CN209304340U - Hose clamps rotating mechanism - Google Patents

Hose clamps rotating mechanism Download PDF

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Publication number
CN209304340U
CN209304340U CN201822089818.1U CN201822089818U CN209304340U CN 209304340 U CN209304340 U CN 209304340U CN 201822089818 U CN201822089818 U CN 201822089818U CN 209304340 U CN209304340 U CN 209304340U
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CN
China
Prior art keywords
shaft
hose
clamp
rotating mechanism
elastic component
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Active
Application number
CN201822089818.1U
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Chinese (zh)
Inventor
潘冰
�田宏
王群英
张富皇
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Chongqing Jinshan Medical Technology Research Institute Co Ltd
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Chongqing Jinshan Medical Appliance Co Ltd
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Priority to CN201822089818.1U priority Critical patent/CN209304340U/en
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Abstract

The utility model provides a kind of hose clamping rotating mechanism, belongs to field of mechanical technique.It solves the problems, such as that existing clamping device easily leads to hose deformation, is difficult to carry out rotary operation.This hose clamps rotating mechanism, including pedestal and the shaft being arranged in pedestal, there is the axis hole being coaxially disposed with shaft in shaft, the clamp with shaft coaxial arrangement is equipped in axis hole, it is equipped with the annular clamping structure just circumferentially clamped when clamp is axially away from hose movement in clamp, the driving structure for driving clamp to move always to the direction far from hose is equipped between shaft and clamp.The utility model has many advantages, such as good clamping effect, easy to operate, applied widely.

