CN213631403U - Drying device used in resistor production process - Google Patents

Drying device used in resistor production process Download PDF

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Publication number
CN213631403U
CN213631403U CN202021954503.XU CN202021954503U CN213631403U CN 213631403 U CN213631403 U CN 213631403U CN 202021954503 U CN202021954503 U CN 202021954503U CN 213631403 U CN213631403 U CN 213631403U
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air
drying
area
dehumidifying
air inlet
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童卫东
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Sichuan Qixing Electronics Co ltd
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Sichuan Qixing Electronics Co ltd
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Abstract

A drying device used in the production process of resistors relates to the technical field of resistor production equipment, the utility model comprises a drying box, a transmission belt used for transporting resistors to be dried is arranged in the drying box, the transmission belt is arranged on a horizontal plane through a supporting seat, the left side and the right side of the drying box are provided with strip-shaped holes convenient for the motion of the transmission belt, the left side and the right side of the drying box are respectively provided with an air outlet and an air inlet, the air outlet is connected with a dehumidifying box through an air outlet pipe, a dehumidifying component is arranged in the dehumidifying box, the dehumidifying box is connected with the air inlet of the drying box through an air inlet pipe, the air outlet pipe and the air inlet pipe are respectively provided with a second air pump and a first air pump, the utility model realizes the dehumidification and the drying of the dehumidifying area of a dehumidifying wheel and the drying area, and the heating of the air discharged from the drying box, and then the drying of the, simple structure, convenient operation and good dehumidification effect.

