The present invention relates to a syringe, and more particularly to the syringe with a blocking structure.
With reference to
Although the foregoing improved disposable safety syringe structure can achieve the effect of preventing accidents or injuries effectively, the disposable safety syringe structure just can prevent the plunger 3 from detaching from the cylindrical body 11 by interfering the piston plate 15, the latch edge 133 and the flange 16. However, if the design of the relation between the latch edge 133 and the flange 16 is too loose, then when the injection needle 14 extends into the cylindrical body 11, the injection needle 14 may be retracted to the outside and may cause accidents. If the design of the relation between the latch edge 133 and the flange 16 is too tightly, then when the plunger 3 is installed into the cylindrical body 11 and pushed forward, the plunger will not be pushed easily. Therefore, the conventional structure of the latch edge 133 and the flange 16 requires further improvements.
In view of the aforementioned drawbacks of the prior art, it is a primary objective of the present invention to provide a syringe with a blocking structure to overcome the aforementioned drawbacks.
To achieve the aforementioned objective, the present invention provides a syringe comprising a cylindrical body, a rod and a one-way engagement unit, and the cylindrical body includes a flange, and the one-way engagement unit includes a propping portion and a flexible bracket. The propping portion is extended outwardly from the rod and can abut the flange, and the flexible bracket is extended outwardly from the rod and isolated from the propping portion. The flexible bracket has an external diameter greater than the external diameter of the propping portion, and the rod is pushed forward with respect to the cylindrical body, so that when the propping portion and the flexible bracket pass through the flange, the flange abuts the flexible bracket to tilt backward, and when the rod is pushed backward with respect to the cylindrical body, the flange abuts the flexible bracket to tilt the flexible bracket forward, so that the propping portion blocks the flexible bracket.
One of the effects of the present invention is to abut the one-way engagement unit against the flange of the cylindrical body during the process of retreating from the cylindrical body, such that the propping portion blocks the tilted flexible bracket to define a blocking effect and produce the one-way engagement effect.
Another effect of the present invention is to abut the head holder section of the needle seat against the circular body in the barrel, such that when the head holder section of the needle seat is warped by the barrel inverted hook plate, the head holder section of the needle seat is blocked in the barrel and stably positioned in the cylindrical body to assure the function of the seal ring for preventing leakage.
The technical characteristics, contents, advantages and effects of the present invention will be apparent with the detailed description of a preferred embodiment accompanied with related drawings as follows. It is noteworthy to point out that the terms including “front” and “rear” are used for relative positions and as a reference for normal positioning.
With reference to
In
The rod 4 comprises a pushing end 41, a rod body section 42 proximate to the pushing end 41, an engagement section 43 extended from the rod body section 42 in a direction opposite to the pushing end 41, and a top rod section 44 extended from the engagement section 43 in a direction opposite to the pushing end 41. The rod body section 42 comprises a circular flange 421 formed at a front end of the rod body section 42 and a piston seat 422 isolated from the circular flange 421 and disposed opposite to the circular flange 421 and proximate to the pushing end 41, wherein the piston seat 422 is provided for connecting a piston plate 8 used for preventing a leakage of liquid medicine. The engagement section 43 can accommodate the head holder section 221 of the needle seat 22. The top rod section 44 can accommodate the fitting section 222 of the needle seat 22.
Each of the one-way engagement units 5, 6, 7 comprises a circular propping portion 51, 61, 71 disposed at a position away from the pushing end 41 of the rod 4, and a circular flexible bracket 52, 62, 72 disposed at a position opposite to the propping portions 51, 61, 71 and proximate to the pushing end 41 of the rod 4 (as shown in
It is noteworthy that the rod 4 has an external diameter smaller than the internal diameter of the cylindrical body 2, and the barrel 21 of the cylindrical body 2 has an internal diameter greater than the external diameter of the flexible brackets 52, 62, 72, and the flexible brackets 52, 62, 72 have an external diameter greater than the external diameters of the propping portions 51, 61, 71 respectively, and the propping portions 51, 61, 71 have the external diameters equal to the internal diameters of the flanges 23, 24, 25 respectively, so that when the rod 4 is pushed towards a positive axis direction I with respect to the cylindrical body 2 to pass the propping portion 51 and the flexible bracket 52 through the flange 23, the propping portion 51 can abut the flange 23, and the flange 23 abuts the flexible bracket 52 to tilt the flexible bracket 52 towards a negative axis direction 11 and pass through the flange 23. It is noteworthy that the flexible bracket 52 has an elastic restoring force, so that when the flexible bracket 52 is passed through the flange 23, the elastic restoring force can restore the flexible bracket 52 to its original shape.
In FIGS, 2, 4 and 5, after a user completes the injection, the user can continue pushing the pushing end 41 of the rod 4 in the positive axis direction I to force the circular flange 421 of the rod body section 42 to retract the barrel inverted hook plate 214 into the groove 215, and the engagement section 43 is accommodated in the head holder section 221 of the needle seat 22, and the top rod section 44 is accommodated in the fitting section 222 of the needle seat 22. When the propping portions 61, 71 and the flexible brackets 62, 72 are passed through the flanges 24, 25, the propping portions 61, 71 of the one-way engagement units 6, 7 respectively formed on the engagement section 43 and the top rod section 44 can abut the flanges 24, 25 on the internal surface of the head holder section 221 and the internal surface of the fitting section 222 respectively, and the flanges 24, 25 abut the flexible brackets 62, 72 in the negative axis direction II by force to pass through the flanges 24, 25. It is noteworthy that the flexible brackets 62, 72 have elastic restoring force, so that when the flexible brackets 62, 72 are passed through the flanges 24, 25, the flexible brackets 62, 72 can restore their original shape. In addition, the propping portions 51, 61, 71 are rigid, and the flexible brackets 52, 62, 72 are bias valve plates, so that when the rod 4 is moved in the positive axis direction I opposite to the cylindrical body 4, the flexible brackets 52, 62, 72 are not supported, so that they are tilted and passed through the flanges 23, 24, 25.
