Ascorbic acid glucoside moisture-proof granulator

By installing filtration and collection devices at the feed cylinder and guide plate of the ascorbate glucoside moisture-proof granulator, the problem of product quality degradation caused by impurities entering the granulator is solved, achieving effective impurity filtration and resource collection, and improving the practicality of the device.

CN224293886UActive Publication Date: 2026-05-29HUBEI ARTEC CARBOHYDRATE CHEM

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUBEI ARTEC CARBOHYDRATE CHEM
Filing Date
2025-06-13
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

When raw materials are fed into the existing ascorbate glucoside moisture-proof granulator, impurities are mixed into the granulator body, leading to a decline in product quality and safety issues.

Method used

A filtration device is installed at the feed cylinder, including components such as a fixed rod, an operating plate, a filter plate, and a spring, to filter the raw materials and to slow down the sliding speed through elastic ropes and rubber rings; a collection device is installed at the guide plate, including a U-shaped frame and a drive rod, to collect the products.

Benefits of technology

It effectively filters impurities, preventing them from entering the granulator body, improving product quality, avoiding resource waste, and enhancing the practicality of the equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224293886U_ABST
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Abstract

The utility model relates to the field of glucoside processing technology, concretely is a ascorbic acid glucoside moisture-proof granulator, the utility model discloses a granulator body, the surface of granulator body is installed with the feeding cylinder, the arc surface of granulator body is installed with the discharge plate, the arc surface of granulator body is installed with the guide plate, the arc surface of feeding cylinder is equipped with filter device, filter device includes two fixed links, two fixed links all are with the arc surface fixed connection of feeding cylinder, the arc surface sliding connection of fixed link has operating board, and the side fixed connection of operating board has inserted rod, and the inner surface sliding connection of feeding cylinder has filter board, and the surface fixed connection of filter board has two connecting plates, and the surface of connecting plate is set up with the insertion hole. When the work puts the raw material into the feeding cylinder, there is a small amount of impurities in the raw material, the impurities enter the granulator body with the raw material, thereby causing the impurities and raw material mixed pollution, thereby causing the problem of affecting product quality.
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Description

Technical Field

[0001] This utility model relates to the field of glucoside processing technology, and in particular to an ascorbate glucoside moisture-proof granulation machine. Background Technology

[0002] Ascorbate glucoside, as an important functional ingredient, is widely used in food, pharmaceuticals, and cosmetics. In the food industry, it acts as an antioxidant, extending shelf life; in the pharmaceutical field, it enhances immunity and promotes collagen synthesis; and in cosmetics, it is frequently used in whitening and anti-aging products. However, existing ascorbate glucoside moisture-proof granulation machines have several problems in actual production. For example, when raw materials are fed into the feed cylinder, they are often mixed with impurities, such as debris generated during production and fibers from packaging materials. Once these impurities enter the granulator and participate in granulation, it leads to a decrease in product purity, affecting the product's effectiveness and safety.

[0003] The inventors believe that the following defects often exist: when the raw materials are put into the feed cylinder, there are a small amount of impurities in the raw materials. The impurities enter the granulator body along with the raw materials, resulting in the impurities mixing and contaminating the raw materials, thus affecting the product quality. Therefore, an ascorbate glucoside moisture-proof granulator is proposed to address the above problems. Utility Model Content

[0004] The purpose of this invention is to solve the problem in the existing technology where impurities follow the raw materials into the granulator body, resulting in impurities mixing and contaminating the raw materials, thus affecting product quality. Therefore, this invention proposes an ascorbate glucoside moisture-proof granulator.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: an ascorbate glucoside moisture-proof granulator, comprising a granulator body, a feed cylinder mounted on the surface of the granulator body, a discharge plate mounted on the arc surface of the granulator body, a guide plate mounted on the arc surface of the granulator body, a filter device provided on the arc surface of the feed cylinder, the filter device comprising two fixed rods, both fixedly connected to the arc surface of the feed cylinder, an operating plate slidably connected to the arc surface of the fixed rods, an insertion rod fixedly connected to one side of the operating plate, a filter plate slidably connected to the inner surface of the feed cylinder, two connecting plates fixedly connected to the surface of the filter plate, and insertion holes opened on the surface of the connecting plates.

