CN206206789U - Pin-and-hole connector, shock-resistant slant bar assembly and antidetonation suspension bracket for monoclonal antibody shake brace - Google Patents

Pin-and-hole connector, shock-resistant slant bar assembly and antidetonation suspension bracket for monoclonal antibody shake brace Download PDF

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Publication number
CN206206789U
CN206206789U CN201621060269.XU CN201621060269U CN206206789U CN 206206789 U CN206206789 U CN 206206789U CN 201621060269 U CN201621060269 U CN 201621060269U CN 206206789 U CN206206789 U CN 206206789U
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China
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pin
hole
hem
connector
brace
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CN201621060269.XU
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Chinese (zh)
Inventor
林其略
熊建文
刘骞
李�杰
熊晨
卫丽
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China Sinogy Electric Engineering Co Ltd
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China Sinogy Electric Engineering Co Ltd
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Abstract

The utility model discloses the pin-and-hole connector for monoclonal antibody shake brace, shock-resistant slant bar assembly and antidetonation suspension bracket.Described pin-and-hole connector includes the first hem, connecting portion and the second hem;First hem is connected by connecting portion with the second hem one, and plane where the first hem forms angle α with plane where the second hem;First hem is provided with bolt hole, for being fixed with fixed structure;Second hem is provided with pin-and-hole, for being attached with antidetonation brace;It is β that pin-and-hole has by outward opening and cone-apex angle1First conical surface, and be β by outward opening and cone-apex angle2Second conical surface, and the pin-and-hole also has and is located at transition face between first conical surface and second conical surface.Pin-and-hole connector of the present utility model, simple structure is easy for installation, and more than 30%, and low production cost are improved than conventional attachments intensity.

Description

Pin-and-hole connector, shock-resistant slant bar assembly and antidetonation suspension bracket for monoclonal antibody shake brace
Technical field
The utility model is related to building and seismic resistance field, more particularly to the seismic support for building electromechanical engineering facility Universal component, more particularly relate to the monoclonal antibody shake pin-and-hole connector of brace, shock-resistant slant bar assembly and antidetonation suspension bracket.
Background technology
In order to defend and earthquake disaster mitigation, people's life and property safety are protected, promote the sustainable development of economic society Exhibition,《People's Republic of China's protection against and mitigation of earthquake disasters method》Regulation:Protection against and mitigation of earthquake disasters work, effect prevention based on, defence be combined with relief Policy;Designing unit should carry out Aseismic Design according to requirements for fortification against earthquake and engineering construction mandatory standard, and to antidetonation The accuracy of the quality of design and the Shop Drawing Design Document IT Application provided is responsible for.
《Building electromechanical engineering earthquake resistant design code》Middle regulation seismic fortification intensity is 6 degree and more than the 6 degree buildings in area Electromechanical engineering (including water supply and drainage, heating, ventilation, air-conditioning, combustion gas, heating power, electric power, communication, fire-fighting etc.) must carry out antidetonation Design.
At present, there are considerable part pipeline, air channel and cable testing bridge system in domestic industry, architectural engineering some do not have antidetonation Facility.Although employing antidetonation suspension and support in some engineerings, many weak points are still suffered from, including:Modular construction compared with Complexity, installs inconvenient;The intensity of antidetonation suspension and support (or being antidetonation suspension bracket) some parts is relatively low;The structure of antidetonation suspension and support It is unreasonable, cause anti-seismic performance unsatisfactory etc..
By taking connector as an example, the connector being connected with brace general at present includes that hinge connector and antidetonation seat are connected Part.However, described hinge connector often has 90 ° of parts of distortion, therefore cause the machinery at twist part or distortion strong Degree is relatively low, and the intensity of link portions is relatively low in addition, it is difficult to reach gratifying anti seismic efficiency.
In sum, this area is in the urgent need to developing a kind of simple structure, easy for installation and with the use of excellent shock resistance In the connector of antidetonation suspension bracket.
