Referring to
The barrel 1 has an inside receiving chamber 11, a front suction hole 12 disposed at one side, namely, the front side and attached with a suction tip 121, an inside connection tube 111 fixedly mounted on the inside in communication between the inside receiving chamber 11 and the front suction hole 12, a gasket ring 122 fastened to the periphery of the inside connection tube 111 to seal a gap, a rear connection portion 13 disposed at the other side, namely, the rear side, an outer thread 131 extending around the periphery of the rear connection portion 13.
The isolation sleeve 2 is a tapered sleeve, having a tapered accommodation chamber 21, an inlet 22 at the narrow front side of the tapered accommodation chamber 21, a rear locating flange 23 around the broad rear side of the tapered accommodation chamber 21, and at least one retaining block 231 on the inside wall of the rear locating flange 23.
The inner filter tube 3 has a base 31 at one side, namely, the rear side, a close-end tube 33 at the other side, namely, the front side, a locating portion 32 connected between the base 31 and the close-end tube 33, a retaining flange 321 formed integral with one end of the locating portion 32 adjacent to the close-end tube 33 and extending around the periphery of the locating portion 32, an axial fluid passage 331 axially extending through the center of the base 31 and the locating portion 32 into the inside of the close-end tube 33, and a plurality of filter holes 332 cut through the periphery of the close-end tube 33 in communication with the axial fluid passage 331.
The adapter 4 has a front inner thread 411, a rear connection portion 412, and a drainage hole 41 axially extending through the two distal ends. The rear connection portion 412 of the adapter 4 is connected to a suction tube 5.
During assembly process, the isolation sleeve 2 is inserted into the inside receiving chamber 11 of the barrel 1 to connect the inlet 22 to the inside connection tube 111 and to stop the periphery of the inlet 22 (i.e., the front end of the isolation sleeve 2) against the gasket ring 122, and then the close-end tube 33 of the inner filter tube 3 is inserted into the tapered accommodation chamber 21 of the isolation sleeve 2 to force the locating portion 32 and the retaining flange 321 into engagement with the rear locating flange 23 and the retaining block 231 respectively, and then the front inner thread 411 of the adapter 4 is threaded onto the outer thread 131 of the barrel 1, and then the rear connection portion 412 of the adapter 4 is connected to the suction tube 5. Thus, the medical fluid aspirator is assembled for application.
In an alternate form of the present invention, the isolation sleeve 2 and the inner filter tube 3 are made in integrity, keeping the closed-end tube 33 suspending in the tapered accommodation chamber 21 of the isolation sleeve 2.
Referring to
As stated above, the front end of the isolation sleeve 2 is stopped against the gasket ring 122 so that waste fluid does not leak out of the isolation sleeve 2.
Referring to
As stated above, the inside receiving chamber 11 of the barrel 1 receives the isolation sleeve 2 and the inner filter tube 3, and the isolation sleeve 2 is fastened to the inside connection tube 111 of the barrel 1 and firmly stopped against the gasket ring 122, preventing a leakage.
In actual practice, the medical fluid aspirator of the present invention has the follow benefits:
1. The inlet 22 of the isolation sleeve 2 is connected to the inside connection tube 111 of the barrel 1, and the gasket ring 122 seals the gap between the isolation sleeve 2 and the inside connection tube 111, preventing a leakage.
2. By means of the suction tip 121, waste fluid and waste solid matters can be efficiently drawn through the medical fluid aspirator into the suction tube 5. Further, the filter holes 332 of the close-end tube 33 of the inner filter tube 3 remove waste solid matters from waste fluid, preventing block of the suction tube 5 and the suction pump by waste solid matters. After removal of the isolation sleeve 2 with the inner filter tube 3 from the barrel 1, waste solid matters are kept in the tapered accommodation chamber 21 of the isolation sleeve 2 around the close-end tube 33 of the inner filter tube 3 and can be properly disposed off.
3. The inlet 22 of the isolation sleeve 2 is fastened to the inside connection tube 111 of the barrel 1 and firmly stopped against the gasket ring 122. Therefore, the isolation sleeve 2 does not vibrate relative to the barrel 1 during the operation of the medical fluid aspirator.
Although a particular embodiment of the invention has been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention.