CN213153498U - Incubation system with laminar flow fan - Google Patents

Incubation system with laminar flow fan Download PDF

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Publication number
CN213153498U
CN213153498U CN202021599482.4U CN202021599482U CN213153498U CN 213153498 U CN213153498 U CN 213153498U CN 202021599482 U CN202021599482 U CN 202021599482U CN 213153498 U CN213153498 U CN 213153498U
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China
Prior art keywords
laminar flow
flow fan
conduction pipe
rotary rod
incubation
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Application number
CN202021599482.4U
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Chinese (zh)
Inventor
黄向飞
代洋洋
张宝献
滕世超
王猛
何英福
汪登奎
扶永贵
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Hualan Biological Chongqing Wulong District Single Collection Plasma Co ltd
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HUALAN BIOLOGICAL ENGINEERING (CHONGQING) Inc
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Abstract

The utility model provides a take system of putting of incubating of laminar flow fan, include: the device comprises an incubation chamber, a constant-temperature air conditioner, a suspension device and a laminar flow fan, wherein the incubation chamber is used for biological products to be incubated, the constant-temperature air conditioner is arranged at the top of the incubation chamber, the laminar flow fan is detachably arranged at the top of the incubation chamber through the suspension device, and the laminar flow fan is positioned below the constant-temperature air conditioner. The incubation system with the laminar flow fan solves the problem that the temperature difference between the upper layer and the lower layer in an incubation chamber is large in the prior art.

