CN105344413A - Smashing device for syringe needle - Google Patents

Smashing device for syringe needle Download PDF

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Publication number
CN105344413A
CN105344413A CN201510750197.5A CN201510750197A CN105344413A CN 105344413 A CN105344413 A CN 105344413A CN 201510750197 A CN201510750197 A CN 201510750197A CN 105344413 A CN105344413 A CN 105344413A
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China
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montant
spring
cross bar
fixedly connected
backstay
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CN201510750197.5A
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CN105344413B (en
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蔡旭东
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Shandong University
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Individual
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  • Crushing And Grinding (AREA)

Abstract

The invention discloses a smashing device for a syringe needle. The smashing device comprises a positioning device, a crushing device, a first abutting device, a first support device, a second support device, a second abutting device and an elastic device. The positioning device comprises a first positioning rod, a positioning frame and a first support. The crushing device comprises a crushing rod, a crushing block, a second positioning rod and a first spring. The first abutting device comprises a first vertical rod, a first moving frame and a second spring. The first support device comprises a first transverse rod, a second support, a second transverse rod and a third spring. The second support device comprises a second vertical rod and a third transverse rod. The second abutting device comprises a first compression frame, a first compression rod, a second compression rod, a second compression frame, a fourth transverse rod and a fourth spring. The elastic device comprises a third vertical rod, a positioning pillar, a fifth spring and a sixth spring. The right surface of the crushing rod is connected with the left surface of the first positioning rod in a sliding manner. The smashing device for the syringe needle can be used for rapidly smashing a pillow of the syringe needle, and time consumed due to smashing is reduced.

Description

A kind of syringe needle reducing mechanism
Technical field
The present invention relates to technical field of medical instruments, particularly relate to a kind of syringe needle reducing mechanism.
Background technology
At the disposable syringe of Clinical practice, have inexpensive, the advantage such as easy to use, if so deal with improperly after finishing using, very easily utilized by lawless person, cause and reuse, cause transmission, serious harm is brought to society, reuse to prevent used disposable syringe, ensure life security, used disposable syringe scene will be destroyed by administration of health goal each medical institutions on the spot, current design has a lot of syringe destroy device, but these pliers can only destroy the push rod of part injector, perfect can not reach the object of destruction, the people that still can be greedy for small gains to those leaves opportunity.
Therefore, need to provide a kind of new technical scheme to solve the problems of the technologies described above.
Summary of the invention
The object of this invention is to provide a kind of syringe needle reducing mechanism that can effectively solve the problems of the technologies described above.
In order to solve the problems of the technologies described above, the present invention adopts following technical scheme:
A kind of syringe needle reducing mechanism, described syringe needle reducing mechanism comprises positioner, be arranged at the crushing device on described positioner, be arranged at first on described crushing device and lean device, be positioned at the first holder device on the left of described crushing device, be arranged at the second holder device on described first holder device, be positioned at the described second upper and lower both sides of holder device second leans device and is arranged at the elastic device on described first holder device, described positioner comprises the first backstay, the first support being arranged at the posting on described first backstay and being arranged on described posting, described crushing device comprises the crushing bar being positioned at upper and lower both sides, be arranged at the crushing block on described crushing bar, be positioned at the second backstay on the right side of described crushing bar and be arranged at the first spring of described second backstay, described first leans device comprises the first montant, be positioned at the first movable stand of the described first upper and lower both sides of montant, be arranged at the second spring on described first movable stand, described first holder device comprises the first cross bar, be positioned at the second support of the described first upper and lower both sides of cross bar, be arranged at the second cross bar on described second support and be arranged at the 3rd spring on described first cross bar, described second holder device comprises the second montant and is positioned at the 3rd cross bar on the right side of described second montant, described second leans device comprises the first compression frame, be arranged at the first constrictor on described first compression frame, be positioned at the second constrictor of described first constrictor side, be arranged at the second compression frame on described first compression frame, the 4th spring being positioned at the 4th cross bar on the right side of described first compression frame and being arranged on described second compression frame, described elastic device comprises the 3rd montant, be arranged at the locating dowel on described 3rd montant, be contained in the 5th spring in described locating dowel and be positioned at the 6th spring of side, described crushing bar is provided with two and lays respectively at upper and lower both sides, described crushing bar is cuboid, described crushing bar horizontal positioned, the right surface of described crushing bar and the left surface of described first backstay are slidably connected, described crushing block is provided with several and is evenly distributed on described crushing bar, described crushing block is hemispherical, described crushing block is fixedly connected with described crushing bar, described second backstay is provided with two and lays respectively at upper and lower both sides, described second backstay is cuboid, described second backstay horizontal positioned, the left surface of described second backstay is fixedly connected with the right surface of described crushing bar, described first backstay runs through the upper and lower surface of described second backstay and is slidably connected with it, the right surface of described second backstay and the inner surface of described posting are slidably connected, described first spring is vertical shape, the two ends up and down of described first spring are fixedly connected with the second backstay being positioned at upper and lower both sides respectively.