Description

Hose clamps rotating mechanism
Technical field
The utility model belongs to field of mechanical technique, is related to a kind of hose clamping rotating mechanism.
Background technique
With the development of medical instrument, the impedance-pH electrode catheter demand for esophageal pH monitoring is growing day by day, to resistance The production capacity demand of anti-pH electrode catheter is larger.During being processed to impedance-pH electrode catheter, need to being wound around Conducting wire on electrode catheter carries out stripping operation.The usual manner for currently carrying out depainting to enameled wire has chemical agent depainting, height Temperature barbecue depainting, blade sand paper external force scrape depainting etc..However it is directed to the enamel-cover that flexible, non-refractory tubing is externally wrapped with Line, the especially thin enameled wire such as hair, current mode such as blade sand paper there is scrape low efficiency, easily enameled wire scraped it is disconnected The problem of;When electrode catheter is not heatproof material, the insulated paint for managing outer coiling cannot be removed by the methods of high temperature;Pass through people There are inefficiency, at high cost for work depainting, and depainting dynamics and position can not be controlled, and the low and consistent property of qualification rate is poor.
For this purpose, a kind of painting stripping mechanism of enameled wire of the applicant's utility model, principle is to clamp the both ends of hose Firmly, it then drives hose to rotate around own central axis line by rotating device, while grinding device is set in the side of hose, pass through The grinding head of grinding device and the catheter contact of rotation can effectively remove the insulated paint of coiling outside pipe.In actual use, it sends out Now common clamping device (such as crocodile clip) easily leads to hose deformation, it is difficult to carry out rotary operation, while clamp not strongly solid, hose Easily loosen.
Utility model content
The purpose of this utility model is the presence of the above problem in view of the prior art, proposes a kind of the soft of good clamping effect Tube grip rotating mechanism.
The purpose of this utility model can be realized by the following technical scheme:
Hose clamps rotating mechanism, including pedestal and the shaft that is arranged in pedestal, has in the shaft and shaft The axis hole of coaxial arrangement, which is characterized in that the clamp with shaft coaxial arrangement is equipped in the axis hole, in the clamp Equipped with the annular clamping structure just circumferentially clamped when clamp is axially away from hose movement, it is equipped between the shaft and clamp Driving structure for driving clamp to move always to the direction far from hose.
When clamping hose, hose is extend into the annular clamping structure in clamp, makes to press from both sides under the action of driving structure Pipe is axial to the end motion far from hose, until annular clamping structure circumferential direction grip both hose.Shaft can be on the base along itself Central axes rotation can drive hose to rotate along central axes, to reach rotation when shaft rotation by annular clamping structure Purpose.When needing to unclamp, an opposite force is applied to clamp, the direction of the opposite force and driving structure are applied to power on clamp Contrary, the frictional force of annular clamping structure and hose reduces, and can extract hose out of clamp.
In above-mentioned hose clamping rotating mechanism, the annular clamping structure includes that several annular arrays are distributed in folder The distending valve close to hose one end is managed, is formed with holding holes between several distending valves, the distending valve is along clamp Axially extending, the head end of the distending valve has swelling portion, and the outside in the swelling portion has guiding surface, described is led by several The maximum outside diameter of the anchor ring constituted to inclined-plane is greater than the aperture of axis hole.
Distance of the guiding surface close to one end of hose to clamp central axes is greater than the guiding surface other end to clamp axis The distance of line, when the axial end motion to separate hose of clamp, each guiding surface is forced distending by the extruding of roller end Valve inwardly moves, and the aperture of holding holes gradually becomes smaller, and the hose protruded into holding holes is clamped.When needing to unclamp hose, An end motion of the clamp to hose is driven, each guiding surface is progressively smaller until disappearance, each distending by the extruding force of roller end Valve resets under own resilient effect, and the aperture of holding holes becomes larger, and can extract hose out of clamp.In actual use, may be used Setting distending valve be 3-6 piece, preferably 3.
In the above-mentioned hose clamping rotating mechanism, has on the inside of the head end of the shaft and cooperate with several guiding surfaces Internal conical surface, distance of the internal conical surface close to one end of hose to shaft central axes are greater than the other end of internal conical surface extremely The distance of shaft central axes.The internal conical surface of setting can increase the contact area of itself and guiding surface, thus increase distending valve with The contact area of hose, and then increasing friction force, while not will cause the extrusion deformation of hose, to the good clamping effect of hose.
In above-mentioned hose clamping rotating mechanism, there is the thimble being connected with clamp in the holding holes, it is described Thimble and holding holes are coaxially disposed, and it is in coniform needle point that the thimble has close to one end of hose.It is soft when what is accommodated When pipe is hollow tube or frangible tube, hose is inserted into holding holes, and needle point is pierced into hose and supports to hose swelling, to hose It plays a protective role.