[0006] The effect achieved by the above-mentioned components is as follows: by setting up a filtration device, the raw materials put into the feed cylinder are filtered, which avoids the situation where there are small amounts of impurities in the raw materials when they are put into the feed cylinder. These impurities would then enter the granulator body along with the raw materials, causing them to mix and contaminate the raw materials, thus affecting the product quality and improving the practicality of the device.

[0007] Preferably, a limiting plate is fixedly connected to the end of the fixing rod away from the feed cylinder, and the size of the insertion rod is adapted to the size of the insertion hole of the connecting plate.

[0008] The effect achieved by the above components is that the limiting plate restricts the maximum sliding distance of the operating plate on the arc surface of the fixed rod, thus preventing the operating plate from detaching from the arc surface of the fixed rod due to excessive pulling force when the operator pulls the operating plate.

[0009] Preferably, a first spring is fitted onto the arc surface of the fixing rod, and the two ends of the first spring are fixedly connected to the operating plate and the feed cylinder, respectively.

[0010] The effect achieved by the above components is that the first spring improves the stability of the insertion rod when it limits the connecting plate, thereby improving the stability of the filter plate when it limits the filter plate.

[0011] Preferably, a rubber ring is fixedly connected to the surface of the control panel, and the rubber ring is slidably connected to the arc surface of the fixing rod.

[0012] The effect achieved by the above components is that the elasticity of the rubber ring wraps around the arc surface of the fixed rod, thereby reducing the sliding speed of the operating plate on the arc surface of the fixed rod and achieving a damping effect.

[0013] Preferably, an elastic rope is fixedly connected to the surface of the filter plate, and an elastic ball is fixedly connected to one end of the elastic rope.

[0014] The effect achieved by the above components is to vibrate and clear the filter plate, thus preventing the filter plate from being clogged by raw materials after long-term use, which would reduce the filtration effect of the filter plate.

[0015] Preferably, a collection device is provided on both sides of the guide plate. The collection device includes two U-shaped frames, which are fixedly connected to the two sides of the guide plate respectively. A slide plate is slidably inserted in the U-shaped frame. A collection box is fixedly connected to the side of the two slide plates that are close to each other. An L-shaped plate is fixedly connected to the surface of the U-shaped frame. A drive rod is threaded into the L-shaped plate. One end of the drive rod is rotatably connected to a connecting block. The surface of the connecting block is slidably connected to the slide plate.

[0016] The effect achieved by the above components is as follows: by setting up a collection device, the products sliding off the guide plate are collected, which avoids the situation where a large amount of products remain on the guide plate and continue to flow out when the staff does not have a suitable container or needs to change the container, and the products fall to the ground, thus causing a waste of resources and improving the practicality of the device.

[0017] Preferably, a positioning rod is fixedly connected to the side of the connecting block near the drive rod, and the arc surface of the positioning rod is slidably connected to the L-shaped plate.

[0018] The effect achieved by the above components is that the positioning rod restricts the connecting block from rotating with the drive rod, so as to provide stable and accurate guidance for the connecting block.

[0019] In summary, the beneficial effects of this utility model are as follows:

[0020] 1. In this utility model, by setting up a filtration device, the raw materials put into the feed cylinder are filtered, which avoids the situation where there are small amounts of impurities in the raw materials when they are put into the feed cylinder. These impurities would then enter the granulator body along with the raw materials, causing them to mix and contaminate the raw materials, thus affecting the product quality. This improves the practicality of the device.

