This application claims the benefit of Taiwan Patent Application No. TW111146298, filed Dec. 2, 2022, which is incorporated in its entirety by reference herein.
The present invention relates to a safety syringe, particularly relates to a safety syringe with side cover having low amount liquid medicine residue therein.
The current injection syringes generally include a needle cap, a barrel, a needle hub, an injection needle, a rubber stopper, and a plunger. In traditional technology, the front end of the syringe is provided with an injection needle. In the actual process, the safety of the injection needle after use has always been a problem issue. According to the traditional medical injection method, the needle cap is recovered to cap the injection needle again after injection process to prevent the patients and/or medical staff from being infected by accidental stab wounds. Nevertheless, the action of putting the needle cap to the injection needle may become the main cause of needle stick injuries to medical staff. In addition, if the control process of the disposal of used syringes before they are discarded is not strict enough, the injection needle may also be exposed and the cleaning staff may be injured by needle sticks, and the used syringes may also be stolen by unscrupulous people for recycle use.
According to the disadvantages of the prior art, an object of the present invention is to provide a safety syringe with side cover, in which the side cover is attached to an outer sidewall of the needle hub. After the operation of injecting process is completed, the user or medical staff turns the side cover toward the direction of the injection needle, so the injection needle is accommodated in the accommodating groove of the side cover, and is buckled by the first fastener and the second fastener, and a pair of stoppers at the proximal end of the side cover is engaged with the pair of second ribs of the needle hub, thereby, the user or medical staff did not put the needle cap to recover the injection needle as conventional syringe. Accordingly, the safety syringe of this present invention can solve the technical problem in the prior art, when the user recovers the needle cap to the injection needle, the user and/or the medical waste disposal personnel suffer from the needle stick injury due to the needle cap is not recovered properly.
It is another object of the present invention to provide a safety syringe with side cover. The needle hub is assembled with the male luer lock connector at the distal end of the barrel by using the lugs on the outer sidewall of the needle hub and the double thread structure of the inner wall of the male luer lock connector to achieve the airtightness and the watertightness.
It is a further object of the present invention to provide a safety syringe with side cover, in which when the top end of the male luer lock connector is as close as possible to the top surface of the inner cavity of the base body of the needle hub, then the residual amount of the liquid medicine to be injected between the barrel and the needle hub tends to be lowest, which solves the technical problem of the residual liquid remaining in the needle hub in the prior art.
It is a further object of the present invention to provide a safety syringe with side cover. When the needle hub is assembled the male luer lock connector at the distal end of the barrel, the shaft seat on the outer sidewall of the needle hub is protruded out the wall of the annular wall at the distal end of the barrel. After the connecting element of the side cover is joined the shaft seat of the needle hub, the side cover turns towards the directions of the distal end and proximal end of the barrel, and the angle of the rotation range up to 180 degrees, and it can be adjusted so that the side cover will not affect the sight of the user and the injection operations. After the operation of injecting process is completed, the side cover turns toward the injection needle at the distal end of the barrel and applied an appropriate force to the surface of the side cover, the injection needle is accommodated in the accommodating groove of the side cover to cover the injection needle, so the medical staff or waste disposal personnel may protect from the needle stick injuries.
It is a further object of the present invention to provide a safety syringe with side cover. An annular wall is arranged on the plunger to tightly fit the inner wall of the hollow body of the barrel to produce the airtightness and watertightness.
It is a further object of the present invention to provide a safety syringe with side cover. When the plunger in the barrel is pushed towards the direction of the injection needle, the liquid medicine to be injected is discharged from the injection needle by the thrust of the plunger. The rod head of the plunger is inserted into the nozzle of the male luer lock connector of the barrel, the annular stopper of the rod head rests against a bottom of the nozzle of the male luer lock connector. The liquid medicine or gas to be injected may discharge from the distal end of the injection needle by the annual stopper of the plunger. When the rod head of the plunger is inserted into the nozzle of the male luer lock connector and annual stopper resets against the bottom of the nozzle of the male luer lock connector, the edge of the plunger fits tightly against the inner wall the distal end of the hollow body of the barrel, so the residual amount of the liquid medicine in the hollow body of the barrel and in the distal end of the male luer lock connector is lowest to solve the problem in the prior art, when the rubber without rod head on the top of the plunger discharges the liquid to be injected from the distal end of the injection needle, the liquid medicine remains in the channel of the male luer lock connector at the distal end of the barrel.
According to the above objects, the present invention provides a safety syringe with side cover, which includes a needle cap, a barrel, a needle hub, an injection needle, a plunger, and a side cover. The barrel having a distal end and a proximal end, and is composed of a hollow body, an annular wall at the distal end of the barrel, and a male luer lock connector surrounded by the annular wall. An inner wall of the annular wall is provided with a double thread structure, and there is a nozzle in the male luer lock connector, which communicates with the hollow body.
