CN216279764U - Pipe clamp with rotating structure - Google Patents

Pipe clamp with rotating structure Download PDF

Info

Publication number
CN216279764U
CN216279764U CN202122587598.7U CN202122587598U CN216279764U CN 216279764 U CN216279764 U CN 216279764U CN 202122587598 U CN202122587598 U CN 202122587598U CN 216279764 U CN216279764 U CN 216279764U
Authority
CN
China
Prior art keywords
clamping plate
end cover
pipe clamp
component
slot
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.)
Active
Application number
CN202122587598.7U
Other languages
Chinese (zh)
Inventor
宋金沛
胡福林
沈健
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.)
Zhejiang JYSS Bio Engineering Co Ltd
Original Assignee
Zhejiang JYSS Bio Engineering 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 Zhejiang JYSS Bio Engineering Co Ltd filed Critical Zhejiang JYSS Bio Engineering Co Ltd
Priority to CN202122587598.7U priority Critical patent/CN216279764U/en
Application granted granted Critical
Publication of CN216279764U publication Critical patent/CN216279764U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Abstract

The utility model discloses a pipe clamp with a rotating structure, which aims to solve the problem of easy looseness and noise generation in the prior art and comprises a first member, wherein a second member is hinged on the first member, the first member comprises a first clamping plate, the second member comprises a second clamping plate, the first clamping plate and the second clamping plate enclose a clamping area, the integral structure of the first clamping plate and the integral structure of the second clamping plate are in a straight shape, a first shaft hole is formed in the first member, a second shaft hole is formed in the second member, a rotating shaft penetrates through the first shaft hole and the second shaft hole, a first end cover, a second end cover and the first member are fixedly arranged on the rotating shaft, the second component is arranged between the first end cover and the second end cover, the first component is axially fixed on the rotating shaft by the first end cover and the second end cover, and the second component is also axially fixed on the rotating shaft by the first end cover and the second end cover.

