Improved super absorbent resin polymerization conveying device

By installing vibration and leak-proof devices on the conveying device, the problems of uneven cooling and loss of resin particles were solved, achieving efficient cooling and reduced loss.

CN224103269UActive Publication Date: 2026-04-10BANGLIDA (FUJIAN) NEW MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

In the existing technology, the direct stacking of highly absorbent resin after it is broken results in low cooling efficiency, uneven cooling, and easy loss.

Method used

An improved superabsorbent resin polymerization conveyor device employs a vibration device and a leak-proof device. The rotating motor drives the cam to vibrate the conveyor belt, which spreads the resin particles evenly. The leak-proof plate prevents the particles from falling off, and the heat dissipation device accelerates cooling.

Benefits of technology

It improves the cooling efficiency of resin particles, reduces losses, and increases production efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224103269U_ABST
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Abstract

The utility model relates to the technical field of conveying devices, in particular to an improved super absorbent resin polymerization conveying device which comprises a conveyor main body, a conveying belt arranged on the conveyor main body, and a vibration device used for vibrating the conveying belt and arranged on the conveyor main body. The conveyor body is further provided with a leakage-proof device used for preventing the resin particles from falling off.
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Description

TECHNICAL FIELD

[0001] The utility model relates to conveying device technical field, especially in an improved high water absorbent resin polymerization conveying device. BACKGROUND

[0002] Resin generally needs to produce and process in polymerization workshop and refining workshop respectively, wherein the polymerization workshop mainly includes the following steps: feeding, mixing, discharging, tabletting, cooling, crushing, screening and drying etc., the resin after crushing will enter the refining workshop, and currently part of the high water absorbent resin needs to be cooled twice after being crushed into particles to improve and optimize its structure, but the resin particles after crushing in most polymerization workshops are generally directly put into storage bags, so that the resin can only be stacked together for cooling, and the cooling efficiency is poor. SUMMARY

[0003] Therefore, in view of the above problems, the utility model provides an improved high water absorbent resin polymerization conveying device.

[0004] To achieve the above purpose, the technical scheme of the utility model provides an improved high water absorbent resin polymerization conveying device, which comprises a conveyor main body, a conveying belt arranged on the conveyor main body, a vibrating device arranged on the conveyor main body and used for vibrating the conveying belt, and a leakage prevention device arranged on the conveyor main body and used for preventing resin particles from falling off.

[0005] Further improvement is that the vibrating device comprises a rotating motor arranged on the conveyor main body, a rotating rod of the rotating motor is located between the conveying belts, a cam is arranged on the rotating rod of the rotating motor, a first bearing seat is arranged on the conveyor main body, and the rotating rod of the rotating motor is fixedly connected with an inner ring of the first bearing seat.

[0006] Further improvement is that the leakage prevention device comprises a plurality of leakage prevention plates which are arranged on left and right sides of the conveyor main body through adjustment devices and can slide left and right, and the bottom of each leakage prevention plate is in abutment with the conveying belt.

[0007] Further improvement is that the adjustment device comprises a support seat arranged on the conveyor main body, a first threaded hole opened on the support seat, an adjusting screw threadedly connected with the first threaded hole, and a second bearing seat arranged on at least one leakage prevention plate, one end of the adjusting screw penetrating out of the first threaded hole is fixedly connected with an inner ring of the second bearing seat, and linkage guiding devices are further arranged between the leakage prevention plates.

[0008] Further improvement is that the linkage guiding device comprises a clamping block arranged on the left side of the leakage-proof plate, a clamping slot arranged on the right side of the leakage-proof plate and matched with the clamping block, at least one third threaded hole arranged on the leakage-proof plate, a guide column locked in the third threaded hole, and a guide sleeve arranged on the conveyor body and corresponding to the guide column.

[0009] Further improvement is that the leakage-proof plate is further provided with a heat dissipation device for accelerating cooling.

[0010] Further improvement is that the heat dissipation device comprises an air slot arranged on the leakage-proof plate and a filter screen arranged in the air slot and used for preventing resin particles from falling and facilitating air circulation.

[0011] Further improvement is that the bottom of the leakage-proof plate and the conveying belt are provided with an elastic contact device.

[0012] Further improvement is that the elastic contact device comprises a rubber block arranged on the bottom of the leakage-proof plate and an inclined angle arranged on the rubber block and used for reducing friction.

[0013] Further improvement is that the conveying belt is further provided with release paper used for preventing resin particles from adhering to the conveying belt.

