Efficient photovoltaic glass sand drying machine

By introducing a stirring device and a dust suppression mechanism into the photovoltaic glass sand dryer, the dust problem during the drying process of quartz sand has been solved, achieving a more efficient drying effect and greater safety.

CN223726784UActive Publication Date: 2025-12-26FUJIAN ZHANGZHOU BAIRUISHENG IND & TRADE CO LTD
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Patent Information

Application Number
CN202520091898.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2025-12-26
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

In the current production of photovoltaic glass yarn, a large amount of dust is generated during the drying process of quartz sand, which endangers the health of workers and the drying effect is not good.

Method used

The system combines a heating cylinder and a stirring device with a dust suppression mechanism. A rotating motor drives a rotating roller and a transmission rod to tumble the quartz sand. Combined with a dust suppression box and conveying components, this achieves uniform heating and quantitative output of the quartz sand, reducing dust.

Benefits of technology

It improves the drying quality of quartz sand, reduces dust, and lowers the health hazards to workers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an efficient photovoltaic glass sand drying machine, which relates to the technical field of photovoltaic glass sand drying, and comprises a heating cylinder, a material stirring cylinder is arranged in the heating cylinder, a plurality of quartz sand heating pipelines for heating are arranged between the heating cylinder and the material stirring cylinder, a feeding seat for feeding is arranged on one side of the material stirring cylinder, and the other side of the material stirring cylinder is provided with a discharging seat for discharging. An output groove used for discharging is formed in the other side of the material stirring barrel, a stirring device used for stirring quartz sand during heating is arranged on the material stirring barrel, a dust falling mechanism used for adjusting the output amount of the quartz sand and falling dust is arranged on the side face of the output groove, the quartz sand is stacked through the stacking groove, the rotating block rotates to drive the material conveying groove to rotate, and the quartz sand is conveyed through the material conveying groove; and when the rotating block rotates to the position of the output port, the quartz sand moves to the transfer module through the output port, raised dust is effectively reduced, and harm to workers is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to photovoltaic glass sand drying technical field, concretely is high -efficient photovoltaic glass sand drying machine. BACKGROUND

[0002] In the production process of quartz sand photovoltaic glass yarn, the drying of quartz sand is a crucial processing step, the moisture content of quartz sand can affect the melting and forming process of glass, and easily lead to the defects such as bubbles and cracks in photovoltaic glass, before manufacturing photovoltaic glass yarn, the quartz sand needs to be fully dried, and the existing drying usually adopts fluidized bed drying technology, by making quartz sand in fluidized state, the contact area of quartz sand with hot air is increased, so that the drying speed is accelerated, and a large amount of dust is easily generated in the drying process of quartz sand, which can easily cause harm to workers.

[0003] Therefore, the high -efficient photovoltaic glass sand drying machine is provided, which can eliminate the drawbacks of the existing device. UTILITY MODEL CONTENT

[0004] The utility model discloses a high -efficient photovoltaic glass sand drying machine to solve the problem in the background art.

[0005] To achieve the above object, the utility model provides the following technical scheme:

[0006] High -efficient photovoltaic glass sand drying machine, including heating cylinder, the inside of heating cylinder is equipped with the stirring barrel, the middle of heating cylinder and stirring barrel is equipped with a plurality of quartz sand heating pipelines for heating, the one side of stirring barrel is equipped with the material inlet seat for feeding, the other side of stirring barrel is equipped with the output groove for discharging, be equipped with the stirring device that stirs quartz sand when heating on stirring barrel, the side of output groove is equipped with the dust falling mechanism that adjusts quartz sand output quantity and dust fall.

[0007] On the basis of the above technical scheme, the utility model also provides the following optional technical scheme:

[0008] In an alternative scheme: the stirring device includes a rotating motor, the output end of the rotating motor is fixedly connected with a rotating roller, the rotating roller is arranged in the stirring barrel, a plurality of transmission rods are arranged on the surface of the rotating roller, and the transmission rods are fixedly connected with a pushing assembly for pushing quartz sand to the output groove during stirring of the quartz sand.