Description

Pipe clamp with rotating structure
Technical Field
The utility model belongs to a flow velocity regulator, in particular to a pipe clamp with a rotating structure.
Background
A pipe clamp, also called flow rate regulator, is a device for regulating the size of the flow cross section of a pipe. Existing pipe clamps are commonly used in medical, biological, and other fields.
In the prior art, the pipe clamp is arranged on a pipeline, liquid or gas flows in the pipeline, the pipeline is made of a material with rich elasticity, and the pipe clamp can clamp or loosen the pipeline by controlling the pipe clamp, so that the effect of adjusting the flow section of the pipeline is achieved.
However, the prior art is not perfect, the structure of the prior pipe clamp is complex, the pipe clamp is not convenient to disassemble and assemble by a user, the assembly cost is improved, the connection is not firm enough, and the problems of looseness and noise are easily caused.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects and problems in the prior art, the utility model provides a pipe clamp with a rotating structure.
In order to achieve the purpose, the utility model adopts the following technical scheme:
a pipe clamp with a rotating structure comprises a first member, a second member and a rotating mechanism, wherein the first member is hinged with the second member;
the first component comprises a first clamping plate, the second component comprises a second clamping plate, the first clamping plate and the second clamping plate enclose a clamping area, and the integral structure of the first clamping plate and the integral structure of the second clamping plate are in a straight shape;
the first member is provided with a first shaft hole, the second member is provided with a second shaft hole, a rotating shaft penetrates through the first shaft hole and the second shaft hole, a first end cover and a second end cover are fixedly arranged on the rotating shaft, the first member and the second member are both arranged between the first end cover and the second end cover, the first end cover and the second end cover axially fix the first member on the rotating shaft, and the first end cover and the second end cover axially fix the second member on the rotating shaft.
Preferably, the number of the elastic bolts is at least two, and two or more elastic bolts surround a circular area.
Preferably, the number of the buckles on any one elastic bolt is at least two, and two or more buckles on the elastic bolt are sequentially arranged in the length direction of the elastic bolt.
Preferably, the whole structure of the clamping groove is annular.
Preferably, a guide inclined plane is formed on the buckle, and the guide inclined plane is used for facilitating the insertion of the buckle in the slot.
Preferably, the first member includes a first joint, the second member includes a second joint, the first shaft hole is provided in the first joint, and the second shaft hole is provided in the second joint.
Preferably, the first joint is a pair, the second joint is disposed between the pair of first joints, and the pair of first joints axially fix the second joint to the first shaft hole.
Preferably, the first clamping plate is provided with first outer chamfers at two sides of the first clamping plate, and the second clamping plate is provided with second outer chamfers at two sides of the second clamping plate.
Preferably, the first member further comprises a pawl and a resilient arm, the second member further comprises a ratchet bar, the resilient arm forces the pawl to engage the ratchet bar, and the pawl, the ratchet bar and the resilient arm form a ratchet mechanism for blocking the first jaw from opening on the second jaw.
Compared with the prior art, the utility model has the outstanding and beneficial technical effects that:
(1) according to the pipe clamp with the rotating structure, the bolt is inserted into the slot, the buckle is inserted into the clamping groove, so that the second end cover is fixedly arranged on the rotating shaft, the second end cover is assembled on the rotating shaft without tools, and the assembly can be completed only by inserting the bolt into the slot, so that the pipe clamp with the rotating structure has the advantages of being simple in structure and convenient to assemble.
(2) According to the pipe clamp with the rotating structure, the bolt is inserted into the slot, the buckle is inserted into the clamping groove, so that the second end cover is fixedly arranged on the rotating shaft, the second end cover is assembled on the rotating shaft without tools, and the assembly can be completed only by inserting the bolt into the slot, so that the pipe clamp with the rotating structure has the advantages of being simple in structure and convenient to assemble.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic view showing the structure of the binding band of the present invention inserted into the first and second threading holes;
FIG. 3 is a schematic illustration of an explosive structure of the present invention;
FIG. 4 is a schematic cross-sectional view of a rotating shaft according to the present invention;
fig. 5 is a schematic structural view of the end cap of the present invention.
In the figure: 1-first component, 2-second component, 3-rotating shaft, 4-second end cover, 6-binding band, 11-first joint, 12-first clamping plate, 13-first handle, 14-pawl, 15-elastic arm, 16-power arm, 21-second joint, 22-second clamping plate, 23-second handle, 24-ratchet bar, 31-first end cover, 32-slot, 33-slot, 41-elastic bolt, 42-buckle, 111-first shaft hole, 121-first external chamfer, 131-first thread hole, 141-first ratchet, 151-bending part, 161-arc surface, 211-second shaft hole, 221-second external chamfer, 231-second thread hole, 241-second ratchet, 421-guide ramp.
Detailed Description
To facilitate understanding of those skilled in the art, the present invention is further described below in conjunction with the accompanying drawings and the specific embodiments.
As shown in fig. 1 to 5, a pipe clamp with a rotating structure includes a first member 1 and a second member 2, and the first member 1 is hinged to the second member 2. If the first member 1 is rotated on the second member 2, the first member 1 can be folded or unfolded on the second member 2.
The first component 1 comprises a first clamping plate 12, the integral structure of the first clamping plate 12 is in a shape like a Chinese character 'yi', the second component 2 comprises a second clamping plate 22, the integral structure of the second clamping plate 22 is also in a shape like a Chinese character 'yi', and the first clamping plate 12 and the second clamping plate 22 enclose a clamping area.
