CN113333412A - Medical blood collection test tube wiping equipment - Google Patents

Medical blood collection test tube wiping equipment Download PDF

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Publication number
CN113333412A
CN113333412A CN202110623035.0A CN202110623035A CN113333412A CN 113333412 A CN113333412 A CN 113333412A CN 202110623035 A CN202110623035 A CN 202110623035A CN 113333412 A CN113333412 A CN 113333412A
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China
Prior art keywords
rod
plate
action
tube
blood collection
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Granted
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CN202110623035.0A
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Chinese (zh)
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CN113333412B (en
Inventor
何恒矿
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Guangdong Traversing Medical Technology Co ltd
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Individual
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Publication of CN113333412A publication Critical patent/CN113333412A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B9/00Cleaning hollow articles by methods or apparatus specially adapted thereto 
    • B08B9/08Cleaning containers, e.g. tanks
    • B08B9/20Cleaning containers, e.g. tanks by using apparatus into or on to which containers, e.g. bottles, jars, cans are brought

Abstract

The invention relates to wiping equipment, in particular to blood collection test tube wiping equipment for medical treatment. The invention aims to provide medical blood collection test tube wiping equipment which is time-saving, labor-saving and efficient and does not need to perform wiping action all the time manually. In order to solve the above-described technical problem, the present invention provides a blood collection tube wiping apparatus for medical use, comprising: the bottom plate is connected with a supporting plate; a wiping rod connected to the support plate; the rotating rod is connected to the wiping rod and is in sliding fit with the bottom plate; a drive mechanism connected to the base plate; and a left-right mechanism connected to the driving mechanism. Thereby wipe the test tube through actuating mechanism and the cooperation of controlling the mechanism, thereby press from both sides tightly the test tube through clamping mechanism, make and wipe the in-process more stable, can not roll and fall out the effect pipe.

