CN203771913U - Intelligent energy-saving medicine drying box - Google Patents

Intelligent energy-saving medicine drying box Download PDF

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Publication number
CN203771913U
CN203771913U CN201420008525.5U CN201420008525U CN203771913U CN 203771913 U CN203771913 U CN 203771913U CN 201420008525 U CN201420008525 U CN 201420008525U CN 203771913 U CN203771913 U CN 203771913U
Authority
CN
China
Prior art keywords
air
supervisor
casing
hot blast
supporting plate
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201420008525.5U
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Chinese (zh)
Inventor
朱德其
沈桦
冯璐
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Chengdu Hengrui Pharmaceutical Co Ltd
Original Assignee
Chengdu Hengrui Pharmaceutical Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Chengdu Hengrui Pharmaceutical Co Ltd filed Critical Chengdu Hengrui Pharmaceutical Co Ltd
Priority to CN201420008525.5U priority Critical patent/CN203771913U/en
Application granted granted Critical
Publication of CN203771913U publication Critical patent/CN203771913U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses an intelligent energy-saving medicine drying box, which comprises a hot air supply device, a box body (1), a material support plate (3), a hot air inlet main pipe (2), a hot air inlet branch pipe (5), an air outlet branch pipe (6), an air outlet main pipe (7), a gas dehumidifier (12), a controller (13) and a humidity sensor (14), wherein the hot air inlet main pipe (2) is connected with the hot air supply device, the humidity sensor (14) is arranged in the air outlet main pipe (7), the air outlet main pipe (7) is sequentially connected with the gas dehumidifier (12) and an air inlet of a ventilating cavity of a heater, and the controller (13) is connected with the humidity sensor (14), a blower (9) and the heater. The medicine drying box has the beneficial effects that the drying degree of the material is uniform, the automation degree is high, the quality of finished product is ensured, the residual heat of waste gas is sufficiently utilized, and the utilization rate of resources and the drying efficiency are improved.

