A transparent glass biological incubator
By using transparent glass side panels and a rack flip control mechanism in the biological incubator, the problem of inconvenience in observing and taking out test tubes in the prior art is solved, and the convenient tube taking effect of transparent observation and no need to open the cover is achieved.
Patent Information
- Application Number
- CN202410504544.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-25
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2044-04-25
AI Technical Summary
Existing biological incubators are opaque, making it difficult to observe the internal conditions, and the temperature environment is easily destroyed when taking and handling abnormal test tubes.
The transparent glass side panels and the shelf flip control mechanism, combined with auxiliary components, enable transparent observation and operation without opening the cover.
It is convenient to observe the internal test tube conditions, flexibly take the test tubes, reduce temperature influence, and meet actual use needs.
Smart Images

Figure CN118183022B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of thermal insulation boxes, in particular to a transparent glass biological thermal insulation box. Background Art
[0002] Biological reagents or biological culture varieties require a certain stable temperature. When some biological reagents or biological culture varieties need to be transported from one place to another, they generally need to be placed in a biological incubator. The biological incubator has a temperature control device such as heating, which can maintain a constant temperature in the box to prevent the biological reagents or biological culture varieties from losing their activity. The existing Chinese patent document with the announcement number CN217295505U discloses a biological incubator. When the temperature sensor designed in the scheme is placed in the box body and the protective part is lowered, the box wall and the protective part of the box body have a limiting and fixing function for the temperature sensor, which can prevent the temperature sensor from contacting the outside world and being damaged. When the temperature sensor needs to be disassembled and replaced, the protective part is removed or flipped to fully expose the temperature sensor to the outside world, and the temperature sensor can be taken out of the box body. The temperature sensor can be disassembled by hands without the need for additional tools, which is convenient and quick.
[0003] The above-mentioned scheme and the biological incubators in the prior art are not transparent, which makes it inconvenient to observe the internal conditions. In order to ensure the safe use of the biological test tubes inside, the box lid needs to be opened for confirmation, and when the biological organisms inside are damaged, broken, overturned, etc., they cannot be detected in time; and the biological test tubes are generally placed in layers, and it is very troublesome to take or remove the biological test tubes with local problems. In addition, the series of operations will affect the internal temperature and cause damage to the organisms in the test tubes. It cannot meet the actual use needs and needs to be improved and optimized.
[0004] To this end, the present invention proposes a transparent glass biological incubator to solve the above problems. Summary of the Invention
[0005] The purpose of the present invention is to provide a transparent glass biological incubator to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a transparent glass biological incubator, comprising a box base, transparent glass side panels, a box cover, an auxiliary operation door assembly, a placement rack flip control mechanism, biological test tubes, and auxiliary components; the box base is fixedly connected with a transparent glass side panel, and the upper end of the transparent glass side panel is connected with a box cover, one of the symmetrically arranged transparent glass side panels is connected with an auxiliary operation door assembly, the placement rack flip control mechanism is arranged in the box, and biological test tubes are placed on the placement rack flip control mechanism, and the auxiliary components provide stable protection for the biological test tubes.
[0007] Preferably, the auxiliary operation door assembly includes an operation port, a limit slot, an adsorption magnetic block, a transparent glass door, a handle, a positioning card plate, and a positioning magnetic block; the operation port is arranged in the front and rear transparent glass side panels of the box body, and the limit slots are symmetrically arranged on both sides of the slot of the operation port, and the adsorption magnetic block is embedded and fixed in the limit slot, the transparent glass door is adaptively embedded in the operation port, and the positioning card plates are symmetrically fixed at both ends of the transparent glass door, the handle is symmetrically fixed on the transparent glass door, and the positioning magnetic block is embedded and fixed in the positioning card plate.
[0008] Preferably, sealing gaskets are fixedly provided on the four sides of the transparent glass door.
[0009] Preferably, the positioning card plate and the limit card slot are set in corresponding positions and the same number of groups, and the two are adapted to be connected. The positioning magnetic block and the adsorption magnetic block are set in corresponding positions and the same number of groups, and the two attract each other.
[0010] Preferably, the placement rack flip control mechanism includes a first embedding body, a connecting shaft, a regulating handle, a bearing, a second embedding body, a support rod, a positioning groove, an extension body, a positioning pin, an auxiliary inclined groove, a return spring, a transmission bar, a pressure plate, a connecting spring, a support plate body, a placement groove, an installation card slot, an installation thread groove, a load-bearing plate, an installation card plate, a fixing screw, a knob, and a holding pipe; the first embedding body is embedded and fixedly set in one of the transparent glass side panels, and the second embedding body is embedded and fixedly set in the other transparent glass side panel symmetrical thereto, and the connecting The connecting shaft is arranged in the box body, and one end of the connecting shaft is set through the first embedding body, and the end is fixedly provided with a regulating handle, and the other end of the connecting shaft is fixedly sleeved with a bearing, and the bearing is fixedly embedded in the second embedding body. The outer wall of the connecting shaft is equidistantly fixed with a support rod, and the extension body is integrally formed and arranged on one side of the regulating handle. The positioning groove is equidistantly arranged on the first embedding body, and the positioning pin is movably inserted in the extension body, and one end of the positioning pin is fixedly provided with a reset spring, and one end of the reset spring is fixedly provided In the extension body, the positioning pin is provided with an auxiliary oblique groove, the transmission bar is movably plugged into the extension body, the transmission bar is provided at the side position of the positioning pin, one end of the transmission bar extends to the outside of the extension body, and a pressure plate is fixedly provided at the end, the pressure plate is symmetrically fixed with a connecting spring at the end connected to the transmission bar, one end of the connecting spring is fixedly provided on the extension body, the transmission bar is provided at a position corresponding to the auxiliary oblique groove, and the number of groups is the same, the support plate body and the support rod are movably connected by a pin shaft, and a placement slot is provided in the support plate body, The side positions of both ends of the placement slot are provided with mounting slots, and the mounting slots are provided with mounting threaded grooves. The supporting plate is adapted to be clamped in the placement slot, and mounting clamps are symmetrically fixedly provided at both ends of the supporting plate. The mounting clamps are provided with mounting holes, and the mounting holes correspond to the mounting threaded grooves in the mounting slots. The fixing screws pass through the mounting holes and are adapted to be threadedly connected with the mounting threaded grooves, and a knob is fixedly provided at one end of the fixing screw. The bottom side of the supporting plate is equidistantly fixed with pipe fittings, and the inner wall of the pipe fittings is provided with auxiliary components.
[0011] Preferably, the positioning pin and the positioning slot are arranged at positions corresponding to each other, and the positioning slots are arranged as circular slots, with four of them in total, and the positioning slots and the positioning pins are adapted to be snap-fitted.
[0012] Preferably, the bearing plate, placement slot and support plate are provided in the same number of groups, namely four groups, and the mounting card plate and the mounting slot are provided in corresponding positions and the same number of groups, and the two are adapted to be connected.
[0013] Preferably, the tube containing members are arranged in a straight line at equal distances on the bottom side of the supporting plate, and biological test tubes are placed in the tube containing members.
[0014] Preferably, the auxiliary component includes a fixed body, a movable groove, a movable block, an auxiliary spring, an arc-shaped inclined surface, an arc-shaped vertical surface, and an auxiliary ball; the fixed body is fixedly arranged at equal intervals on the inner wall of the tube, and a movable groove is provided in the fixed body, a movable block is movably provided in the movable groove, one end of the movable block extends into the movable groove, and an auxiliary spring is symmetrically fixedly provided at the end, one end of the auxiliary spring is fixedly provided in the movable groove, the other end of the movable block extends to the outside of the movable groove, and an arc-shaped inclined surface is provided at the upper side of the end surface, and an arc-shaped vertical surface is provided at the lower side, and auxiliary balls are equidistantly and movably embedded on the arc-shaped vertical surface and the arc-shaped inclined surface.
[0015] Preferably, the movable blocks and the fixed bodies are provided in the same number of groups, and three groups of movable blocks are provided in one containing pipe.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] The biological incubator designed by the present invention has side panels provided with transparent glass, which makes it easy to observe the conditions of the biological test tubes therein. The biological test tubes are taken out by means of a placement rack flip control mechanism, and the biological test tubes inside the box are flipped and placed, which makes it easy to take out the biological test tubes on the bottom layer, and provides convenience for their placement and subsequent overall removal. Furthermore, the auxiliary components provided are used to limit the position of the biological test tubes, and the box is suitable for biological test tubes of different thicknesses and specifications, with high working flexibility. When it is necessary to take out some biological test tubes, there is no need to open the box cover, and the operation can be performed through the operation port provided on the transparent glass side panel, thereby avoiding the disconnection of the internal temperature supply, minimizing the impact as much as possible, and meeting actual use needs. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a schematic diagram of the front structural connection of the transparent glass biological incubator of the present invention;
[0019] Figure 2 This is a schematic diagram of the rear structural connection of the transparent glass biological incubator of the present invention;
[0020] Figure 3 This is a schematic diagram of the internal partial structural connection of the transparent glass biological incubator of the present invention;
[0021] Figure 4 This is a schematic diagram of the front side of the auxiliary operation door assembly structure connection of the present invention;
[0022] Figure 5 This is a schematic diagram of the back side of the auxiliary operation door assembly structure connection of the present invention;
[0023] Figure 6 A cross-sectional view of the local structure connection of the rack flip control mechanism of the present invention;
[0024] Figure 7 This is a schematic diagram of the connection between the support plate, the load-bearing plate and the biological test tube structure of the present invention;
[0025] Figure 8 This is a partial cross-sectional view of the connection structure of the auxiliary components in the biological test tube of the present invention.
[0026] In the figure: box base 1, transparent glass side panel 2, box cover 3, auxiliary operation door assembly 4, operation port 401, limit card slot 402, adsorption magnetic block 403, transparent glass door 404, handle 405, positioning card plate 406, positioning magnetic block 407, placement rack flip control mechanism 5, first embedded body 501, connecting shaft 502, regulating handle 503, bearing 504, second embedded body 505, support rod 506, positioning slot 507, extension body 508, positioning pin 509, auxiliary inclined slot 510, return spring 511, transmission bar 512, pressure plate 513, connecting spring 514, support plate 515, placement slot 516, mounting slot 517, mounting threaded slot 518, load-bearing plate 519, mounting card plate 520, fixing screw 521, knob 522, tube holder 523, biological test tube 6, auxiliary component 7, fixed body 701, movable slot 702, movable block 703, auxiliary spring 704, arc-shaped inclined surface 705, arc-shaped vertical surface 706, auxiliary ball 707. DETAILED DESCRIPTION
[0027] The technical solutions in the embodiments of the present invention are described clearly and completely below. The embodiments of the present invention and all other embodiments obtained by persons of ordinary skill in the art without creative work are within the scope of protection of the present invention.
[0028] See also Figures 1-8A transparent glass biological incubator comprises a box base 1, transparent glass side panels 2, a box cover 3, an auxiliary operation door assembly 4, a rack flip control mechanism 5, a biological test tube 6, and an auxiliary assembly 7; a transparent glass side panel 2 is fixedly connected to the box base 1, and a box cover 3 is connected to the upper end of the transparent glass side panel 2, one of the symmetrically arranged transparent glass side panels 2 is connected to the auxiliary operation door assembly 4, the rack flip control mechanism 5 is arranged in the box, a temperature control device is provided in the box, and a rack flip control mechanism 5 is placed on the rack flip control mechanism 5. Biological test tube 6, auxiliary component 7 provides stable protection for biological test tube 6; auxiliary operation door component 4 includes operation port 401, limit card slot 402, adsorption magnetic block 403, transparent glass door 404, handle 405, positioning card plate 406, positioning magnetic block 407; operation port 401 is set in the front and rear transparent glass side panels 2 of the box body, and limit card slots 402 are symmetrically set on both sides of the slot of operation port 401, and adsorption magnetic block 403 is fixedly set in the limit card slot 402, and transparent glass is matched with the card slot 407 in the operation port 401. Door 404, both ends of the transparent glass door 404 are symmetrically fixed with positioning card plates 406, and handles 405 are symmetrically fixed on the transparent glass door 404. Positioning magnetic blocks 407 are embedded and fixed in the positioning card plates 406; the four sides of the transparent glass door 404 are fixed with sealing gaskets; the positioning card plates 406 correspond to the position of the limit card slots 402 and are set in the same number of groups, and the two are adapted to be connected; the positioning magnetic blocks 407 correspond to the position of the adsorption magnetic blocks 403 and are set in the same number of groups, and the two attract each other; the placement rack flip control mechanism The structure 5 includes a first embedded body 501, a connecting shaft 502, an adjusting handle 503, a bearing 504, a second embedded body 505, a support rod 506, a positioning groove 507, an extension body 508, a positioning pin 509, an auxiliary inclined groove 510, a return spring 511, a transmission bar 512, a pressure plate 513, a connecting spring 514, a support plate 515, a placement groove 516, a mounting slot 517, a mounting threaded groove 518, a bearing plate 519, a mounting plate 520, a fixing screw 521, a knob 522, and a tube receiving member 523.The first embedding body 501 is embedded and fixed in one of the transparent glass side panels 2, and the second embedding body 505 is embedded and fixed in the other transparent glass side panel 2 symmetrical thereto. The connecting shaft 502 is set in the box body, and one end of the connecting shaft 502 is passed through the first embedding body 501, and an adjustment handle 503 is fixedly provided on the end. The other end of the connecting shaft 502 is fixedly sleeved with a bearing 504, and the bearing 504 is fixedly embedded in the second embedding body 505. Support rods 506 are fixedly provided on the outer wall of the connecting shaft 502 at equal distances. The extension body 508 is integrally formed and arranged on one side of the adjustment handle 503. The positioning grooves 507 are equidistantly arranged on the first embedding body 501, and the positioning pin 509 is movably inserted into the extension body 508, and one end of the positioning latch 509 is fixedly provided with a return spring 511, one end of the return spring 511 is fixedly provided in the extension body 508, the positioning latch 509 is provided with an auxiliary inclined slot 510, a transmission bar 512 is movably plugged into the extension body 508, the transmission bar 512 is provided at the side position of the positioning latch 509, one end of the transmission bar 512 extends to the outside of the extension body 508, and a pressure plate 513 is fixedly provided at the end thereof, the pressure plate 513 is symmetrically fixedly provided with a connecting spring 514 at the end connected to the transmission bar 512, one end of the connecting spring 514 is fixedly provided on the extension body 508, the transmission bar 512 is provided at a corresponding position to the auxiliary inclined slot 510, and the number of groups is the same, the support plate body 515 and the support rod 506 are connected by a pin The shaft is movably connected, and a placement groove 516 is provided in the support plate body 515, and mounting slots 517 are provided at both ends of the placement groove 516. The mounting slots 517 are provided with mounting thread grooves 518. The bearing plate 519 is adapted to be clamped with the placement groove 516. The two ends of the bearing plate 519 are symmetrically fixed with mounting clamps 520. The mounting clamps 520 are provided with mounting holes. The mounting holes correspond to the mounting thread grooves 518 in the mounting slots 517. A fixing screw 521 passes through the mounting hole and is adapted to be threadedly connected with the mounting thread groove 518, and a knob 522 is fixed at one end of the fixing screw 521. A holding pipe 523 is fixedly provided at an equal distance on the bottom side of the bearing plate 519, and the inner wall of the holding pipe 523 is provided with a fixing screw 521. There is an auxiliary component 7; the positioning pin 509 corresponds to the setting position of the positioning groove 507, and the positioning groove 507 is set as a circular groove, with a total of four, and the positioning groove 507 is adapted to be clamped with the positioning pin 509; the supporting plate 519, the placement groove 516, and the support plate 515 are provided with the same number of groups, with four groups provided, and the mounting card plate 520 corresponds to the setting position of the mounting card groove 517 and the same number of groups, and the two are adapted to be clamped; the holding tube 523 is equidistantly arranged in a straight line on the bottom side of the supporting plate 519, and the biological test tube 6 is placed in the holding tube 523; the auxiliary component 7 includes a fixed body 701, a movable groove 702, a movable block 703, an auxiliary spring 704, an arc-shaped inclined surface 705, an arc-shaped vertical surface 706, and an auxiliary ball 707;A fixed body 701 is fixedly mounted equidistantly on the inner sidewall of the receiving tube 523. A movable groove 702 is provided in the fixed body 701, in which a movable block 703 is movably mounted. One end of the movable block 703 extends into the movable groove 702, and an auxiliary spring 704 is symmetrically fixed to the end. One end of the auxiliary spring 704 is fixedly mounted in the movable groove 702. The other end of the movable block 703 extends outside the movable groove 702. An arcuate inclined surface 705 is provided on the upper side of the end surface, and an arcuate vertical surface 706 is provided on the lower side. Auxiliary balls 707 are movably mounted equidistantly on both the arcuate vertical surface 706 and the arcuate inclined surface 705. The number of movable blocks 703 and fixed body 701 is the same, and three sets of movable blocks 703 are provided in one receiving tube 523.
[0029] The biological incubator designed in this solution has transparent glass side panels, making it easy to observe the biological test tubes 6 inside. The biological test tubes 6 are taken out by the placement rack flip control mechanism 5, which flips the biological test tubes 6 inside the box, making it easy to remove the biological test tubes 6 at the bottom and convenient for their placement and subsequent removal. Furthermore, the auxiliary components 7 are provided to limit and protect the biological test tubes 6 and are suitable for biological test tubes 6 of different thicknesses and specifications, providing high operational flexibility. When it is necessary to remove a portion of the biological test tubes 6, there is no need to open the box cover 3. The operation can be performed through the operation port 401 provided on the transparent glass side panel 2, avoiding the interruption of the internal temperature supply and minimizing the impact. For the placement of the biological test tube 6, it is directly inserted into the holding tube 523 on the supporting plate 519. During this process, the bottom of the biological test tube 6 squeezes the movable block 703 provided on the inner side of the holding tube 523, first contacting the arc-shaped inclined surface 705 at the end of the movable block 703, and then pressing the movable block 703 into the movable groove 702 on the fixed body 701. At the same time, the auxiliary spring 704 connected to the movable block 703 is compressed. After the biological test tube 6 is placed, the movable block 703 at this time has a clamping and limiting effect on the biological test tube 6 to ensure the stability of its position, and auxiliary balls 707 are provided on the arc-shaped inclined surface 705 and the arc-shaped vertical surface 706 to facilitate the removal of the biological test tube 6; through the transparent glass side panel 2 Observe the situation inside the box. When it is necessary to take out a local biological test tube 6, there is no need to open the box cover 3. The transparent glass door 404 can be directly pulled out through the handle 405 and the taking operation can be performed from the operation port 401. Before that, the biological test tube 6 to be taken out needs to be adjusted to the side of the operation port 401, that is, the connecting shaft 502 is rotated by the regulating handle 503 until the biological test tube 6 on the corresponding support plate 515 is moved to a position close to the operation port 401. Here, when rotating the regulating handle 503, it is necessary to press the pressing plate 513. The pressing plate 513 pushes the transmission bar 512 to squeeze the slope in the auxiliary inclined slot 510, thereby pushing the positioning pin 509 to separate from the positioning slot 507. , release the positioning of the regulating handle 503, and loosen the pressure plate 513 after the regulation is completed. At this time, the squeezing of the positioning latch 509 is released, and the positioning latch 509 is reset under the action of the reset spring 511, that is, the positioning latch 509 is engaged with the positioning groove 507 at the corresponding position, and then the corresponding biological test tube 6 can be taken out. Then the transparent glass door 404 blocks the operation port 401, and the transparent glass door is positioned by the mutual attraction between the adsorption magnetic block 403 and the positioning magnetic block 407; for the overall removal of the biological test tube 6, it is necessary to remove the supporting plate 519, and directly loosen the fixing screw 521 to release the positioning of the supporting plate 519, remove it, and then remove the biological test tube 6 on the supporting plate 519. The operation is simple.
[0030] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A transparent glass biological incubator, characterized by: The invention comprises a box base (1), a transparent glass side panel (2), a box cover (3), an auxiliary operation door assembly (4), a placement rack flip control mechanism (5), a biological test tube (6), and an auxiliary assembly (7); the box base (1) is fixedly connected with a transparent glass side panel (2), and the upper end of the transparent glass side panel (2) is connected with the box cover (3); one of the symmetrically arranged transparent glass side panels (2) is connected with the auxiliary operation door assembly (4); the placement rack flip control mechanism (5) is arranged in the box, and a biological test tube (6) is placed on the placement rack flip control mechanism (5); and the auxiliary assembly (7) provides stable protection for the biological test tube (6); The placement rack flip control mechanism (5) includes a first embedded body (501), a connecting shaft (502), a regulating handle (503), a bearing (504), a second embedded body (505), a support rod (506), a positioning groove (507), an extension body (508), a positioning pin (509), an auxiliary inclined groove (510), a return spring (511), a transmission bar (512), a pressure plate (513), a connecting spring (514), a support plate body (515), a placement groove (516), an installation card groove (517), an installation thread groove (518), a bearing plate (519), an installation card plate (520), a fixing screw (521), a knob (522), and a tube containing member (523);The first embedding body (501) is embedded and fixedly arranged in one of the transparent glass side panels (2), and a second embedding body (505) is embedded and fixedly arranged in the other transparent glass side panel (2) symmetrical thereto. The connecting shaft (502) is arranged in the box body, and one end of the connecting shaft (502) is arranged through the first embedding body (501), and a regulating handle (503) is fixedly arranged at the end. The other end of the connecting shaft (502) is fixedly sleeved with a bearing (504), and the bearing (504) is fixedly embedded in the second embedding body (505). The outer wall of the connecting shaft (502) is fixedly provided with support rods (506) at equal distances. The extension body (5 08) is integrally formed and arranged on one side of the regulating handle (503), the positioning groove (507) is equidistantly arranged on the first embedded body (501), the positioning pin (509) is movably inserted and arranged in the extension body (508), and one end of the positioning pin (509) is fixedly provided with a return spring (511), one end of the return spring (511) is fixedly provided in the extension body (508), and an auxiliary inclined groove (510) is provided on the positioning pin (509), the transmission bar (512) is movably inserted and arranged in the extension body (508), the transmission bar (512) is arranged at the side position of the positioning pin (509), and one end of the transmission bar (512) extends to the extension body (508). A pressure plate (513) is fixedly provided at the end of the extension body (508), and the pressure plate (513) is symmetrically fixedly provided with a connecting spring (514) at the end connected to the transmission bar (512). One end of the connecting spring (514) is fixedly provided on the extension body (508). The transmission bar (512) and the auxiliary inclined slot (510) are provided at corresponding positions and have the same number of groups. The support plate (515) and the support rod (506) are movably connected through a pin shaft, and a placement groove (516) is provided in the support plate (515). The side positions of both ends of the placement groove (516) are provided with mounting slots (517), and the mounting slots (517) are provided with mounting screws. The groove (518) is adapted to be clamped with the placement groove (516), and the two ends of the bearing plate (519) are symmetrically fixed with mounting clamps (520), and the mounting clamps (520) are provided with mounting holes, and the mounting holes correspond to the mounting thread grooves (518) in the mounting clamps (517). The fixing screws (521) pass through the mounting holes and are threadedly connected with the mounting thread grooves (518), and a knob (522) is fixedly provided at one end of the fixing screws (521). The bottom side of the bearing plate (519) is equidistantly fixed with a holding pipe (523), and the inner side wall of the holding pipe (523) is provided with an auxiliary component (7).
2. The transparent glass biological incubator according to claim 1, characterized in that: The auxiliary operation door assembly (4) comprises an operation port (401), a limiting card slot (402), an adsorption magnetic block (403), a transparent glass door (404), a handle (405), a positioning card plate (406), and a positioning magnetic block (407); the operation port (401) is arranged in the front and rear transparent glass side panels (2) of the box body, the limiting card slots (402) are symmetrically arranged on both sides of the slot of the operation port (401), and the adsorption magnetic block (403) is fixedly arranged in the limiting card slot (402), the transparent glass door (404) is adapted to be fixedly arranged in the operation port (401), the positioning card plates (406) are symmetrically fixedly arranged at both ends of the transparent glass door (404), the handle (405) is symmetrically fixedly arranged on the transparent glass door (404), and the positioning magnetic block (407) is fixedly arranged in the positioning card plate (406).
3. The transparent glass biological incubator according to claim 2, characterized in that: Sealing pads are fixedly provided on the four sides of the transparent glass door (404).
4. The transparent glass biological incubator according to claim 2, characterized in that: The positioning card plate (406) and the limiting card slot (402) are arranged at corresponding positions and are arranged in the same number of groups, and the two are adapted to be connected; the positioning magnetic block (407) and the adsorption magnetic block (403) are arranged at corresponding positions and are arranged in the same number of groups, and the two attract each other.
5. The transparent glass biological incubator according to claim 1, characterized in that: The positioning pin (509) and the positioning slot (507) are arranged at positions corresponding to each other, and the positioning slot (507) is arranged as a circular slot, with four of them being arranged in total. The positioning slot (507) and the positioning pin (509) are adapted to be snap-connected.
6. The transparent glass biological incubator according to claim 1, characterized in that: The bearing plate (519), the placement slot (516), and the support plate body (515) are provided in the same number of groups, namely four groups, and the mounting card plate (520) and the mounting card slot (517) are provided in corresponding positions and the same number of groups, and the two are adapted to be connected.
7. The transparent glass biological incubator according to claim 1, characterized in that: The tube-holding members (523) are arranged in a straight line at equal intervals on the bottom side of the supporting plate (519), and the biological test tubes (6) are placed in the tube-holding members (523).
8. The transparent glass biological incubator according to claim 1, characterized in that: The auxiliary component (7) comprises a fixed body (701), a movable groove (702), a movable block (703), an auxiliary spring (704), an arc-shaped inclined surface (705), an arc-shaped vertical surface (706), and an auxiliary ball (707); the fixed body (701) is fixedly arranged at equal intervals on the inner side wall of the tube (523), and the fixed body (701) is provided with a movable groove (702), and a movable block (703) is movably arranged in the movable groove (702), and one end of the movable block (703) is fixedly arranged on the inner side wall of the tube (523). The movable block (703) extends into the movable groove (702), and an auxiliary spring (704) is symmetrically fixedly arranged at the end, one end of the auxiliary spring (704) is fixedly arranged in the movable groove (702), and the other end of the movable block (703) extends to the outside of the movable groove (702), and an arc-shaped inclined surface (705) is arranged at the upper side of the end surface, and an arc-shaped vertical surface (706) is arranged at the lower side, and auxiliary balls (707) are equidistantly and movably embedded on the arc-shaped vertical surface (706) and the arc-shaped inclined surface (705).
9. The transparent glass biological incubator according to claim 8, characterized in that: The movable blocks (703) and the fixed bodies (701) are provided in the same number of groups, and three groups of movable blocks (703) are provided in one containing pipe (523).