Medical tested object auto-ejection structure and blood-gas analyzer using same
09885731 ยท 2018-02-06
Assignee
Inventors
Cpc classification
B01L9/52
PERFORMING OPERATIONS; TRANSPORTING
G01N33/4875
PHYSICS
Y10T436/115831
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B01L2200/04
PERFORMING OPERATIONS; TRANSPORTING
G01N2035/00277
PHYSICS
F01L2305/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K1/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
G01N35/00
PHYSICS
B01L9/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A medical tested object auto-ejection structure comprises a detection instrument and a tested object (1). An insertion port is formed in the detection instrument. When the tested object (1) is inserted in the instrument through the insertion port, the bottom end of the tested object (1) presses a bulge (21) used for rebounding, and a raised step (11) arranged on the surface of one side of the tested object (1) is locked on a clamping buckle (31) arranged at a position corresponding to the step on the instrument simultaneously, and after a test is finished, the instrument releases the locking of the clamping buckle (31) for the tested object (1) by a transmission device, and the tested object (1) is ejected from the instrument in time under the action of the bulge (21) used for rebounding, thus solving the problem of forgetting to pull the tested object out or inability to pull it out in time, and improving the reliability of the product.
Claims
1. A medical tested object auto-ejection structure, comprising a detection instrument and a tested object, an insertion port formed in the detection instrument, the tested object is inserted in the instrument through the insertion port, wherein, a rebounding device pressing against the top of the tested object is arranged right under the tested object after the tested object is inserted, the rebounding device is disposed on a base of the detection instrument, a raised step is arranged on the surface of one side of the tested object, and a clamping buckle device locking and releasing the step through a transmission device is arranged at a position corresponding to the upper surface of the raised step, on the detection instrument, wherein the rebounding device comprises a bulge, and the bulge passes through an opening port arranged on an upper surface of the base of the detection instrument; and a liquid-withdrawing needle configured for being inserted into the tested object to withdraw liquid is arranged on the upper surface of the base, and wherein in a state where the bulge is not pressed tightly and is retracted by the tested object, the height of the bulge which passes through the upper surface of the base of the detection instrument is higher than the height of the liquid-withdrawing needle.
2. A medical tested object auto-ejection structure according to claim 1, wherein the tested object is a medical test card.
3. A medical tested object auto-ejection structure according to claim 1, wherein the step which cannot pass through the opening port is arranged at the bottom end of the bulge, a column body is arranged at the bottom of the step, a spring used for rebounding is sleeved on the column body, and the bottom end of the column body is disposed on the base.
4. A medical tested object auto-ejection structure according to claim 3, wherein the clamping buckle device comprises a tension rod and a clamping buckle element, the clamping buckle element locking the raised step is arranged at the front end of the tension rod, and the spring pressing against the detection instrument is disposed at the back end of the tension rod.
5. A medical tested object auto-ejection structure according to claim 4, wherein one surface of the clamping buckle element facing the raised step is a slope inclining from up to down.
6. A medical tested object auto-ejection structure according to claim 4, wherein the transmission device comprises a lever and a gear, one end of the lever presses against and is connected with the tail end of the tension rod, and the other end of the lever presses against a boss arranged on the gear.
7. A medical tested object auto-ejection structure according to claim 6, wherein the surface of the boss which is arranged on the gear is a concave surface.
8. A medical tested object auto-ejection structure according to claim 6, wherein the end which the lever and the boss press against and the boss are both slope-shaped structures which match with each other.
9. A blood gas analyzer, wherein the blood gas analyzer comprises a medical tested object auto-ejection structure of claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order to be described easily, the invention is described with the following preferred examples and figures in details.
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DETAILED DESCRIPTION OF THE EMBODIMENT
(12) The invention will be further described in more details and the object, the technical solution and the advantages of the invention will be more apparent with the combination of the following drawings and embodiments. It shall be understood that the embodiments described herein are only used for explaining the invention but do not limit the invention.
(13) As shown in
(14) An insertion port is formed in the detection instrument, a tested object (for example, a technical solution of a test card, a test bottle or a test pipe which is loaded with a test liquid, preferably the test card, is described) is inserted into the instrument through the insertion port, a raised step 11 is arranged on the surface of one side of the test card 1, a rebounding device 2 and a clamping buckle device 3 arranged in the detection instrument are respectively assembled on a base 5 right under which the test card 1 is inserted, and the position corresponding to the front end of the raised step 11 arranged on the surface of one side of the test card 1, when the test card 1 is inserted into the insertion port arranged on the detection instrument, the test card 1 compresses the rebounding device 2 while a step 11 on the test card 1 is locked by the clamping buckle device 3 to fix the test card, the instrument starts to measure and analyze; when the measurement is completed, a transmission device of the instrument is operated so that the clamping buckle device 3 releases the step 11 on the test card 1, and the test card 1 is released, a test instrument is ejected under the action of the rebounding device 2 while the test card 1 is released, so that an auto-ejection structure is formed.
(15) The step 11 is arranged on the surface of any one side of the test card 1, so as to ensure that the test card 1 can be locked by the clamping buckle device 3 as is shown in
(16) As the preferable embodiment of the invention, as shown in
(17) As shown in
(18) As shown in
(19) When the test card 1 is not inserted, the gear 4 is under the initial state. At this time, the boss 41 on the gear 4 is far away from the lever 33 on the clamping buckle device 3, and the clamping buckle device 3 is under the locking state; the bulge 21 is ejected upward under the action of the spring 22 by the rebounding device 2, as shown in
(20) When the test card 1 is inserted, the test card 1 presses the bulge 21 on the rebounding device 2 downward so that the rebounding spring 22 assembled on the rebounding device 2 is under a compacted state, meanwhile, the liquid-withdrawing steel needle 51 is inserted into the test card 1 to form a liquid-withdrawing passage, and the step 11 on the test card 1 slides to the lower side of the clamping buckle 31 on the clamping buckle device 3, so that the clamping buckle 31 locks the test card 1, as shown in
(21) After the test, the gear 4 in the instrument rotates, so that the boss 41 jacks up the lever 33 on the clamping buckle device 3, the tension rod 30 on the clamping buckle device 3 is pulled back, the clamping buckle 31 at the front end of the tension rod 30 releases the step 11 on the test card 1, and meanwhile, the boss 21, under the action of the force of the spring 22 of the rebounding device 2, accelerates upward and springs up the test card 1 from the rebounding device to be separated from the liquid-withdrawing steel needle 51 and from the instrument, finishing the test as is shown in
(22) The above-mentioned are only preferred embodiments of the invention and do not limit the invention, any modification, equal replacement and improvement made within the spirit and the principle of the invention shall be comprised in the protection scope of the invention.