Raw material drying device for weaving processing

By introducing mirror reflection of sunlight, vibration motor vibration, electric heating tube heating fan blowing, solar panel solar energy storage and fluorescent lamp irradiation into the drying device, the problem of poor drying effect of the drying device is solved, achieving efficient drying treatment under any weather conditions and reducing energy consumption.

CN223869716UActive Publication Date: 2026-02-03TIANJIN RUIHENG CARPET CO LTD
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Patent Information

Application Number
CN202520060843.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-10
Publication Date
2026-02-03
Estimated Expiration
2035-01-10

AI Technical Summary

Technical Problem

Existing sun-drying devices have a single drying method, poor drying effect, and cannot make full use of solar energy, resulting in slow drying speed and high energy consumption when there is no sunlight or at night.

Method used

A drying device for raw materials used in weaving was designed. It achieves multiple drying processes by setting up a mirror to reflect sunlight, a vibrating motor to vibrate, an electric heating tube to heat the fan to blow air, a solar panel to store solar energy, and a fluorescent lamp to irradiate, ensuring continuous drying under any weather conditions.

Benefits of technology

It enhances the drying speed, reduces energy consumption, ensures continuous and effective drying in any weather conditions, and improves the practical value of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of weaving processing, in particular to a raw material drying device for weaving processing, which comprises a drying box, a drying plate, a mirror surface, a vibration motor, a damping shock absorber, an electric heating tube, a fan, a drying component, a solar panel and a fluorescent lamp, the drying plate is arranged on the inner side of the drying box, and the mirror surface is arranged on the inner side of the drying box. A vibration motor is arranged on the bottom face of the airing plate, a damping shock absorber is arranged on the bottom face of the airing plate, an electric heating pipe is arranged below the damping shock absorber, a fan is arranged below the electric heating pipe, a drying assembly is arranged on one side of the fan, a solar panel is arranged on the outer side of the airing box, and a fluorescent lamp is arranged above the airing box. By means of solar energy storage, solar energy is fully stored while raw materials are irradiated by sunlight, energy consumption of the device is reduced, it is guaranteed that drying operation can be continuously carried out under any weather condition, meanwhile, movement of the raw materials is accelerated, hot air is blown to the raw materials from bottom to top for multiple drying treatment, and therefore the practical value of the device is effectively enhanced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to braiding processing technical field especially braiding processing raw material drying device. BACKGROUND

[0002] In braiding processing, many raw materials such as plant fiber (hemp, grass, etc.) are prone to mildew and rot in storage and subsequent processing if containing too much moisture, therefore, it is necessary to dry the raw materials for braiding processing, and appropriate drying treatment can enhance the fiber strength of braiding raw materials.

[0003] The drying mode of the existing drying device is relatively single, most of which only dries through sunlight and air drying, and the drying effect is often poor, and the drying speed of the raw materials is slower in the weather without the sun or at night, so the solar energy cannot be fully utilized, resulting in high energy consumption of the device.

[0004] Therefore, in view of the fact that the drying mode of the existing drying device is relatively single and difficult to continuously operate, a raw material drying device for braiding processing can be designed, which stores solar energy while the raw materials are irradiated by sunlight to reduce the energy consumption of the device, ensures sufficient sunlight to dry the raw materials in the absence of the sun, ensures that the drying operation can be continuously carried out in any weather, and accelerates the movement of the raw materials to blow hot air from bottom to top to the raw materials for multiple drying treatment, thereby effectively enhancing the practical value of the device. SUMMARY

[0005] In order to overcome the problem that the drying mode of most drying devices is relatively single, the drying effect is often poor, and the drying speed of the raw materials is slower in the weather without the sun or at night, so the solar energy cannot be fully utilized.