Described first backstay is cuboid, described first backstay is vertically placed, the cross section of described posting is concave shape, described posting is vertically placed, described first backstay is contained in described posting, the two ends up and down of described first backstay are fixedly connected with the inner surface of described posting, the left surface of described first backstay and the left surface of described posting are in same perpendicular, described first support is L-type, one end of described first support is fixedly connected with the upper surface of described posting, and the other end of described first support is horizontal.
Described first montant is cuboid, described first montant is vertically placed, the left surface of described crushing bar is connected with the right surface sliding of described first montant, described first movable stand is provided with two and lays respectively at the both sides up and down of described first montant, the cross section of described first movable stand is concave shape, one end of described first movable stand is fixedly connected with the side of described crushing bar, and the other end of described first movable stand is vertical shape and is connected with the side slip of described first montant.
Described second spring is provided with two and lays respectively at the both sides up and down of described first montant, described second spring is contained in described first movable stand, one end of described second spring is fixedly connected with the inner surface of described first movable stand, the other end of described second spring is connected with the end winding support of described first montant, and one end of described first support is fixedly connected with the side of described first movable stand.
Described first cross bar is cuboid, described first cross bar horizontal positioned, the right-hand member of described first cross bar is fixedly connected with the left surface of described first montant, described second support is L-type, the one end being positioned at the second support of upper and lower both sides is fixedly connected with the upper and lower surface of described first cross bar respectively, the other end of described second support is horizontal, described second cross bar is cuboid, the left end of described second cross bar is fixedly connected with the right surface of described second support, the right-hand member of described second cross bar to lean on the left surface of described first movable stand and is slidably connected with it, described 3rd spring is provided with two and lays respectively at the both sides up and down of described first cross bar, described 3rd spring is vertical shape, one end of described 3rd spring is fixedly connected with described first cross bar.
Described second montant is cuboid, described second montant is vertically placed, described 3rd cross bar is cuboid, described 3rd cross bar horizontal positioned, the right-hand member of described 3rd cross bar is fixedly connected with the left surface of described first cross bar, the left end of described 3rd cross bar is fixedly connected with the right surface of described second montant, and described 3rd cross bar is provided with the through hole running through its upper and lower surface.
Described first compression frame is zigzag, described first compression frame is fixedly connected with described first movable stand, the left end of described first compression frame is connected with the right surface sliding of described second montant, one end of described second support and described first is compressed frame and is slidably connected, described first constrictor is cuboid, described first constrictor horizontal positioned, described first constrictor and described first compresses frame and is fixedly connected with, and the left end of described first constrictor is connected with the right surface sliding of described second montant.