In above-mentioned hose clamping rotating mechanism, the driving structure includes the radial limited post being arranged in clamp The elastic component in shaft is acted on head end, the tail end of the elastic component acts on limited post.When the tail end projecting shaft of clamp Kong Shi, limited post are located at clamp and stretch out on the part of axis hole, and elastic component is constantly in compressive state, and front end is resisted against shaft Tail end, tail end are resisted against on limited post.
In above-mentioned hose clamping rotating mechanism, there are two be symmetrical arranged and axially prolong along shaft for tool in the shaft The recessing groove stretched, one end of above-mentioned limited post are threaded through in one of recessing groove, and the other end is threaded through in another recessing groove, The elastic component is cylindrical in shape and is set in shaft, and the tail end of the elastic component is resisted against on limited post.The both ends of recessing groove Closing provides for the movement of limited post and allows bit space.
In above-mentioned hose clamping rotating mechanism, sliding block is arranged in the shaft, the tail end of the elastic component supports It leans against on the end face of sliding block, the sliding block is equipped with radial through-hole, and the limited post is threaded through in radial through-hole.By sliding block Be arranged to it is cylindric, and with shaft be coaxially disposed.Wherein, limited post is pin.
In above-mentioned hose clamping rotating mechanism, the elastic component is spring.
In above-mentioned hose clamping rotating mechanism, there is mounting portion one and mounting portion two on the pedestal, it is described It is equipped with bearing one in mounting portion one, is equipped with bearing two in the mounting portion two, the head end of the shaft is threaded through in bearing one, Its tail end is threaded through in bearing two, and above-mentioned sliding block is between mounting portion one and mounting portion two.Since shaft is straight-bar, Bearing one and bearing two are coaxially disposed.
In above-mentioned hose clamping rotating mechanism, the pad being resisted against on one inner ring of bearing is arranged in the shaft Piece, the front end of the elastic component are resisted against on the gasket.
In above-mentioned hose clamping rotating mechanism, the head end of the shaft has limiting block edge, the limiting block edge It is resisted against on the inner ring of bearing one.Using the elastic force of elastic component make sliding block, limited post and clamp to far from hose an end motion, Internal conical surface and several guiding surface CONTACT WITH FRICTIONs simultaneously can drive shaft to be axially moved, make shaft when clamp is axially moved On limiting block along abutting on the inner ring of bearing one, prevent shaft from falling off out of bearing one.When shaft or clamp or limited post When damage, it is conveniently replaceable.Convenient for replacing to elastic component, the spring of replaceable difference torque provides different elastic force, with full Foot clamps the hose of different tube diameters.
Compared with prior art, this hose clamping rotating mechanism has the advantage that
By replacement clamp and shaft, applicable plurality of specifications flexible hose clamping rotation is also suitable for solid tubes and sky The clamping of heart pipe rotates, applied widely;Clipping operation is simple and reliable, by sliding slider can fast clamp, pass through replacement bullet Property part adjustable holding dynamics, it is ensured that clamping rotation does not loosen, and the tubing of clamping is broken without deformation.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of embodiment one provided by the utility model.
Fig. 2 is the cross-sectional view of Fig. 1 provided by the utility model.
Fig. 3 is the perspective view of the explosion of embodiment one provided by the utility model.
Fig. 4 is the cross-sectional view of Fig. 3 provided by the utility model.
In figure, 1, pedestal;2, shaft;3, axis hole;4, clamp;5, distending valve;6, holding holes;7, swelling portion;8, guiding is oblique Face;9, internal conical surface;10, thimble;11, needle point;12, limited post;13, elastic component;14, recessing groove;15, sliding block;16, radial logical Hole;17, mounting portion one;18, mounting portion two;19, bearing one;20, bearing two;21, gasket;22, limiting block edge.
Specific embodiment
It is specific embodiment of the utility model and in conjunction with attached drawing below, the technical solution of the utility model is made further Description, but the utility model is not limited to these examples.
Embodiment one
Hose (pH electrode catheter) as shown in Figure 1 clamps rotating mechanism, including pedestal 1 and turn being arranged in pedestal 1 Axis 2, shaft 2 is interior to have the axis hole 3 being coaxially disposed with shaft 2, and the clamp 4 being coaxially disposed with shaft 2, folder are equipped in axis hole 3 It is equipped with the annular clamping structure just circumferentially clamped when clamp 4 is axially away from hose movement in pipe 4, is set between shaft 2 and clamp 4 There is the driving structure for driving clamp 4 to move always to the direction far from hose.When clamping hose, hose is extend into clamp In annular clamping structure in 4, make clamp 4 axial under the action of driving structure to the end motion far from hose, until ring Clevis locking structure circumferential direction grip both hose.Shaft 2 can rotate on pedestal 1 along own central axis line, when shaft 2 rotates, pass through ring Clevis locking structure can drive hose to rotate along central axes, to achieve the purpose that rotation.When needing to unclamp, one is applied to clamp 4 A opposite force, direction and the driving structure of the opposite force are applied to contrary, annular clamping structure and the hose of power on clamp 4 Frictional force reduce, hose can be extracted out of clamp 4.