Description

Incubation system with laminar flow fan
Technical Field
The utility model relates to an equipment is used in the biological product production, concretely relates to take laminar flow fan incubate put system.
Background
In the process of producing biological products, the biological products need to be incubated, the incubation process needs to strictly ensure the environmental temperature, the incubation success rate can be seriously influenced if the temperature is not suitable, and in order to ensure the environmental stability, the incubation system is provided.
In the prior art, an incubation system comprises: the incubation chamber is used for storing biological products, the constant-temperature air conditioner is installed on the wall of the incubation chamber, the input end of the constant-temperature air conditioner is communicated with the external atmospheric pressure, the output end of the constant-temperature air conditioner is communicated with the inner cavity of the incubation chamber, the temperature sensor is installed on the inner wall of the incubation chamber and used for detecting the temperature in the incubation chamber, and the temperature sensors are all electrically connected to the controller through the constant-temperature air conditioner. Although the effect on the temperature regulation in the incubation chamber can be achieved, the following disadvantages still exist:
the incubation chamber needs to ensure the temperature to be 30-32 ℃, the constant temperature air conditioner is mainly used for supplying air from the top of the room, the air return mode at the bottom of the room ensures the temperature, but the temperature difference between the upper layer and the lower layer of the biological product storage area is large, if the temperature of the constant temperature air conditioner is set to be 31.6 ℃, the temperature of the upper layer is 31.5 ℃, the temperature of the lower layer is 30.2 ℃, the temperature difference is 1.3 ℃, and the temperature difference is even larger than 1.3 ℃ after the biological products are placed.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a take laminar flow fan incubate system of putting solves and incubate among the prior art and put indoor upper strata temperature and the great problem of lower floor's temperature difference.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a take system of putting of incubating of laminar flow fan, include: the device comprises an incubation chamber, a constant-temperature air conditioner, a suspension device and a laminar flow fan, wherein the incubation chamber is used for biological products to be incubated, the constant-temperature air conditioner is arranged at the top of the incubation chamber, the laminar flow fan is detachably arranged at the top of the incubation chamber through the suspension device, and the laminar flow fan is positioned below the constant-temperature air conditioner.
Preferably, the hatching system with the laminar flow fan further comprises: and the conduction mechanism is used for communicating the exhaust pipe.
Preferably, a bearing frame is arranged at the top of the hatching chamber, a plurality of support frames are suspended on the bearing frame, the support frames are used for supporting a ceiling plate used for closing the bearing frame, the bearing frame is used for installing suspension devices, and the suspension devices penetrate through the ceiling plate.
Preferably, the suspension device has four, each suspension device comprising: the fixing base, the rotary rod, the stopper, the couple and suspend in midair the rope, it is used for being connected with laminar flow fan to suspend in midair rope one end, it is on the couple to suspend in midair rope other end hook, the couple is fixed to rotary rod one end, the rotary rod passes behind the furred ceiling board articulated with the fixing base, the fixing base is fixed with the bearing frame, the rotary rod lateral wall protrusion has the stopper, the furred ceiling board is seted up and is supplied the perforation that the rotary rod passed, the sunken spout that supplies the stopper to pass that forms of perforation inner wall, switch-on mechanism is used for.
Preferably, the conduction mechanism includes: first conduction pipe, the second conduction pipe, screw rod and inserted block, first conduction pipe one end and laminar flow fan input intercommunication, the first conduction pipe other end stretches into to the second conduction in the pipe, first conduction pipe is rotatory for the second conduction pipe not, the second conduction pipe is rotatory for first conduction pipe not, the second conduction pipe other end is used for compressing tightly back and blast pipe intercommunication on the furred ceiling board, the slot that supplies inserted block to offer to the rotary rod, the inserted block is used for the clearance between shutoff couple and the rotary rod.
Compared with the prior art, the utility model discloses following beneficial effect has:
1) the laminar flow fan is arranged in the room, so that the wind speed from the upper layer to the lower layer in the room is accelerated, the temperature difference between the upper layer and the lower layer is reduced, and the temperature distribution of a product storage area in the room is more uniform; 2) the constant temperature air conditioner and the laminar flow fan ensure that the temperature of a constant temperature room is more stable, and the maximum temperature difference of the whole room is not more than 1 ℃.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention.
Drawings
FIG. 1 is a cross-sectional view of a hatching system with a laminar flow fan;
fig. 2 is an enlarged view of a point a in fig. 1.
Reference numerals: the hatching room 1, the constant temperature air conditioner 2, the exhaust pipe 20, the suspension device 3, the fixed seat 31, the rotating rod 32, the limited block 33, the hook 34, the suspension rope 35, the laminar flow fan 4, the supporting frame 51, the bearing frame 52, the ceiling plate 53, the conduction mechanism 6, the first conduction pipe 61, the second conduction pipe 62, the screw 63 and the inserting block 64.
Detailed Description
In order to make the utility model realize that technical means, creation characteristics, achievement purpose and effect are clearer and easily understand, it is right to combine below the figure and the detailed implementation mode the utility model discloses do further explanation:
as shown in fig. 1 and fig. 2, the utility model provides an incubation system with laminar flow fan 4, which includes: the incubation room 1 is used for biological products to be incubated, the constant-temperature air conditioner 2 is arranged at the top of the incubation room 1, the laminar flow fan 4 is detachably arranged at the top of the incubation room 1 through the suspension device 3, and the laminar flow fan 4 is positioned below the constant-temperature air conditioner 2.
In order to enable the gas exhausted by the thermostatic air conditioner 2 to enter the incubation chamber 1 after being completely communicated with the laminar flow fan 4, the incubation system with the laminar flow fan 4 further comprises: the conduction mechanism 6 is used for communicating the exhaust pipe 20, the output end of the constant-temperature air conditioner 2 is communicated to the exhaust pipe 20, the conduction mechanism 6 is located at the top of the laminar flow fan 4, and the conduction mechanism 6 is used for communicating the exhaust pipe 20.
In order to realize the installation of the hanging devices 3 and ensure the top of the hatching chamber 1 to be beautiful, a bearing frame 52 is installed at the top of the hatching chamber 1, a plurality of supporting frames 51 are hung on the bearing frame 52, the supporting frames 51 are used for supporting a ceiling plate 53 for closing the bearing frame 52, the bearing frame 52 is used for installing the hanging devices 3, and the hanging devices 3 penetrate through the ceiling plate 53. The ceiling board 53 inclined just enough to the gap between the adjacent support frames 51 passes through, and after the ceiling board 53 passes through the gap, the ceiling board 53 is rotated to the horizontal plane, and the support frames 51 restrict the ceiling board 53 from falling.
In order to design the suspending device 3 with a simple structure and ensure that the ceiling board 53 does not move upward when the second conduction pipe 62 presses the ceiling board 53 where the suspending device 3 is located, there are four suspending devices 3, and each suspending device 3 includes: fixing base 31, the rotary rod 32, the stopper 33, couple 34 and suspend in midair rope 35, it is used for being connected with laminar flow fan 4 to suspend in midair rope 35 one end, it hooks on couple 34 to suspend in midair rope 35 other end, couple 34 is fixed to rotary rod 32 one end, rotary rod 32 passes behind furred ceiling board 53 and articulates with fixing base 31, fixing base 31 is fixed with bearing frame 52, the protrusion of rotary rod 32 lateral wall has stopper 33, furred ceiling board 53 offers the perforation that supplies rotary rod 32 to pass, the sunken spout that forms of perforation inner wall to supply stopper 33 to pass, conduction-through mechanism 6 is used for the clearance between shutoff couple 34 and the rotary rod 32 and is used for restricting rotary rod 32.
In order to design simple structure's conduction mechanism 6, and realize can to the rotary rod 32 limit after the conduction mechanism 6 communicates and change, can seal the rotary rod 32 again and, conduction mechanism 6 includes: first conduction pipe 61, the second conduction pipe 62, screw rod 63 and inserted block 64, first conduction pipe 61 one end and 4 input end intercommunications of laminar flow fan, the first conduction pipe 61 other end stretches into to the second conduction pipe 62 in, first conduction pipe 61 can not rotate relative to second conduction pipe 62, second conduction pipe 62 can not rotate relative to first conduction pipe 61, the second conduction pipe 62 other end is used for compressing tightly back and blast pipe 20 intercommunication on furred ceiling board 53, confession inserted block 64 male slot has been seted up to rotary rod 32, inserted block 64 is used for the clearance between shutoff couple 34 and the rotary rod 32.
When the installation is carried out, firstly, the fixed seat 31 is fixed on the bearing frame 52; then, the through hole formed in the ceiling plate 53 is large, so that the ceiling plate 53 can be inserted into the gap between the support frames 51 after being inclined, the limiting block 33 is inserted from the sliding groove, and the ceiling plate 53 is rotated to the horizontal position after entering, so that the ceiling plate 53 is installed in place; then, the rotating rod 32 is rotated, so that the limiting block 33 is not aligned with the slot, the risk that the ceiling plate 53 moves upwards is avoided, and the limiting block 33 is large enough, so that the limiting block 33 cannot penetrate through the through hole, and the limiting is realized; then, the hanging rope 35 on the laminar flow fan 4 is hooked on the hook 34; then, the second conduction pipe 62 is moved, the second conduction pipe 62 is tightly pressed on the ceiling board 53 acting with the limiting block 33, and the insertion block 64 is inserted into the slot formed in the edge of the rotating rod 32 while the second conduction pipe 62 is tightly pressed, so that the gap between the hook 34 and the rotating rod 32 is blocked, the hanging rope 35 is prevented from being separated from the hook 34, the rotating rod 32 is limited to rotate freely, the second conduction pipe 62 is ensured to be tightly attached to the ceiling board 53, the rotating rod 32 and the hook 34 are also limited to rotate to the position deviating from the insertion block 64, and because four corners of the laminar flow fan 4 are suspended, and the laminar flow fan 4 has a certain weight, the laminar flow fan 4 cannot rotate; finally, the second conduction pipe 62 is positioned to be in close contact with the ceiling plate 53 by using the screw 63.
Finally, although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the present invention can be modified or replaced by other means without departing from the spirit and scope of the present invention, which should be construed as limited only by the appended claims.