Description

A kind of Intelligent energy-saving medicine drying box
Technical field
The utility model relates to drying equipment technical field, particularly a kind of Intelligent energy-saving medicine drying box.
Background technology
In pharmaceutical production field, common drying equipment is drying box, existing drying box is divided into two kinds conventionally, a kind of is that heating tube is installed in casing, another kind is the interlayer that logical steam is set in casing, the effective drying surface of these two kinds of drying boxes is smaller, thereby the drying effect of medicine is not fairly obvious, and production cost is higher.
And, in existing drying equipment, conventionally there is the inhomogeneous phenomenon of medicine degree of drying of different placement locations in same drying box, the medicine that normally more approaches thermal source is drier, and the medicine of stow away from heat is more difficult dry.Meanwhile, the air of the entrapped moisture in drying box can not flow out drying box smoothly, carries aerial moisture secretly and easily again by medicine, is adsorbed, thereby affect drying efficiency in casing, has improved production cost.
Utility model content
The purpose of this utility model is to overcome the shortcoming of prior art, provides a kind of and reduces production costs, automaticity is high, improve the Intelligent energy-saving medicine drying box of resource utilization and drying efficiency.
The purpose of this utility model is achieved through the following technical solutions: a kind of Intelligent energy-saving medicine drying box, it comprises hot air supplier, casing, material supporting plate, hot blast air intake supervisor, hot blast air intake arm, air-out arm, air-out supervisor, gas dehumidification device, controller and humidity sensor, hot blast air intake supervisor stretches into box house, in casing, be provided with a plurality of material supporting plates, the bottom of each material supporting plate is provided with a hot blast air intake arm, hot blast air intake arm is all communicated with hot blast air intake supervisor, the position that casing is positioned at each material supporting plate top is provided with an air-out arm, each air-out arm is all communicated with the air-out supervisor who is arranged at casing outside, humidity sensor is arranged in air-out supervisor, described hot blast air intake supervisor connects hot air supplier, described hot air supplier comprises air blast and heater, heater inside is provided with vented cavity, in vented cavity, be provided with heating wire, vented cavity air inlet connects air blast by pipeline, the air outlet of vented cavity connects hot blast air intake by pipeline to be responsible for, described air-out supervisor is by the air inlet of pipeline connection heater vented cavity, gas dehumidification device is arranged on the air inlet pipeline that is communicated with air-out supervisor and heater vented cavity, controller connects respectively humidity sensor by cable, air blast and heater.
The edge of described material supporting plate is all connected with the inner wall sealing of casing, the bottom of each material supporting plate is provided with a funnel type inlet box, described funnel type inlet box is the casing along direction aperture area increases gradually from top to bottom, the upper end-face edge of funnel type inlet box is connected with the edge seal of material supporting plate, and the bottom of each funnel type inlet box is all communicated with the air outlet of corresponding hot blast air intake arm.
Described casing is that square, described funnel type inlet box is square-shaped hopper.
On described material supporting plate, be evenly distributed with air vent.
On described air-out supervisor, be also provided with Electrocontrolled tee valve, one end of Electrocontrolled tee valve connects air-out supervisor, the other end of Electrocontrolled tee valve connects gas dehumidification device, the 3rd end of Electrocontrolled tee valve connects evacuated tube, in air-out supervisor, be also provided with temperature sensor, Electrocontrolled tee valve is connected controller by cable respectively with temperature sensor.
The utlity model has following advantage: the utility model blasts the drying mode of hot air type by employing, make medicine be easier to contact with thermal source, improved drying efficiency, funnel type inlet box of the present utility model has not only played good dispersed hot wind action, make material and hot blast even contact on material supporting plate, the dry materials degree on same material supporting plate that guaranteed is consistent, simultaneously, it plays the effect of the adjacent material supporting plate of packing, make the impact of the hot blast of the subsidiary moisture that produces on the material Bu Huishou lower floor material supporting plate on upper materials supporting plate, thereby the degree of drying that has guaranteed each layer of material in same casing is consistent, and be beneficial to the moisture very first time discharge drying box of being taken away by air-flow, avoided the impact of moisture content air-flow on medicine, improved equally drying efficiency.
The utility model is by arranging controller and sensor, can Real-Time Monitoring hot blast humidity, temperature, thereby realize the monitoring to product drying degree, when product completes can very first time arrestment operation after dry, reduced production cost, and automaticity is high, is easy to testing product degree of drying, processed finished products quality is more secure, and the utility model also can have been realized the cooling of dried product.
The utility model takes full advantage of the waste heat of waste gas, thereby has improved resource utilization, has avoided the waste of heat energy, and recyclegas through again heating can reach higher temperature, thereby be conducive to improve drying efficiency.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model
Fig. 2 is the structural representation of material supporting plate of the present utility model and funnel type inlet box
In figure, 1-casing, 2-hot blast air intake supervisor, 3-material supporting plate, 4-funnel type inlet box, 5-hot blast air intake arm, 6-air-out arm, 7-air-out supervisor, 8-air vent, 9-air blast, 10-heater, 11-heating wire, 12-gas dehumidification device, 13-controller, 14-humidity sensor, 15-Electrocontrolled tee valve, 16-temperature sensor, 17-evacuated tube.
The specific embodiment
Below in conjunction with accompanying drawing, the utility model is further described, protection domain of the present utility model is not limited to the following stated:
As shown in Figure 1, a kind of Intelligent energy-saving medicine drying box, it comprises hot air supplier, casing 1, material supporting plate 3, hot blast air intake supervisor 2, hot blast air intake arm 5, air-out arm 6, air-out supervisor 7, gas dehumidification device 12, controller 13 and humidity sensor 14, hot blast air intake supervisor 2 stretches into casing 1 inside, in casing 1, be provided with a plurality of material supporting plates 3, the bottom of each material supporting plate 3 is provided with a hot blast air intake arm 5, hot blast air intake arm 5 is all communicated with hot blast air intake supervisor 2, the position that casing 1 is positioned at each material supporting plate 3 top is provided with an air-out arm 6, each air-out arm 6 is all communicated with the air-out supervisor 7 who is arranged at casing 1 outside, humidity sensor 14 is arranged in air-out supervisor 7, described hot blast air intake supervisor 2 connects hot air supplier, described hot air supplier comprises air blast 9 and heater 10, heater 10 inside are provided with vented cavity, in vented cavity, be provided with heating wire 11, vented cavity air inlet connects air blast 9 by pipeline, the air outlet of vented cavity connects hot blast air intake supervisor 2 by pipeline, described air-out supervisor 7 is by the air inlet of pipeline connection heater 10 vented cavities, gas dehumidification device 12 is arranged on the air inlet pipeline that is communicated with air-out supervisor 7 and heater 10 vented cavities, controller 13 connects respectively humidity sensor 14 by cable, air blast 9 and heater 10.
The edge of described material supporting plate 3 is all connected with the inner wall sealing of casing 1, the bottom of each material supporting plate 3 is provided with a funnel type inlet box 4, funnel type inlet box 4 is positioned at hot blast air intake arm 5 tops, described funnel type inlet box 4 is the casing 1 along direction aperture area increases gradually from top to bottom, the upper end-face edge of funnel type inlet box 4 is connected with the edge seal of material supporting plate 3, and the bottom of each funnel type inlet box 4 is all communicated with the air outlet of corresponding hot blast air intake arm 5.
As shown in Figure 2, described casing 1 is that square, described funnel type inlet box 4 is square-shaped hopper.Funnel type inlet box 4 has not only played good dispersed hot wind action, make material and hot blast even contact on material supporting plate 3, guaranteed that dry materials degree is consistent, simultaneously, it plays the effect of the adjacent material supporting plate 3 of packing, make the impact of the hot blast of the subsidiary moisture of generation on the material Bu Huishou lower floor material supporting plate 3 on upper materials supporting plate 3, thereby guaranteed that the degree of drying of each layer of material in same casing 1 is consistent.
On described material supporting plate 3, be evenly distributed with air vent 8, on material supporting plate 3, be also provided with the through hole passing for air pipeline, between air pipeline and through hole, hermetically-sealed construction is set.
On described air-out supervisor 7, be also provided with Electrocontrolled tee valve 15, one end of Electrocontrolled tee valve 15 connects air-out supervisor 7, the other end of Electrocontrolled tee valve 15 connects gas dehumidification device 12, the 3rd end of Electrocontrolled tee valve 15 connects evacuated tube 17, in air-out supervisor 7, be also provided with temperature sensor 16, Electrocontrolled tee valve 15 is connected controller 13 by cable respectively with temperature sensor 16.
The course of work of the present utility model is as follows: air blast 9 controlled by controller 13 and heater 10 is started working, the air that air blast 9 blasts enters the vented cavity of heater 10, and heated by the electric heating in vented cavity, hot blast after heating enters hot blast air intake supervisor 2, then branch to hot blast air intake arm 5, bottom by funnel type inlet box 4 enters, because funnel type inlet box 4 is the casing 1 along direction aperture area increases gradually from top to bottom, hot blast is dispersed in uphill process, from the whole bottom even of material supporting plate 3, pass through, the degree of drying of the material on material supporting plate 3 is consistent, hot blast is taken away the moisture of material, from corresponding air-out arm 6, derive casing 1, and the discharge of confluxing in air-out supervisor 7.Air-flow in air-out supervisor 7 is sloughed after moisture through gas dehumidification device 12, enter heater 10 vented cavity in, owing to itself thering is higher temperature from air-out supervisor 7 gases that enter, therefore by reaching higher temperature after heater 10 heating, again enter that casing 1 is interior to be dried material.The humidity that humidity sensor 14 in air-out supervisor 7 detects is less than after acceptance value, and controller 13 control heaters 10 quit work, and product completes dry.Product does not need to be down to room temperature, and controller 13 is controlled air blast 9 simultaneously and quit work; If product needed is down to room temperature, controller 13 is after control heater 10 quits work, controlling air blast 9 works on, to product, carry out air-cooled, control Electrocontrolled tee valve 15 simultaneously and disconnect being connected of air-out supervisor 7 and gas dehumidification device 12, be communicated with air-out supervisor 7 and evacuated tube 17, when air-out be responsible for temperature sensor 16 in 7 detect temperature lower than acceptance value after, controller 13 is controlled air blast 9 and is quit work, and completes the work that is dried and is cooled to room temperature to product.The utility model takes full advantage of the waste heat of waste gas, thereby has improved resource utilization, has avoided the waste of heat energy, and recyclegas through again heating can reach higher temperature, thereby be conducive to improve drying efficiency.By controller 13 and sensor are set, can Real-Time Monitoring hot blast humidity, temperature, thereby realize the monitoring to product drying degree, when product completes can very first time arrestment operation after dry, reduced production cost, and automaticity is high, is easy to testing product degree of drying, processed finished products quality is more secure, and the utility model also can have been realized the cooling of dried product.