[0021] 2. In this utility model, by setting up a collection device, the product sliding out of the guide plate is collected, which avoids the situation where a large amount of product remains on the guide plate and continues to flow out when the staff does not have a suitable container or needs to change the container, and the product falls to the ground, thus causing a waste of resources and improving the practicality of the device. Attached Figure Description

[0022] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0023] Figure 2 In this utility model Figure 1 Rear view;

[0024] Figure 3 This is a schematic diagram of the filtration device in this utility model;

[0025] Figure 4 In this utility model Figure 3 Enlarged view of point A;

[0026] Figure 5 This is a schematic diagram of the collecting device in this utility model;

[0027] Figure 6 This is a partial structural diagram of the collection device in this utility model.

[0028] Legend: 1. Granulator body; 2. Feed cylinder; 3. Discharge plate; 4. Guide plate; 5. Filtering device; 501. Fixing rod; 502. Operation panel; 503. Insert rod; 504. Connecting plate; 505. Filter plate; 506. Limiting plate; 507. First spring; 508. Rubber ring; 509. Elastic rope; 510. Elastic ball; 6. Collecting device; 61. U-shaped frame; 62. Slide plate; 63. Collecting box; 64. L-shaped plate; 65. Drive rod; 66. Connecting block; 67. Positioning rod. Detailed Implementation

[0029] Reference Figure 1 and Figure 2 As shown, this utility model provides a technical solution: an ascorbate glucoside moisture-proof granulator, including a granulator body 1, a feed cylinder 2 installed on the surface of the granulator body 1, a discharge plate 3 installed on the arc surface of the granulator body 1, a guide plate 4 installed on the arc surface of the granulator body 1, and a filter device 5 provided on the arc surface of the feed cylinder 2. By setting the filter device 5, the raw materials put into the feed cylinder 2 are filtered, avoiding the situation where a small amount of impurities in the raw materials are put into the feed cylinder 2 and the impurities follow the raw materials into the granulator body 1, thus causing impurities to mix and contaminate with the raw materials, thereby affecting product quality and improving the practicality of the device. Collection devices 6 are provided on both sides of the guide plate 4, which achieve the effect of collecting the products sliding out of the guide plate 4, avoiding the situation where a large amount of product remains on the guide plate 4 and continues to flow out when the operator does not have a suitable container or needs to change the container, resulting in the product falling to the ground and wasting resources, thus improving the practicality of the device.

[0030] The specific setup and function of its filtration device 5 and collection device 6 will be described in detail below.

[0031] Reference Figure 3 and Figure 4As shown in this embodiment: the filter device 5 includes two fixed rods 501, both of which are fixedly connected to the arc surface of the feed cylinder 2. An operating plate 502 is slidably connected to the arc surface of the fixed rods 501. An insertion rod 503 is fixedly connected to one side of the operating plate 502. A filter plate 505 is slidably connected to the inner surface of the feed cylinder 2. Two connecting plates 504 are fixedly connected to the surface of the filter plate 505. Insertion holes are provided on the surface of the connecting plates 504. A limit plate 506 is fixedly connected to the end of the fixed rod 501 away from the feed cylinder 2. The size of the insertion rod 503 is adapted to the size of the insertion hole in the connecting plate 504. When the operator pulls the operating plate 502... The operating plate 502 slides on the arc surface of the fixed rod 501. At this time, the limiting plate 506 achieves the effect of limiting the maximum sliding distance of the operating plate 502 on the arc surface of the fixed rod 501, preventing the operating plate 502 from detaching from the arc surface of the fixed rod 501 due to excessive pulling force when the operator pulls it. The arc surface of the fixed rod 501 is fitted with a first spring 507. The two ends of the first spring 507 are fixedly connected to the operating plate 502 and the feed cylinder 2, respectively. When the operator releases the operating plate 502, the rebound force of the first spring 507 causes the operating plate 502 to slide on the arc surface of the fixed rod 501, and at the same time, the operating plate 502 slides on the arc surface of the fixed rod 501. The operating plate 502 drives the insertion rod 503 to move until the insertion rod 503 is inserted into the insertion hole of the connecting plate 504. At this time, the first spring 507 improves the stability of the insertion rod 503 when it limits the connection plate 504, thereby improving the stability when it limits the filter plate 505. A rubber ring 508 is fixedly connected to the surface of the operating plate 502. The rubber ring 508 is slidably connected to the arc surface of the fixed rod 501. When the operator moves the operating plate 502, the operating plate 502 drives the rubber ring 508 to slide on the arc surface of the fixed rod 501. At this time, the elasticity of the rubber ring 508 wraps around the arc surface of the fixed rod 501, thereby reducing the impact of the operating plate 502 on the fixed rod 501. The sliding speed of the arc surface 01 provides a damping effect. An elastic rope 509 is fixedly connected to the surface of the filter plate 505, and an elastic ball 510 is fixedly connected to one end of the elastic rope 509. Pulling the elastic ball 510 causes the elastic rope 509 to stretch. After being pulled to a certain distance, the elastic ball 510 is released. The rebound force of the elastic rope 509 causes the elastic ball 510 to impact the filter plate 505. The vibration generated by the impact causes the filter plate 505 to vibrate, which achieves the effect of vibration and unblocking the filter plate 505. This avoids the situation where raw materials clog the filter plate 505 after long-term use, thus reducing the filtration effect of the filter plate 505.