[0006] The technical scheme of the utility model is as follows: a raw material drying device for braiding processing, which comprises a drying box, a drying plate, a mirror surface, a vibration motor, a damping shock absorber, a vibration assembly, an electric heating tube, a fan, a drying assembly, a solar panel, a fluorescent lamp and an energy-saving assembly, the inner side of the drying box is provided with the drying plate, the inner side of the drying box is provided with the mirror surface, the mirror surface is provided with multiple groups, the mirror surface is arranged above the drying plate, the bottom surface of the drying plate is provided with the vibration motor, the bottom surface of the drying plate is provided with the damping shock absorber, the damping shock absorber is provided with multiple groups, the damping shock absorber is arranged at the four corners of the bottom surface of the drying plate, one side of the drying plate is provided with the vibration assembly, the lower side of the damping shock absorber is provided with the electric heating tube, the lower side of the electric heating tube is provided with the fan, the fan is symmetrically provided with two groups, one side of the fan is provided with the drying assembly, the outer side of the drying box is provided with the solar panel, the solar panel is symmetrically provided with two groups, the upper side of the drying box is provided with the fluorescent lamp, the fluorescent lamp is symmetrically provided with multiple groups, the fluorescent lamp is arranged at the four corners of the drying box, the outer side of the drying box is provided with the energy-saving assembly, and the fluorescent lamp and the solar panel are electrically connected with each other.

[0007] Preferably, by setting the drying box to fix the mirror position, the raw materials are spread on the surface of the drying plate, the sunlight is irradiated on the drying plate, the sunlight is reflected by the mirror to enhance the sunlight energy on the drying plate, the drying plate is continuously vibrated by the vibration motor to make the raw materials on the surface of the drying plate continuously move to speed up the drying speed, the damping shock absorber position is fixed by the vibration assembly, the damping shock absorber is used to reduce the influence of the drying plate vibration on the drying box, the fan is driven by the drying assembly to rotate, the air temperature on the fan is raised by the electric heating tube, the fan is rotated to blow hot air to the drying plate, and the raw materials on the drying plate are further dried, the solar panel and the fluorescent lamp are fixed by the energy-saving assembly, the solar panel is used to absorb and store solar energy, and the fluorescent lamp is used to emit sunlight to dry the drying plate in the absence of sunlight, so that the raw materials are dried by sunlight and solar energy is stored at the same time, the energy consumption of the device is reduced, the drying operation can be continuously carried out in any weather condition, the movement of the raw materials is accelerated, the effect of multiple drying treatment is achieved, and the practical value of the device is enhanced.

[0008] Preferably, the vibration assembly comprises a through hole and an explosion-proof shell, the side of the drying plate is provided with the through hole, the through hole is provided with a plurality of groups, and the outer side of the vibration motor is provided with the explosion-proof shell.

[0009] Preferably, the vibration assembly further comprises a supporting plate, the inner side of the drying box is provided with the supporting plate, the supporting plate is arranged below the drying plate, the supporting plate is symmetrically provided with two groups, the other end of the damping shock absorber is fixedly connected with the supporting plate, and the electric heating tube is arranged between the two groups of supporting plates.

[0010] Preferably, the drying assembly comprises a heating motor, the outer side of the drying box is provided with the heating motor, and the output end of the heating motor is connected with the electric heating tube.

[0011] Preferably, the drying assembly further comprises a ventilation groove, a protective cover and a driving motor, the bottom surface of the drying box is provided with the ventilation groove, the ventilation groove is symmetrically provided with two groups, the inner side of the ventilation groove is provided with the protective cover, the fan is arranged in the inner side of the protective cover, the outer side of the protective cover is provided with the driving motor, and the output end of the driving motor is connected with the fan.

[0012] Preferably, the energy-saving assembly comprises a first supporting frame and a base, the outer side of the drying box is provided with the first supporting frame, the first supporting frame is symmetrically provided with two groups, the first supporting frame is fixedly connected with the bottom surface of the solar panel, the outer side of the drying box is provided with the base, and the base is arranged at the four corners of the drying box.

[0013] Preferably, the energy-saving assembly further comprises a connecting rod and a reinforcing rod, the upper surface of the base is provided with the connecting rod, the connecting rod is arranged at an angle to the base, the fluorescent lamp is arranged at one end of the connecting rod, the upper surface of the base is provided with the reinforcing rod, the reinforcing rod is symmetrically provided with two groups, and the other end of the reinforcing rod is fixedly connected with one side of the connecting rod.