Claims (5)

1. an Intelligent energy-saving medicine drying box, it is characterized in that: it comprises hot air supplier, casing (1), material supporting plate (3), hot blast air intake supervisor (2), hot blast air intake arm (5), air-out arm (6), air-out supervisor (7), gas dehumidification device (12), controller (13) and humidity sensor (14), hot blast air intake supervisor (2) stretches into casing (1) inside, in casing (1), be provided with a plurality of material supporting plates (3), the bottom of each material supporting plate (3) is provided with a hot blast air intake arm (5), hot blast air intake arm (5) is all communicated with hot blast air intake supervisor (2), the position that casing (1) is positioned at each material supporting plate (3) top is provided with an air-out arm (6), each air-out arm (6) is all communicated with the air-out supervisor (7) who is arranged at casing (1) outside, humidity sensor (14) is arranged in air-out supervisor (7), described hot blast air intake supervisor (2) connects hot air supplier, described hot air supplier comprises air blast (9) and heater (10), heater (10) inside is provided with vented cavity, in vented cavity, be provided with heating wire (11), vented cavity air inlet connects air blast (9) by pipeline, the air outlet of vented cavity connects hot blast air intake supervisor (2) by pipeline, described air-out supervisor (7) is by the air inlet of pipeline connection heater (10) vented cavity, gas dehumidification device (12) is arranged on the air inlet pipeline that is communicated with air-out supervisor (7) and heater (10) vented cavity, controller (13) connects respectively humidity sensor (14) by cable, air blast (9) and heater (10).
2. a kind of Intelligent energy-saving medicine drying box according to claim 1, it is characterized in that: the edge of described material supporting plate (3) is all connected with the inner wall sealing of casing (1), the bottom of each material supporting plate (3) is provided with a funnel type inlet box (4), described funnel type inlet box (4) is the casing (1) along direction aperture area increases gradually from top to bottom, the upper end-face edge of funnel type inlet box (4) is connected with the edge seal of material supporting plate (3), the bottom of each funnel type inlet box (4) is all communicated with the air outlet of corresponding hot blast air intake arm (5).
3. a kind of Intelligent energy-saving medicine drying box according to claim 2, is characterized in that: described casing (1) is for square, and described funnel type inlet box (4) is square-shaped hopper.
4. a kind of Intelligent energy-saving medicine drying box according to claim 1, is characterized in that: on described material supporting plate (3), be evenly distributed with air vent (8).
5. a kind of Intelligent energy-saving medicine drying box according to claim 1, it is characterized in that: on described air-out supervisor (7), be also provided with Electrocontrolled tee valve (15), one end of Electrocontrolled tee valve (15) connects air-out supervisor (7), the other end of Electrocontrolled tee valve (15) connects gas dehumidification device (12), the 3rd end of Electrocontrolled tee valve (15) connects evacuated tube (17), in air-out supervisor (7), be also provided with temperature sensor (16), Electrocontrolled tee valve (15) is connected controller (13) by cable respectively with temperature sensor (16).
CN201420008525.5U 2014-01-07 2014-01-07 Intelligent energy-saving medicine drying box Expired - Fee Related CN203771913U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420008525.5U CN203771913U (en) 2014-01-07 2014-01-07 Intelligent energy-saving medicine drying box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420008525.5U CN203771913U (en) 2014-01-07 2014-01-07 Intelligent energy-saving medicine drying box

Publications (1)

Publication Number Publication Date
CN203771913U true CN203771913U (en) 2014-08-13

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ID=51289098

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420008525.5U Expired - Fee Related CN203771913U (en) 2014-01-07 2014-01-07 Intelligent energy-saving medicine drying box

Country Status (1)

Country Link
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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107152844A (en) * 2017-07-04 2017-09-12 江西升华新材料有限公司 Drying machine and material handling system
CN107388751A (en) * 2017-09-18 2017-11-24 盐城方正医药科技有限公司 A kind of drying device for azithromycin tablet production
CN108469159A (en) * 2018-04-27 2018-08-31 安陆市天星粮油机械设备有限公司 A kind of plate dryer
CN108814647A (en) * 2018-05-15 2018-11-16 郑州市妇幼保健院 A kind of Ultrasonic-B probe heating device and its heating means
CN109253592A (en) * 2018-09-26 2019-01-22 昆明理工大学 Coffee bean is classified moisture-catcher after a kind of husking degumming
CN112284063A (en) * 2020-10-30 2021-01-29 北京福爱乐科技发展有限公司 High-temperature sterilization equipment
CN114440568A (en) * 2022-01-29 2022-05-06 上海塑研自动化科技有限公司 High-efficient drying cabinet
CN114705009A (en) * 2022-04-19 2022-07-05 甘肃省农业科学院农产品贮藏加工研究所 Drying device for drying day lily

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107152844A (en) * 2017-07-04 2017-09-12 江西升华新材料有限公司 Drying machine and material handling system
CN107388751A (en) * 2017-09-18 2017-11-24 盐城方正医药科技有限公司 A kind of drying device for azithromycin tablet production
CN108469159A (en) * 2018-04-27 2018-08-31 安陆市天星粮油机械设备有限公司 A kind of plate dryer
CN108814647A (en) * 2018-05-15 2018-11-16 郑州市妇幼保健院 A kind of Ultrasonic-B probe heating device and its heating means
CN108814647B (en) * 2018-05-15 2021-01-15 郑州市妇幼保健院 B-ultrasonic probe heating device and heating method thereof
CN109253592A (en) * 2018-09-26 2019-01-22 昆明理工大学 Coffee bean is classified moisture-catcher after a kind of husking degumming
CN112284063A (en) * 2020-10-30 2021-01-29 北京福爱乐科技发展有限公司 High-temperature sterilization equipment
CN114440568A (en) * 2022-01-29 2022-05-06 上海塑研自动化科技有限公司 High-efficient drying cabinet
CN114705009A (en) * 2022-04-19 2022-07-05 甘肃省农业科学院农产品贮藏加工研究所 Drying device for drying day lily

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140813

Termination date: 20150107

EXPY Termination of patent right or utility model