[0032] Reference Figure 5 and Figure 6As shown, specifically, the collection device 6 includes two U-shaped frames 61, which are fixedly connected to both sides of the guide plate 4. A slide plate 62 is slidably inserted into the U-shaped frame 61. A collection box 63 is fixedly connected to the side of the two slide plates 62 that are close to each other. An L-shaped plate 64 is fixedly connected to the surface of the U-shaped frame 61. A drive rod 65 is threaded into the L-shaped plate 64. A connecting block 66 is rotatably connected to one end of the drive rod 65. The surface of the connecting block 66 is slidably connected to the slide plate 62. A positioning rod 67 is fixedly connected to the side of the connecting block 66 that is close to the drive rod 65. The arc surface of the positioning rod 67 is slidably connected to the L-shaped plate 64. When the operator rotates the drive rod 65, the drive rod 65 moves threadedly within the L-shaped plate 64. At the same time, the drive rod 65 drives the connecting block 66 to move. The connecting block 66 drives the positioning rod 67 to slide within the L-shaped plate 64. At this time, the positioning rod 67 achieves the effect of restricting the connecting block 66 from rotating with the drive rod 65, so as to provide stable and accurate guidance for the connecting block 66.

[0033] Working principle: When the filter plate 505 needs to be installed or adjusted, the operator pulls the operating plate 502. The operating plate 502 slides on the arc surface of the fixed rod 501. At this time, the limiting plate 506 restricts the sliding distance of the operating plate 502 to prevent it from detaching from the fixed rod 501 due to excessive pulling force. Simultaneously, the first spring 507 is stretched, and the operating plate 502 drives the insertion rod 503 to be pulled out from the insertion hole of the connecting plate 504. When the insertion rod 503 is completely pulled out, the limitation on the filter plate 505 is released. At this time, the filter plate 505 can be installed or adjusted in the feed cylinder 2. After the filter plate 505 is installed or adjusted, the operator releases the operating plate 502. The rebound force of the first spring 507 drives the operating plate 502 to slide in the opposite direction on the arc surface of the fixed rod 501. The operating plate 502 drives the insertion rod 503 to move until the insertion rod 503 is inserted into the insertion hole of the connecting plate 504, stably limiting the filter plate 505. To prevent it from moving freely inside the feed cylinder 2, during the operation of the device, the filter plate 505 may become clogged by raw materials over time, affecting the filtration effect. At this time, the operator can pull the elastic ball 510, which drives the elastic rope 509 to stretch. After pulling to a certain distance, the elastic ball 510 is released, and the rebound force of the elastic rope 509 causes the elastic ball 510 to hit the filter plate 505, causing the filter plate 505 to vibrate, thereby achieving the effect of vibration and unblocking the filter plate 505, avoiding the filter plate 505 from becoming clogged due to long-term use and reducing the filtration effect. During the movement of the operating plate 502, the rubber ring 508 fixedly connected to its surface slides in connection with the arc surface of the fixed rod 501. The elasticity of the rubber ring 508 wraps around the arc surface of the fixed rod 501, slowing down the sliding speed of the operating plate 502 on the arc surface of the fixed rod 501, playing a damping effect and making the operation more stable.

