SECURE INJECTION NEEDLE
20190343439 ยท 2019-11-14
Assignee
Inventors
Cpc classification
A61B5/150572
HUMAN NECESSITIES
A61B5/150732
HUMAN NECESSITIES
A61B5/153
HUMAN NECESSITIES
A61M2005/3217
HUMAN NECESSITIES
A61M5/3216
HUMAN NECESSITIES
A61B5/150671
HUMAN NECESSITIES
International classification
A61B5/153
HUMAN NECESSITIES
Abstract
An injection needle includes a needle hub and a needle tube. The needle hub is connected to a safety protective cover by an elastic flip mechanism. Two symmetrically-distributed needle hub hooks are provided on a side wall of the needle hub. Two symmetrically-distributed protective cover snaps are provided in a hollow inner cavity of the safety protective cover. The two protective cover snaps cooperates with the two needle hub hooks. Protective cover snap stoppers are provided on outer sides of the two protective cover snaps. The injection needle employs the two needle hub hooks disposed on the side wall of the needle hub and cooperate with the two protective cover snaps disposed in the inner cavity of the safety protective cover.
Claims
1. A safety injection needle, comprising: an injection needle comprising a needle hub, wherein the needle hub is connected to a safety protective cover via an elastic flip mechanism, two symmetrically-distributed needle hub hooks are disposed on a sidewall of the needle hub, the safety protective cover is an elongated structure as a whole, an inner cavity of the safety protective cover is hollow, a lower end of the safety protective cover is connected to one end of the elastic flip mechanism, an other end of the elastic flip mechanism is fixedly connected to the sidewall of the needle hub, an upper end of the safety protective cover is in a suspended shape, the safety protective cover configured to flip as the elastic flip mechanism flips, a first side of the safety protective cover adjacent to the needle tube forms an opening, a second side of the safety protective cover opposite to the opening forms a closed surface, two symmetrically-distributed protective cover snaps are disposed in the hollow inner cavity of the safety protective cover, the two protective cover snaps cooperate with the two needle hub hooks, and a protective cover snap stopper is disposed on an outside surface of each of the two protective cover snaps.
2. The safety injection needle according to claim 1, wherein an upper end portion of the needle hub hook forms a hook end bent towards a side, the protective cover snaps comprises an elastic root portion and a snap end, the snap end of the protective cover snap forms a bend towards the closed surface, initial contact points of the needle hub hook and protective cover snaps are a bend of the hook end and a bend of the snap end, and the hook end and the snap end bend in opposite directions.
3. The safety injection needle according to claim 2, wherein when the hook end engages with the snap end, the protective cover snap stopper limits the end of the protective cover snap between an edge of the safety protective cover and the needle hub so that the end of the protective cover snap cannot deviate to left and right, preventing the protective cover snap from sliding away from both sides of the needle hub hook, and the protective cover snap cooperates with the protective cover snap stopper on both sides to form a continuous blocking structure.
4. The safety injection needle according to claim 1, wherein the elastic flip mechanism comprises a fixed connection plate and a right-angle connection plate, the fixed connection plate is fixedly connected to the sidewall of the needle hub, the other end of the fixed connection plate is connected to one end of the right-angle connection plate, an other end of the right-angle connection plate is fixedly connected to a lower end of the safety protective cover, a fold line is formed at a position where the fixed connection plate is connected to the right-angle connection plate, and the right-angle connection plate is configured to flip along the fold line.
5. The safety injection needle according to claim 1, wherein a reinforcing rib is respectively disposed on the outer wall on both sides of an upper segment of the needle hub, and the needle hub hook is disposed at a top end of the reinforcing rib.
6. The safety injection needle according to claim 1, wherein the closed surface comprises an upper portion and a lower portion, a continuous arc-shaped surface is disposed at a position where the upper portion is connected to the lower portion, and an inner angle smaller than 178 degrees and larger than 120 degrees is formed between the upper portion and lower portion.
7. The safety injection needle according to claim 1, wherein a needle tube fixing hook is disposed in the hollow inner cavity of the safety protective cover, and the needle tube fixing hook cooperates with the needle tube.
8. The safety injection needle according to claim 1, wherein the injection needle is connected to a blood collecting tube.
9. The safety injection needle according to claim 1, wherein the injection needle is connected to an insulin pen.
10. The safety injection needle according to claim 1, wherein the needle hub hook is formed through thermal deformation at an upper end of the reinforcing rib.