Described second compression frame is concave shape, one end of described second compression frame is fixedly connected with described first constrictor, the other end of described second compression frame is vertical shape, the end of described second montant to be contained in described second compression frame and to be slidably connected with the described second inner surface compressing frame, described 4th cross bar is cuboid, described 4th cross bar horizontal positioned, the left end and described first of described 4th cross bar compresses frame and is fixedly connected with, the right-hand member of described 4th cross bar is connected with described second bracket slide, described 4th spring is vertical shape, the two ends up and down of described 4th spring are compressed frame be positioned at upper and lower both sides second respectively and are fixedly connected with.
Described 3rd montant is cylinder, described 3rd montant is vertically placed, one end and described first of described 3rd montant is compressed frame and is fixedly connected with, described locating dowel is the cylinder that cross section is annulus, described locating dowel is vertically placed, one end of described locating dowel is fixedly connected with described first cross bar, one end of described 3rd montant to be contained in described locating dowel and to be slidably connected with described locating dowel, described 5th spring is vertical shape, one end of described 5th spring is connected with the end winding support of described 3rd montant, the other end of described 5th spring is fixedly connected with described first cross bar, described 6th spring is vertical shape, the end and described first of described 6th spring is compressed frame and is fixedly connected with, described 6th spring is through through hole.
After adopting technique scheme, tool of the present invention has the following advantages:
Syringe needle reducing mechanism structure of the present invention is simple; easy to use; can pulverize fast disposable syringe pillow; reduce the time consumed because of pulverizing; substantially increase the operating efficiency of medical personnel, and the injury that can prevent syringe needle from causing medical personnel, protect the physical and mental health of medical personnel; and the syringe needle after making it possible to prevent lawless person from utilizing and finishing using, ensure that the physical and mental health of patient.
Accompanying drawing explanation
Be described further below in conjunction with the detailed description of the invention of accompanying drawing to syringe needle reducing mechanism of the present invention:
Fig. 1 is the structural representation of syringe needle reducing mechanism of the present invention;
Detailed description of the invention
As shown in Figure 1, syringe needle reducing mechanism of the present invention comprises positioner 1, the crushing device 2 be arranged on described positioner 1, is arranged at first on described crushing device 2 and leans device 3, be positioned at the first holder device 4, the second holder device 5 be arranged on described first holder device 4 on the left of described crushing device 2, be positioned at second of described second holder device about 5 both sides and lean device 6 and be arranged at the elastic device 7 on described first holder device 4.
As shown in Figure 1, described positioner 1 the first support 13 of comprising the first backstay 11, being arranged at the posting 12 on described first backstay 11 and being arranged on described posting 12.Described first backstay 11 is in cuboid, and described first backstay 11 is vertically placed.The cross section of described posting 12 is concave shape, described posting 12 is vertically placed, described first backstay 11 is contained in described posting 12, the two ends up and down of described first backstay 11 are fixedly connected with the inner surface of described posting 12, and the described left surface of the first backstay 11 and the left surface of described posting 12 are in same perpendicular.Described first support 13 is in L-type, and one end of described first support 13 is fixedly connected with the upper surface of described posting 12, and the other end of described first support 13 is horizontal.
As shown in Figure 1, described crushing device 2 comprises the crushing bar 21 being positioned at upper and lower both sides, the crushing block 22 be arranged on described crushing bar 21, is positioned at the second backstay 23 on the right side of described crushing bar 21 and is arranged at the first spring 24 of described second backstay 23.Described crushing bar 21 is provided with two and lays respectively at upper and lower both sides, described crushing bar 21 is in cuboid, described crushing bar 21 horizontal positioned, the right surface of described crushing bar 21 and the left surface of described first backstay 11 are slidably connected, and the crushing bar 21 being positioned at upper and lower both sides can be pulverized syringe needle.Described crushing block 22 is provided with several and is evenly distributed on described crushing bar 21, and described crushing block 22 is in hemispherical, and described crushing block 22 is fixedly connected with described crushing bar 21, thus crushing block 22 can be pulverized syringe needle.Described second backstay 23 is provided with two and lays respectively at upper and lower both sides, described second backstay 23 is in cuboid, described second backstay 23 horizontal positioned, the left surface of described second backstay 23 is fixedly connected with the right surface of described crushing bar 21, described first backstay 11 runs through the upper and lower surface of described second backstay 23 and is slidably connected with it, described second backstay 23 can be moved up and down, the described right surface of the second backstay 23 and the inner surface of described posting 12 are slidably connected, thus play positioning action to described second backstay 23.Described first spring 24 is in vertical shape, the upper end of described first spring 24 is contained in described posting 12, the two ends up and down of described first spring 24 are fixedly connected with the second backstay 23 being positioned at upper and lower both sides respectively, thus play a supporting role to described second backstay 23.