The content of the invention
The purpose of this utility model be to provide a kind of simple structure, it is easy for installation and with excellent shock resistance for antidetonation The connector of suspension bracket.
In first aspect of the present utility model, there is provided a kind of pin-and-hole connector that brace is shaken for monoclonal antibody, the pin-and-hole Connector includes the first hem, connecting portion and the second hem, and described the first hem, connecting portion and the second flanging Portion is one;
Wherein described first hem is connected by the connecting portion with second hem, and first flanging Plane where portion forms angle α with plane where second hem;
Described pin-and-hole connector is provided with the first first type surface and the second first type surface;
First hem is provided with bolt hole, and the bolt hole is used to be fixed with fixed structure;
Second hem is provided with pin-and-hole, and described pin-and-hole is used to be attached with the bearing pin of an antidetonation brace;
And the pin-and-hole is β by outward opening and cone-apex angle1First conical surface be connected with first surface, and lead to Cross outward opening and cone-apex angle is β2Second conical surface be connected with second surface, and the pin-and-hole also has and optional is located at Transition face between first conical surface and second conical surface;
Described α meets:110°≤α≤155°;
Described β1Meet:4°≤β1≤30°;And
Described β2Meet:4°≤β2≤30°。
In another preference, described fixed structure is selected from the group:Metope, suspension and support, crane span structure, pipe portion structure or its group Close.
In another preference, described fixed structure does not include antidetonation brace.
In another preference, described fixed structure includes antidetonation brace.
In another preference, described the first first type surface and the second first type surface is parallel or substantially parallel.
In another preference, the first first type surface and the second first type surface at the first described hem are parallel;
The first first type surface and the second first type surface at second hem are parallel;
The described first type surface of connecting portion first and the second first type surface be bending (i.e. only or substantially closely in a dimension On bent), but be not distortion (bent in a dimension (such as X-Y plane in z-direction), not any dimension Rotated on degree).
In another preference, the described conical point of first conical surface and/or the conical point of second conical surface is located at the pin On the central shaft in hole.
In another preference, the described conical point of first conical surface and the conical point of second conical surface is located at the pin-and-hole (overlap or essentially coincide with the central shaft of pin-and-hole) on central shaft.
In another preference, the first described conical surface and the shapes and sizes of second conical surface are identicals.
In another preference, in the pin-and-hole connector, the thickness H1 of the first hem, the thickness HL of connecting portion and The thickness H2 of the second hem the ratio between is for 0.8-1.2:0.8-1.2:0.8-1.2.
In another preference, described thickness H1, HL and H2 is average thickness.
In another preference, the thickness H1 of the first hem, the thickness HL of connecting portion and the thickness in the second hem The ratio between H2 is 0.9-1.1:0.9-1.1:0.9-1.1;Preferably the thickness H1 of the first hem, the thickness HL of connecting portion and The ratio between thickness H2 of two hems is 0.95-1.05:0.95-1.05:0.95-1.05;More preferably 1:1:1.
In another preference, along the central shaft of the pin-and-hole, the height of first conical surface is d1, second conical surface Height be d2, the height of the transition face is d3, then d1+d2+d3Sum is equal with the thickness of the second hem;And
d1/d2The ratio between be 0.8~1.2;And/or (d1+d2)/(d1+d2+d3) the ratio between be 0.8~1.
In another preference, the height d of the transition face3It is 0-10mm, preferably 0-5mm, more preferably 0-3mm.
In another preference, the angle α, cone-apex angle β1And β2Independently of one another:
Described α meets:115°≤α≤150°;More preferably, 120 °≤α≤145 °;Most preferably 135 °;
Described β1Meet:6°≤β1≤25°;More preferably 8 °≤β1≤20°;Most preferably 10 °;
Described β2Meet:6°≤β2≤25°;More preferably 8 °≤β2≤20°;Most preferably 10 °.
