency of net like skeleton 202, here it is this kind of assembled architecture dampings The working principle of structure.
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art, It is understood that these embodiments can be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaired Change, replacement and variant, the scope of the utility model is limited by the following claims and their equivalents.

Claims (7)

1. a kind of assembled architecture shock-damping structure, including shock-damping structure main body (1), wall (2) and net like skeleton (202), Be characterized in that: the intermediate position of the shock-damping structure main body (1) is provided with wall (2), the wall (2) and shock-damping structure main body (1) it is fixedly connected, the inside top of the wall (2) is provided with insulating layer (201), and the insulating layer (201) and wall (2) are tight The inclined bottom of bosom of closely connected conjunction, the wall (2) is provided with buffer layer (203), the buffer layer (203) and wall (2) It fits closely, the periphery of the insulating layer (201) is provided with fixed edge (205), the fixed edge (205) and insulating layer (201) It is fixedly connected, the top periphery of the wall (2) is provided with top margin (3), and the top margin (3) is fixedly connected with wall (2), described The right end of wall (2) is provided with wall side panel (4), and the wall side panel (4) is fixedly connected with wall (2), the wall side panel (4) intermediate position is provided with screw-type mounting hole (5), and the screw-type mounting hole (5) is fixedly connected with wall side panel (4), The left end of the wall (2) is provided with wall top panel (7), and the wall top panel (7) is fixedly connected with wall (2), the wall (2) bottom is provided with wall bottom panel (9), and the wall bottom panel (9) is fixedly connected with wall (2), the wall bottom panel (9) Surface is provided with male and fomale(M&F) (901), and the male and fomale(M&F) (901) fits closely with wall bottom panel (9), the wall bottom panel (9) Bottom periphery is provided with bottom edge (10), and the bottom edge (10) is fixedly connected with wall bottom panel (9), the right side of the wall side panel (4) Side is provided with side (6), and the side (6) is fixedly connected with wall side panel (4).
2. a kind of assembled architecture shock-damping structure according to claim 1, it is characterised in that: the inside of the wall (2) Intermediate position is provided with net like skeleton (202), and the net like skeleton (202) is fixedly connected with wall (2).
3. a kind of assembled architecture shock-damping structure according to claim 1, it is characterised in that: the buffer layer (203) Bottom is provided with damping plate (204), and the damping plate (204) fits closely with buffer layer (203).
4. a kind of assembled architecture shock-damping structure according to claim 1, it is characterised in that: the wall top panel (7) Intermediate position is provided with screw-type mounting rod (8), and the screw-type mounting rod (8) is fixedly connected with wall top panel (7).
5. a kind of assembled architecture shock-damping structure according to claim 1, it is characterised in that: the inside of the wall (2) Hollow out position is provided with spring paving (206), and the spring paving (206) fits closely with wall (2).
6. a kind of assembled architecture shock-damping structure according to claim 1, it is characterised in that: the male and fomale(M&F) (901) sets It is equipped with one layer.
7. a kind of assembled architecture shock-damping structure according to claim 3, it is characterised in that: the damping plate (204) Material be damping performance height, light-weight damping alloy.
CN201821114782.1U 2018-07-14 2018-07-14 A kind of assembled architecture shock-damping structure Expired - Fee Related CN208563632U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821114782.1U CN208563632U (en) 2018-07-14 2018-07-14 A kind of assembled architecture shock-damping structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821114782.1U CN208563632U (en) 2018-07-14 2018-07-14 A kind of assembled architecture shock-damping structure

Publications (1)

Publication Number Publication Date
CN208563632U true CN208563632U (en) 2019-03-01

Family

ID=65492889

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821114782.1U Expired - Fee Related CN208563632U (en) 2018-07-14 2018-07-14 A kind of assembled architecture shock-damping structure

Country Status (1)

Country Link
CN (1) CN208563632U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110820989A (en) * 2019-11-26 2020-02-21 安徽福瑞尔铝业科技有限公司 Clamping type steel wallboard and assembling method
CN111894170A (en) * 2020-07-29 2020-11-06 徐州易尚饰家装饰工程有限责任公司 Assembled building side fascia concatenation shock attenuation positioning reinforcement auxiliary structure

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110820989A (en) * 2019-11-26 2020-02-21 安徽福瑞尔铝业科技有限公司 Clamping type steel wallboard and assembling method
CN111894170A (en) * 2020-07-29 2020-11-06 徐州易尚饰家装饰工程有限责任公司 Assembled building side fascia concatenation shock attenuation positioning reinforcement auxiliary structure

Similar Documents

Publication Publication Date Title
CN208563632U (en) A kind of assembled architecture shock-damping structure
CN206052962U (en) Energy-dissipating and shock-absorbing Hanging Single Core-tube Structure system
CN201588335U (en) Vertical reinforcing structure for Dougong
CN208162559U (en) A kind of mud core arbor component
CN208950114U (en) A kind of curtain wall vibration abatement
CN206646804U (en) A kind of building template for having heat insulation function
CN206188272U (en) Antidetonation type tower crane base
CN207060381U (en) Unmanned plane undercarriage and unmanned plane
CN208884843U (en) A kind of garden architecture cylindrical structure of supporting & stablizing
CN209015664U (en) A kind of plastic hollow boards billboard
CN211065508U (en) Shockproof office table
CN209459049U (en) A kind of damping base for outdoor patio heater
CN209565084U (en) A kind of mechanical three faces connecting shaft bracket
CN208009882U (en) A kind of scaffold of construction
CN217108020U (en) Accuse damping device that shakes in aggregate production
CN206571416U (en) The practical change special aerial device of distribution
CN207079751U (en) Part rocks post from vibration-proof structure
CN217711138U (en) Energy-consuming suspension support
CN210888303U (en) Safety device for construction
CN210276521U (en) Shock-resistant and compression-resistant five-wheel wheelchair foot
CN214697260U (en) Construction foundation encloses fender convenient to use
CN202689234U (en) Building shockproof structure
CN207436617U (en) A kind of shockproof good single building
CN204877845U (en) Compressor stabilizer blade and compressor
CN218534487U (en) Reinforced protection type framework structure for tool box

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20190301

Termination date: 20190714