As shown in Figure 1, described first lean device 3 and comprise the first montant 33, be positioned at the first movable stand 31 of described first montant about 33 both sides, the second spring 32 be arranged on described first movable stand 31.Described first montant 33 is in cuboid, and described first montant 33 is vertically placed, and the left surface of described crushing bar 21 is connected with the right surface sliding of described first montant 33, makes described crushing bar 21 can along lower slider on the right surface of described first montant 33.Described first movable stand 31 is provided with two and lays respectively at the both sides up and down of described first montant 33, the cross section of described first movable stand 31 is concave shape, one end of described first movable stand 31 is fixedly connected with the side of described crushing bar 21, the other end of described first movable stand 31 is vertical shape and is connected with the side slip of described first montant 33, the end of described first montant 33 is contained in described first movable stand 31 and is slidably connected with described first movable stand 31.Described second spring 32 is provided with two and lays respectively at the both sides up and down of described first montant 33, described second spring 32 is contained in described first movable stand 31, one end of described second spring 32 is fixedly connected with the inner surface of described first movable stand 31, the other end of described second spring 32 is connected with the end winding support of described first montant 33, and one end of described first support 13 is fixedly connected with the side of described first movable stand 31.
As shown in Figure 1, described first holder device 4 comprise the first cross bar 41, the second support 42 of being positioned at described first cross bar about 41 both sides, the 3rd spring 44 that is arranged at the second cross bar 43 on described second support 42 and is arranged on described first cross bar 41.Described first cross bar 41 is in cuboid, and described first cross bar 41 horizontal positioned, the right-hand member of described first cross bar 41 is fixedly connected with the left surface of described first montant 33.Described second support 42 is provided with two and lays respectively at the both sides up and down of described first cross bar 41, described second support 42 is in L-type, the one end being positioned at the second support 42 of upper and lower both sides is fixedly connected with the upper and lower surface of described first cross bar 41 respectively, and the other end of described second support 42 is horizontal.Described second cross bar 43 is provided with two and lays respectively at upper and lower both sides, described second cross bar 43 is in cuboid, the left end of described second cross bar 43 is fixedly connected with the right surface of described second support 42, the right-hand member of described second cross bar 43 to lean on the left surface of described first movable stand 31 and is slidably connected with it, and described first movable stand 31 can be moved up and down.Described 3rd spring 44 is provided with two and lays respectively at the both sides up and down of described first cross bar 41, and described 3rd spring 44 is in vertical shape, and one end of described 3rd spring 44 is fixedly connected with described first cross bar 41.
As shown in Figure 1, described second holder device 5 comprises the second montant 51 and is positioned at the 3rd cross bar 52 on the right side of described second montant 51.Described second montant 51 is in cuboid, and described second montant 51 is vertically placed.Described 3rd cross bar 52 is in cuboid, described 3rd cross bar 52 horizontal positioned, the right-hand member of described 3rd cross bar 52 is fixedly connected with the left surface of described first cross bar 41, the left end of described 3rd cross bar 52 is fixedly connected with the right surface of described second montant 51, described 3rd cross bar 52 is provided with the through hole 521 running through its upper and lower surface, and described through hole 521 is in rectangular-shaped.