[0009] In an alternative scheme: the pushing assembly includes a material turning block, the surface of the transmission rod is fixedly connected with the material turning block, the surface of the material turning block is provided with a guide groove, and the surface of the material turning block is in friction with the stirring barrel.

[0010] In an optional scheme, the dust falling mechanism comprises a dust falling box arranged at the side of the output groove, a guide groove arranged in the dust falling box, a stacking groove arranged in the middle of the guide groove, and a conveying element arranged in the dust falling box for conveying the quartz sand.

[0011] In an optional scheme, the conveying element comprises a rotating block rotatably connected to the inner wall of the dust falling box, a feeding groove arranged on the surface of the rotating block, the feeding groove being matched with the stacking groove, and a second rotating motor fixedly connected to the output end of the rotating block.

[0012] In an optional scheme, the inside of the stirring cylinder is provided with an anti-abrasion layer.

[0013] In an optional scheme, the surface of the dust falling box is provided with a sealing sleeve.

[0014] In an optional scheme, the surface of the transmission rod is provided with a guide piece.

[0015] Compared with the prior art, the utility model has the advantages as follows:

[0016] 1. The first rotating motor drives the rotating roller and the transmission rod to rotate, the transmission rod moves with the quartz sand in the inside of the stirring cylinder, the quartz sand moves along the guide groove to the output groove in the tumbling process through the turning block, the quartz sand is uniformly heated through continuous movement, and the drying quality is improved.

[0017] 2. The quartz sand is stacked in the stacking groove, the feeding groove is driven to rotate through the rotating block, the quartz sand is conveyed through the feeding groove, the quartz sand moves to the transfer module through the output port when the rotating block rotates to the position of the output port, dust is effectively reduced, and the harm to the workers is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a structural schematic view of the utility model.

[0019] Figure 2 It is a structural schematic view of the turning block of the utility model.

[0020] Figure 3 It is a structural schematic view of the dust falling box of the utility model.

[0021] Figure 4 It is a structural schematic view of the output port of the utility model.

[0022] The reference signs are annotated as follows: 101. heating cylinder, 102. heating pipeline, 103. mixing cylinder, 104. feeding seat, 105. output slot, 201. No. 1 rotating motor, 202. rotating roller, 203. transmission rod, 204. material turning block, 301. dust falling box, 302. guide slot, 303. accumulation slot, 304. rotating block, 305. material conveying slot, 306. No. 2 rotating motor, 307. transfer module, 308. output port. DETAILED DESCRIPTION

[0023] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the utility model is further described in detail below in combination with the drawings and examples.

[0024] In one embodiment, as shown in Figures 1-3 The high-efficiency photovoltaic glass sand drying machine comprises a heating cylinder 101, a mixing cylinder 103 is arranged in the heating cylinder 101, a plurality of quartz sand heating pipelines 102 for heating are arranged between the heating cylinder 101 and the mixing cylinder 103, a feeding seat 104 for feeding is arranged on one side of the mixing cylinder 103, an output slot 105 for discharging is arranged on the other side of the mixing cylinder 103, a stirring device for stirring quartz sand during heating is arranged on the mixing cylinder 103, and a dust falling mechanism for adjusting the output amount of quartz sand and falling dust is arranged on the side of the output slot 105. Quartz sand is input through the feeding seat 104, enters the inside of the mixing cylinder 103, and is dried through heating of the mixing cylinder 103 by the heating pipelines 102;

[0025] In one embodiment, as shown in Figure 2 The stirring device comprises a No. 1 rotating motor 201, the output end of the No. 1 rotating motor 201 is fixedly connected with a rotating roller 202, the rotating roller 202 is arranged in the inside of the mixing cylinder 103, a plurality of transmission rods 203 are arranged on the surface of the rotating roller 202, the transmission rods 203 are fixedly connected with a pushing assembly for pushing quartz sand to the output slot 105 during stirring of the quartz sand, the rotating roller 202 is driven to rotate by the No. 1 rotating motor 201, the transmission rods 203 are driven to rotate by the rotating roller 202, the transmission rods 203 are in contact with the quartz sand in the inside of the mixing cylinder 103, the quartz sand is moved, the quartz sand is uniformly heated, and the drying effect is improved;

[0026] In one embodiment, as shown in Figure 1 and Figure 2 The pushing assembly comprises a material turning block 204, the material turning block 204 is fixedly connected with the transmission rod 203, a guide slot is arranged on the surface of the material turning block 204, and the surface of the material turning block 204 is in friction with the mixing cylinder 103. The material turning block 204 is driven to move by the transmission rod 203, the quartz sand moves to the position of the output slot 105 along the guide slot on the surface of the material turning block 204 during tumbling, and the quartz sand is conveniently output.