Description

Drying device used in resistor production process
Technical Field
The utility model relates to a resistance production facility technical field, concretely relates to drying device who uses in resistance production process.
Background
The electronic components are components of electronic elements and small machines and instruments, are usually composed of a plurality of parts and can be commonly used in similar products; it is a general name of some parts in the industries of electric appliances, radio, instruments and the like, such as capacitors, transistors, hairsprings, springs and other sub-devices. Diodes and the like are common. The electronic component includes: the electronic device comprises a resistor, a capacitor, a potentiometer, an electronic tube, a radiator, an electromechanical element, a connector, a semiconductor discrete device, an electroacoustic device, a laser device, an electronic display device, a photoelectric device, a sensor, a power supply, a switch, a micro-special motor, an electronic transformer, a relay, a printed circuit board, an integrated circuit, various circuits, piezoelectricity, crystals, quartz, a ceramic magnetic material, a substrate for a printed circuit, an electronic function process special material, an electronic adhesive product, an electronic chemical material, a component and the like. When the electric charge moves in the conductor, the electric charge is collided and rubbed by other particles such as molecules and atoms, and the collision and the rubbing result to form the obstruction of the current by the conductor, and the most obvious characteristic of the obstruction is that the conductor consumes electric energy to generate heat or emit light. This resistance of the object to the current is referred to as the resistance of the object. The resistor generally plays a role in voltage division and shunt in the circuit; for signals, both ac and dc signals may pass through resistors.
Present resistance drying equipment will treat that dry resistance is generally placed in the drying cabinet, then closes the drying cabinet and intensifies the stoving, can not carry out effective processing to the moist hot-air that produces among the drying process, and drying efficiency is low, and moist hot-air probably causes impedance performance to change and finally influences the quality of the resistance that makes at last, for solving above-mentioned technical problem, the utility model provides a drying device who uses in the resistance production process.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a: for the technical problem who proposes among the solution background art, the utility model provides a drying device who uses in the resistance production process.
The utility model discloses a realize above-mentioned purpose and specifically adopt following technical scheme:
the utility model provides a drying device who uses in resistance production process, includes the drying cabinet, be equipped with in the drying cabinet and be used for the transportation to treat the transmission band of dry resistance, the transmission band passes through the supporting seat setting on the horizontal plane, the left side and the right side of drying cabinet are equipped with the bar hole of the transmission band motion of being convenient for, the left side and the right side of drying cabinet are equipped with air outlet and air intake respectively, the air outlet is connected with the dehumidification case through the outlet duct, be equipped with the dehumidification subassembly in the dehumidification case, the dehumidification case passes through the air intake connection of intake pipe and drying cabinet, be equipped with air pump two and air pump one in outlet duct and the.
Further, the dehumidification subassembly is including the baffle that is located its intermediate position, the baffle divide into the air inlet district that is located the right side with the dehumidification case and is located left air-out district, be equipped with the dehumidification wheel that is divided into dehumidification district and drying zone on the baffle, the dehumidification wheel passes through drive assembly drive its rotation, the air inlet district is divided into the dehumidification air inlet district that is located the upper end and is located the dry air inlet district of lower extreme by the baffle that the slope set up, the dehumidification air inlet district passes through outlet duct and drying cabinet intercommunication, dry air inlet district is through going into wind gap and external intercommunication, be equipped with the heating screen in the dry air inlet district, the air-out district is divided into the dry air-out district that is located the upper end and the moisture air-out district that is located the lower extreme by the baffle that the slope set up, dry air-out district passes through the air inlet intercommunication of air-supply line and drying cabinet, be equipped with, the dehumidification air inlet area and the dry air outlet area correspond to the drying area, and the dry air inlet area and the moisture outlet area correspond to the dehumidification area of the dehumidification wheel.
Further, the driving assembly comprises a placing area arranged at the bottom of the dehumidifying box, a driving motor is arranged in the placing area, a driving wheel is fixedly arranged on an output shaft of the driving motor, and a belt for driving the dehumidifying wheel to rotate is sleeved between the dehumidifying wheel and the driving wheel.
Further, the driving motor is arranged in the placing area through the skid.
Furthermore, the dehumidification air inlet area and the dry air inlet area are provided with air inlets, and the air outlets of the dry air outlet area and the moisture air outlet area are provided with flow guide fans for guiding flow.
The utility model has the advantages as follows:
