CN210171526U - Blood collection sample management device - Google Patents
Blood collection sample management device Download PDFInfo
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- CN210171526U CN210171526U CN201920887318.4U CN201920887318U CN210171526U CN 210171526 U CN210171526 U CN 210171526U CN 201920887318 U CN201920887318 U CN 201920887318U CN 210171526 U CN210171526 U CN 210171526U
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Abstract
The utility model discloses a blood collection sample management device, including casing, rotating pin, frame, place hole, fixed cover, spring, sliding pin, closing plate, the hole of stepping down, this blood collection sample management device through using the device, can carry out closed management with the test tube after depositing in the device and handle to this prevents to see off the emergence of test tube phenomenon in the medical personnel mistake of examining blood and taking the device, has ensured the normality of chemical examination blood of medical personnel chemical examination blood of chemical examination blood.
Description
Technical Field
The utility model relates to a medical instrument especially relates to blood collection sample management device.
Background
In clinical work, after the blood sample collection is finished, the medical personnel collecting blood puts the test tube with the collected blood sample into the existing blood test storage device, the medical personnel for blood delivery inspection moves the storage device to a blood test room, and the medical personnel for blood test takes the blood to be tested in the blood test storage device for test treatment, at present, the traditional blood test storage device has a single structure and can not collect the blood for inspection, the test tube that is equipped with blood promptly can't carry out closed depositing, easily causes the medical personnel mistake of censorship blood to take the phenomenon of test tube in the strorage device to take and takes place, leads to the confusion of the strorage device management that traditional blood collection sample used, finally causes the unable normal blood to the strorage device of medical personnel who test blood to carry out the chemical examination processing, in view of above defect, is necessary to design blood collection sample management device in fact.
SUMMERY OF THE UTILITY MODEL
The utility model discloses the technical problem that will solve lies in: a blood collection sample management device is provided to solve the problems of the background art.
In order to solve the technical problem, the technical scheme of the utility model is that: blood collection sample management device, including casing, rotating pin, frame, place hole, fixed cover, spring, sliding pin, closing plate, the hole of stepping down, the rotating pin be located the inside lower extreme medial side of casing, rotating pin rotate with the casing and link to each other, the frame be located the rotating pin top, frame and rotating pin screw thread link to each other, place hole quantity be a plurality of, place the hole evenly encircle in the inside top of frame, place the hole be the through-hole, fixed cover quantity be a plurality of, fixed cover evenly encircle in the frame top, fixed cover and frame screw thread link to each other, the spring be located fixed cover inside, spring and fixed cover adhesive link to each other, the sliding pin be located the spring top, the sliding pin link to each other with the spring adhesive, just the sliding pin slide and fixed cover slide and link to each other, the closing plate be located the casing top, the left side of the sealing plate is connected with the shell in a rotating mode, the number of the yielding holes is a plurality of pieces, the yielding holes are sequentially distributed on the right side inside the sealing plate from left to right, and the yielding holes are through holes.
Furthermore, the upper end of the right side outside the shell is also provided with a mechanical coded lock, and the mechanical coded lock is connected with the shell through threads.
Further, one end of the sliding pin is also provided with a wedge-shaped block, and the wedge-shaped block is in threaded connection with the sliding pin.
Further, the right side in the sealing plate is also provided with a guide hole, and the guide hole is integrally connected with the sealing plate.
Further, the top of the sealing plate is also provided with a handle, and two ends of the handle are in threaded connection with the sealing plate.
Compared with the prior art, the blood collection sample management device has the advantages that before use, the sealing plate is in a closed state, the mechanical coded lock is in a locked state, the purpose is to ensure the stability of the closed sealing plate, the code of the mechanical coded lock is only known by medical personnel testing blood, meanwhile, the sliding pin which is not positioned in the guide hole is positioned in the fixed sleeve corresponding to the sliding pin, so that the sliding pin extrudes the corresponding spring to enable the spring to be in a deformed state, when the device is used, only one sliding pin is arranged in the guide hole, the medical personnel collecting blood firstly pushes the sliding pin in the guide hole by hand, so that the sliding pin in the guide hole moves along the rear end direction of the guide hole, namely the sliding pin drives the frame and the rotating pin to rotate by taking the rotating pin as the circle center until the sliding pin in the guide hole moves to the rear end position of the guide hole, at the moment, the next sliding pin at the bottom of the sealing plate moves to the front end inside the guide hole, the sliding pin is moved out of the fixed sleeve under the action of the resilience force of the spring corresponding to the sliding pin, the placing hole and the abdicating hole are in a mutually overlapped state, a medical worker collecting blood puts the test tube filled with blood into the frame through the abdicating hole and the placing hole, after the placement is finished, the medical worker collecting blood pushes the sliding pin at the front end inside the guide hole by hand so as to enable the wedge block at the sliding pin at the rear end inside the guide hole to apply extrusion force to the rear end inside the guide hole, namely, the sliding pin at the rear end inside the guide hole is moved to the inside of the fixed sleeve and moved to the bottom of the sealing plate, at the moment, only one sliding pin is arranged inside the guide hole, the medical worker collecting blood performs the above operation steps in the same way, the placing hole in the next row is overlapped with the abdicating hole, so that the device is continuously used for storing and treating the test tube, because of the effect that the closing plate was closed and the effect that the test tube moved to frame inside, make the test tube placed in the device can not be by the medical personnel who gathers blood and the emergence of the medical personnel mistake phenomenon of taking of censorship blood, after the device finishes using, the medical personnel who censorship blood hold the handle again and move the device to the laboratory, medical personnel who tests blood unblock mechanical trick lock again, open the closing plate again, again take the test tube in the frame, with this carry out test treatment to blood can, sample management device is gathered to this blood, through using the device, can carry out closed management with the test tube after depositing in the device and handle, with this prevent that medical personnel who tests blood from taking the emergence of test tube phenomenon in the device by mistake, the normality of medical personnel's test blood who tests blood has been guaranteed.