11. The safety injection needle according to claim 1, wherein the needle hub hook is formed by using a half mold at an upper end of the reinforcing rib.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0032] The present invention will be further described with reference to figures
[0033] The present invention discloses a safety injection needle. As shown in
[0034] Upon implementation, an upper end portion of the needle hub hook 103 forms a hook end 1031 bent towards a side, the protective cover snaps 203 consist of an elastic root portion 2031 and a snap end 2030, the snap end 2030 of the protective cover snap 203 forms a bend towards the closed surface 202, initial contact points of the needle hub hook 103 and protective cover snap 203 are a bend of the hook end and a bend of the snap end 2030, and the hook end and the snap end 2030 bend in opposite directions. The structural design can ensure that upon initial contact of the needle hub hook 103 and protective cover snap 203, touch surfaces of the two are two arcuate bent surfaces or one of the touch surfaces is an arcuate bent surface, to reduce a thrust triggering engagement of the two to a minimum. Meanwhile, the protective cover snap 20 has an elastic root portion 2031; when the safety protective cover is fitted, the needle hub hook 103 abuts against the protective cover snap 203, the elastic root portion 2031 tilts in a direction that the needle hub hook 103 lifts (direction A of
[0035] When an external force is applied to open the safety protective cover and the needle hub, the hook 103 pulls the snap 203 in the direction shown in
[0036] Upon implementation, when the hook end 1031 engages with the snap end 2030, the protective cover snap stopper 204 limits the end of the protective cover snap 203 between the edge of the safety protective cover 2 and the needle hub so that the end of the protective cover snap 203 cannot deviate to left and right, preventing the protective cover snap 203 from sliding away from both sides of the needle hub hook 103. Furthermore, the protective cover snap 203 cooperates with the protective cover snap stopper 204 on both sides to form a continuous blocking structure for the needle hub hook 103. It can be seen from the above structure that after the hook end engages with the snap end through a reverse structure, it is possible to separate the two through an external force because the protective cover snap 203 may slide away from both sides of the needle hub hook 103. However, when both sides of the protective cover snap 203 are blocked by the protective cover snap stopper 204. This possibility is close to zero.
[0037] Upon specific implementation, the elastic flip mechanism 4 consists of a fixed connection plate 401 and a right-angle connection plate 402, the fixed connection plate 401 is fixedly connected to the sidewall of the needle hub 101, the other end of the fixed connection plate 401 is connected to one end of the right-angle connection plate 402, the other end of the right-angle connection plate is fixedly connected to a lower end of the safety protective cover 2, a fold line 403 is formed at a position where the fixed connection plate 401 is connected to the right-angle connection plate 402, and the right-angle connection plate 402 flips along the fold line 403.
[0038] Upon specific implementation, a reinforcing rib 104 is respectively disposed on the outer wall on both sides of an upper segment of the needle hub 101, and the needle hub hook 103 is disposed at a top end of the reinforcing rib 104.
[0039] Upon specific implementation, the closed surface 202 consists of an upper portion 2021 and a lower portion 2022, a continuous arc-shaped surface 2023 is disposed at a position where the upper portion 2021 is connected to the lower portion 2022, and an inner angle smaller than 178 degrees and larger than 120 degrees is formed between the lower portion 2021 and lower portion 202. The designed structure can ensure that the needle tube curves under a pressure in an engaged state, and forms a counteraction force to an inner wall of the enclosed surface 202, and increases the coefficient of firmness. Meanwhile, the designed structure can minimize the volume of the product and facilitate packing and transportation.
[0040] Upon specific implementation, a needle tube fixing hook 205 is disposed in the hollow inner cavity of the safety protective cover 2, and the needle tube fixing hook 205 cooperates with the needle tube 102.
[0041] In specific implementation, as shown in
[0042] In a specific operation process, as shown in
[0043] In a first embodiment of the present invention, as shown in
[0044] In a second embodiment of the present invention, as shown in
[0045] Upon specific implementation, the needle hub hook 103 is formed through thermal deformation at an upper end of the reinforcing rib 104. It is characterized in that the mold is simple in structure, an out-of-mold rate is high and the thermal deformation is completed upon the assembling of the products.
[0046] Upon specific implementation, the needle hub hook 103 is formed by using a half mold at the upper end of the reinforcing rib 104. It is characterized in that it may be injection molded one time. The above content is further detailed description of the present invention in conjunction with specific preferred embodiments, and cannot be believed that specific implementations of the present invention are only limited to the above depictions. Those having ordinary skill in the art, without departing from the inventive concept, may also make several simple derivations or substitutions, which should all be considered as falling within the protection scope of the present invention.