In another preference, minimum diameter (i.e. the diameter at the most narrow place of pin-and-hole) Z2min of pin-and-hole is 10-72mm.
In another preference, Z2min is 13-52mm, more preferably 17-31mm.
In another preference, the structure of described bolt hole is different from pin-and-hole.
In another preference, the structure of described bolt hole is identical with pin-and-hole.
In another preference, minimum diameter (i.e. the diameter at the most narrow place of bolt hole) Z1min of described bolt hole is 9- 70mm。
In another preference, Z1min is 11-45mm, more preferably 13.5-30mm.
In another preference, the bolt hole is cylindrical bolt hole, wherein the side in described cylindrical bolt hole Or both sides are optionally provided with the fastening step being engaged with packing ring or bolt.
In another preference, the height of described fastening step is 0.2-3mm, preferably 0.4-2mm.
In another preference, in described pin-and-hole connector, one end away from described connecting portion of the first hem It is first end;The bolt hole outside is to the first end apart from d5It is 5-100mm, preferably 8-50mm, more preferably 10-30mm;
And/or second hem the one end away from described connecting portion be second end;The pin-and-hole outside is described in Second end apart from d6It is 5-100mm, preferably 8-50mm, more preferably 10-30mm.
In another preference, the described angle α is 135 °;Described β1It is 10 °;With described β2It is 10 °;
The minimum diameter Z2min of described pin-and-hole is 17-31mm;
The minimum diameter Z1min of described bolt hole is 13.5-30mm;And
The thickness H1 of the first hem, the thickness HL of connecting portion and the thickness H2 in the second hem are 8-20mm.
In another preference, the circular conical surface on the pin-and-hole both sides includes the circular conical surface or approximate circular conical surface of standard.
In another preference, what first conical surface and second conical surface of the pin-and-hole were mutually symmetrical with.(i.e. with the connection The central plane (parallel with first surface and second surface, and by the plane at the connector center) of part is symmetrical).
In another preference, the pin-and-hole connector is tabular steelwork.
In another preference, the pin-and-hole connector is connected to antidetonation pipe clamp by Assembly of pin.
In another preference, described antidetonation pipe clamp is porous pipe clamp.
In first aspect of the present utility model, there is provided a kind of shock-resistant slant bar assembly, the component includes (a) as described above The pin-and-hole connector that brace is shaken for monoclonal antibody, and (b) antidetonation brace, the one or both ends of the antidetonation brace are provided with pin Axle, the bearing pin can be connected and fixed on or be connected and fixed on the pin-and-hole of the pin-and-hole connector.
In another preference, wherein, described bearing pin dimensionally matches with the pin-and-hole of the pin-and-hole connector 's.
In first aspect of the present utility model, there is provided a kind of antidetonation suspension bracket, the antidetonation suspension bracket includes antidetonation brace, anchor Firmware and the pin-and-hole connector for being used for monoclonal antibody shake brace as described above, wherein described pin-and-hole connector and the shock-resistant slant Bar is connected by the pin-and-hole in " bearing pin-pin-and-hole " mode.
In another preference, described antidetonation suspension bracket also includes reinforcing suspension rod.
It should be understood that in the range of the utility model, above-mentioned each technical characteristic of the present utility model and below (as implemented Example) in specifically describe each technical characteristic between can be combined with each other, so as to constitute new or preferred technical scheme.It is limited to Length, no longer tires out state herein one by one.
Brief description of the drawings
Fig. 1 is the front view of the pin-and-hole connector in one example of the utility model;
Fig. 2 is the left view of the pin-and-hole connector in one example of the utility model;
Fig. 3 is the right view of the pin-and-hole connector in one example of the utility model;
Fig. 4 is the top view of the pin-and-hole connector in one example of the utility model;
Fig. 5 is the connection diagram of pin-and-hole connector in another embodiment of the utility model.