[0027] In one embodiment, as shown in Figure 3 and Figure 4 The dust falling mechanism includes a dust falling box 301 arranged on the side of the output slot 105, a guide slot 302 arranged in the dust falling box 301, a stacking slot 303 arranged in the middle of the guide slot 302, and a transport element for transporting the quartz sand in a certain amount. The quartz sand enters the guide slot 302 through the output slot 105 and is stacked in the stacking slot 303 through the guide slot 302, thereby providing conditions for transporting the quartz sand.

[0028] In one embodiment, as shown in Figure 3 and Figure 4 The transport element includes a rotating block 304 rotatably connected to the inner wall of the dust falling box 301, a material conveying slot 205 arranged on the surface of the rotating block 304, the material conveying slot 205 being matched with the stacking slot 303, a second rotating motor 306 fixedly connected to the output end of the side surface of the rotating block 304, and an output port 308 arranged at the lower end of the dust falling box 301, a transfer module 307 arranged below the output port 308. The rotating block 304 is driven to rotate by the second rotating motor 306, the material conveying slot 205 is driven to rotate by the rotating block 304, the quartz sand enters the material conveying slot 205 when the material conveying slot 205 moves to the lower side of the stacking slot 303, and the quartz sand in the material conveying slot 205 moves to the transfer module 307 through the output port 308 when the rotating block 304 rotates to the position of the output port 308, thereby reducing dust and reducing the harm to the workers compared with the traditional direct pouring of the quartz sand.

[0029] The above-mentioned embodiment discloses a high-efficiency photovoltaic glass sand drying machine, wherein the quartz sand is input through the input seat 104, the quartz sand enters the inside of the mixing cylinder 103, the mixing cylinder 103 is heated through the heating pipeline 102 to dry the quartz sand, the rotating roller 202 is driven to rotate by the first rotating motor 201, the transmission rod 203 is driven to rotate by the rotating roller 202, the transmission rod 203 is in contact with the quartz sand in the inside of the mixing cylinder 103, the quartz sand is moved, the quartz sand is uniformly heated, the turning block 204 is moved by the transmission rod 203, the quartz sand moves along the guide groove on the surface of the turning block 204 to the output groove 105 position in the tumbling process, the quartz sand enters the guide groove 302 through the output groove 105, the quartz sand is accumulated in the inside of the accumulation groove 303 through the guide groove 302, the rotating block 304 is driven to rotate by the second rotating motor 306, the conveying groove 205 is driven to rotate by the rotating block 304, when the conveying groove 205 moves to the lower side of the accumulation groove 303, the quartz sand enters the inside of the conveying groove 205, when the rotating block 304 rotates to the output port 308 position, the quartz sand in the inside of the conveying groove 205 moves to the transfer module 307 through the output port 308, dust is reduced, compared with the traditional direct pouring of the quartz sand, dust is smaller, and harm to workers is reduced.