Wherein a gripping area refers to an area for placing a tubular to be gripped. The pipe means a hose for transferring fluid. The fluid may be a liquid or a gas. The first clamp plate 12 and the second clamp plate 22 can clamp on both sides of a tubular, respectively, if the tubular to be clamped is placed in the clamping area. When the first member 1 is folded on the second member 2, both ends of the first clamping plate 12 are respectively arranged on both ends of the second clamping plate 22, and the whole structure of the clamping area is in a shape of a straight line. If the first clip 12 is lifted on the second clip 22 when the first member 1 is unfolded on the second member 2, the clamping area is gradually opened. In use, if the gripping area is gradually opened and the first and second jaws 12 and 22 are released from the tubular, the tubular can be removed from or placed into the gripping area, thereby facilitating the tightening and loosening of the tubular and the removal or placement of the tubular into the gripping area.
In practical use, the first clamping plate 12 is lifted on the second clamping plate 22, the pipe to be clamped is placed on the second clamping plate 22, the first clamping plate 12 is folded on the second clamping plate 22, the pipe can be arranged in the clamping area and clamped by the first clamping plate 12 and the second clamping plate 22, and if the first clamping plate 12 is closer to the second clamping plate 22, the clamping force of the first clamping plate 12 and the second clamping plate 22 on the pipe is larger, and the flow cross section of the pipe is smaller.
In particular, the first component 1 is made of plastic, as is the second component 2. The first component 1 is an integrated piece, the second component 2 is also an integrated piece, and the first component 1 and the second component 2 are both manufactured by adopting an integrated injection molding process.
The first member 1 comprises a pawl 14 and a resilient arm 15, the second member 2 comprises a ratchet bar 24, the resilient arm 15 forces the pawl 14 to engage the ratchet bar 24, and the pawl 14, the ratchet bar 24 and the resilient arm 15 form a ratchet mechanism for blocking the first clamping plate 12 from being opened on the second clamping plate 22.
Herein, the ratchet mechanism refers to a movement mechanism that prevents the first member 1 from rotating reversely on the second member 2 and allows the first member 1 to rotate only in one direction on the second member 2. The ratchet mechanism does not prevent the first jaw 12 from moving in a direction to fold over the second jaw 22, but does prevent the first jaw 12 from moving in a direction to open over the second jaw 22.
In practical use, the pipe to be clamped is placed in the clamping area, the first clamping plate 12 is driven to fold on the second clamping plate 22, the pipe can be clamped between the first clamping plate 12 and the second clamping plate 22, and the ratchet mechanism prevents the first clamping plate 12 from being lifted on the second clamping plate 22, and prevents the pipe from driving the first clamping plate 12 of the pipe clamp with the rotating structure to be lifted on the second clamping plate 22.
In the utility model, the ratchet mechanism has the function of reverse locking, a user only needs to push the first clamping plate 12 to be close to the second clamping plate 22, the clamping area between the first clamping plate 12 and the second clamping plate 22 can be reduced, the pipe fitting in the clamping area is clamped, and the flow area of the pipe fitting is reduced, if the user applies force to the power arm 16, the pawl 14 on the driving elastic arm 15 is separated from the ratchet rack 24, the first clamping plate 12 can be lifted on the second clamping plate 22, so that the flow area of the pipe fitting is increased, and the pipe fitting is conveniently taken out of the clamping area.
Specifically, the first clamping plate 12, the elastic arm 15 and the pawl 14 are integrally formed together, the elastic arm 15 is disposed on the outer side of the first clamping plate 12, and the pawl 14 is disposed on the outer end of the elastic arm 15. The ratchet bar 24 and the second member 2 are integrally formed together. The number of parts is reduced, and the cost is reduced.
Specifically, the pawl 14 is curved such that if the first member 1 is rotated on the second member 2, the pawl 14 can move on the ratchet bar 24 and the ratchet bar 24 can engage different positions on the pawl 14 such that the pawl 14 can remain engaged on the ratchet bar 24 at all times during the rotation of the first member 1 on the second member 2.
First and second outer chamfers 121 and 221 are formed on both sides of the first and second clamping plates 12 and 22, respectively.
If a pipe is to be placed in the gripping area, the first clamp plate 12 and the second clamp plate 22 are placed on either side of the pipe. The first clamping plate 12 sinks on the deformed pipe, and the first outer chamfer 121 plays a role in preventing the first clamping plate 12 from scratching the pipe, and also facilitates the sinking of the first clamping plate 12 on the deformed pipe. The second clamping plate 22 is also sunk on the deformed pipe, and the second outer chamfer 221 plays a role in preventing the second clamping plate 22 from scratching the pipe and also facilitates the sinking of the second clamping plate 22 on the deformed pipe.
The pawl 14 is provided with a first ratchet tooth 141, the ratchet bar 24 is provided with a second ratchet tooth 241, the cross section of the first ratchet tooth 141 and the cross section of the second ratchet tooth 241 are both triangular, so that the effect that the pawl 14 can slide on the ratchet bar 24 in one direction and can be locked in the opposite direction is achieved.
The number of the first ratchet teeth 141 is at least two, and two or more first ratchet teeth 141 are sequentially provided in the longitudinal direction of the ratchet 14. If the first pawl 14 moves on the ratchet bar 24, the ratchet bar 24 can be engaged on different positions of the pawl 14, thereby adjusting the tightness of the locking of the first member 1 and the second member 2 to the pipe.
The power arm 16 is fixedly disposed on the elastic arm 15, the power arm 16 is used for facilitating a user to drive the elastic arm 15 to generate elastic deformation, and if the elastic arm 15 generates elastic deformation, the pawl 14 can be separated from the ratchet bar 24, so that the first component 1 can freely rotate on the second component 2.
The elastic arm 15 includes a flexible portion 151, the elastic arm 15 is elastically deformable around the flexible portion 151, and the flexible portion 151, the power arm 16 and the pawl 14 are sequentially disposed on the elastic arm 15.