C002:The pin-and-hole connector of brace is shaken for monoclonal antibody;
K001:First hem;
K002:Second hem
K010:Connecting portion;
K011:Bolt hole;
K013:Pin-and-hole;
K031:First conical surface of pin-and-hole;
K032:Second conical surface of pin-and-hole;
K033:The transition face of pin-and-hole;
K024:The fastening step of bolt hole;
K025:The transition face of bolt hole;
C600:Antidetonation brace;
C800:Bolt;
C400:Bearing pin;
C900:Porous pipe clamp (such as universal vibration-resistant pipe clamp).
Specific embodiment
The present inventor, by a large amount of screenings and optimization, develops a nested structure new first by in-depth study extensively The part and component of antidetonation suspension bracket clever, suitable for building electromechanical engineering facility and every profession and trade process pipe, and use institute State the antidetonation hanger structure of part and/or component.Part and/or component for antidetonation suspension bracket of the present utility model includes structure Unique connector, Liang Jia, pipe clamp, adjustable rod sub-assembly etc..By the part for antidetonation suspension bracket of the present utility model and/or Component, can be easily assembled into shock strength significantly improve, light structure, safe and reliable all kinds of antidetonation suspension brackets.In this base The utility model is completed on plinth.
Specifically, for connector, connector of the present utility model includes (but being not limited to):Brace is shaken for monoclonal antibody Keyhole connector, for monoclonal antibody shake brace pin-and-hole connector, for one side it is dual anti-shake brace pin-and-hole connector, for double The keyhole connector of side monoclonal antibody shake brace, the pin-and-hole connector for bilateral monoclonal antibody shake brace, for the dual anti-shake brace of bilateral Pin-and-hole connector, connector, pin-and-hole connector, bearing pin connector etc. for the dual anti-shake brace in longitudinal direction.
Term
As used herein, term " antidetonation suspension bracket ", " antidetonation suspension and support " are used interchangeably, and refer to and electromechanical equipment and pipeline are entered The important earthquake resistant construction of row effectively protection, it constitutes and is made up of anchoring body, reinforcing suspension rod, antidetonation connecting elements and antidetonation diagonal brace.
As used herein, term " antidetonation diagonal brace (bracing component) ", " antidetonation brace ", " brace ", " diagonal brace " It is used interchangeably, refers in antidetonation suspension bracket, geological process power (predominantly horizontal applied force) is passed to the oblique branch of building structure Support part part.It should be understood that described antidetonation diagonal brace includes rigid support and flexible support, especially rigid support.
As used herein, term " keyhole ", " bolt hole " are used interchangeably, and refer to the through hole being attached with bolt.
As used herein, term " pin-and-hole ", " pin shaft hole " are used interchangeably, and refer to the through hole being attached with bearing pin.
It should be noted that in the claim and specification of this patent, such as first and second or the like relation Term is used merely to make a distinction an entity or operation with another entity or operation, and not necessarily requires or imply There is any this actual relation or order between these entities or operation.And, term " including ", "comprising" or its Any other variant is intended to including for nonexcludability so that process, method, article including a series of key elements or Equipment not only includes those key elements, but also other key elements including being not expressly set out, or also include for this process, Method, article or the intrinsic key element of equipment.In the absence of more restrictions, by wanting that sentence " including " is limited Element, it is not excluded that also there is other identical element in the process including the key element, method, article or equipment.
Pin-and-hole connector
The utility model provides a kind of pin-and-hole connector that brace is shaken for monoclonal antibody.
As used herein, " pin-and-hole connector of the present utility model " is with " pin-and-hole of monoclonal antibody shake brace of the present utility model connects Fitting " is used interchangeably, refer to it is being attached by " bearing pin-pin-and-hole " mode for antidetonation brace, with special pin-and-hole structure Connector.
Preferred embodiment of the present utility model is described in detail below with reference to accompanying drawing, to become apparent from understanding this hair Bright objects, features and advantages.It should be understood that embodiment shown in the drawings is not the limitation to the utility model scope, And simply to illustrate that the connotation of technical solutions of the utility model.