Drawings
FIG. 1 is a partial front cross-sectional view of a blood collection sample management device;
FIG. 2 is a top view of a blood collection sample management device;
FIG. 3 is a top view of the frame;
fig. 4 is an internal cross-sectional view of the harness.
The mechanical coded lock comprises a shell 1, a rotating pin 2, a frame 3, a placing hole 4, a fixing sleeve 5, a spring 6, a sliding pin 7, a sealing plate 8, a yielding hole 9, a mechanical coded lock 101, a wedge block 701, a guide hole 801 and a handle 802.
The following detailed description will be further described in conjunction with the above-identified drawings.
Detailed Description
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the concepts underlying the described embodiments. It will be apparent, however, to one skilled in the art, that the described embodiments may be practiced without some or all of these specific details. In other instances, well known process steps have not been described in detail.
As shown in fig. 1, 2, 3 and 4, the blood collection sample management device comprises a shell 1, a rotating pin 2, a frame 3, a placing hole 4, a fixing sleeve 5, a spring 6, a sliding pin 7, a sealing plate 8 and a yielding hole 9, wherein the rotating pin 2 is positioned at the middle side of the lower end in the shell 1, the rotating pin 2 is rotatably connected with the shell 1, the frame 3 is positioned at the top of the rotating pin 2, the frame 3 is in threaded connection with the rotating pin 2, the placing holes 4 are a plurality of pieces, the placing holes 4 are uniformly surrounded at the top end in the frame 3, the placing holes 4 are through holes, the fixing sleeve 5 is a plurality of pieces, the fixing sleeve 5 is uniformly surrounded at the top of the frame 3, the fixing sleeve 5 is in threaded connection with the frame 3, the spring 6 is positioned in the fixing sleeve 5, the spring 6 is connected with an adhesive of the fixing sleeve 5, the sliding pin 7 is positioned at the top of the spring 6, the sliding pin 7 is connected with the spring 6 by adhesive, the sliding pin 7 is connected with the fixed sleeve 5 in a sliding way, the sealing plate 8 is positioned at the top of the shell 1, the left side of the sealing plate 8 is rotationally connected with the shell 1, the number of the abdicating holes 9 is a plurality of pieces, the abdicating holes 9 are distributed on the right side inside the sealing plate 8 from left to right in sequence, the abdicating hole 9 is a through hole, the upper end of the right side outside the shell 1 is also provided with a mechanical coded lock 101, the mechanical coded lock 101 is connected with the shell 1 through threads, one end of the sliding pin 7 is also provided with a wedge block 701, the wedge block 701 is connected with the sliding pin 7 through a thread, the right side inside the sealing plate 8 is also provided with a guide hole 801, the guiding hole 801 is integrally connected with the sealing plate 8, the top of the sealing plate 8 is further provided with a handle 802, and two ends of the handle 802 are in threaded connection with the sealing plate 8.