As in Figure 2-4, annular clamping structure includes that several annular arrays are distributed in clamp 4 close to the distending of hose one end Valve 5 is formed with holding holes 6 between several distending valves 5, and distending valve 5 is axially extending along clamp 4, and the head end of distending valve 5 has swollen Tight portion 7, the outside in swelling portion 7 have guiding surface 8, and the maximum outside diameter for the anchor ring being made of several guiding surfaces 8 is greater than axis hole 3 Aperture.Distance of the guiding surface 8 close to one end of hose to 4 central axes of clamp is greater than 8 other end of guiding surface into clamp 4 The distance of axis, when the axial end motion to separate hose of clamp 4, each guiding surface 8 is forced by the extruding of 2 end of shaft Distending valve 5 inwardly moves, and the aperture of holding holes 6 gradually becomes smaller, the hose protruded into holding holes 6 is clamped.When needing to unclamp When hose, an end motion of the clamp 4 to hose is driven, each guiding surface 8 is progressively smaller until by the extruding force of 2 end of shaft to disappear It loses, each distending valve 5 resets under own resilient effect, and the aperture of holding holes 6 becomes larger, and can extract hose out of clamp 4.This reality It applies in example, distending valve 5 is 3.
As shown in figure 4, having the internal conical surface 9 cooperated with several guiding surfaces 8, internal conical surface 9 on the inside of the head end of shaft 2 Distance close to one end to 2 central axes of shaft of hose is greater than the other end of internal conical surface 9 to the distance of 2 central axes of shaft.If The internal conical surface 9 set can increase the contact area of itself and guiding surface 8, thus increase the contact area of distending valve 5 Yu hose, into And increasing friction force, while not will cause the extrusion deformation of hose, to the good clamping effect of hose.
As shown in Figure 2 and Figure 4, there is the thimble 10 being connected with clamp 4, thimble 10 is coaxially set with holding holes 6 in holding holes 6 It sets, it is in coniform needle point 11 that thimble 10 has close to one end of hose.When the hose accommodated is hollow tube or frangible tube When, hose is inserted into holding holes 6, and needle point 11 is pierced into hose and supports to hose swelling, is played a protective role to hose.
Driving structure includes the radial limited post 12 being arranged in clamp 4 and head end acts on the elastic component 13 in shaft 2, The tail end of the elastic component 13 acts on limited post 12.When the tail end of clamp 4 stretches out axis hole 3, limited post 12 is located at clamp 4 Stretch out on the part of axis hole 3, elastic component 13 is constantly in compressive state, and front end is resisted against the tail end of shaft 2, tail end against On limited post 12.
Specifically, as shown in figure 4, in shaft 2 tool there are two be symmetrical arranged and the recessing groove 14 axially extending along shaft 2, One end of limited post 12 is threaded through in one of recessing groove 14, and the other end is threaded through in another recessing groove 14, elastic component 13 It is cylindrical in shape and is set in shaft 2, the tail end of elastic component 13 is resisted against on limited post 12.Recessing groove 14 it is closed at both ends, be limited The movement offer of position column 12 allows bit space.
As shown in Fig. 2, being arranged with sliding block 15 in shaft 2, the tail end of elastic component 13 is resisted against on the end face of sliding block 15, sliding block 15 are equipped with radial through-hole 16, and limited post 12 is threaded through in radial through-hole 16.Sliding block 15 is arranged to it is cylindric, and with shaft 2 Coaxial arrangement.Wherein, limited post 12 is pin.
In the present embodiment, elastic component 13 is spring.
As shown in figure 3, having mounting portion 1 and mounting portion 2 18 on pedestal 1, bearing 1 is equipped in mounting portion 1, Bearing 2 20 is equipped in mounting portion 2 18, the head end of shaft 2 is threaded through in bearing 1, and tail end is threaded through in bearing 2 20, Sliding block 15 is between mounting portion 1 and mounting portion 2 18.Since shaft 2 is straight-bar, bearing 1 and bearing 2 20 are same Axis setting.
As shown in Figures 2 and 3, the gasket 21 being resisted against on one 19 inner ring of bearing is arranged in shaft 2, before elastic component 13 End is resisted against on the gasket 21.
As shown in Fig. 2, the head end of shaft 2 has limiting block along 22, limiting block is resisted against on the inner ring of bearing 1 along 22. Make sliding block 15, limited post 12 and clamp 4 to the end motion far from hose, while internal conical surface 9 using the elastic force of elastic component 13 With several 8 CONTACT WITH FRICTIONs of guiding surface, shaft 2 can be driven to be axially moved when clamp 4 is axially moved, make the limit in shaft 2 Gear abuts on the inner ring of bearing 1 along 22, prevents shaft 2 from falling off out of bearing 1.When shaft 2 or clamp 4 or limited post When 12 damage, it is conveniently replaceable.Convenient for replacing to elastic component 13, the spring of replaceable difference torque provides different elastic force, The hose of different tube diameters is clamped with meeting.
Embodiment two
The structural principle of the present embodiment is essentially identical with the structural principle of embodiment one, and different places is, clamp 4 Tail end stretches out axis hole 3, and driving structure includes the radial limited post 12 being arranged in clamp 4 and head end acts on the bullet in shaft 2 Property part 13, the tail end of elastic component 13 act on limited post 12.Specifically, limited post 12 is located at the part that clamp 4 stretches out axis hole 3 On, elastic component 13 is constantly in compressive state, and front end is resisted against the tail end of shaft 2, and tail end is resisted against on limited post 12.
The specific embodiments described herein are merely examples of the spirit of the present invention.The utility model institute Belonging to those skilled in the art can make various modifications or additions to the described embodiments or using similar Mode substitute, but without departing from the spirit of the present application or beyond the scope of the appended claims.