As shown in Figure 1, described second leans device 6 is provided with two and lays respectively at upper and lower both sides, described second lean device 6 comprise the first compression frame 61, be arranged at described first compression frame 61 on the first constrictor 62, be positioned at described first constrictor 62 side the second constrictor 63, be arranged at described first compression frame 61 on second compression frame 64, be positioned at described first compression frame 61 on the right side of the 4th cross bar 65 and be arranged at described second compression frame 64 on the 4th spring 67.Described first compression frame 61 is in zigzag, described first compression frame 61 is fixedly connected with described first movable stand 31, make described first compression frame 61 that described first movable stand 31 can be driven to move up and down, the left end of described first compression frame 61 is connected with the right surface sliding of described second montant 51, described first compression frame 61 can be moved up and down, and one end and described first of described second support 42 is compressed frame 61 and is slidably connected.Described first constrictor 62 is in cuboid, described first constrictor 62 horizontal positioned, described first constrictor 62 and described first compresses frame 61 and is fixedly connected with, the left end of described first constrictor 62 is connected with the right surface sliding of described second montant 51, and described first constrictor 62 can be moved up and down.Described second compression frame 64 is in concave shape, one end of described second compression frame 64 is fixedly connected with described first constrictor 62, the other end of described second compression frame 64 is vertical shape, the end of described second montant 51 to be contained in described second compression frame 64 and to be slidably connected with the described second inner surface compress frame 64, described second montant 51 can be compressed in frame 64 described second and move up and down.Described 4th cross bar 65 is in cuboid, and described 4th cross bar 65 horizontal positioned, the left end and described first of described 4th cross bar 65 compresses frame 61 and is fixedly connected with, and right-hand member and described second support 42 of described 4th cross bar 65 are slidably connected.Described 4th spring 67 is in vertical shape, and the two ends up and down of described 4th spring 67 are compressed frame 64 be positioned at upper and lower both sides second respectively and are fixedly connected with.
As shown in Figure 1, described elastic device 7 is provided with two and lays respectively at the both sides up and down of described first cross bar 41, and described elastic device 7 comprises the 3rd montant 71, the locating dowel 72 be arranged on described 3rd montant 71, be contained in the 5th spring 73 in described locating dowel 72 and be positioned at the 6th spring 74 of side.Described 3rd montant 71 is in cylinder, and described 3rd montant 71 is vertically placed, and one end and described first of described 3rd montant 71 is compressed frame 61 and is fixedly connected with.Described locating dowel 72 is the cylinder of annulus in cross section, described locating dowel 72 is vertically placed, one end of described locating dowel 72 is fixedly connected with described first cross bar 41, one end of described 3rd montant 71 to be contained in described locating dowel 72 and to be slidably connected with described locating dowel 72, and one end of described 3rd montant 71 can be slided up and down in described locating dowel 72.Described 5th spring 73 is in vertical shape, and one end of described 5th spring 73 is connected with the end winding support of described 3rd montant 71, and the other end of described 5th spring 73 is fixedly connected with described first cross bar 41.Described 6th spring 74 is in vertical shape, and the end and described first of described 6th spring 74 is compressed frame 61 and is fixedly connected with, and described 6th spring 74 is through through hole 521.
As shown in Figure 1, when described syringe needle reducing mechanism of the present invention uses, first syringe needle is placed on and crushes between bar 21, then the first constrictor 62 is grasped, and press the first constrictor 62 to the first cross bar 41 direction, the the first compression frame 61 being positioned at upper and lower both sides is moved to the first cross bar 41, and then compression the first movable stand 31, make to crush bar 21 relatively close, thus under the squeezing action crushing block 22, syringe needle is pulverized, second backstay 23 can position crushing bar 21 simultaneously, and the first spring 24 leaning under the second backstay 23 is played a supporting role, second spring 32 is played a supporting role to the first movable stand 31 simultaneously, and at the 3rd spring 44, 4th spring 67, under the effect of the 6th spring 74, first compression frame 61 and the second compression frame 64 are played a supporting role, can play a supporting role to the first compression frame 61 and the second compression frame 64, facilitate the first compression frame 61 and second to compress frame 64 and return to original state, under the effect of simultaneously the 3rd montant 71 and locating dowel 73, can prevent the first compression frame 61 being positioned at upper and lower both sides from misplacing, play comparatively firm positioner.So far, syringe needle reducing mechanism of the present invention use procedure is described.