Here, the flexure 151 refers to a portion of the elastic arm 15 that can be bent. When the elastic arm 15 is stressed, the elastic arm 15 can elastically deform around the flexure 151. The flexible part 151, the power arm 16 and the pawl 14 are sequentially arranged on the elastic arm 15, so that a labor-consuming lever is formed, and the effect of saving distance is achieved.
In actual use, a user can press the power arm 16 to apply force to the elastic arm 15, and the elastic arm 15 under the force can be elastically deformed, so that the pawl 14 on the elastic arm 15 can be disengaged from the ratchet bar 24.
In the utility model, the flexible portion 151, the power arm 16 and the pawl 14 are sequentially arranged on the elastic arm 15 to form a labor-consuming lever, and the pawl 14 can be driven to move a larger distance only by moving a smaller distance according to the hand on the power arm 16, so that the effect of disengaging the pawl 14 from the ratchet bar 24 is achieved, therefore, the pipe clamp with the rotating structure has the advantages of saving the moving distance of the pawl 14, being reasonable in design and being convenient for improving the structure compactness.
Specifically, the power arm 16 is integrally formed on the elastic arm 15, and the power arm 16 and the pawl 14 are respectively provided on both sides of the elastic arm 15.
The power arm 16 is formed with an inwardly concave arc surface 161, and the arc surface 161 is adapted to fit the fingers of the user. Specifically, the power arm 16 has an arc-shaped plate body in the whole structure, and an arc-shaped surface 161 is arranged on the side surface of the power arm 16.
In actual use, the user's fingers may fit over the arcuate surface 161 to further facilitate the application of force to the power arm 16.
The first member 1 is hinged to the second member 2 by means of a hinge 3. First shaft hole 111 has been seted up on first component 1, second shaft hole 211 has been seted up on the second component 2, and first shaft hole 111 is worn to locate by pivot 3, and second shaft hole 211 is still worn to locate by pivot 3, and first component 1 can revolve pivot 3 and rotate. The rotating shaft 3 is fixedly provided with a first end cover 31 and a second end cover 4, the first member 1 is arranged between the first end cover 31 and the second end cover 4, the second member 2 is also arranged between the first end cover 31 and the second end cover 4, the first end cover 31 and the second end cover 4 axially fix the first member 1 on the rotating shaft 3, the first end cover 31 further axially fix the second member 2 on the rotating shaft 3, and axial shaking of the first member 1 and the second member 2 on the rotating shaft 3 is avoided.
Wherein the hinge structure is used to hinge the first member 1 and the second member 2 together. The hinge structure comprises a rotating shaft 3, a bolt 41, a first end cover 31 and a second end cover 4, wherein the rotating shaft 3, the first end cover 31 and the second end cover 4 are used for hinging the first member 1 and the second member 2 together.
In the present invention, the first member 1, the second member 2 and the second end cap 4 can be sequentially assembled on the rotating shaft 3, so that the first member 1 and the second member 2 are hinged together, and therefore the pipe clamp with the rotating structure has the advantages of convenient assembly and firm connection.
Specifically, the first end cap 31 is integrally formed on the rotating shaft 3, so that the number of parts is reduced, and the cost is reduced.
The rotating shaft 3 is provided with a slot 32, the second end cover 4 is provided with an elastic bolt 41, the elastic bolt 41 is inserted into the slot 32, the rotating shaft 3 is further provided with a clamping groove 33, the clamping groove 33 is arranged on the inner side wall of the slot 32, a buckle 42 is formed on the outer side wall of the elastic bolt 41, the buckle 42 is inserted into the clamping groove 33, the elastic bolt 41 forces the buckle 42 to be inserted into the clamping groove 33, and therefore the elastic bolt 41 is positioned in the slot 32.
The elastic plug 41 is a plug that can be elastically deformed. If the elastic plug 41 is inserted into the slot 32, the elastic plug 41 is elastically deformed, and the elastic plug 41 exerts an elastic force on the rotating shaft 3, so that the catch 42 of the elastic plug 41 is kept inserted into the slot 33. The elastic bolt 41 is made of a material with high elasticity, for example, the elastic bolt 41 is made of polyethylene.
In the utility model, the bolt is inserted into the slot 32, and the buckle 42 is inserted into the slot 33, so that the second end cap 4 is fixedly arranged on the rotating shaft 3, and the second end cap 4 is assembled on the rotating shaft 3 without using tools, and the assembly can be completed only by inserting the bolt into the slot 32, therefore, the pipe clamp with the rotating structure has the advantages of simple structure and convenient assembly.
The number of the elastic bolts 41 is at least two, two or more elastic bolts 41 are arranged on the second end cover 4 in a circumferential arrangement mode, the two or more elastic bolts 41 surround a circular area, the cross section of the circular area is circular, and the cross section of the slot 32 is also circular.
Wherein, two or more than two elasticity bolts 41 are inserted and are established in same slot 32, two or more than two elasticity bolts 41 and bolt looks adaptation to all-round butt is on the inside wall of slot 32, avoids elasticity bolt 41 to take place the problem of rocking in slot 32, has also further improved the cooperation fastness of buckle 42 and draw-in groove 33.
The whole structure of the clamping groove 33 is annular, the clamping groove 33 surrounds the inner side wall of the slot 32, and the buckles 4242 on two or more elastic bolts 41 can be inserted into the same clamping groove 33, so that the matching firmness of the buckles 42 and the clamping groove 33 is improved.
At least two buckles 42 are arranged on any one elastic bolt 41, and two or more buckles 42 on the elastic bolt 41 are sequentially arranged in the length direction of the elastic bolt 41.
When the latch 42 at different positions of the elastic latch 41 is inserted into the slot 33, the distance between the first end cap 31 and the second end cap 4 is changed, so that the position of the second end cap 4 on the rotating shaft 3 is adjustable. In practical use, if the distance between the first end cap 31 and the second end cap 4 is adjusted, the first member 1 and the second member 2 with dimensional deviation are fastened, and the first member 1 and the second member 2 with different specifications can be hinged together, so that the application range of the pipe clamp with the rotating structure is improved.
Specifically, there are at least two card slots 33, and two or more card slots 33 are sequentially arranged in the length direction of the slot 32. The buckles 42 can be inserted into two or more than two clamping grooves 33, so that the effect of multi-fastening is achieved, and the firmness of connection is improved.
The latch 42 is formed with a guiding inclined plane 421, and the guiding inclined plane 421 is used for facilitating the insertion of the latch 42 into the slot 32, so as to facilitate the assembly of the latch 42 into the slot 32.
The guiding inclined plane 421 refers to a plane having an acute angle with the length direction of the elastic latch 41. During the process that the elastic latch 41 is inserted into the slot 32, the guide inclined plane 421 abuts against the outer end of the slot 32, and the rotating shaft 3 forces the elastic latch 41 to be elastically deformed, so that the buckle 42 enters the slot 32.
The first member 1 further comprises a first joint 11, a first shaft hole 111 is formed in the first joint 11, the first joint 11 is arranged at one end of the first clamping plate 12, the second member 2 further comprises a second joint 21, a second shaft hole 211 is formed in the second joint 21, and the second joint 21 is arranged at one end of the second clamping plate 22.
The first joints 11 are a pair, the pair of first joints 11 are provided with first shaft holes 111, the second joint 21 is arranged between the pair of first joints 11, the pair of first joints 11 axially fix the second joint 21 on the first shaft holes 111, and the first member 1 and the second member 2 are positioned mutually.
The first member 1 further comprises a first handle 13, the first joint 11 and the first handle 13 are respectively arranged at two ends of the first clamping plate 12, the second member 2 further comprises a second handle 23, the second joint 21 and the second handle 23 are respectively arranged at two ends of the second clamping plate 22, the rotating shaft 3, the first clamping plate 12 and the first handle 13 are sequentially arranged on the first member 1, the rotating shaft 3, the second clamping plate 22 and the second handle 23 are sequentially arranged on the second member 2, the first handle 13 is provided with a first threading hole 131, and the second handle 23 is provided with a second threading hole 231.
Wherein the first handle 13 is used for being gripped by a user, and the second handle 23 is also used for being gripped by the user, and the user can grip the first handle 13 and the second handle 23 to drive the first member 1 to rotate on the second member 2. The first threading hole 131 and the second threading hole 231 are for the binding band 6 to pass through.
In practical use, the binding band 6 can be threaded through the first threading hole 131 and the second threading hole 231, the first threading hole 131 and the second threading hole 231 can position the binding band 6, the binding band 6 can tightly bind the first handle 13 and the second handle 23 together, and the first clamping plate 12 and the second clamping plate 22 can be locked.
In the present invention, the ratchet mechanism is used to prevent the first clamping plate 12 from being opened on the second clamping plate 22, the binding band 6 can be inserted into the first threading hole 131 and the second threading hole 231 and tie the first handle 13 and the second handle 23 together, and also plays a role of preventing the first clamping plate 12 from being opened on the second clamping plate 22, so as to achieve the effect of double clamping on the pipe in the clamping area, and the locking position of the pawl 14 on the ratchet bar 24 can be adjusted, and the length of the binding band 6 between the first handle 13 and the second handle 23 can be adjusted, therefore, the pipe clamp with the rotating structure has the advantages of simple structure, double locking and firm connection.
Specifically, if the first splint 12 is folded on the second splint 22, the first threading hole 131 is aligned with the second threading hole 231, and the straight line direction where the first threading hole 131 and the second threading hole 231 are located is located on the outer side of the power arm 16, so as to prevent the power arm 16 from interfering with the passage of the binding band 6 between the first threading hole 131 and the second threading hole 231.
Specifically, the first handle 13 has a plate-like structure, the first clamping plate 12 is disposed at one end of the first handle 13, the first threading hole 131 is disposed at the other end of the first handle 13, and the length direction of the first handle 13 is substantially identical to the length direction of the first clamping plate 12. The second handle 23 also has a plate-like overall structure, the second clamping plate 22 is disposed at one end of the second handle 23, the second threading hole 231 is disposed at the other end of the second handle 23, and the longitudinal direction of the second handle 23 is substantially identical to the longitudinal direction of the second clamping plate 22. If the first clamping plate 12 is folded on the second clamping plate 22, the first handle 13 and the second handle 23 are arranged in bilateral symmetry, so that a user can hold the first handle 13 and the second handle 23 together with one hand.
If bandage 6 wears to locate first through wires hole 131 and second through wires hole 231, bandage 6 is kept away from first splint 12 and second splint 22, has improved the arm of force size between bandage 6 and the pipe fitting, has further improved fastening effect.
When the first clamping plate 12 is folded on the second clamping plate 22, the pawl 14, the ratchet bar 24 and the elastic arm 15 are all arranged between the first handle 13 and the second handle 23, thereby improving the compactness of the structure.
When the power arm 16 is close to the first handle 13, the pawl 14 can disengage the ratchet bar 24. In practical use, the user can grasp the power arm 16 and the first handle 13 with one hand to drive the pawl 14 to disengage the ratchet bar 24, which further facilitates the use.
The first handle 13, the elastic arm 15 and the first clamping plate 12 form a strip-shaped area, and the strip-shaped area formed by the first handle 13, the elastic arm 15 and the first clamping plate 12 is used for enabling the elastic arm 15 to move.
The above embodiments are only preferred embodiments of the present invention, and the protection scope of the present invention is not limited thereby, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered by the protection scope of the utility model.