1. the utility model firstly places the resistor to be dried on the transmission belt, starts the motor driving the transmission belt to move, the transmission belt transports the resistor to be dried into the drying box, so that the guide fan, the first air pump, the second air pump, the heating net and the driving motor start to work, the air is heated under the action of the heating net, the second air pump pumps the moist hot air in the drying box to the dehumidifying box, the drying area on the dehumidifying wheel in the dehumidifying box dehumidifies the moist hot air coming out from the drying box, after the dehumidification is completed, the air enters the drying air outlet area and is heated by the heating net in the drying air outlet area and then enters the drying box by the air inlet pipe, the external dry air enters through the drying air inlet area and is heated by the heating net arranged in the drying air inlet area to heat and dry the dehumidifying area of the dehumidifying wheel, the moist hot air produced by the moisture outlet area is exhausted to the outside, thereby the circulation is reciprocal to realize the dehumidification to the resistance in the drying cabinet, has drying effect good, simple structure, operation easy maintenance's advantage.
2. The utility model discloses a dehumidification subassembly includes the baffle that is located its intermediate position, the baffle is divided into the air inlet district that is located the right side and is located left air-out district with the dehumidification case, be equipped with the dehumidification wheel who is divided into dehumidification district and drying zone on the baffle, the dehumidification wheel passes through drive assembly drive its rotation, the air inlet district is divided into the dehumidification air inlet district that is located the upper end and the dry air inlet district that is located the lower extreme by the baffle that the slope set up, dehumidification air inlet district is through outlet duct and drying cabinet intercommunication, dry air inlet district is through going into wind gap and external intercommunication, be equipped with the heating screen in the dry air inlet district, the air-out district is divided into the dry air-out district that is located the upper end and the moisture air-out district that is located the lower extreme by the baffle that the slope set up, dry air-out district is through the, moisture air-out district passes through air exit and external intercommunication, dehumidification air inlet district and dry air-out district are corresponding with the drying zone, dry air inlet district and moisture air-out district are corresponding with the dehumidification district of dehumidification wheel, and through the dehumidification air inlet district, the air flow of drying cabinet and dry air-out district, the realization is to the dehumidification by exhaust air in the drying cabinet, and the dehumidification of the dehumidification wheel by exhaust air soaks in the drying cabinet is realized through the air exchange in external, moisture air-out district and dry air-in district, realizes the drying of resistance on the transmission belt through the hot-air of drying cabinet internal drying by the dehumidification case, and drying effect is good, simple structure, convenient operation.
3. Drive assembly is including setting up the district of placing in dehumidification bottom of the case portion, it is equipped with driving motor to place the district, driving motor's output shaft has set firmly the drive wheel, the cover is equipped with drive dehumidification wheel pivoted belt between dehumidification wheel and drive wheel, driving motor passes through the skid setting and places the district in, and through driving assembly's setting, the belt motion above that is established to the output shaft drive cover of pivoted motor, and the belt of motion drives the dehumidification wheel and rotates, and pivoted dehumidification wheel realizes the dehumidification to the dehumidification by exhaust air in the drying cabinet, reduces the vibration that driving motor during operation brought through setting up of skid, makes the operation of equipment more steady.
4. Dehumidification air inlet district and dry air inlet district's income wind gap, the air exit of dry air-out district and moisture air-out district all is equipped with the water conservancy diversion fan that is used for the water conservancy diversion, through the setting of water conservancy diversion fan, can accelerate the exchange of dehumidification air inlet district, drying cabinet and dry air-out district interior air, improves resistance drying's speed, can accelerate the air exchange speed of external world, moisture air-out district and dry air-in district simultaneously for the drying to the dehumidification district of dehumidification wheel, thereby further accelerate the drying of resistance in the drying district.
Drawings
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic view of the structure of the dehumidifying wheel of the present invention;
fig. 3 is a left side view of the drying box of the present invention;
reference numerals: 1-drying box, 2-conveying belt, 3-supporting seat, 4-air inlet pipe, 5-air pump I, 6-air outlet pipe, 7-air pump II, 8-dehumidification air inlet area, 9-belt, 10-dehumidification wheel, 10.1-dehumidification area, 10.2-drying area, 11-dehumidification box, 12-drying air outlet area, 13-moisture air outlet area, 14-placing area, 15-skid, 16-driving motor, 17-driving wheel, 18-heating net, 19-flow guide fan, 20-air inlet and 21-strip-shaped hole.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. The components of embodiments of the present invention, as generally described and illustrated in the figures herein, may be arranged and designed in a wide variety of different configurations.
Thus, the following detailed description of the embodiments of the present invention, presented in the accompanying drawings, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
It should be noted that: like reference numbers and letters refer to like items in the following figures, and thus, once an item is defined in one figure, it need not be further defined and explained in subsequent figures. Furthermore, the terms "first," "second," and the like are used merely to distinguish one description from another, and are not to be construed as indicating or implying relative importance.
In the description of the embodiments of the present invention, it should be noted that the terms "inside", "outside", "up", and the like indicate the directions or positional relationships based on the directions or positional relationships shown in the drawings, or the directions or positional relationships that the products of the present invention are conventionally placed when used, and are only for convenience of describing the present invention and simplifying the description, but do not indicate or imply that the device or element to which the term refers must have a specific direction, be constructed and operated in a specific direction, and thus, should not be construed as limiting the present invention.
