A high-level tank for accelerator recovery and treatment

By designing guide and limit components and guide grooves, automatic guidance and limiting of the high-level tank are achieved, solving the problems of high manpower consumption, low precision and insufficient stability in the traditional installation of high-level tanks, and improving installation efficiency and stability.

CN224278417UActive Publication Date: 2026-05-26CHENGWU HERUN NEW MATERIAL TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202521609487.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-30
Publication Date
2026-05-26
Estimated Expiration
2035-07-30

AI Technical Summary

Technical Problem

Traditional high-level tank installation methods are labor-intensive, have low installation accuracy, are inefficient, and lack sufficient limit stability, making it difficult to achieve precise control.

Method used

The design employs a guide and limit assembly and a guide groove. The guide and limit assembly enables automatic guidance and limiting of the high-position groove, while the universal wheels and brakes are used for position locking. Combined with the guide groove of the auxiliary slope plate, it enables convenient movement and fixation.

Benefits of technology

It improves the accuracy and efficiency of high-level tank installation, ensures post-installation stability, reduces the time and difficulty of manual adjustment, and adapts to the installation needs of high-level tanks of different specifications.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224278417U_ABST
    Figure CN224278417U_ABST
Patent Text Reader

Abstract

This invention provides a high-level tank for accelerator recovery and treatment, including a tank body, a traveling wheel at the bottom of the tank body, a support plate at the bottom of the tank body, and multiple guide grooves on the support plate adapted to the traveling wheel. The traveling wheel is rolled within the guide grooves, and a guide limiting component is provided at the end of the guide groove. The guide limiting component can guide the movement of the traveling wheel and lock the traveling wheel in its position. This invention can achieve automatic guidance and limiting of the high-level tank through the guide grooves and guide limiting component, which facilitates the rapid and stable installation of the high-level tank and greatly improves the installation efficiency and stability of the high-level tank.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the technical field of accelerator recovery and treatment equipment, specifically to a high-level tank for accelerator recovery and treatment. Background Technology

[0002] Rubber accelerators refer to rubber vulcanization accelerators. 2-Mercaptobenzothiazole, also known as accelerator M, is an organic compound with the chemical formula C7H5NS2. It is a pale yellow crystalline powder, mainly used as a sensitive reagent for detecting gold, bismuth, cadmium, cobalt, mercury, nickel, lead, thallium, and zinc, and as a rubber accelerator. Rubber vulcanization primarily uses sulfur, but the reaction between sulfur and rubber is very slow; therefore, vulcanization accelerators were developed. Adding accelerators to rubber compounds activates the vulcanizing agent, thereby accelerating the cross-linking reaction between the vulcanizing agent and rubber molecules, achieving the effect of shortening vulcanization time and lowering vulcanization temperature. The main vulcanization accelerators used are classified by chemical structure into sulfenamides, thiazoles, thiurams, and some guanidines, thioureas, and dithiocarbamates. Among these, sulfenamides have the best overall performance and are the most widely used.

[0003] The high-level tank, also known as the expansion tank, is an essential component in the heating system of a liquid phase thermal oil furnace. It is usually located at the highest point of the system. In addition to accommodating the thermal expansion of the heat transfer fluid, it also has other important functions, such as venting light components in newly filled products and low-boiling substances generated during operation, supplementing evaporation and operating losses, and nitrogen sealing.

[0004] However, in industrial production and chemical processing, elevated tanks serve as crucial liquid storage or supply devices, and their installation accuracy and stability directly impact the safety and efficiency of the production process. Traditionally, installing elevated tanks requires multiple people to work together to move and adjust their position. Due to the large size and weight of these tanks, this not only consumes significant manpower but also makes precise control of their installation position difficult, easily leading to deviations. Furthermore, existing installation devices lack effective guiding and limiting structures, causing the elevated tanks to easily deviate from the preset installation path during movement, resulting in low installation efficiency. Utility Model Content

[0005] In view of this, the present invention provides a high-level tank for accelerator recovery and treatment. Through the action of the guide and limiting component and the guide groove, the high-level tank can be installed quickly and conveniently. This solves the problems of high manpower consumption, low installation position accuracy, low installation efficiency and insufficient limiting stability in the existing high-level tank installation process. It realizes automatic guidance and limiting operation of the high-level tank, and improves the efficiency and stability of high-level tank installation.