When a user pulls the rod 4 to move in the negative axis direction II with respect to the cylindrical body 2, the flanges 24, 25 abut the flexible brackets 62, 72 of the one-way engagement units 6, 7 to tilt towards the positive axis direction I, the propping portions 61, 71 block the flexible brackets 62, 72 respectively to produce a one-way engagement effect, so that the needle seat 22 can be securely combined with the rod 4, and the needle seat 22 and the injection needle 3 together with the rod 4 are retracted into the barrel 21.
In
It is noteworthy that the syringe with a blocking structure of this preferred embodiment of the present invention comprises three one-way engagement units 5, 6, 7, and the syringe with a blocking structure comprises the one-way engagement unit 5, 6, 7 formed at any two of the rod body section 42, the engagement section 43 and the top rod section 44, or the syringe with a blocking structure just comprises one-way engagement unit 5, 6, 7 formed at one of the rod body section 42, the engagement section 43 and the top rod section 44 to produce a one-way engagement effect.
It is noteworthy that the way of securing the barrel 21 with the needle seat 22 includes but not limited to using the barrel inverted hook plate 214 to abut the needle seat 22, or using a general engagement structure for the connection. However, these are prior arts easily accomplished by persons having ordinary skill in the art, so that they will not be described in details.
In summation, the syringe with a blocking structure of the present invention has the following effects and advantages to achieve the objectives of the present invention:
1. When the flanges 23, 24, 25 abut the flexible brackets 52, 62, 72 of the one-way engagement units 5, 6, 7 to tilt in the positive axis direction I, the abutting portions 51, 61, 71 block the flexible brackets 52, 62, 72 to produce a one-way engagement effect.
2. The one-way engagement units 5, 6, 7 can be formed at positions on at least one of the rod body section 42, the engagement section 43 and the top rod section 44 to produce different one-way engagement effects.
Of course, the present invention may have many other embodiments with a slight difference with each other. With reference to
With reference to
With reference to
In this preferred embodiment, the rod 4A comprises a rod body section 42A, an engagement section 43A extended from the rod body section 42A and accommodated in the needle seat 22A, and a hollow cork cap 45A covered onto the engagement section 43A and plugged into the needle seat 22A, wherein the engagement section 43A has a circular groove 431A and a flexible bracket 432A horizontally extended from the circular groove 431A, and the flange 24A has an internal diameter slightly greater than the external diameter of the flexible bracket 432A, and the periphery 451A of the cork cap 45A has a thickness slightly smaller than the difference between the internal diameter of the flange 24A and the external diameter of the flexible bracket 432A, such that the periphery 451A of the cork cap 45A is protruded into the circular groove 431A by the flange 24 A (which defines the protrusion T), and the protrusion T has an internal diameter smaller than the external diameter of the flexible bracket 432A, and the circular groove 431A has a bevel 433A extended slantingly backward from a groove wall at the rear of the flexible bracket 432A, and the circular groove 431A has a plane 434A extended horizontally from the groove wall at the front of the flexible bracket 432A.
In this preferred embodiment, the barrel 21A has a plurality of dovetail grooves 217A uniformly formed at an end of the through hole 212A, and each dovetail groove 217A is axially passed from the barrel 21A into an end of the through hole 212A, and the barrel 21A has a barrel inverted hook plate 214A disposed deeply in each dovetail groove 217A and on an internal side of the dovetail groove 217A, and each barrel inverted hook plate 214A is extended in a direction towards the through hole 212A and tilted slightly downward into the barrel 21A, and each barrel inverted hook plate 214A has a dovetail member 216A disposed at an end of the barrel inverted hook plate 214A and installed in the corresponding dovetail groove 217A.
In this preferred embodiment, a circular body 26A with a square cross section and a specific compressibility is disposed in the barrel 21A and at the bottom of an end of the through hole 212A.
In the needle seat 22A of this preferred embodiment, a head holder section 221A and a fitting section 222A are disposed at an end of the through hole 212A of the barrel 21A, and the periphery of the head holder section 221A has a first circular portion 224A and a second circular portion 225A, and a circular groove 226A is formed between the first circular portion 224A and the second circular portion 225A, and the front edge of the first circular portion 224A abuts the circular body 26A, and when the barrel inverted hook plate 214A is warped, it is extended into the circular groove 226A and blocked by the rear edge of the first circular portion 224A, and the periphery of the second circular portion 225A can push away the barrel inverted hook plate 214A to drive the dovetail member 216A into the dovetail groove 217A, and the head holder section 221A disposed at the rear of the second circular portion 225A abuts a seal ring 223A of the barrel 21A, and the fitting section 222A is extended from the head holder section 221A and out from the through hole 212A.
In
In
In
In addition, the head holder section 221A of the needle seat 22A is abutted against the circular body 26A in the barrel 21A and warped by the barrel inverted hook plate 214A and blocked in the barrel 21A, so that when the rod 4A is pushed towards the barrel 21A, the head holder section 221A of the needle seat 22A can be positioned in the barrel 21A securely to assure that the seal ring 223A has the effect of preventing leakage.
Number | Date | Country | Kind |
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101121549 | Jun 2012 | TW | national |