[0030] The above-mentioned embodiment discloses a high-efficiency photovoltaic glass sand drying machine, wherein the quartz sand is input through the input seat 104, the quartz sand enters the inside of the mixing cylinder 103, the mixing cylinder 103 is heated through the heating pipeline 102 to dry the quartz sand, the rotating roller 202 is driven to rotate by the first rotating motor 201, the transmission rod 203 is driven to rotate by the rotating roller 202, the transmission rod 203 is in contact with the quartz sand in the inside of the mixing cylinder 103, the quartz sand is moved, the quartz sand is uniformly heated, the turning block 204 is moved by the transmission rod 203, the quartz sand moves along the guide groove on the surface of the turning block 204 to the output groove 105 position in the tumbling process, the quartz sand enters the guide groove 302 through the output groove 105, the quartz sand is accumulated in the inside of the accumulation groove 303 through the guide groove 302, the rotating block 304 is driven to rotate by the second rotating motor 306, the conveying groove 205 is driven to rotate by the rotating block 304, when the conveying groove 205 moves to the lower side of the accumulation groove 303, the quartz sand enters the inside of the conveying groove 205, when the rotating block 304 rotates to the output port 308 position, the quartz sand in the inside of the conveying groove 205 moves to the transfer module 307 through the output port 308, dust is reduced, compared with the traditional direct pouring of the quartz sand, dust is smaller, and harm to workers is reduced. The above-mentioned embodiment discloses a high-efficiency photovoltaic glass sand drying machine, wherein the quartz sand is input through the input seat 104, the quartz sand enters the inside of the mixing cylinder 103, the mixing cylinder 103 is heated through the heating pipeline 102 to dry the quartz sand, the rotating roller 202 is driven to rotate by the first rotating motor 201, the transmission rod 203 is driven to rotate by the rotating roller 202, the transmission rod 203 is in contact with the quartz sand in the inside of the mixing cylinder 103, the quartz sand is moved, the quartz sand is uniformly heated, the turning block 204 is moved by the transmission rod 203, the quartz sand moves

Claims

1. A high-efficiency photovoltaic glass sand drying machine, comprising a heating cylinder (101), a stirring cylinder (103) is arranged inside the heating cylinder (101), a plurality of quartz sand heating pipelines (102) for heating are arranged between the heating cylinder (101) and the stirring cylinder (103), a feeding seat (104) for feeding is arranged on one side of the stirring cylinder (103), and an output groove (105) for discharging is arranged on the other side of the stirring cylinder (103), characterized in that, The stirring device is arranged on the mixing cylinder (103) and used for stirring the quartz sand when heated.

2. The high efficiency photovoltaic glass sand dryer of claim 1, wherein, The stirring device comprises a first rotating motor (201), the output end of the first rotating motor (201) is fixedly connected with a rotating roller (202), the rotating roller (202) is arranged in the mixing cylinder (103), a plurality of transmission rods (203) are arranged on the surface of the rotating roller (202), and the transmission rods (203) are fixedly connected with a pushing assembly used for pushing the quartz sand to the output groove (105) during the stirring process.

3. The high efficiency photovoltaic glass sand dryer of claim 2, wherein, The pushing assembly comprises a turning block (204), the turning block (204) is fixedly connected with the transmission rod (203), the surface of the turning block (204) is provided with a guide groove, and the surface of the turning block (204) is in friction with the mixing cylinder (103).

4. The high efficiency photovoltaic glass sand dryer of claim 1, wherein, The dust falling mechanism comprises a dust falling box (301), the dust falling box (301) is arranged on the side of the output groove (105), a guide groove (302) is arranged in the dust falling box (301), a stacking groove (303) is arranged in the middle of the guide groove (302), and a conveying element used for conveying the quartz sand in a fixed amount is arranged in the dust falling box (301).

5. The high efficiency photovoltaic glass sand drier of claim 4, wherein, The conveying element comprises a rotating block (304), the rotating block (304) is rotatably connected with the inner wall of the dust falling box (301), the surface of the rotating block (304) is provided with a conveying groove (205), the conveying groove (205) is matched with the stacking groove (303), the output end of a second rotating motor (306) is fixedly connected with the side of the rotating block (304), an output port (308) is arranged at the lower end of the dust falling box (301), and a transfer module (307) is arranged below the output port (308).

6. The high efficiency photovoltaic glass sand dryer of claim 1, wherein, The mixing cylinder (103) is internally provided with an anti-abrasion layer.

7. The high efficiency photovoltaic glass sand dryer of claim 4, wherein, The surface of the dust falling box (301) is provided with a sealing sleeve.

8. The high efficiency photovoltaic glass sand dryer of claim 2, wherein, The surface of the transmission rod (203) is provided with a guide piece.