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

[0015] The present application has the advantages of simple structure and convenient use, and the leakage-proof device is arranged on the conveyor, so that the resin particles generated by the crusher can be received and uniformly spread on the conveying belt, thereby enhancing the cooling efficiency, preventing the resin particles from falling and reducing product loss, and improving the production efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0016] Fig. 1 Fig. 1 is a top view of an improved high water-absorbing resin polymerization conveying device according to the present application;

[0017] Fig. 2 Fig. 2 is a sectional view of a leakage-proof plate of the improved high water-absorbing resin polymerization conveying device according to the present application;

[0018] Fig. 3 Fig. 3 is a sectional view of a conveying belt of the improved high water-absorbing resin polymerization conveying device according to the present application;

[0019] In the diagram: 101, conveyor body; 102, conveyor belt; 103, rotating motor; 104, cam; 105, first bearing seat; 106, leak-proof plate; 107, support seat; 108, adjusting screw; 109, second bearing seat; 110, locking block; 111, locking groove; 112, third threaded hole; 113, guide post; 114, guide sleeve; 115, empty groove; 116, filter screen; 117, rubber block; 118, bevel; 119, handle. Detailed Implementation

[0020] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings and examples. The following examples are only used to more clearly illustrate the technical solution of this utility model and should not be construed as limiting the scope of protection of this utility model.

[0021] like Figs. 1-3 As shown, an improved superabsorbent resin polymerization conveying device includes a conveyor body 101, a conveyor belt 102 disposed on the conveyor body 101, a vibration device for vibrating the conveyor belt 102 disposed on the conveyor body 101, and a leak-proof device for preventing resin particles from falling off the conveyor body 101.

[0022] In order to ensure that the resin particles can be evenly spread on the conveyor belt 102 and enhance the secondary cooling efficiency, the vibration device includes: a rotary motor 103 disposed on the conveyor body 101, the rotating rod of the rotary motor 103 being located between the conveyor belts 102, a cam 104 disposed on the rotating rod of the rotary motor 103, a first bearing seat 105 disposed on the conveyor body 101, and the rotating rod of the rotary motor 103 being fixedly connected to the inner ring of the first bearing seat 105;

[0023] Vibration allows the resin particles to spread out evenly and can also knock them away, exposing more of them to the air and enhancing cooling efficiency. Furthermore, since a drying step will be performed later, it will not affect the quality of the resin particles.

[0024] To prevent resin particles from falling during transport, the leak-proof device includes several leak-proof plates 106 that can be slidably moved left and right on the left and right sides of the conveyor body 101 via an adjustment device, with the bottom of the leak-proof plates 106 abutting against the conveyor belt 102.

[0025] In order to adjust the distance between the leakage-proof plates 106, prevent the resin particles from spreading too far and causing loss, the adjusting device comprises a support seat 107 arranged on the conveyor main body 101, a first threaded hole arranged on the support seat 107, an adjusting screw 108 threadedly connected with the first threaded hole, a second bearing seat 109 arranged on at least one of the leakage-proof plates 106, and the end of the adjusting screw 108 penetrating out of the first threaded hole is fixedly connected with the inner ring of the second bearing seat 109. The linkage guiding device is further arranged between the leakage-proof plates 106, and a handle 119 is further arranged on the adjusting screw 108.

[0026] In order to make the other leakage-proof plates 106 move together when the leakage-proof plate 106 provided with the adjusting screw 108 moves, the linkage guiding device comprises a clamping block 110 arranged on the left side of the leakage-proof plate 106, a clamping groove 111 arranged on the right side of the leakage-proof plate 106 and matched with the clamping block 110, at least one third threaded hole 112 arranged on the leakage-proof plate 106, a guide column 113 locked in the third threaded hole 112, and a guide sleeve 114 arranged on the conveyor main body 101 and corresponding to the guide column 113.

[0027] In order to facilitate air circulation and enhance cooling efficiency, the leakage-proof plate 106 is further provided with a heat dissipation device for accelerating cooling, which comprises an air slot 115 arranged on the leakage-proof plate 106 and a filter screen 116 arranged in the air slot 115 for preventing the resin particles from falling and facilitating air circulation.

[0028] In order to prevent the leakage-proof plate 106 from rubbing against the conveyor belt 102 and damaging the conveyor belt 102, the elastic contact device is arranged between the bottom of the leakage-proof plate 106 and the conveyor belt 102, which comprises a rubber block 117 arranged on the bottom of the leakage-proof plate 106 and an inclined angle 118 arranged on the rubber block 117 for reducing friction.