Description

Medical blood collection test tube wiping equipment
Technical Field
The invention relates to wiping equipment, in particular to blood collection test tube wiping equipment for medical treatment.
Background
Test tubes, instruments commonly used in chemical laboratories, are used as reaction vessels for small amounts of reagents, either at ambient temperature or with heat. The test tubes include common test tubes, test tubes with a support, centrifugal test tubes and the like.
At present, people wash the test tube and hold dry cloth in one hand and hold between the fingers the test tube with on the other hand and clean stick to its inside, clean like this and need the manual work to do always and clean the action, waste time and energy and inefficiency.
Therefore, there is a need to design a medical blood collection test tube wiping device which does not need to perform wiping action all the time by manpower, is time-saving, labor-saving and efficient.
Disclosure of Invention
(1) Technical problem to be solved
The invention aims to overcome the defects that manual wiping action is required all the time, time and labor are wasted, and efficiency is low, and the technical problem to be solved is to provide the medical blood collection test tube wiping device which is time-saving, labor-saving and efficient and does not need manual wiping action all the time.
(2) Technical scheme
In order to solve the above-described technical problem, the present invention provides a blood collection tube wiping apparatus for medical use, comprising: the bottom plate is connected with a supporting plate; a wiping rod connected to the support plate; the rotating rod is connected to the wiping rod and is in sliding fit with the bottom plate; a drive mechanism connected to the base plate; and a left-right mechanism connected to the driving mechanism.
Preferably, the drive mechanism comprises: the arc-shaped plate is connected to the bottom plate; a rodless cylinder mounted on the arc plate; the rotating shaft is rotatably connected to the rodless cylinder sliding block; the action tube is connected to the rotating shaft; an action plate connected to the action tube; the torsional spring is connected between the acting pipe and the rodless cylinder sliding block; and the shell is connected to the arc-shaped plate and matched with the action plate.
Preferably, the left-right mechanism includes: a push rod connected to the action tube; a rack slidably coupled to the housing; a sliding rod which is connected to the rack in a sliding manner; the action rod is connected to the sliding rod and matched with the push rod; and the first spring is connected between the action rod and the rack.
Preferably, the clamping mechanism is further included, and the clamping mechanism includes: the special-shaped rod is connected to the rodless cylinder sliding block; a large air bag connected to the action tube; the small air bag is connected to the action tube and is connected and matched with the large air bag; a splint slidably attached to the action tube, the splint cooperating with the large bladder; and the second spring is connected between the clamping plate and the acting tube.
Preferably, the device further comprises a transmission mechanism, wherein the transmission mechanism comprises: the sliding block is rotatably connected to the rotating shaft and is connected with the shell in a sliding manner; the loop bar is rotatably connected to the rotating shaft; the gear is connected to the loop bar and meshed with the rack; and the scroll spring is connected between the loop bar and the sliding block.
Preferably, still include stop gear, stop gear includes: a wedge bar connected to the slider; the limiting rod is connected to the shell in a sliding mode, the limiting rod is matched with the rack, and the limiting rod is matched with the wedge-shaped rod; and the third spring is connected between the limiting rod and the shell.
Preferably, a rotation mechanism is further included, the rotation mechanism including: a rotating plate rotatably connected to the base plate; the limiting block is connected to the rotating plate; the wedge-shaped block is connected to the limiting block in a sliding manner; and the fourth spring is connected between the wedge-shaped block and the limiting block.
Preferably, the front side and the rear side of the lower part of the shell are both provided with sliding grooves, and the sliding blocks on the two sides slide in the sliding grooves.
(3) Advantageous effects
1. The test tube is wiped by the matching of the driving mechanism and the left and right mechanisms.
2. Thereby press from both sides tightly the test tube through clamping mechanism, make and clean the in-process more stable, can not roll and fall out the effect pipe.
3. Thereby need not the rack of artifical pulling both sides to move right through drive mechanism and clean the test tube comprehensively, use manpower sparingly.
4. Thereby it is spacing to the rack of both sides through stop gear, does not need manual control rack to fix, further uses manpower sparingly and has improved work efficiency.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of a first embodiment of the present invention.
Fig. 3 is a schematic perspective view of a second embodiment of the present invention.
Fig. 4 is a third perspective view of the present invention.
Fig. 5 is a schematic diagram of a fourth three-dimensional structure according to the present invention.
Fig. 6 is an enlarged view of a portion a of the present invention.
Fig. 7 is a schematic perspective view of a fifth embodiment of the present invention.
Fig. 8 is a schematic perspective view of a sixth embodiment of the present invention.
Fig. 9 is an enlarged view of part B of the present invention.
Fig. 10 is a schematic perspective view of a seventh embodiment of the present invention.
Fig. 11 is an enlarged view of the portion C of the present invention.
The labels in the figures are: 1-bottom plate, 2-supporting plate, 3-wiping rod, 4-rotating rod, 5-driving mechanism, 51-arc plate, 52-rodless cylinder, 53-rotating shaft, 54-acting tube, 55-acting plate, 56-torsional spring, 57-shell, 6-left and right mechanism, 61-push rod, 62-rack, 63-sliding rod, 64-acting rod, 65-first spring, 7-clamping mechanism, 71-special-shaped rod, 72-big air bag, 73-small air bag, 74-clamping plate, 75-second spring, 8-transmission mechanism, 81-sliding block, 82-loop rod, 83-gear, 84-volute spring, 9-limiting mechanism, 91-wedge rod, 92-limiting rod, 93-third spring, 10-rotating mechanism, 101-rotating plate, 102-limiting block, 103-wedge block, 104-fourth spring.
Detailed Description
The invention is further described below with reference to the figures and examples.
Example 1
A blood collection test tube wiping device for medical treatment is shown in figures 1-4 and comprises a bottom plate 1, a supporting plate 2, a wiping rod 3, a rotating rod 4, a driving mechanism 5 and a left-right mechanism 6, wherein the left side of the upper portion of the bottom plate 1 is connected with the supporting plate 2, the upper portion of the supporting plate 2 is provided with the wiping rod 3, the left side of the wiping rod 3 is connected with the rotating rod 4, the rotating rod 4 is in sliding fit with the bottom plate 1, the right side of the bottom plate 1 is connected with the driving mechanism 5, and the right side of the driving mechanism 5 is connected with the left-right mechanism 6.
The driving mechanism 5 comprises an arc-shaped plate 51, a rodless cylinder 52, a rotating shaft 53, an acting pipe 54, an acting plate 55, a torsion spring 56 and a shell 57, the right side of the bottom plate 1 is connected with the arc-shaped plate 51, the rodless cylinder 52 is installed in the middle of the upper portion of the arc-shaped plate 51, the rotating shaft 53 is connected with the upper portion of a sliding block of the rodless cylinder 52 in a rotating mode, the acting pipe 54 is connected to the upper portion of the rotating shaft 53, the acting plate 55 is connected to the right side of the lower portion of the acting pipe 54, the torsion spring 56 is connected between the acting pipe 54 and the sliding block of the rodless cylinder 52, the shell 57 is connected to the upper portion of the arc-shaped plate 51, and the shell 57 is matched with the acting plate 55.
The left-right mechanism 6 comprises a push rod 61, a rack 62, a sliding rod 63, an action rod 64 and a first spring 65, the push rod 61 is connected to the right side of the upper portion of the action pipe 54, the racks 62 are connected to the front side and the rear side of the lower portion of the shell 57 in a sliding mode, the sliding rods 63 are connected to the left sides of the racks 62 on the two sides in a sliding mode, the action rods 64 on the two sides are matched with the push rods 61 on the two sides respectively, and the first spring 65 is connected between the action rods 64 on the two sides and the racks 62 on the two sides respectively.
When the blood collection test tube needs to be wiped, the device can be used, firstly, the test tube is manually put into the action tube 54 from the upper part of the shell 57, then the rodless cylinder 52 is manually started to drive the rotating shaft 53 to move rightwards, the rotating shaft 53 moves rightwards to drive the action tube 54 to move rightwards, the action tube 54 moves rightwards to drive the action plate 55 to move rightwards, the action plate 55 moves rightwards to cooperate with the shell 57 to rotate, the action plate 55 rotates to drive the action tube 54 to rotate, the action tube 54 rotates the torsion spring 56 to be compressed, the action tube 54 rotates to drive the push rod 61 to rotate, the push rod 61 rotates to drive the action rod 64 to move leftwards, the action rod 64 moves leftwards to drive the first spring 65 to be stretched, the action rod 64 moves leftwards to drive the slide rod 63 to move leftwards, the slide rod 63 moves leftwards to drive the turn rod 4 to move leftwards to drive the wiping rod 3, when the push rod 61 rotates to the limit position, action bars 64 resets under the effect of the first spring 65 that is stretched, action bars 64 resets right and drives wiping rod 3 and resets right, thereby wipe the test tube the left side in action tube 54, then move right through the rack 62 of artifical pulling both sides and drive the slide bar 63 of both sides and move right, the slide bar 63 of both sides moves right and drives wiping rod 3 and move right, thereby carry out inside comprehensive wiping to the test tube bottom, when wiping the completion, move left through the rack 62 of artifical pulling both sides and reset, then pull wiping rod 3 and move left and start rodless cylinder 52 simultaneously and drive pivot 53 and reset left, when board 55 does not contact with shell 57, action tube 54 resets under the effect of compressed torsional spring 56, the manual work is taken out the test tube from shell 57 upper portion afterwards, rodless cylinder 52 is closed to the manual work at last.
Example 2
On the basis of embodiment 1, as shown in fig. 5 and 6, the device further comprises a clamping mechanism 7, wherein the clamping mechanism 7 comprises a special-shaped rod 71, a large air bag 72, a small air bag 73, clamping plates 74 and second springs 75, the special-shaped rod 71 is connected to the front side and the rear side of the upper portion of the sliding block of the rodless cylinder 52, the large air bag 72 is arranged at the lower portion of the action tube 54, the small air bag 73 is arranged inside the action tube 54, the small air bag 73 is connected and matched with the large air bag 72, the clamping plates 74 are connected to the front side and the rear side of the lower portion of the action tube 54 in a sliding manner, the clamping plates 74 at the two sides are matched with the large air bag 72, and the second springs 75 are connected between the clamping plates 74 at the two sides and the action tube 54.
When pivot 53 rotated, pivot 53 rotated and drove effect pipe 54 and rotated, effect pipe 54 rotated and drove the splint 74 of both sides and rotated, the splint 74 of both sides rotated the dysmorphism pole 71 inward movement through both sides, the second spring 75 of the splint 74 inward movement both sides of both sides is compressed, when the effect pipe 54 resets, the splint 74 of both sides resets under the second spring 75 effect of both sides, thereby the splint 74 inward movement of both sides extrudees the air in the big gasbag 72 to in the small gasbag 73, thereby press from both sides tight the test tube, it is more stable to make the in-process of wiping, can not roll out effect pipe 54.
Example 3
On the basis of embodiment 2, as shown in fig. 7, the power transmission device further includes a transmission mechanism 8, the transmission mechanism 8 includes a sliding block 81, a loop bar 82, a gear 83 and a spiral spring 84, the sliding block 81 is rotatably connected to both front and rear sides of the rotating shaft 53, the sliding blocks 81 on both sides are slidably connected to the housing 57, the loop bar 82 is rotatably connected to both front and rear sides of the rotating shaft 53, the gear 83 is connected to the outer side of the loop bar 82 on both sides, the gear 83 on both sides is engaged with the rack 62 on both sides, and the spiral spring 84 is connected between the loop bar 82 on both sides and the sliding block 81 on both sides.
When the rotating shaft 53 moves rightwards, the rotating shaft 53 moves rightwards to drive the loop bars 82 on the two sides to move rightwards, the loop bars 82 on the two sides move rightwards to drive the gears 83 on the two sides to move rightwards, the gears 83 on the two sides move rightwards, the racks 62 on the two sides are manually controlled to be fixed, the gears 83 are matched with the racks 62 to rotate, the gears 83 on the two sides rotate to drive the loop bars 82 on the two sides to rotate, the volute springs 84 on the two sides of the loop bars 82 on the two sides are compressed, then the racks 62 on the two sides are manually loosened, the gears 83 on the two sides are reversed under the action of the volute springs 84, the gears 83 on the two sides are reversed to drive the racks 62 on the two sides to move rightwards, and therefore the racks 62 on the two sides do not need to be manually pulled to move rightwards to comprehensively wipe the test tube, and manpower is saved.
Example 4
On the basis of embodiment 3, as shown in fig. 8 and 9, the device further comprises a limiting mechanism 9, wherein the limiting mechanism 9 comprises a wedge-shaped rod 91, a limiting rod 92 and a third spring 93, the upper parts of the sliding blocks 81 on the two sides are connected with the wedge-shaped rod 91, the front side and the rear side of the lower part of the shell 57 are connected with the limiting rod 92 in a sliding manner, the limiting rods 92 on the two sides are matched with the racks 62 on the two sides, the limiting rods 92 on the two sides are matched with the wedge-shaped rods 91 on the two sides, and the third springs 93 are connected between the limiting rods 92 on the two sides and the shell 57.
When the pivot 53 moves to the right, the pivot 53 moves to the right and drives the slider 81 of both sides to move to the right, the slider 81 of both sides moves to the right and drives the wedge pole 91 of both sides to move to the right, the wedge pole 91 of both sides moves to the right and drives the gag lever post 92 upward movement of both sides, the third spring 93 of the gag lever post 92 upward movement both sides of both sides is compressed, thereby the gag lever post 92 upward movement of both sides makes the rack 62 of both sides cancel spacingly, when the rack 62 of both sides resets to extreme position left, the gag lever post 92 of both sides resets under the effect of the third spring 93 of both sides, thereby it is spacing to carry out the rack 62 to both sides, do not need manual control rack 62 to fix, further use manpower sparingly and improved work efficiency.
As shown in fig. 10 and 11, the shoe sole further comprises a rotating mechanism 10, the rotating mechanism 10 comprises a rotating plate 101, a limiting block 102, a wedge block 103 and a fourth spring 104, the rotating plate 101 is rotatably connected to the right portion of the outer side of the sole plate 1, the limiting block 102 is connected to the upper portion of the rear side of the rotating plate 101, the wedge block 103 is slidably connected to the left side of the upper portion of the limiting block 102, and the fourth spring 104 is connected between the wedge block 103 and the limiting block 102.
When bull stick 4 moves to the right, bull stick 4 moves to the right and wedge 103 contacts and drives wedge 103 upward movement, wedge 103 upward movement fourth spring 104 is compressed, when bull stick 4 does not contact with wedge 103, wedge 103 resets under the fourth spring 104 effect of compressed, thereby it is spacing to make bull stick 4 be located stopper 102, then rotate rotor plate 101 through artifical positive and negative direction and drive stopper 102 and rotate, stopper 102 rotates and drives bull stick 4 and rotate, bull stick 4 rotates and drives wiping lever 3 and rotate, thereby rotate the test tube and clean, better effect.
The above examples are merely representative of preferred embodiments of the present invention, and the description thereof is more specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, various changes, modifications and substitutions can be made without departing from the spirit of the present invention, and these are all within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (8)

1. A blood collection tube wiping apparatus for medical use, comprising:
the bottom plate (1) is connected with a supporting plate (2);
a wiping rod (3) connected to the pallet (2);
the rotating rod (4) is connected to the wiping rod (3), and the rotating rod (4) is in sliding fit with the bottom plate (1);
a drive mechanism (5) connected to the base plate (1);
and a left-right mechanism (6) connected to the drive mechanism (5).
2. A medical blood collection tube wiping device according to claim 1, wherein the drive mechanism (5) comprises:
an arc-shaped plate (51) connected to the base plate (1);
a rodless cylinder (52) mounted on the arc plate (51);
a rotating shaft (53) rotatably connected to the slide block of the rodless cylinder (52);
an action tube (54) connected to the rotating shaft (53);
an action plate (55) connected to the action tube (54);
a torsion spring (56) connected between the apply tube (54) and the slide block of the rodless cylinder (52);
and a housing (57) connected to the arc plate (51), the housing (57) being engaged with the action plate (55).
3. A medical blood collection tube wiping apparatus according to claim 2, wherein the left-right mechanism (6) comprises:
a push rod (61) connected to the action tube (54);
a rack (62) slidably coupled to the housing (57);
a slide bar (63) slidably connected to the rack (62);
the action rod (64) is connected to the sliding rod (63), and the action rod (64) is matched with the push rod (61);
a first spring (65) connected between the action lever (64) and the rack (62).
4. A medical blood collection tube wiping device according to claim 3, further comprising a clamping mechanism (7), wherein the clamping mechanism (7) comprises:
a special-shaped rod (71) connected to a slide block of the rodless cylinder (52);
a large air bag (72) connected to the action tube (54);
a small air bag (73) connected to the action pipe (54), wherein the small air bag (73) is connected and matched with the large air bag (72);
a clamp plate (74) slidably connected to the apply tube (54), the clamp plate (74) cooperating with the large bladder (72);
a second spring (75) connected between the clamp plate (74) and the apply tube (54).
5. A medical blood collection test tube wiping device according to claim 4, further comprising a transmission mechanism (8), wherein the transmission mechanism (8) comprises:
a sliding block (81) which is rotatably connected to the rotating shaft (53), wherein the sliding block (81) is connected with the shell (57) in a sliding way;
a loop bar (82) which is rotatably connected to the rotating shaft (53);
a gear (83) connected to the loop bar (82), the gear (83) meshing with the rack (62);
and a scroll spring (84) connected between the sleeve rod (82) and the slider (81).
6. A medical blood collection test tube wiping device according to claim 5, further comprising a limiting mechanism (9), wherein the limiting mechanism (9) comprises:
a wedge rod (91) connected to the slider (81);
the limiting rod (92) is connected to the shell (57) in a sliding mode, the limiting rod (92) is matched with the rack (62), and the limiting rod (92) is matched with the wedge-shaped rod (91);
and a third spring (93) connected between the stopper rod (92) and the housing (57).
7. A medical blood collection tube wiping device according to claim 6, further comprising a rotating mechanism (10), wherein the rotating mechanism (10) comprises:
a rotating plate (101) rotatably connected to the base plate (1);
a stopper (102) connected to the rotating plate (101);
a wedge block (103) which is connected to the stopper (102) in a sliding manner;
and the fourth spring (104) is connected between the wedge block (103) and the limiting block (102).
8. The medical blood collection test tube wiping device according to claim 7, wherein sliding grooves are formed in the front and rear sides of the lower portion of the housing (57), and the sliding blocks (81) on the two sides slide in the sliding grooves.
CN202110623035.0A 2021-06-04 2021-06-04 Blood collection test tube wiping equipment for medical treatment Active CN113333412B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110623035.0A CN113333412B (en) 2021-06-04 2021-06-04 Blood collection test tube wiping equipment for medical treatment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110623035.0A CN113333412B (en) 2021-06-04 2021-06-04 Blood collection test tube wiping equipment for medical treatment

Publications (2)

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CN113333412A true CN113333412A (en) 2021-09-03
CN113333412B CN113333412B (en) 2023-04-18

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103639163A (en) * 2013-12-09 2014-03-19 南京化工职业技术学院 Full-automatic test tube cleaning device
WO2017097062A1 (en) * 2015-12-11 2017-06-15 谢文娟 Test tube brushing device by automatically filling dual liquids
CN112337924A (en) * 2020-10-13 2021-02-09 雷红军 Glass test tube cleaning device for hematology department
CN112452985A (en) * 2020-12-01 2021-03-09 范晓东 Medical instrument device capable of automatically wiping medical test tube
CN112517579A (en) * 2020-11-11 2021-03-19 尹玉星 Medical glass test tube cleaning and disinfecting equipment for nursing
CN112605043A (en) * 2020-12-25 2021-04-06 许书倩 Glass cleaning equipment for building

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103639163A (en) * 2013-12-09 2014-03-19 南京化工职业技术学院 Full-automatic test tube cleaning device
WO2017097062A1 (en) * 2015-12-11 2017-06-15 谢文娟 Test tube brushing device by automatically filling dual liquids
CN112337924A (en) * 2020-10-13 2021-02-09 雷红军 Glass test tube cleaning device for hematology department
CN112517579A (en) * 2020-11-11 2021-03-19 尹玉星 Medical glass test tube cleaning and disinfecting equipment for nursing
CN112452985A (en) * 2020-12-01 2021-03-09 范晓东 Medical instrument device capable of automatically wiping medical test tube
CN112605043A (en) * 2020-12-25 2021-04-06 许书倩 Glass cleaning equipment for building

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