Referring to Fig. 1-Fig. 4, the pin-and-hole connection for monoclonal antibody shake brace in one example of the utility model is illustrated therein is Part.
Pin-and-hole connector C002 of the present utility model includes the first hem K001, connecting portion K010 and the second hem K002, and described the first hem K001, connecting portion K010 and the second hem K002 are one or integrally formed.
In the utility model, the first hem K001 passes through the connecting portion K010 and second hem K002 is connected, and plane where the first hem K001 forms angle α with plane where the second hem K002.
Described pin-and-hole connector C002 is provided with the first first type surface (such as upper surface) and the second first type surface (such as lower surface).
The first hem K001 is provided with bolt hole K011, the bolt hole K011 for being consolidated with fixed structure It is fixed;And the second hem K002 is provided with pin-and-hole K013, described pin-and-hole K013 is used to be attached with antidetonation brace.
Additionally, the pin-and-hole K013 is β by outward opening and cone-apex angle1The first conical surface K031 and the first first type surface phase Connection, and be β by outward opening and cone-apex angle2The second conical surface K032 be connected with the second first type surface, and the pin Hole K013 also has the optional transition face K033 between the first conical surface K031 and the second conical surface K032.
Although it should be understood that in pin-and-hole connector shown in figures 1-4, described α is 135 °, and β1And β210 ° are, However, usual α, β1And β2These angles can be changed within the specific limits.For example, in the utility model, these angles Generally meet following condition:
Described α meets:110°≤α≤155°;
Described β1Meet:4°≤β1≤30°;And
Described β2Meet:4°≤β2≤30°。
It is preferred that α meets:115°≤α≤150°;More preferably 120 °≤α≤145 °;Most preferably about 135 ° ± 1 °.
It is preferred that β1Meet:6°≤β1≤25°;More preferably 8 °≤β1≤20°;Most preferably about 10 ° ± 1 °;
It is preferred that β2Meet:6°≤β2≤25°;More preferably 8 °≤β2≤20°;Most preferably about 10 ° ± 1 °.
Wherein, if first and second conical surfaces (and corresponding β1And β2Angle), pin-and-hole connector of the present utility model The pin-and-hole K013 of C002 preferably coordinates with shock-resistant slant lever pin axle, and preferably adaptation is provided during installation process and antidetonation Property and more preferable anti-seismic performance are (for example, be suitable for antidetonation brace certain angle (such as within angle ± 10 ° or within ± 5 °) Adjustment.
Additionally, described pin-and-hole connector C002 is by the change (such as 125 °~145 ° of changes) of angle α and pin-and-hole K013 allows the adjustment of such as ± 5 ° of the vertical angle of antidetonation brace, can allow scope of the antidetonation brace vertical angle at 30 ° to 60 ° Interior variation.
It should be understood that the thickness of the utility model pin-and-hole connector is not particularly limited, can be according to needed for antidetonation suspension bracket It is required that being determined.Representational thickness is 5-40mm, preferably 8-20mm, more preferably 10-15mm.
It should be understood that the material of the utility model pin-and-hole connector is not particularly limited, can be with excellent mechanical strength Material, such as steel, alloy etc..
Further, since pin-and-hole connector of the present utility model is the board-like steelwork of integral type, therefore not only structure simplifies, and And the distortion between two planes of the first hem and the second hem is avoided, so as to improve the connection of the utility model pin-and-hole The intensity of part.Further, since distorted-structure is avoided, therefore the thickness of the utility model pin-and-hole connector is not particularly limited, The connector of required thickness (especially thicker degree) can be prepared into, so as to further improve the intensity of the connector.Again Due to the ad hoc structure of pin-and-hole, cause the utility model connector to be not only fixedly secured, and provided in antidetonation certain Flexibility ratio, so as to help further to improve anti-seismic performance.