[0014] The beneficial effects of the present application are as follows:

[0015] During the airing operation, the raw materials are spread on the surface of the airing plate in the airing box, sunlight is irradiated on the airing plate, the sunlight is reflected by the mirror surface to enhance the sunlight energy on the airing plate, the airing plate is continuously vibrated by the vibration motor to continuously move the raw materials on the surface of the airing plate to accelerate the drying speed, the influence of the vibration of the airing plate on the airing box is weakened by the damping shock absorber, the air temperature on the fan is increased by the heating of the electric heating tube, the fan is rotated to blow hot air to the airing plate to further dry the raw materials on the airing plate, the solar panel is used to absorb and store solar energy, and the fluorescent lamp is used to irradiate the airing plate in the absence of sunlight, so that the problem that the drying mode of most drying devices is single, the drying effect is poor, the drying speed of the raw materials is slower in the absence of sunlight or at night, and the solar energy cannot be fully utilized is solved, and the practical value of the device is enhanced. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 A three-dimensional structure schematic diagram of the raw material airing device for knitting processing is shown.

[0017] Figure 2 An airing box cross-section three-dimensional structure schematic diagram of the raw material airing device for knitting processing is shown.

[0018] Figure 3 A fan three-dimensional structure schematic diagram of the raw material airing device for knitting processing is shown.

[0019] Figure 4 An energy-saving assembly three-dimensional structure schematic diagram of the raw material airing device for knitting processing is shown.

[0020] The specific embodiments of the present application are described in detail below with reference to the drawings. DETAILED DESCRIPTION

[0021] The utility model is further explained in connection with the drawings and embodiments.

[0022] Please refer to Figures 1-4 The utility model provides a kind of raw material drying device for weaving processing, including airing box 1, airing plate 2, mirror surface 3, vibration motor 4, damping shock absorber 5, vibration assembly, electric heating tube 6, fan 7, drying assembly, solar panel 8, fluorescent lamp 9 and energy-saving component, the inner side of airing box 1 is provided with airing plate 2, the inner side of airing box 1 is provided with mirror surface 3, mirror surface 3 is provided with multiple groups, mirror surface 3 is set in the top of airing plate 2, the bottom of airing plate 2 is provided with vibration motor 4, the bottom of airing plate 2 is provided with damping shock absorber 5, damping shock absorber 5 is provided with multiple groups, damping shock absorber 5 is set in the four corners of the bottom of airing plate 2, the side of airing plate 2 is provided with vibration assembly, the below of damping shock absorber 5 is provided with electric heating tube 6, the below of electric heating tube 6 is provided with fan 7, fan 7 is provided with two groups of symmetry, one side of fan 7 is provided with drying assembly, the outer side of airing box 1 is provided with solar panel 8, solar panel 8 is provided with two groups of symmetry, the top of airing box 1 is provided with fluorescent lamp 9, fluorescent lamp 9 is provided with multiple groups of symmetry, fluorescent lamp 9 is set in the four corners of airing box 1, the outer side of airing box 1 is provided with energy-saving component, fluorescent lamp 9 and solar panel 8 are mutually electrically connected.

[0023] Please refer to Figure 2 In the embodiment, vibration assembly includes through hole 301, explosion-proof housing 401 and supporting plate 501, the side of airing plate 2 is provided with through hole 301, through hole 301 is provided with multiple groups, the outer side of vibration motor 4 is provided with explosion-proof housing 401, the inner side of airing box 1 is provided with supporting plate 501, supporting plate 501 is set in the below of airing plate 2, supporting plate 501 is provided with two groups of symmetry, the other end of damping shock absorber 5 and supporting plate 501 are mutually fixedly connected, electric heating tube 6 is set between two groups of supporting plate 501, through hole 301 guarantees the air permeability of airing plate 2, vibration motor 4 is protected in by explosion-proof housing 401, avoid the influence of high temperature to vibration motor 4, the position of damping shock absorber 5 is fixed by supporting plate 501.