The needle hub having a distal end and a proximal end, and is composed of a pillar, a base seat, and a base body. The pillar is arranged on the base seat and is adjacent to the distal end of the needle hub. The base body is adjacent to the proximal end of the needle hub. There is a pillar passage in the pillar, and the outer sidewall of the pillar having a pair of first ribs and a pair of second ribs. The pair of second ribs includes a concave portion respectively. An inner cavity in the base body and an opening end of the inner cavity is facing towards the proximal end of the needle hub. The outer sidewall adjacent to a top end of the base body is provided with a shaft seat transversally protruding out the outer sidewall. The shaft seat includes an opening facing the proximal end of the needle hub, and a pair of laterally protruding lugs are provided on the outer sidewall adjacent to the bottom of the base body.
When the needle hub is combined with the male luer lock connector of the barrel, the pair of lugs on the outer sidewall of the base body of the needle hub rotate along the double thread structure on the inner wall of the annular wall and lock the needle hub on the male luer lock connector of the barrel tightly, so the shaft seat on the outer sidewall of the base body of the needle hub extends and protrudes outside the wall body of the annular wall. A gap is maintained between a bottom end of the shaft seat and the top end of the annular wall of the barrel, and this gap makes the shaft seat and the annual wall not in contact with each other. Thereby, the pillar passage in the pillar of the needle hub, the nozzle of the male luer lock connector and the hollow body of the barrel are connected to form a fluid channel.
The injection needle is arranged in a pillar passage of the pillar of the needle hub.
The plunger has a distal end and a proximal end, and is composed of a rod head, an annular stopper, and a rod body. The annular stopper is arranged between the rod head and the rod body. The plunger is placed in the barrel and is pushed from the proximal end of the barrel to the distal end of the barrel. The rod head adjacent to the distal end of the plunger is inserted into the nozzle of the male luer lock connector at the distal end of the barrel, so that a top end of the rod head may reach the top end of the male luer lock connector. The annular stopper of the rod head rests against the bottom of the nozzle toward the male luer lock connector in the hollow body of the barrel, and an edge of the annular stopper fits tightly against an inner wall of the hollow body of the barrel.
The side cover has a distal end and a proximal end, and there is a top plate at the distal end of the side cover and a bottom plate at the proximal end of the side cover. The side cover has an accommodating groove. Adjacent to the proximal end of the side cover, there are a first fastener, a second fastener, and a guide element on the opposite inner sidewall of the accommodating groove. The bottom plate adjacent to the proximal end of the side cover has a connecting element protruding outward and away from the side cover. The connecting element has a support frame and a rolling shaft. The rolling shaft is engaged with the support frame and there is a gap between the rolling shaft and the support frame, in which, the accommodating groove of the side cover faces the direction of the needle hub, and the rolling shaft of the connecting element of the side cover is fastened into the opening of the shaft seat of the needle hub, so that the side cover can turn towards the direction of the proximal end or the distal end of the needle hub through the connecting element through the shaft seat.
According to the above objects, the present invention further provides a needle hub with a side cover, which includes the needle hub and the side cover. The needle hub has a distal end and a proximal end, and is composed of a pillar, a base seat, and a base body. The pillar is arranged on the base seat and adjacent to the distal end of the needle hub, and the base body is adjacent to the proximal end of the needle hub. There are a pair of first ribs and a pair of second ribs on the outer sidewall of the pillar, and each the pair of second ribs has concave portion respectively. The base body has an inner cavity, and an opening end of the inner cavity is facing toward the proximal end of the needle hub. An outer sidewall adjacent to a top end of the base body is provided with a shaft seat laterally protruding out the outer sidewall. The shaft seat having an opening facing toward the proximal end of the needle hub, a pair of laterally protruding lugs on the outer sidewall adjacent to the bottom end of the base body.
The side cover has a distal end and a proximal end, and there is a top plate at the distal end of the side cover and a bottom plate at the proximal end of the side cover. The side cover has an accommodating groove. Adjacent to the proximal end of the side cover, there are a first fastener, a second fastener and a guide element on the opposite inner sidewall of the accommodating grove. The bottom plate adjacent to the proximal end of the side cover has a connecting element protruding outward and away from the side cover. The connecting element has a support frame and a rolling shaft. The rolling shaft is engaged with the support frame and there is a gap between the rolling shaft and the support frame. When the accommodating groove of the side cover faces the direction of the needle hub, and the rolling shaft of the connecting element of the side cover is fastened into the opening of the shaft seat of the needle hub, so that the side cover can turn towards the direction of an injection hub through the connecting element through the shaft seat.
First, please refer to
Next, please refers to
There are a pair of first ribs 324 and a pair of second ribs 326 protruding out of the outer sidewall of the pillar 32. The length of the pair of first ribs 324 and the pair of second ribs 326 accounts extends downward from the top 322 of the pillar 32 to the junction of the pillar 32 and the base seat 36 (i.e., the top end 362 of the base seat 36). The pair of first ribs 324 and the pair of second ribs 326 are arranged in a cross shape, in which the outwardly protruding width of the pair of first ribs 324 and the pair of second ribs 326 is aligned with the outer diameter of the base seat 36, and the pair of second ribs 326 has a recessed portion 3262.
The base body 34 has an inner cavity 340, and the side wall 3404 of the inner cavity 340 has a taper, and the opening end of the inner cavity 340 faces toward the proximal end 304 of the needle hub 30. In addition, the inner cavity 340 communicates with the pillar passage 320, and the inner diameter of the pillar passage 320 of the pillar 32 is smaller than that of the inner cavity 340 of the base body 34. There is a laterally protruding shaft seat 38 on the outer sidewall 346 adjacent to the top end 342 of the base body 34, and a pair of lugs 39 adjacent to the bottom end 344 of the base body 34 (i.e., adjacent to the proximal end of the needle hub 30), in which the shaft seat 38 and the pair of lugs 39 are vertically arranged on the needle hub 30. The shaft seat 38 has an opening 380 facing the proximal end 302 of the needle hub 30. Specifically, the opening 380 of the shaft seat 38 may consider to be composed of an approximately Y-shaped notch 3802 and an approximately C-shaped notch 3804, and the opening 380 of the shaft seat 38 narrows from the approximate Y-shaped notch 3802 to the approximately C-shaped notch 3804. The pair of lugs 39 adjacent to the proximal end 304 of the needle hub 30 has an inclination angle relative to the outer sidewall 346 of the base body 34. The inclination angle is matched with that of the double-threaded structure 442 of the inner wall of the annular wall 44 of the male luer lock connector 46 of the barrel 40 (as shown in
Please refer to
Next, please refer to
According to abovementioned, in some embodiments of this present invention, the outer diameter of the rod head 52 of the plunger 50 is smaller than the inner diameter of the nozzle 462 of the male luer lock connector 46, so the rod head 52 of the plunger 50 may insert into the nozzle 462 of the male luer lock connector 46 through the hollow body 42 of the barrel 40. The annular stopper 54 arranged around the plunger 50 abuts against the bottom of the nozzle 462 of the male luer lock connector 46, in which the outer diameter of the annular stopper 54 is larger than the inner diameter of the nozzle 462 of the male luer lock connector 46. Accordingly, while the plunger 50 in the hollow barrel 42 of the barrel 40 is pushed from the proximal end 404 of the barrel 40 toward the distal end 402 of the barrel 40, the liquid medicine to be injected (not shown) in the hollow barrel 42 of the barrel 40 is pushed by the annular stopper 54 toward the direction distal end of the barrel 40, and the liquid medicine to be injected (not shown) is pushed to flow through the fluid channel that is composed by the hollow barrel 42, the nozzle 462 of the male luer lock connector 46 and the pillar passage 320 of the pillar 32 on the needle hub 30, so the injection needle (not shown) can perform the injecting operation of the liquid medicine.
Please refer to
In addition, there is an anti-slip structure 63 on the surface of the cover plate 61 of the side cover 60. The anti-slip structure 63 may form by roughening the surface of the cover plate 61 to form a plurality of uneven structures thereon or the originally smooth surface of the cover plate 61 is processed into a rough surface. The purpose of this anti-slip structure 63 is to generate the friction force between the user's finger (not shown) and the surface of the cover plate 61 on the side cover 60, when the user presses the side cover 60. Accordingly, users such as medical personnel may easily press the side cover 60 to engage with the injection needle 20. In some embodiment of the present invention, the anti-slip structure 63 is a raised arrow shaped. The stopping block 686 is provided corresponding resistance when the side cover 60 turns toward the injection needle 20 to accommodate in the accommodating groove 64 of the side cover 60 to prevent the user from pressing the side cover 60 excessively to cause the side cover 60 is separated from the needle hub 30, and also to prevent the user(s) from intentionally causing the side cover 60 to detach from the needle hub 30.
Please refer to
Therefore, when the above-mentioned needle hub 30 with side cover 60 is joined to the barrel 40 in
Next, please refer to
According to above-mentioned, the safety syringe with side cover 1 can utilize the side cover 60 to cover the injection needle 20 that the injecting operation is completed, so that the medical staff or the personnel handling medical waste can prevent from being injured by the exposed injection needle 20.
The above description is only preferred embodiments of the present invention, and is not intended to limit the scope of rights of the present invention; at the same time, the above description should be clear and implementable for those skilled in the relevant technical field, so other equivalent changes or modifications completed under the spirit of the invention should be included in the scope of the present application.
Number | Date | Country | Kind |
---|---|---|---|
111146298 | Dec 2022 | TW | national |