CN217392458U - Cabinet is placed to reagent pipe for bioengineering - Google Patents

Cabinet is placed to reagent pipe for bioengineering Download PDF

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Publication number
CN217392458U
CN217392458U CN202123422318.3U CN202123422318U CN217392458U CN 217392458 U CN217392458 U CN 217392458U CN 202123422318 U CN202123422318 U CN 202123422318U CN 217392458 U CN217392458 U CN 217392458U
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cabinet
sub
reagent tube
storage rack
chamber
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CN202123422318.3U
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段莉阳
李晓琦
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Nanyang Normal University
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Nanyang Normal University
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Abstract

The utility model belongs to the technical field of bioengineering, specifically be a cabinet is placed to reagent pipe for bioengineering, the intelligent cabinet temperature adjusting device comprises a cabinet body, the cabinet body is by first branch cabinet, the second divides cabinet and third branch cabinet to constitute, first branch cabinet includes that first minute chamber and second divide the chamber, be provided with multilayer drawer and multirow telescopic reagent pipe storage rack in first branch chamber and the second branch chamber respectively, the second divides the cabinet to include that the third divides chamber and fourth branch chamber, the third divides the chamber to constitute by telescopic baffle one and fixed a plurality of reagent pipe fixed slots that set up on telescopic baffle one, the fourth divides the chamber to comprise telescopic baffle two and a plurality of elasticity receipts groove that set up on telescopic baffle two, be provided with oscillating test tube storage rack in the third branch cabinet, first branch cabinet, the second divides all to be provided with temperature sensor in cabinet and the third branch cabinet, be provided with control panel on the external surface of cabinet. The utility model discloses simple structure, easily operation can satisfy the reagent pipe that condition demand was deposited to multiple difference and deposit, have stronger practicality.

Description

Cabinet is placed to reagent pipe for bioengineering
Technical Field
The utility model belongs to the technical field of bioengineering, specifically be a cabinet is placed to reagent pipe for bioengineering.
Background
Bioengineering refers to the process of modifying or processing biological materials according to the design in advance by using advanced scientific and technological means based on modern life science in combination with scientific principles of other basic sciences to produce the required products or achieve a certain purpose for human beings. In the bioengineering experiment, reagent pipe is the indispensable apparatus of experiment operation, and among the prior art, reagent pipe adopts simple and easy support to place, and the reagent pipe of bioengineering research is more, and placing of reagent pipe can not be satisfied to current support, and the operation is very inconvenient. When some reagents in bioengineering are deposited, specific temperature or oscillation frequency needs to be met, and some reagents are easy to volatilize, if the reagents are deposited together with other reagents, the reagent storage effect is poor, the experimental result of the bioengineering is inaccurate, and even the health of experimenters is damaged.
For example, the utility model with the authorization notice number of CN211463241U discloses a reagent tube placing cabinet for bioengineering, which comprises a drawer shell, three support rods are uniformly arranged in the drawer shell, one side of the drawer shell is connected with a drawer in a sliding way, the drawer penetrates through one side of the drawer shell, two sliding blocks are symmetrically arranged on the inner side of the drawer, two sliding grooves are symmetrically arranged on the outer side of the supporting rod and are connected with a sliding block in a sliding manner, two high resilience sponges are arranged at the top end of the sliding block, the top end of the inner side of the sliding chute is provided with a buffer block, the drawer is pulled from the side, the contact time of the reagent in other test tubes and the air is reduced, the reagent pollution is avoided, the sliding chute is internally provided with a spring, the drawer can be automatically drawn back after being pulled out, and the bottom sets up crashproof buffer block and pressure spring, makes the drawer can not spill reagent because of the collision when retrieving. However, the storage cabinet has the main function of protecting volatile reagents, and cannot meet the storage requirements of reagents which need to be continuously oscillated during storage and reagents which have larger body types or need to meet specific temperature storage conditions, and are difficult to use.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a can deposit the requirement adjustment according to reagent and deposit the temperature, big reagent pipe and little reagent pipe can be deposited by elasticity, and poisonous or volatile reagent subregion is deposited, and the constant oscillating reagent pipe for bioengineering places the cabinet when can satisfying to deposit equally.
The utility model discloses a reagent tube placing cabinet for bioengineering, which comprises a cabinet body, wherein the cabinet body consists of a first sub-cabinet, a second sub-cabinet and a third sub-cabinet, the first sub-cabinet comprises a first sub-cavity and a second sub-cavity, wherein a plurality of layers of drawers and a plurality of rows of extractable reagent tube storage racks are respectively arranged in the first sub-cavity and the second sub-cavity, the second sub-cabinet comprises a third sub-cavity and a fourth sub-cavity, the third sub-cavity is composed of a first drawable clapboard and a plurality of reagent tube fixing grooves fixedly arranged on the first drawable clapboard, the fourth sub-cavity is composed of a second withdrawable clapboard and a plurality of elastic accommodating grooves arranged on the second withdrawable clapboard, the third divides and is provided with oscillating test tube storage rack in the cabinet, first branch cabinet the second divide the cabinet with all be provided with temperature sensor in the third divides the cabinet, be provided with control panel on the external surface of cabinet.
Furthermore, the multiple rows of the withdrawable reagent tube storage rack comprises a first support frame with multiple slotted holes and a second support frame horizontally arranged on the lower side of the first support frame, two sides of the second support frame are fixed to two ends of the first support frame through a third support frame, multiple positioning grooves are formed in the positions, corresponding to the slotted holes, of the upper surface of the second support frame, sliding blocks are arranged at two ends of the first support frame, and the first support frame is movably arranged on sliding grooves on two sides of an inner cavity of the second sub-cavity through the sliding blocks; the reagent tube storage rack is arranged in the drawer in multiple layers, the structure of the reagent tube storage rack is the same as that of the extractable reagent tube storage rack, and two ends of the reagent tube storage rack are fixedly arranged on the side wall of the drawer respectively.
Furthermore, the elastic containing groove comprises two fixing plates which are symmetrically arranged, the two fixing plates are respectively fixed with two groove pieces through two groups of springs, the inner sides of the two groove pieces are provided with foam pads, and an inner cavity formed by the two groove pieces is a cavity which is wide at the top and narrow at the bottom.
Further, the reagent pipe limit structure of oscillating formula test tube storage rack with but the telescopic reagent pipe storage rack structure is the same, oscillating formula test tube storage rack both sides are fixed with the axis of rotation, the axis of rotation both ends are rotated and are connected the both sides of third minute cabinet inner chamber, the axis of rotation with the hookup location department of third minute cabinet is provided with angle encoder and cover and is equipped with the carousel, the external side of cabinet with the carousel corresponds position department and is provided with the carousel motor.
Furthermore, ventilation openings are formed in the first sub cabinet, the second sub cabinet and the third sub cabinet.
Further, the outer surface of the cabinet body is provided with a temperature controller, and the temperature controller is connected with the temperature sensor.
Furthermore, a storage battery is arranged outside the cabinet body and used for supplying power to the turntable motor, the control panel and the temperature controller; control panel with temperature controller, carousel motor, angle encoder connects, control panel is used for the oscillation frequency and the angle control of oscillating formula test tube storage rack, the internal temperature display control of cabinet.
The utility model has the advantages that:
by arranging the three branch cabinets, the first branch cabinet is used for storing volatile or toxic reagent tubes, so that the situation that the experiment effect is inaccurate due to the volatilization of a solution in a reagent and the potential safety hazard is caused to an experimenter by a volatile toxic reagent can be prevented; the second sub-cabinet can be used for storing certain stability reagents and special reagent tubes with different sizes; the third sub-cabinet can be used for storing some special reagents which need to be continuously vibrated and stored; air in the placing cabinet is replaced by arranging the ventilation opening; the temperature sensor is arranged in the cabinet body, and the temperature controller arranged outside is matched, so that the storage temperature requirements of different reagents can be met. The utility model discloses simple structure, easily operation can satisfy the reagent pipe that condition demand was deposited to multiple difference and deposit, have stronger practicality.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below.
FIG. 1 is an overall view of the reagent tube storage cabinet for bioengineering of the present invention.
FIG. 2 is a side view of the multi-layer drawer type sub-chamber of the reagent tube holding cabinet for bioengineering.
Fig. 3 is a schematic view of the elastic accommodating groove of the reagent tube holding cabinet for bioengineering.
The attached drawings are as follows: 1-a first sub-cabinet; 11-a first subchamber; 12-a second subchamber; 13-a drawer; 14-withdrawable reagent tube storage rack; 141-bracket one; 142-bracket two; 143-bracket three; 144-a slot; 145-positioning grooves; 146-a slide block; 147-a chute; 2-second sub-cabinet; 21-third subchamber; 211-extractable partition plate one; 212-reagent tube fixation slots; 22-a fourth subchamber; 221-a second extractable partition plate; 222-a flexible receiving groove; 223-a fixing plate; 224-a spring; 225-slotted vane; 226-foam pad; 3-a third sub-cabinet; 31-oscillating test tube storage rack; 32-a rotating shaft; 33-an angle encoder; 34-a turntable; 35-a turntable motor; 4-a temperature sensor; 5-a control panel; 6-a storage battery; 7-a vent; 8-temperature controller.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Examples
As shown in fig. 1-3, the utility model discloses a cabinet is placed to reagent pipe for bioengineering, the intelligent cabinet temperature adjusting device comprises a cabinet body, including the cabinet body, the cabinet body comprises first minute cabinet 1, second minute cabinet 2 and third minute cabinet 3, first minute cabinet 1 includes first minute chamber 11 and second minute chamber 12, first minute chamber 11 with be provided with multilayer drawer 13 and multirow extractable reagent pipe storage rack 14 in the second minute chamber 12 respectively, second minute cabinet 2 includes third minute chamber 21 and fourth minute chamber 22, third minute chamber 21 by extractable baffle one 211 with fixed set up in a plurality of reagent pipe fixed slots 212 on extractable baffle one 211 constitute, fourth minute chamber 22 by extractable baffle two 221 and a plurality of set up in elasticity storage slot 222 on extractable baffle two 221 constitutes, be provided with oscillating test tube storage rack 31 in the third minute cabinet 3, first minute cabinet 1, second minute cabinet 1, The second sub-cabinet 2 and the third sub-cabinet 3 are both provided with temperature sensors 4, and the outer surface of the cabinet body is provided with a control panel 5.
The multiple rows of extractable reagent tube storage racks 14 comprise a first support frame 141 provided with a plurality of slotted holes 144 and a second support frame 142 horizontally arranged on the lower side of the first support frame 141, two sides of the second support frame 142 are fixed to two ends of the first support frame 141 through a third support frame 143, a plurality of positioning grooves 145 are formed in positions, corresponding to the slotted holes 144, on the upper surface of the second support frame 142, slide blocks 146 are arranged at two ends of the first support frame 141, and the first support frame 141 is movably arranged on slide grooves 147 at two sides of the inner cavity of the second sub-cavity 12 through the slide blocks 146; the reagent tube storage rack is arranged in the drawer 13 in multiple layers, the structure of the reagent tube storage rack is the same as that of the extractable reagent tube storage rack 14, and two ends of the reagent tube storage rack are fixedly arranged on the side wall of the drawer respectively.
The elastic accommodating groove 222 comprises two fixing plates 223 which are symmetrically arranged, two fixing plates 223 are respectively fixed with two groove pieces 225 through two groups of springs 224, foam pads 226 are arranged on the inner sides of the two groove pieces 225, and an inner cavity formed by the two groove pieces 225 is a cavity which is wide at the top and narrow at the bottom.
Oscillating test tube storage rack 31's reagent pipe limit structure with but 14 structures of pull-out reagent pipe storage rack are the same, oscillating test tube storage rack 31 both sides are fixed with axis of rotation 32, axis of rotation 32 both ends are rotated and are connected the both sides of 3 inner chambers of third minute cabinet, axis of rotation 32 with the hookup location department of third minute cabinet 3 is provided with angle encoder 33 and overlaps and is equipped with carousel 34, the external side of cabinet with carousel 34 corresponds position department and is provided with turntable motor 35.
The first sub cabinet 1, the second sub cabinet 2 and the third sub cabinet 3 are all provided with ventilation openings 7.
The external surface of the cabinet body is provided with a temperature controller 8, and the temperature controller 8 is connected with the temperature sensor 4.
A storage battery 6 is arranged outside the cabinet body, and the storage battery 6 is used for supplying power to the turntable motor 35, the control panel 5 and the temperature controller 8; control panel 5 with temperature controller 8, carousel motor 35 the angle encoder 33 is connected, control panel 5 is used for oscillating frequency and angle control of oscillating test tube storage rack 31, the internal temperature display control of cabinet.
The utility model relates to a bioengineering is with reagent pipe cabinet of placing application method does:
the reagent tube for placing the toxic volatile substances can be placed in the multilayer drawer 13 in the first sub-cabinet 1, the drawer 13 is pulled open through a pull ring, and the reagent tube is placed in or taken out;
a plurality of rows of extractable reagent tube storage racks 14 in the first sub-cabinet can be used for storing reagent tubes with slightly stable performance, and the reagent tubes are extracted and pushed in for storing and taking;
the third sub-cavity 21 of the second sub-cabinet 2 can directly place the standard structure reagent tube into the reagent tube fixing groove 212;
the fourth sub-cavity 22 of the second sub-cabinet 2 can directly insert a reagent tube with a special shape or a larger outer diameter into the elastic accommodating groove 222, the elastic accommodating groove 222 is wide at the top and narrow at the bottom, and in the process of inserting the reagent tube, the two groove sheets 225 of the elastic accommodating groove 222 are pushed away towards two sides, so that the purpose of elastic adjustment can be achieved;
an angle encoder 33 in the third sub-cabinet is sleeved on the rotating shaft 32, numerical values on the control panel 5 are fed back through the angle encoder 33, and an external turntable motor 35 drives a turntable 34 to control the rotating shaft 32 to rotate, so that the reagent tube can be continuously oscillated in the storage process;
all be provided with temperature sensor 4 in first minute cabinet 1, second divide cabinet 2, the third minute cabinet 3, through temperature sensor 4 feedback cabinet internal temperature to the temperature controller 8 of external setting of cabinet, then through 5 regulation reagent pipes of control panel and deposit the temperature to optimum temperature.
The above description is only exemplary of the present invention and should not be construed as limiting the present invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (7)

1. A reagent tube placing cabinet for bioengineering comprises a cabinet body, and is characterized in that the cabinet body comprises a first sub-cabinet, a second sub-cabinet and a third sub-cabinet, the first sub-cabinet comprises a first sub-cavity and a second sub-cavity, wherein a plurality of layers of drawers and a plurality of rows of extractable reagent tube storage racks are respectively arranged in the first sub-cavity and the second sub-cavity, the second sub-cabinet comprises a third sub-chamber and a fourth sub-chamber, the third sub-chamber is composed of a first withdrawable clapboard and a plurality of reagent tube fixing grooves fixedly arranged on the first withdrawable clapboard, the fourth sub-cavity is composed of a second withdrawable clapboard and a plurality of elastic containing grooves arranged on the second withdrawable clapboard, the third divides and is provided with oscillating test tube storage rack in the cabinet, first branch cabinet the second divide the cabinet with all be provided with temperature sensor in the third divides the cabinet, be provided with control panel on the external surface of cabinet.
2. The bioengineering reagent tube placement cabinet according to claim 1, wherein the multiple rows of extractable reagent tube storage racks comprise a first bracket with a plurality of slotted holes and a second bracket horizontally arranged on the lower side of the first bracket, both sides of the second bracket are fixed to both ends of the first bracket through a third bracket, a plurality of positioning grooves are arranged on the upper surface of the second bracket at positions corresponding to the slotted holes, both ends of the first bracket are provided with sliding blocks, and the first bracket is movably arranged on sliding grooves on both sides of the inner cavity of the second sub-cavity through the sliding blocks; the reagent tube storage rack is arranged in the drawer in multiple layers, the structure of the reagent tube storage rack is the same as that of the extractable reagent tube storage rack, and two ends of the reagent tube storage rack are fixedly arranged on the side wall of the drawer respectively.
3. The reagent tube holding cabinet for bioengineering according to claim 2, wherein the elastic receiving groove comprises two fixing plates symmetrically arranged, two fixing plates are respectively fixed with two groove pieces through two sets of springs, foam pads are arranged at the inner sides of the two groove pieces, and an inner cavity formed by the two groove pieces is a cavity with a wide top and a narrow bottom.
4. The reagent tube storage cabinet for bioengineering according to claim 3, wherein the oscillating reagent tube storage rack has a reagent tube position limiting structure identical to that of the extractable reagent tube storage rack, rotating shafts are fixed on two sides of the oscillating reagent tube storage rack, two ends of each rotating shaft are rotatably connected to two sides of the inner cavity of the third storage rack, an angle encoder is arranged at the connecting position of the rotating shaft and the third storage rack, a rotating disc is sleeved on the rotating shaft, and a rotating disc motor is arranged at the position corresponding to the rotating disc on the outer side of the cabinet body.
5. The reagent tube placement cabinet for bioengineering according to claim 4, wherein the first sub-cabinet, the second sub-cabinet and the third sub-cabinet are provided with ventilation openings.
6. The reagent tube holding cabinet for bioengineering according to claim 5, wherein the cabinet body is provided with a temperature controller on the outer surface, and the temperature controller is connected with the temperature sensor.
7. The reagent tube placement cabinet for bioengineering according to claim 6, wherein a storage battery is arranged outside the cabinet body and used for supplying power to the turntable motor, the control panel and the temperature controller; control panel with temperature controller, carousel motor, angle encoder connects, control panel is used for the oscillation frequency and the angle control of oscillating type test tube storage rack, the internal temperature display control of cabinet.
CN202123422318.3U 2021-12-31 2021-12-31 Cabinet is placed to reagent pipe for bioengineering Active CN217392458U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123422318.3U CN217392458U (en) 2021-12-31 2021-12-31 Cabinet is placed to reagent pipe for bioengineering

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123422318.3U CN217392458U (en) 2021-12-31 2021-12-31 Cabinet is placed to reagent pipe for bioengineering

Publications (1)

Publication Number Publication Date
CN217392458U true CN217392458U (en) 2022-09-09

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Application Number Title Priority Date Filing Date
CN202123422318.3U Active CN217392458U (en) 2021-12-31 2021-12-31 Cabinet is placed to reagent pipe for bioengineering

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116203190A (en) * 2023-04-20 2023-06-02 泉州海关综合技术服务中心 Volumetric analysis titration apparatus for sanitary inspection

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116203190A (en) * 2023-04-20 2023-06-02 泉州海关综合技术服务中心 Volumetric analysis titration apparatus for sanitary inspection

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