[0024] Please refer to Figure 3In the embodiment, the drying assembly comprises a heating motor 601, a ventilation groove 701, a protective cover 702 and a driving motor 703. The heating motor 601 is arranged on the outer side of the drying box 1. The output end of the heating motor 601 is connected with the electric heating tube 6. The ventilation groove 701 is arranged on the bottom surface of the drying box 1. The ventilation groove 701 is symmetrically provided with two groups. The protective cover 702 is arranged on the inner side of the ventilation groove 701. The fan 7 is arranged on the inner side of the protective cover 702. The driving motor 703 is arranged on the outer side of the protective cover 702. The output end of the driving motor 703 is connected with the fan 7. The heating motor 601 controls the electric heating tube 6 to heat. The ventilation groove 701 ensures the fan 7 to normally send air. The protective cover 702 fixes the position of the fan 7. The fan 7 is fixed in the ventilation groove 701. The driving motor 703 drives the fan 7 to operate. Hot air is blown to the drying plate 2 from bottom to top.

[0025] Please refer to Figure 4 In the embodiment, the energy-saving assembly comprises a first support frame 801, a base 901, a connecting rod 902 and a reinforcing rod 903. The first support frame 801 is arranged on the outer side of the drying box 1. The first support frame 801 is symmetrically provided with two groups. The first support frame 801 is fixedly connected with the bottom surface of the solar panel 8. The base 901 is arranged on the outer side of the drying box 1. The base 901 is arranged at the four corners of the drying box 1. The upper surface of the base 901 is provided with the connecting rod 902. The connecting rod 902 is inclined to the base 901 at a certain angle. The fluorescent lamp 9 is arranged at one end of the connecting rod 902. The upper surface of the base 901 is provided with the reinforcing rod 903. The reinforcing rod 903 is symmetrically provided with two groups. The other end of the reinforcing rod 903 is fixedly connected with one side of the connecting rod 902. The first support frame 801 supports and fixes the solar panel 8. The base 901 fixes the position of the connecting rod 902. The connecting rod 902 fixes the position of the fluorescent lamp 9. The reinforcing rod 903 strengthens the support stability of the connecting rod 902. In the absence of the sun, the energy stored in the solar panel 8 is used to turn on the fluorescent lamp 9 to irradiate the raw materials.

[0026] When the raw materials are dried in the sunlight, the raw materials are spread on the surface of the drying plate 2 in the drying box 1. The sunlight is irradiated on the drying plate 2. The sunlight is reflected by the mirror 3. The vibration motor 4 in the explosion-proof housing 401 is started to make the drying plate 2 vibrate continuously. The damping shock absorber 5 on the supporting plate 501 is stretched and contracted continuously.

[0027] At the same time, the heating motor 601 controls the electric heating tube 6 to heat. The driving motor 703 on the protective cover 702 drives the fan 7 in the ventilation groove 701 to operate. The fan 7 blows hot air to the drying plate 2. The hot air passes through the through hole 301 to blow to the raw materials. In addition, the solar panel 8 on the first support frame 801 absorbs and stores solar energy.

[0028] When the raw materials are sun-dried without sunlight, the solar energy absorbed by the solar panel 8 is converted into electric energy by the reinforcing rod 903 and the connecting rod 902, and the electric energy is transmitted to the fluorescent lamp 9 on the base 901 to turn on the fluorescent lamp 9 to irradiate the raw materials on the sun-drying plate 2.

[0029] Through the above steps, the raw materials are spread on the surface of the sun-drying plate 2, the sunlight is irradiated on the sun-drying plate 2, the sunlight is reflected by the mirror 3 to enhance the sunlight energy irradiated on the sun-drying plate 2, the sun-drying plate 2 is continuously vibrated by the vibration motor 4 to continuously move the raw materials on the surface of the sun-drying plate 2 to accelerate the drying speed, the damping shock absorber 5 is fixed by the vibration assembly, the damping shock absorber 5 is used to reduce the influence of the vibration of the sun-drying plate 2 on the sun-drying box 1, the fan 7 is driven by the drying assembly to rotate, the electric heating tube 6 is used to heat and raise the air temperature on the fan 7, the fan 7 is rotated to blow hot air to the sun-drying plate 2 to further dry the raw materials on the sun-drying plate 2, the solar panel 8 and the fluorescent lamp 9 are fixed by the energy-saving assembly, the solar panel 8 is used to absorb and store solar energy, and the fluorescent lamp 9 is used to emit sunlight to sun-dry the sun-drying plate 2 when there is no sunlight, so that the solar energy is fully stored while the raw materials are irradiated by the sunlight, the energy consumption of the device is reduced, the drying operation can be continuously carried out in any weather condition, meanwhile, the movement of the raw materials is accelerated, and multiple drying treatments are carried out.