Claims (10)

1. a kind of hose clamps rotating mechanism, including pedestal (1) and the shaft (2) being arranged in pedestal (1), the shaft (2) there is the axis hole (3) being coaxially disposed with shaft (2), which is characterized in that be equipped in the axis hole (3) and shaft (2) in The clamp (4) of coaxial arrangement is equipped in the clamp (4) and just circumferentially to clamp when clamp (4) is axially away from hose movement Annular clamping structure is equipped with for driving clamp (4) always to the side far from hose between the shaft (2) and clamp (4) To the driving structure of movement.
2. hose according to claim 1 clamps rotating mechanism, which is characterized in that if the annular clamping structure includes Dry annular array is distributed in the distending valve (5) of clamp (4) close to hose one end, is formed between several distending valves (5) Holding holes (6), the distending valve (5) have swelling portion along the axially extending of clamp (4), the head end of the distending valve (5) (7), the outside of the swelling portion (7) has guiding surface (8), by the maximum for the anchor ring that several guiding surfaces (8) are constituted Outer diameter is greater than the aperture of axis hole (3).
3. hose according to claim 2 clamps rotating mechanism, which is characterized in that tool on the inside of the head end of the shaft (2) There is the internal conical surface (9) with several guiding surfaces (8) cooperation, the internal conical surface (9) is close to one end to shaft (2) of hose The distance of central axes is greater than the other end of internal conical surface (9) to the distance of shaft (2) central axes.
4. hose according to claim 2 or 3 clamps rotating mechanism, which is characterized in that have in the holding holes (6) The thimble (10) being connected with clamp (4), the thimble (10) and holding holes (6) are coaxially disposed, and the thimble (10) is close It is in coniform needle point (11) that one end of hose, which has,.
5. hose according to claim 1 or 2 or 3 clamps rotating mechanism, which is characterized in that the driving structure includes The limited post (12) and head end that radial direction is arranged in clamp (4) act on the elastic component (13) on shaft (2), the elastic component (13) tail end acts on limited post (12).
6. hose according to claim 5 clamps rotating mechanism, which is characterized in that in the shaft (2) there are two tools The arranged symmetrically and recessing groove (14) axially extending along shaft (2), one end of above-mentioned limited post (12), which is threaded through one of them, to be allowed In position slot (14), the other end is threaded through in another recessing groove (14), and the elastic component (13) is cylindrical in shape and is set in shaft (2) on, the tail end of the elastic component (13) is resisted against on limited post (12).
7. hose according to claim 6 clamps rotating mechanism, which is characterized in that be arranged with cunning in the shaft (2) The tail end of block (15), the elastic component (13) is resisted against on the end face of sliding block (15), and the sliding block (15) is equipped with radial logical Hole (16), the limited post (12) are threaded through in radial through-hole (16).
8. hose according to claim 7 clamps rotating mechanism, which is characterized in that have installation on the pedestal (1) Portion one (17) and mounting portion two (18), the mounting portion one (17) is interior to be equipped with bearing one (19), the mounting portion two (18) Interior to be equipped with bearing two (20), the head end of the shaft (2) is threaded through in bearing one (19), and tail end is threaded through bearing two (20) Interior, above-mentioned sliding block (15) is between mounting portion one (17) and mounting portion two (18).
9. hose according to claim 8 clamps rotating mechanism, which is characterized in that be arranged in the shaft (2) to The gasket (21) on bearing one (19) inner ring is leaned against, the front end of the elastic component (13) is resisted against on the gasket (21).
10. hose according to claim 8 or claim 9 clamps rotating mechanism, which is characterized in that the head end of the shaft (2) has There is limiting block along (22), the limiting block is resisted against on the inner ring of bearing one (19) along (22).
CN201822089818.1U 2018-12-13 2018-12-13 Hose clamps rotating mechanism Active CN209304340U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201822089818.1U CN209304340U (en) 2018-12-13 2018-12-13 Hose clamps rotating mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822089818.1U CN209304340U (en) 2018-12-13 2018-12-13 Hose clamps rotating mechanism

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CN209304340U true CN209304340U (en) 2019-08-27

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CN201822089818.1U Active CN209304340U (en) 2018-12-13 2018-12-13 Hose clamps rotating mechanism

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111420730A (en) * 2020-05-18 2020-07-17 广州计量检测技术研究院 Pipette gripping device and method of use

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111420730A (en) * 2020-05-18 2020-07-17 广州计量检测技术研究院 Pipette gripping device and method of use

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20211213

Address after: 401120 1-1, 2-1, 3-1, building 5, No. 18, Cuiping Lane 2, Huixing street, Yubei District, Chongqing

Patentee after: Chongqing Jinshan Medical Technology Research Institute Co.,Ltd.

Address before: 401120 1 office buildings, Jinshan International Industrial City, 18 of Nei sang Road, Hui Xing street, Yubei District, Chongqing.

Patentee before: CHONGQING JINSHAN MEDICAL APPLIANCE Co.,Ltd.

TR01 Transfer of patent right