Example 1
As shown in fig. 1-3, a drying device for use in resistor production process, including drying cabinet 1, be equipped with in drying cabinet 1 and be used for transporting transmission band 2 of treating dry resistor, transmission band 2 sets up on the horizontal plane through supporting seat 3, the left side and the right side of drying cabinet 1 are equipped with the bar hole 21 of the 2 motion of transmission band of being convenient for, the left side and the right side of drying cabinet 1 are equipped with air outlet and air intake 20 respectively, the air outlet is connected with dehumidification case 11 through outlet duct 6, be equipped with the dehumidification subassembly in the dehumidification case 11, dehumidification case 11 passes through intake pipe 4 and the air intake 20 of drying cabinet 1 and connects, be equipped with air pump two 7 and air pump one 5 on outlet duct 6 and the intake pipe 4 respectively.
Preferably, the dehumidifying component comprises a partition board located at the middle position thereof, the partition board divides the dehumidifying box 11 into an air inlet area located at the right side and an air outlet area located at the left side, the partition board is provided with a dehumidifying wheel 10 divided into a dehumidifying area 10.1 and a drying area 10.2, the dehumidifying wheel 10 drives the driving component to rotate, the air inlet area is divided into a dehumidifying air inlet area 8 located at the upper end and a drying air inlet area located at the lower end by the obliquely arranged partition board, the dehumidifying air inlet area 8 is communicated with the drying box 1 through an air outlet pipe 6, the drying air inlet area is communicated with the outside through an air inlet, a heating net 18 is arranged in the drying air inlet area, the air outlet area is divided into a drying air outlet area 12 located at the upper end and a moisture outlet area located at the lower end by the obliquely arranged partition board, the drying air outlet area 12 is communicated with an air inlet 20 of the drying box 1 through an air inlet pipe, the, the dehumidifying air inlet area 8 and the drying air outlet area 12 correspond to the drying area 10.2, the drying air inlet area corresponds to the moisture air outlet area and the dehumidifying area 10.1 of the dehumidifying wheel 10, the dehumidifying wheel 10 soaked by the air exhausted from the drying box 1 is dehumidified by the air exchange of the dehumidifying air inlet area 8, the drying box 1 and the drying air outlet area 12 through the outside, the moisture air outlet area 13 and the drying air inlet area, and the drying of the resistor on the transmission belt 2 is realized by the hot air exhausted into the drying box 1 through the dehumidifying box 11.
Preferably, the driving assembly comprises a placing area 14 arranged at the bottom of the dehumidifying box 11, a driving motor 16 is arranged in the placing area 14, a driving wheel 17 is fixedly arranged on an output shaft of the driving motor 16, a belt 9 for driving the dehumidifying wheel 10 to rotate is sleeved between the dehumidifying wheel 10 and the driving wheel 17, the driving motor 16 is arranged in the placing area 14 through a skid 15, the rotating motor output shaft drives the belt 9 sleeved on the rotating motor to move through the driving assembly, the moving belt 9 drives the dehumidifying wheel 10 to rotate, the rotating dehumidifying wheel 10 realizes dehumidification of air exhausted from the drying box 1, vibration caused by the driving motor 16 during working is reduced through the skid 15, and the equipment runs more stably.
Preferably, the dehumidification air inlet area 8 and the dry air inlet area are provided with air inlets, the dry air outlet area 12 and the moisture air outlet area are provided with guide fans 19 for guiding air, through the arrangement of the guide fans 19, the exchange of air in the dehumidification air inlet area 8, the drying box 1 and the dry air outlet area 12 can be accelerated, the resistance drying speed is improved, meanwhile, the air exchange speed of the outside, the moisture air outlet area 13 and the dry air inlet area can be accelerated, the drying of the dehumidification area 10.1 of the dehumidification wheel 10 is accelerated, and therefore the drying of the resistance in the drying area 10.2 is further accelerated.
The utility model firstly places the resistor to be dried on the transmission belt 2, starts the motor driving the transmission belt 2 to move, the transmission belt 2 transports the resistor to be dried into the drying box 1, so that the guide fan 19, the air pump I5, the air pump II 7, the heating net 18 and the driving motor 16 start to work, the air is heated under the action of the heating net 18, the air pump II 7 pumps the moist hot air in the drying box 1 to the dehumidifying box 11, the drying area 10.2 on the dehumidifying wheel 10 in the dehumidifying box 11 dehumidifies the moist hot air coming out from the drying box 1, after the dehumidification is completed, the air enters the drying air outlet area 12 and is heated by the heating net 18 in the drying air outlet area 12 and then enters the drying box 1 by the air inlet pipe, the outside dry air enters through the drying air inlet area and heats the dehumidifying area 10.1 of the dehumidifying wheel 10 by the heating net 18 arranged in the drying area, moist hot-air that its produced is discharged to the external world via moisture air-out zone 13, thereby the circulation is reciprocal to realize the dehumidification to the resistance in drying cabinet 1, has drying effect good, simple structure, operation easy maintenance's advantage.
It will be appreciated by those skilled in the art that the invention may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The embodiments disclosed above are therefore to be considered in all respects as illustrative and not restrictive. All changes which come within the scope of the invention or which are equivalent to the scope of the invention are embraced by the invention.