In a preference, for antidetonation brace pin-and-hole connector be bending form an angle (1Tabular steel Part.Its hem has a bolt hole, for suspension and support or cable testing bridge bolt connection;Its hem has There is the pin-and-hole that cone-apex angle is 10 ° on one both sides, is connected with shock-resistant slant lever pin axle.
Using pin-and-hole connector of the present utility model, can not only be well adapted under different spatial restrictive condition Brace connection, and can easily meet《Building electromechanical engineering earthquake resistant design code》Installation requirement, i.e., it is " lateral, vertical Installed to the diagonal brace of antidetonation suspension and support, vertical angle is preferably 45 °, and cannot be less than 30 ° ".
Shock-resistant slant bar assembly
The utility model additionally provides a kind of shock-resistant slant bar assembly, and it includes:(a) above-mentioned pin that brace is shaken for monoclonal antibody Hole connector, and (b) antidetonation brace.
It is not particularly limited suitable for antidetonation brace of the present utility model, as long as its one end or two ends are provided with bolt.Antidetonation Brace is divided into flexible anti-shock brace and rigid two kinds of antidetonation brace, and the utility model is primarily adapted for use in rigid antidetonation brace.
Representational antidetonation brace includes c-type, U-shaped and L-type channel-section steel or other any conventional braces.
In invention, when the one or both ends of antidetonation brace are provided with bearing pin, then pin-and-hole connector of the present utility model The size of pin-and-hole matches with the bearing pin size of the brace, so that the bearing pin can be connected and fixed on Or it has been connected and fixed on the pin-and-hole of the pin-and-hole connector.
Antidetonation suspension bracket
The utility model additionally provides a kind of antidetonation suspension bracket, and it be used to build the seismic support of electromechanical engineering facility.This The antidetonation suspension bracket of utility model includes:Anchoring piece, optional reinforcing suspension rod, antidetonation brace and above-described for monoclonal antibody The pin-and-hole connector of brace is shaken, wherein described pin-and-hole connector passes through the pin-and-hole with " bearing pin-pin with the antidetonation brace Hole " mode is connected.
In the utility model, a kind of typical part as anchoring piece is expansion bolt assembly.The expansion bolt Component can be fixed on the fixed structure for treating grappling.Representational fixed structure includes (but being not limited to):Building top Face, side of buildings, reinforced beam (including top surface or side), girder steel (including bottom surface or side).
In the utility model, the antidetonation hanger structure may also include reinforcing suspension rod.
In the utility model, the antidetonation hanger structure is except can be containing in addition to expansion bolt assembly, also including other Extra antidetonation suspension bracket part and the extra part for other electromechanical engineering facilities such as fixed -piping, such as pipe clamp, Liang Jia Deng.
Installation method
It is because pin-and-hole connector of the present utility model has structure special construction therefore very convenient when mounted.
In the utility model, described pin-and-hole connector, on the one hand by bolt hole and suspension and support or cable testing bridge spiral shell Bolt etc. is connected, and on the other hand, is connected that (connected mode is " bearing pin-pin-and-hole " company with antidetonation brace by pin-and-hole Connect mode).
In the utility model, the definite sequence of bolt hole and pin-and-hole is not particularly limited, and can first pass through bolt hole and enter Row is fixed, and is then fixed by pin-and-hole again;Or first pass through pin-and-hole and be fixed, then it is fixed by bolt hole again.
By taking Fig. 5 as an example, when mounted, can first with bolt C800 by the universal vibration-resistant pipe clamp C900 of pipe portion structure with this The bolt hole of the pin-and-hole connector C002 of utility model carries out bolt and fixes, then, by the bearing pin C400 with antidetonation brace C600 Pin-and-hole through the utility model pin-and-hole connector is attached, so as to antidetonation brace C600 is connected into the pin-and-hole connection Part.
Additionally, pin-and-hole connector of the present utility model is connected to other structures part, such as antidetonation pipe clamp, cable by bearing pin On crane span structure, cross-arm suspension bracket.