The above; be only the specific embodiment of the present invention, but protection scope of the present invention is not limited thereto, any those skilled in the art are in the technical scope that the present invention discloses; change can be expected easily or replace, all should be encompassed within protection scope of the present invention.Therefore, protection scope of the present invention should be as the criterion with the protection domain of described claim.

Claims (9)

1. a syringe needle reducing mechanism, it is characterized in that: described syringe needle reducing mechanism comprises positioner, be arranged at the crushing device on described positioner, be arranged at first on described crushing device and lean device, be positioned at the first holder device on the left of described crushing device, be arranged at the second holder device on described first holder device, be positioned at the described second upper and lower both sides of holder device second leans device and is arranged at the elastic device on described first holder device, described positioner comprises the first backstay, the first support being arranged at the posting on described first backstay and being arranged on described posting, described crushing device comprises the crushing bar being positioned at upper and lower both sides, be arranged at the crushing block on described crushing bar, be positioned at the second backstay on the right side of described crushing bar and be arranged at the first spring of described second backstay, described first leans device comprises the first montant, be positioned at the first movable stand of the described first upper and lower both sides of montant, be arranged at the second spring on described first movable stand, described first holder device comprises the first cross bar, be positioned at the second support of the described first upper and lower both sides of cross bar, be arranged at the second cross bar on described second support and be arranged at the 3rd spring on described first cross bar, described second holder device comprises the second montant and is positioned at the 3rd cross bar on the right side of described second montant, described second leans device comprises the first compression frame, be arranged at the first constrictor on described first compression frame, be positioned at the second constrictor of described first constrictor side, be arranged at the second compression frame on described first compression frame, the 4th spring being positioned at the 4th cross bar on the right side of described first compression frame and being arranged on described second compression frame, described elastic device comprises the 3rd montant, be arranged at the locating dowel on described 3rd montant, be contained in the 5th spring in described locating dowel and be positioned at the 6th spring of side, described crushing bar is provided with two and lays respectively at upper and lower both sides, described crushing bar is cuboid, described crushing bar horizontal positioned, the right surface of described crushing bar and the left surface of described first backstay are slidably connected, described crushing block is provided with several and is evenly distributed on described crushing bar, described crushing block is hemispherical, described crushing block is fixedly connected with described crushing bar, described second backstay is provided with two and lays respectively at upper and lower both sides, described second backstay is cuboid, described second backstay horizontal positioned, the left surface of described second backstay is fixedly connected with the right surface of described crushing bar, described first backstay runs through the upper and lower surface of described second backstay and is slidably connected with it, the right surface of described second backstay and the inner surface of described posting are slidably connected, described first spring is vertical shape, the two ends up and down of described first spring are fixedly connected with the second backstay being positioned at upper and lower both sides respectively.
2. syringe needle reducing mechanism according to claim 1, it is characterized in that: described first backstay is cuboid, described first backstay is vertically placed, the cross section of described posting is concave shape, described posting is vertically placed, described first backstay is contained in described posting, the two ends up and down of described first backstay are fixedly connected with the inner surface of described posting, the left surface of described first backstay and the left surface of described posting are in same perpendicular, described first support is L-type, one end of described first support is fixedly connected with the upper surface of described posting, the other end of described first support is horizontal.
3. syringe needle reducing mechanism according to claim 2, it is characterized in that: described first montant is cuboid, described first montant is vertically placed, the left surface of described crushing bar is connected with the right surface sliding of described first montant, described first movable stand is provided with two and lays respectively at the both sides up and down of described first montant, the cross section of described first movable stand is concave shape, one end of described first movable stand is fixedly connected with the side of described crushing bar, and the other end of described first movable stand is vertical shape and is connected with the side slip of described first montant.
4. syringe needle reducing mechanism according to claim 3, it is characterized in that: described second spring is provided with two and lays respectively at the both sides up and down of described first montant, described second spring is contained in described first movable stand, one end of described second spring is fixedly connected with the inner surface of described first movable stand, the other end of described second spring is connected with the end winding support of described first montant, and one end of described first support is fixedly connected with the side of described first movable stand.
5. syringe needle reducing mechanism according to claim 4, it is characterized in that: described first cross bar is cuboid, described first cross bar horizontal positioned, the right-hand member of described first cross bar is fixedly connected with the left surface of described first montant, described second support is L-type, the one end being positioned at the second support of upper and lower both sides is fixedly connected with the upper and lower surface of described first cross bar respectively, the other end of described second support is horizontal, described second cross bar is cuboid, the left end of described second cross bar is fixedly connected with the right surface of described second support, the right-hand member of described second cross bar to lean on the left surface of described first movable stand and is slidably connected with it, described 3rd spring is provided with two and lays respectively at the both sides up and down of described first cross bar, described 3rd spring is vertical shape, one end of described 3rd spring is fixedly connected with described first cross bar.
6. syringe needle reducing mechanism according to claim 5, it is characterized in that: described second montant is cuboid, described second montant is vertically placed, described 3rd cross bar is cuboid, described 3rd cross bar horizontal positioned, the right-hand member of described 3rd cross bar is fixedly connected with the left surface of described first cross bar, and the left end of described 3rd cross bar is fixedly connected with the right surface of described second montant, and described 3rd cross bar is provided with the through hole running through its upper and lower surface.
7. syringe needle reducing mechanism according to claim 6, it is characterized in that: described first compression frame is zigzag, described first compression frame is fixedly connected with described first movable stand, the left end of described first compression frame is connected with the right surface sliding of described second montant, one end of described second support and described first is compressed frame and is slidably connected, described first constrictor is cuboid, described first constrictor horizontal positioned, described first constrictor and described first compresses frame and is fixedly connected with, the left end of described first constrictor is connected with the right surface sliding of described second montant.
8. syringe needle reducing mechanism according to claim 7, it is characterized in that: described second compression frame is concave shape, one end of described second compression frame is fixedly connected with described first constrictor, the other end of described second compression frame is vertical shape, the end of described second montant to be contained in described second compression frame and to be slidably connected with the described second inner surface compressing frame, described 4th cross bar is cuboid, described 4th cross bar horizontal positioned, the left end and described first of described 4th cross bar compresses frame and is fixedly connected with, the right-hand member of described 4th cross bar is connected with described second bracket slide, described 4th spring is vertical shape, the two ends up and down of described 4th spring are compressed frame be positioned at upper and lower both sides second respectively and are fixedly connected with.
9. syringe needle reducing mechanism according to claim 8, it is characterized in that: described 3rd montant is cylinder, described 3rd montant is vertically placed, one end and described first of described 3rd montant is compressed frame and is fixedly connected with, described locating dowel is the cylinder that cross section is annulus, described locating dowel is vertically placed, one end of described locating dowel is fixedly connected with described first cross bar, one end of described 3rd montant to be contained in described locating dowel and to be slidably connected with described locating dowel, described 5th spring is vertical shape, one end of described 5th spring is connected with the end winding support of described 3rd montant, the other end of described 5th spring is fixedly connected with described first cross bar, described 6th spring is vertical shape, the end and described first of described 6th spring is compressed frame and is fixedly connected with, described 6th spring is through through hole.
CN201510750197.5A 2015-11-06 2015-11-06 Syringe needle reducing mechanism Expired - Fee Related CN105344413B (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106179586A (en) * 2016-09-12 2016-12-07 成都创慧科达科技有限公司 A kind of reducing mechanism of medical disposable material
CN107597243A (en) * 2017-09-18 2018-01-19 陈旭东 A kind of robot for operating intelligence

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JP5758196B2 (en) * 2011-05-25 2015-08-05 株式会社名南製作所 Veneer veneer cutting device
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