[0030] The embodiments of the utility model are described in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge range of the person skilled in the art without departing from the purpose of the utility model.

Claims

1. A drying device for raw materials used in weaving, comprising a drying box (1) and a drying board (2), characterized in that: It also includes a mirror (3), a vibration motor (4), a damping shock absorber (5), a vibration assembly, an electric heating tube (6), a fan (7), a drying assembly, a solar panel (8), a fluorescent lamp (9), and an energy-saving assembly. A drying board (2) is provided on the inner side of the drying box (1). A mirror (3) is provided on the inner side of the drying box (1). Multiple sets of mirrors (3) are provided. The mirrors (3) are located above the drying board (2). A vibration motor (4) is provided on the bottom surface of the drying board (2). A damping shock absorber (5) is provided on the bottom surface of the drying board (2). Multiple sets of damping shock absorbers (5) are provided. The damping shock absorbers (5) are located on the four sides of the bottom surface of the drying board (2). A vibration component is provided on one side of the drying board (2), an electric heating tube (6) is provided below the damping shock absorber (5), a fan (7) is provided below the electric heating tube (6), two sets of fans (7) are symmetrically arranged, a drying component is provided on one side of the fan (7), a solar panel (8) is provided on the outside of the drying box (1), two sets of solar panels (8) are symmetrically arranged, a fluorescent lamp (9) is provided on the top of the drying box (1), multiple sets of fluorescent lamps (9) are symmetrically arranged, the fluorescent lamps (9) are located at the four corners of the drying box (1), an energy-saving component is provided on the outside of the drying box (1), and the fluorescent lamps (9) and the solar panel (8) are electrically connected to each other.

2. The raw material drying device for weaving processing according to claim 1, characterized in that: The vibration assembly includes a through hole (301) and an explosion-proof housing (401). The drying plate (2) has a through hole (301) on one side, and multiple sets of through holes (301) are provided. The vibration motor (4) is provided with an explosion-proof housing (401) on the outside.

3. The raw material drying device for weaving processing according to claim 1, characterized in that: The vibration assembly also includes a tray (501). The inner side of the drying box (1) is provided with a tray (501). The tray (501) is located below the drying board (2). Two sets of trays (501) are symmetrically arranged. The other end of the damping shock absorber (5) is fixedly connected to the tray (501). The electric heating tube (6) is located between the two sets of trays (501).

4. The raw material drying device for weaving processing according to claim 3, characterized in that: The drying assembly includes a heating motor (601), and the heating motor (601) is installed on the outside of the drying box (1). The output end of the heating motor (601) is connected to the heating tube (6).

5. The raw material drying device for weaving processing according to claim 3, characterized in that: The drying assembly also includes a ventilation slot (701), a protective cover (702), and a drive motor (703). The bottom surface of the drying box (1) is provided with a ventilation slot (701). Two sets of ventilation slots (701) are symmetrically arranged. A protective cover (702) is provided on the inner side of the ventilation slot (701). A fan (7) is provided on the inner side of the protective cover (702). A drive motor (703) is provided on the outer side of the protective cover (702). The output end of the drive motor (703) is connected to the fan (7).

6. The raw material drying device for weaving processing according to claim 3, characterized in that: The energy-saving component includes a first support frame (801) and a base (901). The first support frame (801) is provided on the outside of the drying box (1). Two sets of the first support frame (801) are symmetrically arranged. The first support frame (801) is fixedly connected to the bottom surface of the solar panel (8). The base (901) is provided on the outside of the drying box (1). The base (901) is located at the four corners of the drying box (1).

7. The raw material drying device for weaving processing according to claim 6, characterized in that: The energy-saving component also includes a connecting rod (902) and a reinforcing rod (903). The connecting rod (902) is provided on the upper surface of the base (901). The connecting rod (902) is set at a certain angle to the base (901). The fluorescent lamp (9) is set at one end of the connecting rod (902). The reinforcing rod (903) is provided on the upper surface of the base (901). Two sets of reinforcing rods (903) are symmetrically arranged. The other end of the reinforcing rod (903) is fixedly connected to one side of the connecting rod (902).