Before the blood collection sample management device is used, firstly, the sealing plate 8 is in a closed state, and the mechanical coded lock 101 is in a locked state, so as to ensure the stability of the sealing plate 8 after the sealing plate 8 is closed, the code of the mechanical coded lock 101 is only known by medical personnel who test blood, meanwhile, the sliding pin 7 which is not positioned in the guide hole 801 is positioned in the fixed sleeve 5 corresponding to the sliding pin 7, so that the sliding pin 7 extrudes the corresponding spring 6 to enable the spring 6 to be in a deformed state, when the blood collection sample management device is used, only one sliding pin 7 is positioned in the guide hole 801, the medical personnel who collect blood firstly pushes the sliding pin in the guide hole 801 by hand, so that the sliding pin in the guide hole 801 moves along the rear end direction of the guide hole 801, namely, the sliding pin 7 drives the frame 3 and the rotating pin 2 to rotate by taking the rotating pin 2 as the center until the sliding pin 7 in the guide hole 801 moves to the rear end position of the guide hole 801, at this time, the next sliding pin 7 at the bottom of the sealing plate 8 is moved to the front end inside the guiding hole 801, the sliding pin 7 is moved out of the fixing sleeve 5 by the resilience force of the sliding pin 7 corresponding to the spring 6, and synchronously, the placing hole 4 and the abdicating hole 9 are in a mutually overlapped state, the medical staff collecting blood puts the test tube with blood into the frame 3 through the abdicating hole 9 via the placing hole 4, and after the placement is finished, the medical staff collecting blood pushes the sliding pin 7 at the front end inside the guiding hole 801 by hand, so that the wedge block 701 at the sliding pin 7 at the rear end inside the guiding hole 801 applies an extrusion force to the rear end inside the guiding hole 801, that is, the sliding pin 7 at the rear end inside the guiding hole 801 is moved to the bottom of the sealing plate 8 while moving to the inside of the fixing sleeve 5, at this time, only one sliding pin is inside the guiding hole 801, and the medical staff collecting blood can perform the above operation steps in the same way, with the next hole of placing 4 and the hole 9 coincidence of stepping down mutually of column, continue to use the device to deposit the processing to the test tube after surplus blood collection with this, effect and the test tube that closes because of closing plate 8 move to the inside effect of frame 3, make the test tube of placing in the device can not be by the medical personnel who gathers blood and the medical personnel mistake emergence of the phenomenon of taking of censorship blood, after the device finishes using, the medical personnel who send to examine blood hold handle 802 again and move the device to the laboratory, the medical personnel who examines blood again with mechanical password 101 lock unblock, reopen closing plate 8, the test tube in the frame 3 of taking again, with this carry out assay to blood and handle can.
The present invention is not limited to the above specific embodiments, and those skilled in the art can make various changes without creative labor from the above conception, and all the changes fall within the protection scope of the present invention.
Claims (5)
1. The blood collection sample management device is characterized by comprising a shell, a rotating pin, a frame, a placing hole, a fixing sleeve, a spring, a sliding pin, a sealing plate and a yielding hole, wherein the rotating pin is positioned at the middle side of the lower end in the shell, the rotating pin is rotatably connected with the shell, the frame is positioned at the top of the rotating pin, the frame is in threaded connection with the rotating pin, the placing hole is in a plurality of pieces, the placing hole is uniformly surrounded at the top end in the frame, the placing hole is a through hole, the fixing sleeve is in a plurality of pieces, the fixing sleeve is uniformly surrounded at the top of the frame, the fixing sleeve is in threaded connection with the frame, the spring is positioned in the fixing sleeve, the spring is connected with the fixing sleeve adhesive, the sliding pin is positioned at the top of the spring, the sliding pin is connected with the spring adhesive, and the sliding pin is in sliding connection with the fixing sleeve, the closing plate be located the casing top, the closing plate left side rotate with the casing and link to each other, the hole quantity of stepping down be a plurality of, the hole of stepping down distribute in the inside right side of closing plate in proper order from left to right, the hole of stepping down be the through-hole.
2. The blood collection sample management device of claim 1, wherein the housing further comprises a mechanical combination lock disposed at the upper right side of the exterior of the housing, the mechanical combination lock being threadably engaged with the housing.
3. The blood collection sample management device of claim 2, wherein the slide pin further comprises a wedge at one end, the wedge being threadably coupled to the slide pin.
4. The blood collection sample management device of claim 3, wherein the sealing plate further comprises a guide hole formed in the right side of the interior thereof, the guide hole being integrally connected to the sealing plate.
5. The blood collection sample management device of claim 4, wherein a handle is provided on the top of the sealing plate, and wherein the handle is threadably connected to the sealing plate at both ends.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920887318.4U CN210171526U (en) | 2019-06-13 | 2019-06-13 | Blood collection sample management device |
Applications Claiming Priority (1)
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CN201920887318.4U CN210171526U (en) | 2019-06-13 | 2019-06-13 | Blood collection sample management device |
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CN210171526U true CN210171526U (en) | 2020-03-24 |
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CN201920887318.4U Expired - Fee Related CN210171526U (en) | 2019-06-13 | 2019-06-13 | Blood collection sample management device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111790463A (en) * | 2020-07-09 | 2020-10-20 | 李永杰 | Temporary sample storage device for clinical laboratory and use method thereof |
-
2019
- 2019-06-13 CN CN201920887318.4U patent/CN210171526U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111790463A (en) * | 2020-07-09 | 2020-10-20 | 李永杰 | Temporary sample storage device for clinical laboratory and use method thereof |
CN111790463B (en) * | 2020-07-09 | 2021-09-17 | 李永杰 | Temporary sample storage device for clinical laboratory and use method thereof |
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20200324 |
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CF01 | Termination of patent right due to non-payment of annual fee |