Claims (10)

1. A pipe clamp with a rotating structure is characterized by comprising a first member (1), wherein a second member (2) is hinged on the first member (1);
the first component (1) comprises a first clamping plate (12), the second component (2) comprises a second clamping plate (22), the first clamping plate (12) and the second clamping plate (22) enclose a clamping area, and the integral structure of the first clamping plate (12) and the integral structure of the second clamping plate (22) are in a straight shape;
first shaft hole (111) has been seted up on first component (1), second shaft hole (211) has been seted up on second component (2), wear to be equipped with pivot (3) in first shaft hole (111) and second shaft hole (211), fixed first end cover (31) and second end cover (4) are provided with on pivot (3), first component (1), second component (2) all set up between first end cover (31) and second end cover (4), first end cover (31) and second end cover (4) are with first component (1) axial fixity on pivot (3), first end cover (31) and second end cover (4) are still with second component (2) axial fixity on pivot (3).
2. The pipe clamp with the rotating structure according to claim 1, wherein the rotating shaft (3) is provided with a slot (32) and a slot (33), the slot (33) is disposed in the slot (32), the second end cap (4) is provided with an elastic bolt (41), the elastic bolt (41) is provided with a buckle (42), the elastic bolt (41) is inserted into the slot (32), and the elastic bolt (41) forces the buckle (42) to be inserted into the slot (33).
3. Pipe clamp with rotary structure according to claim 2, characterized in that the elastic latch (41) is at least two, two or more elastic latches (41) enclosing a circular area.
4. A pipe clamp with a rotary structure according to claim 2 or 3, characterized in that, the number of the snap hooks (42) on any one elastic bolt (41) is at least two, and two or more snap hooks (42) on the elastic bolt (41) are arranged in sequence in the length direction of the elastic bolt (41).
5. Pipe clamp with swivel construction according to claim 2, characterized in that the clamping groove (33) is ring-shaped in its entirety.
6. Pipe clamp with swivel structure according to claim 2 or 3 or 5, characterized in that the catch (42) is formed with a guiding slope (421), the guiding slope (421) being used to facilitate the catch (42) to be inserted into the slot (32).
7. A pipe clamp with a swivel structure according to claim 1, characterized in that the first member (1) comprises a first joint (11), the second member (2) comprises a second joint (21), the first shaft hole (111) opens in the first joint (11), and the second shaft hole (211) opens in the second joint (21).
8. A pipe clamp with a swivel structure according to claim 7, characterized in that the first joints (11) are a pair, the second joint (21) is arranged between the pair of first joints (11), and the pair of first joints (11) axially fix the second joint (21) on the first shaft hole (111).
9. Pipe clamp with swivel structure according to claim 1, characterized in that the first clamping plate (12) is formed with a first outer chamfer (121) on both sides of the first clamping plate (12) and a second outer chamfer (221) on both sides of the second clamping plate (22).
10. A pipe clamp with a rotary structure according to claim 1, characterized in that the first member (1) further comprises a pawl (14) and a resilient arm (15), the second member (2) further comprises a ratchet bar (24), the resilient arm (15) forces the pawl (14) to engage on the ratchet bar (24), the pawl (14), the ratchet bar (24) and the resilient arm (15) constitute a ratchet mechanism for hindering the first jaw (12) from opening on the second jaw (22).
CN202122587598.7U 2021-10-26 2021-10-26 Pipe clamp with rotating structure Active CN216279764U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122587598.7U CN216279764U (en) 2021-10-26 2021-10-26 Pipe clamp with rotating structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122587598.7U CN216279764U (en) 2021-10-26 2021-10-26 Pipe clamp with rotating structure