Major advantage of the present utility model includes:
A () pin-and-hole connector of the present utility model, simple structure is easy for installation,
(b) pin-and-hole connector of the present utility model than conventional attachments (hinge type connector) not only intensity improve 30% with On, and low production cost;
C () pin-and-hole connector for antidetonation brace of the present utility model, can be logical as one kind basis of antidetonation suspension and support With part, suitable for a variety of industry and the anti-seismic structure of the pipeline, air channel and cable testing bridge of building.
With reference to specific embodiment, the utility model is expanded on further.It should be understood that these embodiments are merely to illustrate this Utility model rather than limitation scope of the present utility model.The experimental technique of unreceipted actual conditions in the following example, leads to Often according to normal condition, or according to the condition proposed by manufacturer.
Embodiment 1
Fig. 1-4 shows embodiment of the present utility model 1.In the present embodiment, pin-and-hole connector C002 is to be bent into necessarily The tabular steelwork of angle α.Pin-and-hole connector C002 of the present utility model includes the first hem K001, connecting portion K010 and the Two hem K002, and the first hem K001, connecting portion K010 and the second hem K002 are one or integrally formed 's.First hem K001 is connected by connecting portion K010 with the second hem K002, and flat where the first hem K001 Face forms angle α with plane where the second hem K002, and angle α is 135 °.
Pin-and-hole connector C002 is provided with the first first type surface (such as upper surface) and the second first type surface (such as lower surface).First folding Edge K001 is provided with bolt hole K011, and the second hem K002 is provided with pin-and-hole K013, and pin-and-hole K013 by outward opening and Cone-apex angle β1The first conical surface K031 for 10 ° is connected with the first first type surface, and by outward opening and cone-apex angle β2It is 10 ° The second conical surface K032 be connected with the second first type surface, and the pin-and-hole K013 also have it is optional positioned at the first conical surface K031 And the second transition face K033 between conical surface K032.
The minimum diameter Z2min of pin-and-hole K013 is 17mm;The minimum diameter Z1min of bolt hole K011 is 20mm;And the The thickness H1 of one hem K001, the thickness HL of connecting portion K010 and the thickness H2 in the second hem K002 are 12mm.Edge The central shaft of the pin-and-hole K013, the height of the first conical surface K031 is d1It is d with the height of second conical surface K0322It is equal, institute The height for stating intermediate transition surface K033 is d3Be 0, then d1+d2+d3Sum is equal with the thickness of the second hem K002, is 12mm.
The height for fastening step is 2mm, and one end away from described connecting portion K010 of the first hem K001 is first End, bolt hole K011 central shafts to the first end are 20mm apart from d5;Second hem K002 away from described One end of connecting portion K010 is second end, and the pin-and-hole K013 outsides to the second end are 20mm apart from d6.
Embodiment 2
As shown in figure 5, a kind of typical connected mode of the present utility model, pin-and-hole connector C002 by bolt C800 with The universal vibration-resistant pipe clamp C900 connections of pipe portion structure, C002 pin-and-hole connectors C002 is by pin-and-hole and the bearing pin of antidetonation brace C600 C400 is connected in " bearing pin-pin-and-hole " mode.
Below preferred embodiment of the present utility model has been described in detail, it is understood that reading the utility model Above-mentioned instruction content after, those skilled in the art can make various changes or modifications to the utility model.These shapes of equal value Formula equally falls within the application appended claims limited range.