[0034] When it is necessary to fix the position of the collection box 63, the operator rotates the drive rod 65. The drive rod 65 moves in a threaded motion within the L-shaped plate 64. Since one end of the drive rod 65 is rotatably connected to the connecting block 66, the rotation of the drive rod 65 drives the connecting block 66 to move. During this process, the positioning rod 67, which is fixedly connected to the side of the connecting block 66 near the drive rod 65, slides within the L-shaped plate 64, effectively limiting the rotation of the connecting block 66 with the drive rod 65 and providing stable and accurate guidance for the connecting block 66. As the drive rod 65 continues to rotate, the connecting... The connecting block 66 is gradually inserted into the slide plate 62 until it fits tightly with the slide plate 62, firmly fixing the slide plate 62 and the connected collection box 63 to the U-shaped frame 61. This allows the collection box 63 to stably receive the material sliding down from the guide plate 4. When it is necessary to move the collection box 63, the drive rod 65 is rotated in the opposite direction. The drive rod 65 drives the connecting block 66 to exit from the slide plate 62, releasing the fixation of the slide plate 62 and the collection box 63. At this time, the collection box 63 can be easily pulled to slide within the U-shaped frame 61 and adjusted to a new collection position.

[0035] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

Claims

1. An ascorbate glucoside moisture-proof granulator, comprising a granulator body, characterized in that: A feed cylinder is installed on the surface of the granulator body, a discharge plate is installed on the arc surface of the granulator body, a guide plate is installed on the arc surface of the granulator body, a filter device is provided on the arc surface of the feed cylinder, the filter device includes two fixed rods, both of which are fixedly connected to the arc surface of the feed cylinder, an operating plate is slidably connected to the arc surface of the fixed rods, an insertion rod is fixedly connected to one side of the operating plate, a filter plate is slidably connected to the inner surface of the feed cylinder, and two connecting plates are fixedly connected to the surface of the filter plate, with insertion holes opened on the surface of the connecting plates.

2. The ascorbate glucoside moisture-proof granulator according to claim 1, characterized in that: The end of the fixing rod away from the feed cylinder is fixedly connected to a limiting plate, and the size of the insertion rod is adapted to the size of the insertion hole of the connecting plate.

3. The ascorbate glucoside moisture-proof granulator according to claim 1, characterized in that: The arc surface of the fixing rod is fitted with a first spring, and the two ends of the first spring are fixedly connected to the operating plate and the feed cylinder, respectively.

4. The ascorbate glucoside moisture-proof granulator according to claim 1, characterized in that: A rubber ring is fixedly connected to the surface of the control panel, and the rubber ring is slidably connected to the arc surface of the fixing rod.

5. The ascorbate glucoside moisture-proof granulator according to claim 1, characterized in that: An elastic rope is fixedly connected to the surface of the filter plate, and an elastic ball is fixedly connected to one end of the elastic rope.

6. The ascorbate glucoside moisture-proof granulator according to claim 1, characterized in that: The guide plate is provided with a collection device on both sides. The collection device includes two U-shaped frames, which are fixedly connected to the two sides of the guide plate respectively. A slide plate is slidably inserted in the U-shaped frame. A collection box is fixedly connected to the side of the two slide plates that are close to each other. An L-shaped plate is fixedly connected to the surface of the U-shaped frame. A drive rod is threaded into the L-shaped plate. One end of the drive rod is rotatably connected to a connecting block. The surface of the connecting block is slidably connected to the slide plate.

7. The ascorbate glucoside moisture-proof granulator according to claim 6, characterized in that: A positioning rod is fixedly connected to the side of the connecting block near the drive rod, and the arc surface of the positioning rod is slidably connected to the L-shaped plate.