Claims (5)

1. The utility model provides a drying device who uses in resistance production process, includes drying cabinet (1), be equipped with in drying cabinet (1) and be used for transporting transmission band (2) of treating dry resistance, transmission band (2) set up on the horizontal plane through supporting seat (3), the left side and the right side of drying cabinet (1) are equipped with bar hole (21) of being convenient for transmission band (2) motion, a serial communication port, the left side and the right side of drying cabinet (1) are equipped with air outlet and air intake (20) respectively, the air outlet is connected with dehumidification case (11) through outlet duct (6), be equipped with the dehumidification subassembly in dehumidification case (11), dehumidification case (11) are connected through air intake (20) of intake pipe (4) and drying cabinet (1), be equipped with two air pumps (7) and air pump (5) on outlet duct (6) and intake pipe (4) respectively.
2. The drying device used in the resistor production process according to claim 1, wherein the dehumidifying component comprises a partition board located in the middle of the dehumidifying component, the partition board divides the dehumidifying box (11) into an air inlet area located on the right side and an air outlet area located on the left side, a dehumidifying wheel (10) divided into a dehumidifying area (10.1) and a drying area (10.2) is arranged on the partition board, the dehumidifying wheel (10) drives the dehumidifying wheel to rotate through a driving component, the air inlet area is divided into a dehumidifying air inlet area (8) located at the upper end and a drying air inlet area located at the lower end by the obliquely arranged partition board, the dehumidifying air inlet area (8) is communicated with the drying box (1) through an air outlet pipe (6), the drying air inlet area is communicated with the outside through an air inlet, a heating net (18) is arranged in the drying air inlet area, the air outlet area is divided into a drying air outlet area (12) located at the upper end and a moisture outlet area (13) located at the lower end by the, air intake (20) intercommunication that dry wind goes out air zone (12) through air-supply line and drying cabinet (1), be equipped with heating network (18) in dry wind goes out air zone (12), moisture goes out air zone (13) and passes through air exit and external intercommunication, dehumidification air-supply zone (8) and dry wind goes out air zone (12) and dry area (10.2) corresponding, dry air-supply zone and moisture go out the air zone and the dehumidification district (10.1) of dehumidification wheel (10) are corresponding.
3. The drying device for the resistor production process according to claim 2, wherein the driving assembly comprises a placing area (14) arranged at the bottom of the dehumidifying box (11), a driving motor (16) is arranged in the placing area (14), a driving wheel (17) is fixedly arranged on an output shaft of the driving motor (16), and a belt (9) for driving the dehumidifying wheel (10) to rotate is sleeved between the dehumidifying wheel (10) and the driving wheel (17).
4. A drying unit for use in a resistance production process according to claim 3, characterized in that the drive motor (16) is arranged in the placement area (14) by means of skids (15).
5. The drying device for the resistor production process according to claim 2, wherein the dehumidifying air inlet area (8) and the drying air inlet area have air inlets, and the drying air outlet area (12) and the moisture outlet area have air outlets provided with guide fans (19) for guiding air.
CN202021954503.XU 2020-09-09 2020-09-09 Drying device used in resistor production process Active CN213631403U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021954503.XU CN213631403U (en) 2020-09-09 2020-09-09 Drying device used in resistor production process

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021954503.XU CN213631403U (en) 2020-09-09 2020-09-09 Drying device used in resistor production process

Publications (1)

Publication Number Publication Date
CN213631403U true CN213631403U (en) 2021-07-06

Family

ID=76648157

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021954503.XU Active CN213631403U (en) 2020-09-09 2020-09-09 Drying device used in resistor production process

Country Status (1)

Country Link
CN (1) CN213631403U (en)

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