Claims (5)

1. The utility model provides a take system of hatching of laminar flow fan which characterized in that includes: the device comprises an incubation chamber, a constant-temperature air conditioner, a suspension device and a laminar flow fan, wherein the incubation chamber is used for biological products to be incubated, the constant-temperature air conditioner is arranged at the top of the incubation chamber, the laminar flow fan is detachably arranged at the top of the incubation chamber through the suspension device, and the laminar flow fan is positioned below the constant-temperature air conditioner.
2. The incubation system with laminar flow fan of claim 1, further comprising: and the conduction mechanism is used for communicating the exhaust pipe.
3. The incubation system with laminar flow fan of claim 2, wherein a load-bearing frame is mounted at the top of the incubation chamber, a plurality of support frames are suspended from the load-bearing frame, the support frames are used for supporting a ceiling plate for closing the load-bearing frame, the load-bearing frame is used for mounting suspension devices, and the suspension devices penetrate through the ceiling plate.
4. The incubation system with laminar flow fan of claim 3, wherein there are four suspension devices, each comprising: the fixing base, the rotary rod, the stopper, the couple and suspend in midair the rope, it is used for being connected with laminar flow fan to suspend in midair rope one end, it is on the couple to suspend in midair rope other end hook, the couple is fixed to rotary rod one end, the rotary rod passes behind the furred ceiling board articulated with the fixing base, the fixing base is fixed with the bearing frame, the rotary rod lateral wall protrusion has the stopper, the furred ceiling board is seted up and is supplied the perforation that the rotary rod passed, the sunken spout that supplies the stopper to pass that forms of perforation inner wall, switch-on mechanism is used for.
5. The incubation system with laminar flow fan of claim 4, wherein the conducting mechanism comprises: first conduction pipe, the second conduction pipe, screw rod and inserted block, first conduction pipe one end and laminar flow fan input intercommunication, the first conduction pipe other end stretches into to the second conduction in the pipe, first conduction pipe is rotatory for the second conduction pipe not, the second conduction pipe is rotatory for first conduction pipe not, the second conduction pipe other end is used for compressing tightly back and blast pipe intercommunication on the furred ceiling board, the slot that supplies inserted block to offer to the rotary rod, the inserted block is used for the clearance between shutoff couple and the rotary rod.
CN202021599482.4U 2020-08-04 2020-08-04 Incubation system with laminar flow fan Active CN213153498U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021599482.4U CN213153498U (en) 2020-08-04 2020-08-04 Incubation system with laminar flow fan

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021599482.4U CN213153498U (en) 2020-08-04 2020-08-04 Incubation system with laminar flow fan

Publications (1)

Publication Number Publication Date
CN213153498U true CN213153498U (en) 2021-05-11

Family

ID=75798264

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021599482.4U Active CN213153498U (en) 2020-08-04 2020-08-04 Incubation system with laminar flow fan

Country Status (1)

Country Link
CN (1) CN213153498U (en)

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20230320

Address after: 408500 Jijiawan Agricultural Community, Qingfeng Village, Yajiang Town, Wulong District, Chongqing City

Patentee after: Hualan biological Chongqing Wulong District single collection plasma Co.,Ltd.

Address before: No.66 Hefeng Avenue, Fuling District, Chongqing

Patentee before: HUALAN BIOLOGICAL ENGINEERING (CHONGQING) Inc.