Claims (10)

1. it is a kind of for monoclonal antibody shake brace pin-and-hole connector, it is characterised in that the pin-and-hole connector include the first hem, Connecting portion and the second hem, and described the first hem, connecting portion and the second hem are one;
Wherein described first hem is connected by the connecting portion with second hem, and the first hem institute In plane angle α is formed with plane where second hem;
Described pin-and-hole connector is provided with the first first type surface and the second first type surface;
First hem is provided with bolt hole, and the bolt hole is used to be fixed with fixed structure;
Second hem is provided with pin-and-hole, and described pin-and-hole is used to be attached with the bearing pin of an antidetonation brace;
And the pin-and-hole is β by outward opening and cone-apex angle1First conical surface be connected with first surface, and by opening Mouth is outwards and cone-apex angle is β2Second conical surface be connected with second surface, and the pin-and-hole also have it is optional positioned at first Transition face between the conical surface and second conical surface;
Described α meets:110°≤α≤155°;
Described β1Meet:4°≤β1≤30°;And
Described β2Meet:4°≤β2≤30°。
2. pin-and-hole connector as claimed in claim 1, it is characterised in that in the pin-and-hole connector, the thickness of the first hem It is 0.8-1.2 that degree H1, the thickness HL of the connecting portion and thickness H2 in the second hem the ratio between are:0.8-1.2:0.8-1.2.
3. pin-and-hole connector as claimed in claim 1, it is characterised in that along the central shaft of the pin-and-hole, first conical surface Height be d1, the height of second conical surface is d2, the height of the transition face is d3, then d1+d2+d3Sum and the second flanging The thickness in portion is equal;And
d1/d2The ratio between be 0.8~1.2;And/or (d1+d2)/(d1+d2+d3) the ratio between be 0.8~1.
4. pin-and-hole connector as claimed in claim 1, it is characterised in that the angle α, cone-apex angle β1And β2Independently of one another:
Described α meets:115°≤α≤150°;
Described β1Meet:6°≤β1≤25°;
Described β2Meet:6°≤β2≤25°。
5. pin-and-hole connector as claimed in claim 1, it is characterised in that the minimum diameter Z2min of pin-and-hole is 10-72mm.
6. pin-and-hole connector as claimed in claim 1, it is characterised in that the structure of described bolt hole is different from pin-and-hole.
7. pin-and-hole connector as claimed in claim 1, it is characterised in that in described pin-and-hole connector, the first hem One end away from described connecting portion is first end;The bolt hole outside is to the first end apart from d5It is 5- 100mm;
And/or second hem the one end away from described connecting portion be second end;The pin-and-hole outside arrives described second End apart from d6It is 5-100mm.
8. pin-and-hole connector as claimed in claim 1, it is characterised in that the described angle α is 135 °;Described β1For 10°;With described β2It is 10 °;
The minimum diameter Z2min of described pin-and-hole is 17-31mm;
The minimum diameter Z1min of described bolt hole is 13.5-30mm;And
The thickness H1 of the first hem, the thickness HL of connecting portion and the thickness H2 in the second hem are 8-20mm.
9. a kind of shock-resistant slant bar assembly, it is characterised in that the component includes the use of (a) as described in any in claim 1-8 The pin-and-hole connector of brace, and (b) antidetonation brace are shaken in monoclonal antibody, the one or both ends of the antidetonation brace are provided with bearing pin, institute State the pin-and-hole that bearing pin can be connected and fixed on or be connected and fixed on the pin-and-hole connector.
10. a kind of antidetonation suspension bracket, it is characterised in that the antidetonation suspension bracket includes antidetonation brace, anchoring piece and claim 1-8 In any described pin-and-hole connector that brace is shaken for monoclonal antibody, wherein described pin-and-hole connector passes through with the antidetonation brace The pin-and-hole is connected in " bearing pin-pin-and-hole " mode.
CN201621060269.XU 2016-09-18 2016-09-18 Pin-and-hole connector, shock-resistant slant bar assembly and antidetonation suspension bracket for monoclonal antibody shake brace Active CN206206789U (en)

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CN201621060269.XU CN206206789U (en) 2016-09-18 2016-09-18 Pin-and-hole connector, shock-resistant slant bar assembly and antidetonation suspension bracket for monoclonal antibody shake brace

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Application Number Priority Date Filing Date Title
CN201621060269.XU CN206206789U (en) 2016-09-18 2016-09-18 Pin-and-hole connector, shock-resistant slant bar assembly and antidetonation suspension bracket for monoclonal antibody shake brace

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