Laboratory reagent warehouse intelligent ventilation system
By automatically detecting and adjusting the air volume through an intelligent combination mechanism, the problems of damage to ventilation facilities and power waste in laboratory reagent warehouses have been solved, and the timely removal of toxic substances and environmental protection have been achieved.
Patent Information
- Application Number
- CN202310506478.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-08
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2043-05-08
AI Technical Summary
Existing laboratory reagent warehouse ventilation facilities are prone to damage and waste electricity if left on for extended periods. Furthermore, if they are not turned on in a timely manner, toxic substances cannot be discharged promptly, and the direct release of toxic gases will damage the environment.
By combining a detection mechanism, a control mechanism, an exhaust mechanism, an intake mechanism, a treatment mechanism, and a sealing mechanism, the system can automatically detect the concentration of toxic substances, adjust the air volume, enhance the gas treatment effect through the treatment mechanism, and extend the equipment life and improve the treatment efficiency by intermittently blocking the exhaust duct through the sealing mechanism.
It enables the timely removal of toxic substances and the introduction of fresh air, extends equipment life, saves electricity, improves gas treatment efficiency, and protects the environment.
Smart Images

Figure CN116499056B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of warehouse ventilation, in particular to a laboratory reagent warehouse intelligent ventilation system. BACKGROUND
[0002] In order to ensure the normal use of the laboratory reagent warehouse, it is necessary to install a ventilation system on the laboratory reagent warehouse to replace the internal gas circulation and ensure the safety of the internal air environment.
[0003] The current laboratory reagent warehouse is basically a common mechanical ventilation facility such as an exhaust fan, which is opened for a long time, and the induced draft fan is easy to be damaged and waste power. If it is not opened in time, the toxic substances cannot be discharged in time, which will cause harm to the workers, and the existing laboratory reagent warehouse directly discharges toxic gases during ventilation, which will damage the environment.
[0004] In view of the above problems, the present application provides a laboratory reagent warehouse intelligent ventilation system to solve the above problems. SUMMARY
[0005] In order to solve the problems of the current laboratory reagent warehouse ventilation facility that the induced draft fan is easy to be damaged and waste power when it is opened for a long time, and the toxic substances cannot be discharged in time when it is not opened in time, and the toxic gases are directly discharged during ventilation, which will damage the environment, the purpose of the present application is to provide a laboratory reagent warehouse intelligent ventilation system.
[0006] In order to solve the above technical problems, the present application adopts the following technical scheme: a laboratory reagent warehouse intelligent ventilation system, comprising a reagent warehouse, a switch slot is provided on the reagent warehouse, and a switch door is hinged in the switch slot, a detection mechanism and a control mechanism are provided on the inner cavity side wall of the reagent warehouse, and a exhaust mechanism and an air inlet mechanism are provided on both sides of the reagent warehouse, and a treatment mechanism and a control mechanism are provided on the top of the reagent warehouse.
[0007] Preferably, the air exhaust mechanism comprises an air induction fan fixedly installed at the top end of the reagent warehouse, and a collecting pipe and an air guide pipe are arranged on the air induction fan, a first duct and a second duct are arranged in communication on the collecting pipe, the second duct is in a symmetrical structure, the first duct and the second duct are fixedly inserted into the reagent warehouse, and a wind collecting nozzle is fixedly connected to the end of the first duct and the second duct, a blocking plate is fixedly inserted into the wind collecting nozzle, ventilation grooves are arranged in an array on the blocking plate, the air inlet mechanism comprises a back-shaped frame fixedly inserted into the upper end of one side of the reagent warehouse, the back-shaped frame is in a symmetrical distribution, the reagent warehouse is provided with symmetrically arranged installation grooves, the back-shaped frame is fixedly inserted into the installation grooves, a filter plate is fixedly inserted into the inner side of one end of the back-shaped frame, a blocking plate used in cooperation with the filter plate is fixedly inserted into the inner side of the other end of the back-shaped frame, and ventilation inclined grooves are arranged in an array on the blocking plate.
[0008] Preferably, the processing mechanism comprises a processing tank fixedly installed at the top end of the reagent warehouse, the air guide pipe is in communication with the lower end of the processing tank, a first rotating rod and a second rotating rod are rotatably inserted into the processing tank, a side gear and a first bevel gear are fixedly sleeved to one end of the first rotating rod, a first rotating plate is fixedly connected to the end of the first rotating rod close to the side gear, a first U-shaped block is rotatably sleeved to the upper end of the first rotating plate, a first rotating shaft is rotatably inserted into the first U-shaped block, the upper end of the first rotating plate is rotatably sleeved to the first rotating shaft, a second rotating plate is fixedly installed on the first U-shaped block, a first side rod is rotatably inserted into the upper end of the second rotating plate, a lifting sliding block is fixedly connected to the end of the first side rod, a second bevel gear is fixedly connected to the end of the second rotating rod, the second bevel gear is engaged with the first bevel gear, a third rotating plate is fixedly installed on the second rotating rod, a second U-shaped block is rotatably inserted into the upper end of the third rotating plate, a second rotating shaft is rotatably inserted into the second U-shaped block, the upper end of the third rotating plate is rotatably sleeved to the second rotating shaft, a fourth rotating plate is fixedly connected to the second U-shaped block, a second side rod is rotatably inserted into the upper end of the fourth rotating plate, the end of the second side rod is fixedly connected to the lifting sliding block, a lifting sleeve is rotatably connected to the top end of the lifting sliding block, a plurality of mixing rotating plates are fixedly installed on the outer wall of the lifting sleeve, a third rotating rod is rotatably inserted into the processing tank, a third bevel gear is fixedly sleeved to the bottom end of the third rotating rod, the third bevel gear is engaged with the side gear, the third rotating rod is movably inserted into the inner side of the lifting sliding block and slidably inserted into the lifting sleeve, a driving motor is fixedly installed on the outer wall of the processing tank, a half-face bevel gear is fixedly connected to the end of the output end of the driving motor, a fourth bevel gear and a fifth bevel gear are fixedly sleeved to the first rotating rod, and the fourth bevel gear and the fifth bevel gear can be engaged with the half-face bevel gear.
[0009] Preferably, the sealing and controlling mechanism comprises an L-shaped plate, the L-shaped plate is fixedly connected with the processing tank, a first rotating rod penetrates through the L-shaped plate and is fixedly sleeved with a first gear at the end thereof, a first cross rod, a second cross rod and a third cross rod are rotatably inserted into the L-shaped plate, a second gear and a push plate are fixedly sleeved with the first cross rod, the second gear is engaged with the first gear, a push rod is rotatably inserted into the end of the push plate, a push ring is fixedly sleeved with the second cross rod, the push rod is movably inserted into the push ring, a half-face gear is fixedly connected with the push ring, a driving gear and an arc-shaped plate are fixedly sleeved with the third cross rod, the driving gear is engaged with the half-face gear, an air outlet pipe is communicated with the upper end of the processing tank, the arc-shaped plate is slidably attached with the air outlet pipe, ventilation holes are formed through the arc-shaped plate in array and used in cooperation with the air outlet pipe.
[0010] Compared with the prior art, the present application has the following advantages:
[0011] 1. By cooperation of the detecting mechanism, the controlling mechanism, the air exhausting mechanism and the air inlet mechanism, the concentration of toxic substances in the reagent warehouse can be automatically detected, when the concentration reaches a certain standard, the induced draft fan and the driving motor can be started by the controlling mechanism, and the induced air volume can be automatically adjusted according to the concentration, so that the toxic substances emitted in the warehouse can be timely exhausted and fresh air can be introduced, and the service life of the induced draft fan and the driving motor can be prolonged, and the power consumption can be saved.
[0012] 2. By the processing mechanism, the lifting slider can be driven to reciprocate up and down, the mixing rotating plate can be driven to reciprocate up and down by the lifting sleeve, the third rotating rod can be driven to cyclically and reciprocally rotate, the mixing rotating plate can be driven to cyclically and reciprocally rotate by the lifting sleeve, the toxic gas can be fully contacted with the processing liquid, the processing effect can be effectively improved, and the environment can be protected.
[0013] 3. By the sealing and controlling mechanism, the third cross rod can be driven to cyclically and reciprocally rotate by the driving gear, the arc-shaped plate can be driven to cyclically and reciprocally swing, the ventilation holes can be alternately communicated with the air outlet pipe, the air outlet pipe can be intermittently blocked, the contact time of the toxic gas and the processing liquid can be effectively prolonged while ensuring the normal exhaust of the air after processing, and the processing effect can be further improved. BRIEF DESCRIPTION OF DRAWINGS
[0014] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained without creative labor on the basis of these drawings.
[0015] Figure 1 System connection diagram of the present application.
[0016] Figure 2 Installation diagram of the processing mechanism in the present application.
[0017] Figure 3 Installation diagram of the detection mechanism in the present application.
[0018] Figure 4 Structure enlargement diagram of A in the present application Figure 3
[0019] Figure 5 Structure enlargement diagram of B in the present application Figure 3
[0020] Installation diagram of the containment mechanism in the present application. Figure 6
[0021] Structure enlargement diagram of C in the present application Figure 7 Figure 6
[0022] Structure enlargement diagram of D in the present application Figure 8 Figure 6
[0023] In the figure: 1, reagent warehouse; 11, installation groove; 12, switch groove; 13, switch door; 2, detection mechanism; 3, exhaust mechanism; 31, air blower; 32, collection pipe; 33, air guide pipe; 34, first conduit; 35, second conduit; 36, air collection nozzle; 37, blocking plate; 38, ventilation groove; 4, air inlet mechanism; 41, back-shaped frame; 42, filter plate; 43, blocking plate; 44, ventilation chute; 5, processing mechanism; 51, processing tank; 52, first rotating rod; 53, second rotating rod; 54, side gear; 55, first bevel gear; 56, first rotating plate; 57, first U-shaped block; 58, second rotating plate; 59, first side rod; 510, lifting slide block; 511, second bevel gear; 512, third rotating plate; 513, second U-shaped block; 514, fourth rotating plate; 515, second side rod; 516, lifting sleeve; 517, mixing rotating plate; 518, third rotating rod; 519, third bevel gear; 520, driving motor; 521, half-face bevel gear; 522, fourth bevel gear; 523, fifth bevel gear; 524, first rotating shaft; 525, second rotating shaft; 526, air outlet pipe; 6, containment mechanism; 61, L-shaped plate; 62, first gear; 63, first horizontal rod; 64, second gear; 65, pushing plate; 66, pushing rod; 67, second horizontal rod; 68, pushing ring; 69, half-face gear; 610, third horizontal rod; 611, driving gear; 612, arc-shaped plate; 613, ventilation hole. Embodiment
[0024] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative effort belong to the scope of protection of the present application.
[0025] Embodiment: As shown in the figure, the present application provides a laboratory reagent warehouse intelligent ventilation system, which comprises a reagent warehouse 1, a reagent warehouse 1 is provided with a switch slot 12, and a switch door 13 is hinged in the switch slot 12, a detection mechanism 2 and a control mechanism are provided on the inner cavity side wall of the reagent warehouse 1, and a ventilation mechanism 3 and an air inlet mechanism 4 are provided on both sides of the reagent warehouse 1, and a processing mechanism 5 and a control mechanism 6 are provided at the top end of the reagent warehouse 1. Figures 1-8 By adopting the above technical scheme, the detection mechanism 2 can automatically detect the concentration of toxic substances in the reagent warehouse 1, and when the concentration reaches a certain standard, the ventilation mechanism 3 and the processing mechanism 5 will be opened through the control mechanism, and the appropriate air volume can be automatically adjusted according to the concentration, so as to ensure that the reagent toxic substances emitted in the warehouse can be discharged in time, and the service life of the ventilation mechanism 3 and the processing mechanism 5 can be prolonged as much as possible, and the power consumption can be saved.
[0026] The ventilation mechanism 3 comprises an air guide machine 31, the air guide machine 31 is fixedly installed at the top end of the reagent warehouse 1, and the air guide machine 31 is provided with a collecting pipe 32 and an air guide pipe 33, the collecting pipe 32 is provided with a first conduit 34 and a second conduit 35, the second conduit 35 is symmetrical, the first conduit 34 and the second conduit 35 are fixedly inserted into the reagent warehouse 1, and the ends of the first conduit 34 and the second conduit 35 are fixedly connected with a wind collecting nozzle 36, the wind collecting nozzle 36 is fixedly inserted with a blocking plate 37, and the blocking plate 37 is provided with an array of ventilation slots 38, the blocking plate 37 can block external objects, and the ventilation slots 38 can ensure the normal development of ventilation work, the air inlet mechanism 4 comprises a back type frame 41, the back type frame 41 is fixedly inserted into the upper end of one side of the reagent warehouse 1, and the back type frame 41 is symmetrically distributed, the reagent warehouse 1 is provided with symmetrically arranged installation slots 11, and the back type frame 41 is fixedly inserted into the installation slots 11, the installation of the back type frame 41 is ensured by the installation of the installation slots 11, a filter plate 42 is fixedly inserted into the inner side of one end of the back type frame 41, and a blocking plate 43 is fixedly inserted into the inner side of the other end of the back type frame 41, and the blocking plate 43 is provided with an array of ventilation inclined slots 44.
[0027]
[0028] By adopting the above technical scheme, when in use, the air suction fan 31 can suck the toxic gas in the reagent warehouse 1 into the first conduit 34 and the second conduit 35 through the air collecting nozzle 36, and then the toxic gas is collected in the collecting pipe 32 and introduced into the bottom of the treatment liquid in the treatment mechanism 5 through the air guide pipe 33, at the same time, the fresh air outside is sucked into the reagent warehouse 1 through the ventilation chute 44 and filtered by the filter plate 42 and then introduced into the reagent warehouse 1.
[0029] The processing mechanism 5 comprises a processing tank 51 fixedly installed at the top end of the reagent warehouse 1, the processing tank 51 stores processing liquid therein, can absorb the discharged toxic gas, and the absorbed processing liquid can be conveniently replaced, which is prior art and will not be described in detail here. The air duct 33 is connected with the lower end of the processing tank 51, the first rotating rod 52 and the second rotating rod 53 are rotatably inserted on the processing tank 51, the side gear 54 and the first bevel gear 55 are fixedly sleeved at one end of the first rotating rod 52, the first rotating plate 56 is fixedly connected at the end of the first rotating rod 52 close to the side gear 54, the first U-shaped block 57 is rotatably sleeved at the upper end of the first rotating plate 56, the first rotating shaft 524 is rotatably inserted on the first U-shaped block 57, the first rotating plate 56 is rotatably sleeved on the first rotating shaft 524, the second rotating plate 58 is fixedly installed on the first U-shaped block 57, the first side rod 59 is rotatably inserted at the upper end of the second rotating plate 58, the lifting sliding block 510 is fixedly connected at the end of the first side rod 59, the second bevel gear 511 is fixedly connected at the end of the second rotating rod 53, the second bevel gear 511 is engaged with the first bevel gear 55, the third rotating plate 512 is fixedly installed on the second rotating rod 53, the second U-shaped block 513 is rotatably sleeved at the upper end of the third rotating plate 512, the second rotating shaft 525 is rotatably inserted on the second U-shaped block 513, the third rotating plate 512 is rotatably sleeved on the second rotating shaft 525, the first rotating shaft 524 and the second rotating shaft 525 are provided to ensure the stable rotation of the first U-shaped block 57 and the first rotating plate 56 and the stable rotation of the second U-shaped block 513 and the third rotating plate 512, the fourth rotating plate 514 is fixedly connected on the first rotating plate 56 and the second U-shaped block 513, the second side rod 515 is rotatably inserted at the upper end of the fourth rotating plate 514, the end of the second side rod 515 is fixedly connected with the lifting sliding block 510, the lifting sleeve 516 is rotatably connected at the top end of the lifting sliding block 510, the arrayed mixing rotating plates 517 are fixedly installed on the outer wall of the lifting sleeve 516, the third rotating rod 518 is rotatably inserted on the processing tank 51, the third bevel gear 519 is fixedly sleeved at the bottom end of the third rotating rod 518, the third bevel gear 519 is engaged with the side gear 54, the third rotating rod 518 is movably inserted in the lifting sliding block 510 and slidably inserted in the inner side of the lifting sleeve 516, the driving motor 520 is fixedly installed on the outer wall of the processing tank 51, the half-face bevel gear 521 is fixedly connected at the end of the output end of the driving motor 520, the fourth bevel gear 522 and the fifth bevel gear 523 are fixedly sleeved on the first rotating rod 52, and the fourth bevel gear 522 and the fifth bevel gear 523 can be engaged with the half-face bevel gear 521.
[0030] By adopting the technical scheme, when in use, the driving motor 520 drives the half-face bevel gear 521 to rotate, so that the half-face bevel gear 521 is alternately engaged with the fourth bevel gear 522 and the fifth bevel gear 523, thereby driving the first rotating rod 52 to rotate in a cycle and reciprocating manner, further driving the side gear 54, the first bevel gear 55 and the first rotating plate 56 to rotate in a cycle and reciprocating manner, further driving the third rotating plate 512 to synchronously rotate in a cycle and reciprocating manner through the use of the second bevel gear 511 and the second rotating rod 53, thereby driving the first U-shaped block 57 and the second rotating plate 58 to synchronously rotate in a cycle and reciprocating manner in cooperation with the use of the first rotating plate 56, and driving the second U-shaped block 513 and the fourth rotating plate 514 to synchronously rotate in a cycle and reciprocating manner in cooperation with the use of the second side rod 515, further driving the lifting sliding block 510 to move up and down in a reciprocating manner, further driving the mixed rotating plate 517 to move up and down in a reciprocating manner through the use of the lifting sleeve 516, and the side gear 54 drives the third bevel gear 519 to rotate in a cycle and reciprocating manner while rotating in a cycle and reciprocating manner, thereby driving the third rotating rod 518 to rotate in a cycle and reciprocating manner, further driving the mixed rotating plate 517 to rotate in a cycle and reciprocating manner through the use of the lifting sleeve 516, further enabling the toxic gas to fully contact with the treatment liquid, thereby effectively improving the treatment effect and protecting the environment.
[0031] The sealing and controlling mechanism 6 comprises an L-shaped plate 61, the L-shaped plate 61 is fixedly connected with the treatment tank 51, the first rotating rod 52 penetrates through the L-shaped plate 61 and is fixedly sleeved with the first gear 62 at the end thereof, the first horizontal rod 63, the second horizontal rod 67 and the third horizontal rod 610 are rotatably inserted into the L-shaped plate 61, the second gear 64 and the pushing plate 65 are fixedly sleeved with the first horizontal rod 63, the second gear 64 is engaged with the first gear 62, the pushing plate 65 is rotatably inserted with the pushing rod 66 at the end thereof, the pushing ring 68 is fixedly sleeved with the second horizontal rod 67, the pushing rod 66 is movably inserted into the pushing ring 68, the half-face gear 69 is fixedly connected with the pushing ring 68, the driving gear 611 and the arc-shaped plate 612 are fixedly sleeved with the third horizontal rod 610, the driving gear 611 is engaged with the half-face gear 69, the upper end of the treatment tank 51 is communicated with the air outlet pipe 526, the arc-shaped plate 612 is slidably attached with the air outlet pipe 526, the ventilation holes 613 are arranged in an array on the arc-shaped plate 612 and are used in cooperation with the air outlet pipe 526.
[0032] By adopting the technical scheme, during use, the first gear 62 drives the second gear 64 to rotate back and forth in a cycle, so that the first cross rod 63 drives the pushing plate 65 to rotate back and forth in a cycle, further driving the pushing rod 66 to rotate back and forth in a cycle, further driving the pushing rod 66 to roll back and forth in a cycle along the inner wall of the pushing ring 68, so that the pushing ring 68 is driven to swing back and forth in a cycle, further driving the half-face gear 69 to swing back and forth in a cycle, further driving the third cross rod 610 to rotate back and forth in a cycle through the driving gear 611, so that the arc-shaped plate 612 is driven to swing back and forth in a cycle, further enabling the ventilation hole 613 to be alternately communicated with the air outlet pipe 526, so that the air outlet pipe 526 is intermittently blocked, further ensuring normal air exhaust after treatment and effectively increasing the contact time of the toxic gas and the treatment liquid, so that the treatment effect is further improved.
[0033] Working principle: during use, the detection mechanism 2 can automatically detect the concentration of the toxic substance in the reagent warehouse 1, and when the concentration reaches a certain standard, the control mechanism is opened to start the air blower 31 and the driving motor 520, and the driving motor 520 can automatically adjust the appropriate air volume according to the concentration. At this time, the air blower 31 can suck the toxic gas in the reagent warehouse 1 into the first conduit 34 and the second conduit 35 through the air collecting nozzle 36, and then the toxic gas is collected in the collecting pipe 32 and introduced into the bottom of the treatment liquid in the treatment tank 51 through the air guide pipe 33. At the same time, fresh air from the outside is sucked into the reagent warehouse 1 through the ventilation chute 44 and filtered by the filter plate 42 and then introduced into the reagent warehouse 1.
[0034] At the same time, the driving motor 520 drives the half-face bevel gear 521 to rotate, so that the half-face bevel gear 521 is alternately engaged with the fourth bevel gear 522 and the fifth bevel gear 523, so that the first rotating rod 52 is driven to rotate back and forth in a cycle, further driving the first gear 62, the side gear 54, the first bevel gear 55 and the first rotating plate 56 to rotate back and forth in a cycle, further driving the third rotating plate 512 to rotate back and forth in a cycle through the use of the second bevel gear 511 and the second rotating rod 53, so that the first U-shaped block 57 and the second rotating plate 58 are driven to rotate back and forth in a cycle synchronously through the use of the first rotating plate 56, and the second U-shaped block 513 and the fourth rotating plate 514 are driven to rotate back and forth in a cycle synchronously through the use of the second side rod 515, further driving the lifting slide 510 to move up and down reciprocatingly, further driving the mixing rotating plate 517 to move up and down reciprocatingly through the lifting sleeve 516. The side gear 54 drives the third bevel gear 519 to rotate back and forth in a cycle while rotating back and forth in a cycle, so that the third rotating rod 518 is driven to rotate back and forth in a cycle, further driving the mixing rotating plate 517 to rotate back and forth in a cycle through the lifting sleeve 516, further enabling the toxic gas to be fully contacted with the treatment liquid, so that the treatment effect is effectively improved, and the environment is protected.
[0035] During this period, the first gear 62 will drive the second gear 64 to rotate back and forth in a cycle, so as to drive the push plate 65 to rotate back and forth in a cycle through the first cross rod 63, further drive the push rod 66 to rotate back and forth in a cycle, further drive the push rod 66 to roll back and forth along the inner wall of the push ring 68 in a cycle, so as to drive the push ring 68 to swing back and forth in a cycle, further drive the half-face gear 69 to swing back and forth in a cycle, further drive the third cross rod 610 to rotate back and forth in a cycle through the driving gear 611, so as to drive the arc-shaped plate 612 to swing back and forth in a cycle, further make the ventilation hole 613 alternately communicate with the air outlet pipe 526, so as to intermittently block the air outlet pipe 526, further ensure the normal exhaust of the treated air while effectively increasing the contact time of the toxic gas and the treatment liquid, so as to further improve the treatment effect, and when the concentration of the toxic substance in the reagent warehouse 1 is reduced to a proper size, the control mechanism can turn off the induced draft fan 31 and the driving motor 520.
[0036] Obviously, those skilled in the art can make various modifications and variations to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application belong to the scope of the claims of the present application and their equivalent technologies, the present application also intends to include these modifications and variations.
Claims
1. A laboratory reagent warehouse intelligent ventilation system, comprising a reagent warehouse (1), characterized in that: The inner cavity side wall of the reagent warehouse (1) is provided with a detection mechanism (2) and a control mechanism used in cooperation, both sides of the reagent warehouse (1) are provided with an exhaust mechanism (3) and an air inlet mechanism (4) used in cooperation, and the top end of the reagent warehouse (1) is provided with a treatment mechanism (5) and a control mechanism (6) used in cooperation with the exhaust mechanism (3); The exhaust mechanism (3) comprises an air induction fan (31), the air induction fan (31) is fixedly installed at the top end of the reagent warehouse (1), and the air induction fan (31) is provided with a collecting pipe (32) and an air guide pipe (33) used in cooperation, the collecting pipe (32) is in communication with a first conduit (34) and a second conduit (35) used in cooperation, the second conduit (35) is in a symmetrical structure, and the first conduit (34) and the second conduit (35) are both fixedly inserted into the reagent warehouse (1), and the tail ends of the first conduit (34) and the second conduit (35) are both fixedly connected with a wind collecting nozzle (36); The processing mechanism (5) includes a processing tank (51) fixedly installed at the top end of the reagent warehouse (1), and a wind guide pipe (33) is connected with the lower end of the processing tank (51), the processing tank (51) is rotatably connected with a first rotating rod (52) and a second rotating rod (53), one end of the first rotating rod (52) is fixedly sleeved with a side gear (54) and a first bevel gear (55), one end of the first rotating rod (52) close to the side gear (54) is fixedly connected with a first rotating plate (56), the upper end of the first rotating plate (56) is rotatably sleeved with a first U-shaped block (57), the first U-shaped block (57) is fixedly installed with a second rotating plate (58), the upper end of the second rotating plate (58) is rotatably sleeved with a first side rod (59), the distal end of the first side rod (59) is fixedly connected with a lifting sliding block (510), the distal end of the second rotating rod (53) is fixedly connected with a second bevel gear (511), the second bevel gear (511) is engaged with the first bevel gear (55), the second rotating rod (53) is fixedly installed with a third rotating plate (512), the upper end of the third rotating plate (512) is rotatably sleeved with a second U-shaped block (513), the second U-shaped block (513) is fixedly connected with a fourth rotating plate (514), the upper end of the fourth rotating plate (514) is rotatably sleeved with a second side rod (515), the distal end of the second side rod (515) is fixedly connected with the lifting sliding block (510), the top end of the lifting sliding block (510) is rotatably connected with a lifting sleeve (516), the outer wall of the lifting sleeve (516) is fixedly installed with arrayed mixing rotating plates (517), the processing tank (51) is rotatably sleeved with a third rotating rod (518), the bottom end of the third rotating rod (518) is fixedly sleeved with a third bevel gear (519), the third bevel gear (519) is engaged with the side gear (54), the third rotating rod (518) is movably penetrated through the lifting sliding block (510) and slidably inserted in the inner side of the lifting sleeve (516), the outer wall of the processing tank (51) is fixedly installed with a driving motor (520), the distal end of the output end of the driving motor (520) is fixedly connected with a half-face bevel gear (521), the first rotating rod (52) is fixedly sleeved with a fourth bevel gear (522) and a fifth bevel gear (523), the fourth bevel gear (522) and the fifth bevel gear (523) can be engaged with the half-face bevel gear (521). The sealing control mechanism (6) comprises an L-shaped plate (61), the L-shaped plate (61) is fixedly connected with a treatment tank (51), a first rotating rod (52) penetrates through the L-shaped plate (61) and is fixedly sleeved with a first gear (62) at the end thereof, the L-shaped plate (61) is rotatably inserted with a first cross rod (63), a second cross rod (67) and a third cross rod (610), the first cross rod (63) is fixedly sleeved with a second gear (64) and a push plate (65), the second gear (64) is engaged with the first gear (62), and the end of the push plate (65) is rotatably inserted with a push rod (66), the second cross rod (67) is fixedly sleeved with a push ring (68), and the push rod (66) is movably inserted in the push ring (68), the push ring (68) is fixedly connected with a half-face gear (69), the third cross rod (610) is fixedly sleeved with a driving gear (611) and an arc-shaped plate (612), and the driving gear (611) is engaged with the half-face gear (69), the upper end of the treatment tank (51) is communicated with an air outlet pipe (526), and the arc-shaped plate (612) is slidably attached to the air outlet pipe (526), the arc-shaped plate (612) is penetrated with a ventilation hole (613) used in cooperation with the air outlet pipe (526), and the ventilation hole (613) is arranged in an array.
2. The intelligent ventilation system for laboratory reagent storage according to claim 1, wherein, The blocking plate (37) is fixedly inserted in the air collecting nozzle (36), and the blocking plate (37) is penetrated with an array of ventilation grooves (38).
3. The intelligent ventilation system for laboratory reagent storage according to claim 1, wherein, The air inlet mechanism (4) comprises a back-shaped frame (41), the back-shaped frame (41) is fixedly inserted on one side of the upper end of the reagent warehouse (1), and the back-shaped frame (41) is symmetrically distributed, one end of the back-shaped frame (41) is fixedly inserted with a filter plate (42), and the other end of the back-shaped frame (41) is fixedly inserted with a blocking plate (43) used in cooperation with the filter plate (42), the blocking plate (43) is provided with an array of ventilation inclined grooves (44).
4. The intelligent ventilation system for laboratory reagent storage according to claim 3, wherein, The reagent warehouse (1) is penetrated with symmetrically arranged mounting grooves (11), and the back-shaped frame (41) is fixedly inserted in the mounting grooves (11).
5. The intelligent ventilation system for laboratory reagent storage according to claim 1, wherein, The first U-shaped block (57) is rotatably inserted with a first rotating shaft (524), and the upper end of the first rotating plate (56) is rotatably sleeved on the first rotating shaft (524).
6. The intelligent ventilation system for laboratory reagent storage according to claim 1, wherein, The second U-shaped block (513) is rotatably inserted with a second rotating shaft (525), and the upper end of the third rotating plate (512) is rotatably sleeved on the second rotating shaft (525).
7. The intelligent ventilation system for laboratory reagent storage according to claim 1, wherein, The reagent warehouse (1) is penetrated with a switch groove (12), and the switch groove (12) is hingedly connected with a switch door (13).
Citation Information
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