Publications (1)

Publication Number Publication Date
CN216279764U true CN216279764U (en) 2022-04-12

Family

ID=81073026

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122587598.7U Active CN216279764U (en) 2021-10-26 2021-10-26 Pipe clamp with rotating structure

Country Status (1)

Country Link
CN (1) CN216279764U (en)

Similar Documents

Publication Publication Date Title
US10859192B2 (en) Reusable clamp with latch release arm for connecting conduit sections and associated methods
US10273996B2 (en) Clamp for sanitary fitting
US6488664B1 (en) Easily releasable clamp
JP6466978B2 (en) Pipe fitting
US7216679B2 (en) Cable tie tool having modular tool head
US20140069904A1 (en) System and method for welding system cable management
JP3721380B1 (en) Joint connection clip, joint connection structure
JP2007519424A5 (en)
TW201708021A (en) Holder
CN216279764U (en) Pipe clamp with rotating structure
CN216200783U (en) Pipe clamp
CN216278800U (en) Pipe clamp with tightness adjusting structure
CN108468891B (en) Internal support type clamp, corresponding pipeline, pipeline connecting system and pipeline connecting method
EP0025440B1 (en) Strap wrenches
US2515484A (en) Hose clamp
CN216199556U (en) Pipe clamp with hinge structure
CN216201359U (en) Multiplexing clip with locking mechanical system
CN216278799U (en) Multiplexing clip with rotating structure
CN216279894U (en) Multiplexing clamp
TWM576943U (en) Adjustable pipe wrench
CN218220734U (en) Manual clamping device and injection pump
US6237446B1 (en) Wrench adapter assembly
CN215394945U (en) Clinical pipeline loosening device
CN217413823U (en) Anti-lost screwdriver of tool apron
KR200226270Y1 (en) hose connection clamp

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant