PUSH-TYPE BLOOD COLLECTION NEEDLE
20210228120 ยท 2021-07-29
Assignee
Inventors
Cpc classification
A61B5/15117
HUMAN NECESSITIES
A61B5/150534
HUMAN NECESSITIES
A61B5/150412
HUMAN NECESSITIES
A61B5/150259
HUMAN NECESSITIES
A61B5/15113
HUMAN NECESSITIES
A61B5/150549
HUMAN NECESSITIES
International classification
Abstract
The invention relates to the technical field of medical instruments, in particular to a push-type blood collection needle, comprising a housing having an accommodating cavity therein, a rear cover and a needle body disposed in the accommodating cavity. The rear cover is movably disposed on the housing, and the rear cover has a supporting leg (21) extending into the accommodating cavity. The needle body is provided with a rib. The accommodating cavity is internally provided with a projecting part that cooperates with and blocks the bottom of the rib. The supporting leg is provided with a stopper that cooperates with and blocks the side wall of the rib. And an elastic member is disposed between the needle body and the rear cover. The invention has a reasonable structure setting, is convenient to operate, enables automated assembly production and can realize safe blood collection and the control of the depth.
Claims
1. A push-type blood collection needle, comprising a housing (10) having an accommodating cavity (11) therein, a rear cover (20) and a needle body (30) disposed in the accommodating cavity (11), wherein the rear cover (20) is movably disposed on the housing (10), the rear cover (20) has a supporting leg (21) extending into the accommodating cavity (11), the needle body (30) is provided with a rib (31), the accommodating cavity (11) is internally provided with a projecting part (12) that cooperates with and blocks the bottom of the rib (31), the supporting leg (21) is provided with a stopper (22) that cooperates with and blocks the side wall of the rib (31), and an elastic member is disposed between the needle body (30) and the rear cover (20).
2. A push-type blood collection needle according to claim 1, wherein said elastic member is a first spring (40).
3. A push-type blood collection needle according to claim 1, wherein said elastic member is a part of the rear cover (20).
4. A push-type blood collection needle according to claim 1, wherein a second spring (50) is disposed between the needle body (30) and the accommodating cavity (11).
5. A push-type blood collection needle according to claim 1, wherein a lower end of the rib (31) is provided with a first inclined surface (32), an upper end of the stopper (22) is provided with a second inclined surface (23) that cooperates with the first inclined surface (32), and the projecting part (12) is provided with a third inclined surface (13) that cooperates with the first inclined surface (32).
6. A push-type blood collection needle according to claim 5, wherein a sliding slot (14) is disposed in the accommodating cavity (11) for engaging with the rib (31), and the sliding slot (14) is located by a side of the stopper (22).
7. A push-type blood collection needle according to claim 6, wherein the accommodating cavity (11) is provided with a transition block (15) between the stopper (22) and the sliding slot (14), and the transition block (15) is provided with a fourth inclined surface (16) that cooperates with the first inclined surface (32).
8. A push-type blood collection needle according to claim 7, wherein the transition block (15) cooperates with the projecting part (12) to form a guide groove (17) that engages with the supporting leg (21).
9. A push-type blood collection needle according to claim 1, wherein the number of the ribs (31) is two, and the two ribs (31) are circumferentially symmetrically distributed as a whole, and the number of the supporting legs (21) and the number of the projecting parts (12) are also two.
10. A push-type blood collection needle according to claim 1, wherein an end of the housing (10) connected to the rear cover (20) extends inwardly with a stop ring (19), and the rear cover (20) is provided with a limiting block (24) that cooperates with the stop ring (19).
11. A push-type blood collection needle according to claim 1, wherein the needle body (30) includes a protective cap (33) having brims (331, 332) that abuts against the housing (10) to impede axial movement of the needle body (30).
12. A push-type blood collection needle according to claim 1, wherein the needle body (30) includes a protective cap (33) having lugs (341, 342), and the lugs (341, 342) have slopes for guiding the protective cap (33) to disengage from the needle body (30).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
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[0026]
[0027] In the FIGURES: 10. housing; 11. accommodating cavity; 12. projecting part; 13. third inclined surface; 14. sliding slot; 15. transition block; 16. fourth inclined surface; 17. guide groove; 19; stop ring; 20. rear cover; 21. supporting leg; 22. stopper; 23. second inclined surface; 24. limiting block; 30. needle body; 31. rib; 32. first inclined surface; 33. protective cap; 331 & 332. brims; 341 & 342. lugs; 40. first spring; 50. second spring.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0028] The technical solutions of the present invention are further described below with reference to the drawings, but the present invention is not limited to these embodiments.
[0029] As shown in
[0030] The blood collection needle of the present invention consists only of the housing 10, the first spring 40, the second spring 50, the needle body 30 and the rear cover 20. It can be produced by machine, has simple structure, can realize automatic assembly production, and liberate labor. When in use, the rear cover 20 is pressed downward, and the first spring 40 is compressed during the downward movement of the rear cover 20, so that the rear cover 20 drives the supporting leg 21 to move downward, and meanwhile the needle body 30 moves the rib 31 relative to the projecting part 12 under the action of the first spring 40. When the stopper 22 of the supporting leg 21 moves below the rib 31 and no longer abuts against the rib 31, the needle body 30 continues to move the rib 31 relative to the projecting part 12 under the action of the first spring 40 until the rib 31 is separated from the projecting part 12. The projecting part 12 no longer limits the needle body 30, and the needle body 30 is shot forward under the action of the first spring 40 to complete the prick action and realize the blood collection function. At the same time, the needle body 30 will abut against the second spring 50 during the forward shot and compress the second spring 50. The force applied by the second spring 50 to the needle body 30 is opposite to the force applied by the first spring 40 to the needle body 30. Therefore, the second spring 50 cooperates with the first spring 40 to control the depth at which the skin is pricked by the needle body 30, thereby avoiding a situation where it is too deep or too shallow. Moreover, after the blood collection is completed, the second spring 50 provides an elastic force to retract the needle body 30 to the housing 10, thereby preventing the needle of the needle body 30 from being exposed to cause stab wounds or even infection, and blood collection is safer. In this embodiment, the number of the ribs 31 is two, and the two ribs 31 are circumferentially symmetrically distributed as a whole, and the numbers of the supporting legs 21 and the projecting parts 12 are also correspondingly two, so that the stability of the integral structure is better.
[0031] Further, the lower end of the rib 31 is provided with a first inclined surface 32, and the upper end of the stopper 22 is provided with a second inclined surface 23 cooperated with the first inclined surface 32, and the projecting part 12 is provided with a third inclined surface 13 cooperated with the first inclined surface 32. When the first spring 40 presses the rear cover 20, the first inclined surface 32 and the third inclined surface 13 are in contact with each other, thereby facilitating the movement of the rib 31 relative to the projecting part 12. Moreover, the upper end of the block 22 is provided with the second inclined surface 23 which cooperates with the first inclined surface 32. The rear cover 20 drives the supporting leg 21. When the upper end surface of the stopper 22 of the supporting leg 21 is moved to be flush with the projecting part 12, the stopper 22 is no longer inclined to the rib 31, and the rib 31 is moved along the third inclined surface 13 to the upper end surface of the stopper 22. At this time, the first inclined surface 32 of the rib 31 is in contact with the second inclined surface 23, so that the rib 31 is moved relative to the stopper 22. When the rib 31 moves out of the stopper 22, the rib 31 is no longer restrained by the stopper 22, and the needle 30 is shot forward by the action of the first spring 40 to complete the prick action. The accommodating cavity 11 is internally provided with a sliding slot 14 for engaging with the rib 31. The sliding slot 14 is located by the side of the stopper 22. The accommodating cavity 11 is internally provided with a transition block 15 between the stopper 22 and the sliding slot 14. The transition block 15 is provided with a fourth inclined surface 16 that cooperates with the first inclined surface 32. When the rib 31 moves out of the stopper 22, the rib 31 moves to the transition block 15. The transition block 15 is provided with a fourth inclined surface 16 that cooperates with the first inclined surface 32. At this time, the first inclined surface 32 of the rib 31 is in contact with the second inclined surface 23, so that the rib 31 is moved relative to the transition block 15. The accommodating cavity 11 is internally provided with a sliding slot 14 which cooperates with the rib 31. When the rib 31 moves out of the transition block 15, the rib 31 moves into the sliding slot 14, and then moves forward along the sliding slot 14, so that the needle body 30 is shot forward to complete the prick action. When the needle body 30 moves relative to the housing 10, the rib 31 moves in the sliding slot 14. The sliding slot 14 defines and guides the movement direction of the rib 31. It has a clear trajectory and a simple structure, and plays a role in stabilizing the structure. A guide groove 17 that engages with the supporting leg 21 is formed between the transition block 15 and the projecting part 12. When the rear cover 20 is pressed, the supporting leg 21 of the rear cover 20 moves in the guide groove 17. The guide groove 17 defines and guides the movement direction of the supporting leg 21. It has a clear trajectory and a simple structure, and plays a role in stabilizing the structure to prevent the rear cover 20 from rotating relative to the housing 10.
[0032]
[0033] The particular embodiments described herein are merely illustrative of the spirit of the present invention. A person skilled in the art can make various modifications or additions to the particular embodiments described or replace them in a similar manner, without departing from the spirit of the present invention or beyond the scope of the appended claims.