[0029] In order to prevent the water-absorbing resin from sticking to the conveyor belt 102, the release paper (not shown in the figure) for preventing the resin particles from adhering to the conveyor belt 102 is further arranged on the conveyor belt 102, and the release paper is attached to the surface of the conveyor belt 102 by adhesive tape.

[0030] Working principle: when installing the leakage-proof plate 106, first, the leakage-proof plate 106 is connected through the clamping block 110 and the clamping groove 111, then the guide column 113 is inserted into the guide sleeve 114 and connected with the third threaded hole 112, and the installation of the leakage-proof plate 106 is completed.

[0031] When preparing, the adjusting screw 108 is twisted, and under the limiting of the guide column 113, the clamping block 110 and the clamping groove 111, the leakage-proof plate 106 can slide left and right on the conveyor belt 102 to adapt to the discharge amount of the crusher and prevent the resin particles from spreading too far and causing certain loss.

[0032] In use, the rotating motor 103 is started, and after the resin particles fall on the conveyor belt 102, they are evenly spread on the conveyor belt 102 under vibration, and at the same time, the resin particles are fully exposed to the air, the cooling efficiency is enhanced, and the leakage prevention plate 106 can prevent the resin particles from falling off the conveyor during vibration, causing loss, and finally the resin particles move to the storage bag for storing the resin particles under the conveying of the conveyor belt 102.

[0033] The basic principle and main features of the utility model and its advantages are shown and described above, and those skilled in the art should understand that the utility model is not limited by the above embodiments, and the above embodiments and descriptions are only to illustrate the principle of the utility model, and various changes and improvements can be made to the utility model without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed, and the scope of protection of the utility model is defined by the appended claims and their equivalents.

Claims

1. An improved superabsorbent resin polymer conveying device comprising a conveyor main body, a conveyor belt provided on the conveyor main body, characterized by: The conveyor body is further provided with a vibrating device for vibrating the conveying belt, and further provided with a leakage prevention device for preventing resin particles from falling.

2. The improved polymerization conveyor for super absorbent resin according to claim 1, wherein: The vibrating device comprises a rotating motor arranged on the conveyor body, a rotating rod of the rotating motor being located between the conveying belts, a cam being arranged on the rotating rod of the rotating motor, and a first bearing seat being arranged on the conveyor body, the rotating rod of the rotating motor being fixedly connected with an inner ring of the first bearing seat.

3. The improved polymerization conveyor for super absorbent resin according to claim 1, wherein: The leakage prevention device comprises a plurality of leakage prevention plates arranged on left and right sides of the conveyor body through adjustment devices, and the leakage prevention plates are in abutment with the conveying belts at bottoms of the leakage prevention plates.

4. The improved polymerization conveyor of super absorbent resin according to claim 3, wherein: The adjustment device comprises a support seat arranged on the conveyor body, a first threaded hole being formed in the support seat, an adjusting screw being threadedly connected with the first threaded hole, and a second bearing seat being arranged on at least one of the leakage prevention plates, an end of the adjusting screw penetrating out of the first threaded hole being fixedly connected with an inner ring of the second bearing seat, and a linkage guiding device being further arranged between the leakage prevention plates.

5. The improved polymerization conveyor of super absorbent resin according to claim 4, wherein: The linkage guiding device comprises a clamping block arranged on a left side of the leakage prevention plate, a clamping groove being formed on a right side of the leakage prevention plate and matched with the clamping block, at least one third threaded hole being formed in the leakage prevention plate, a guide column being locked in the third threaded hole, and a guide sleeve being arranged on the conveyor body and corresponding to the guide column.

6. The improved polymerization conveyor of super absorbent resin according to claim 3, wherein: The leakage prevention plate is further provided with a heat dissipation device for accelerating cooling.

7. The improved polymerization conveyor of super absorbent resin according to claim 6, wherein: The heat dissipation device comprises an air slot being formed in the leakage prevention plate, and a filter screen being arranged in the air slot for preventing resin particles from falling and facilitating air circulation.

8. The improved polymerization conveyor of super absorbent resin according to claim 3, wherein: An elastic contact device is arranged between the bottom of the leakage prevention plate and the conveying belt.

9. The improved polymerization conveyor of super absorbent resin according to claim 8, wherein: The elastic contact device comprises a rubber block arranged at the bottom of the leakage prevention plate, and an inclined angle being formed in the rubber block for reducing friction.

10. The improved polymerization conveyor of super absorbent resin according to claim 1, wherein: The conveying belt is further provided with release paper for preventing resin particles from adhering to the conveying belt.