[0006] To solve the above-mentioned technical problems, this utility model provides a high-level tank for accelerator recovery and treatment, including a tank body, a traveling wheel at the bottom of the tank body, a support plate at the bottom of the tank body, and a plurality of guide grooves adapted to the traveling wheel on the support plate. The traveling wheel is rolled within the guide groove, and a guide limiting component is provided at the end of the guide groove. The guide limiting component can guide the movement of the traveling wheel and lock the position of the traveling wheel when it reaches the designated position. This utility model can realize automatic guidance and limiting operation of the high-level tank through the guide groove and the guide limiting component, which facilitates the rapid and stable installation of the high-level tank and greatly improves the installation efficiency and stability of the high-level tank.

[0007] The guide limiting assembly includes a placement slot opened on the tray, and a telescopic component is provided inside the placement slot. A guide wedge block is provided at the end of the telescopic component. The outer side of the guide wedge block is not higher than the top of the placement slot, and the inner side of the guide wedge block is higher than the top of the placement slot. This utility model can quickly guide the wedge block into the placement slot through the guide wedge block, and can also raise the guide wedge block to the initial state through the telescopic component, which facilitates the limiting operation of the high-level slot and makes the operation more convenient.

[0008] The telescopic component includes a limiting hole set inside the placement groove, a spring set inside the limiting hole, a top rod set above the spring, and a guide wedge block set above the top rod. This utility model can achieve the following when the limiting groove passes through the guide wedge block: pressing the guide wedge block compresses the top rod downwards and the spring. After the limiting groove passes through the guide wedge block, the compressed spring will push the top rod and the guide wedge block back to their original state due to its own restoring elasticity. The inner side of the guide wedge block can then block and limit the limiting groove, greatly improving the stability of the limiting groove installation.

[0009] The traveling wheels are omnidirectional wheels, four in total, and evenly distributed at the bottom of the tank. Each omnidirectional wheel is equipped with a brake. This utility model can lock the position of the limit groove after it has been adjusted by using the brake, which greatly improves the stability of the limit groove after it is placed in place. When it is necessary to adjust its position, the brake at the bottom of the omnidirectional wheel is released, and then the limit groove is pushed to achieve portable movement of the limit groove, making the operation more convenient.

[0010] There are four guide slots, which are arranged in pairs on the tray.

[0011] An auxiliary ramp is provided on the outside of the pallet, and a guide groove adapted to the slide is provided on the auxiliary ramp. The auxiliary ramp and the guide groove facilitate the pushing operation of the limiting groove, making it more convenient and labor-saving.

[0012] In summary, compared with the prior art, this application includes at least one of the following beneficial technical effects:

[0013] 1. Automatic guidance, precision and efficiency: This utility model can automatically guide the high-level trough during its movement by matching the guide groove on the pallet with the traveling wheels and cooperating with the guide groove on the auxiliary slope plate with the slide. This guides the high-level trough to move along the preset path, avoiding deviation, greatly improving the accuracy of the high-level trough installation position, reducing the time and effort of manual adjustment, and improving installation efficiency.

[0014] 2. Stable and reliable positioning: Through the design of the guide wedge block and telescopic component in the guide and limit assembly, after the traveling wheel moves into position, the spring restores its elasticity and causes the guide wedge block to rise, and its inner side effectively blocks and limits the traveling wheel; at the same time, the brake on the universal wheel can further lock the position. The double limit ensures the stability of the high-position groove after installation, prevents it from sliding or shifting during use, and reduces safety hazards.

[0015] 3. Convenient and labor-saving operation: This utility model uses swivel wheels with brakes for easy movement and positioning of the elevated trough. Releasing the brakes allows for easy pushing of the trough, and locking the brakes after adjusting the position secures it. The auxiliary ramp reduces the difficulty of pushing the trough onto the support plate, making the pushing operation more labor-saving. The entire installation process is simple and requires no complicated tools or professional skills.

[0016] 4. Strong adaptability and wide application: This utility model can adapt to the installation requirements of high-level slots of different specifications by opening multiple sets of sliding grooves on the pallet to match the width of the traveling wheels; the telescopic component can adapt to the pressure changes when the traveling wheels pass through through the elastic adjustment of the spring, ensuring the stable realization of the guiding and limiting functions. This device can be widely used in the installation scenarios of different types of high-level slots and has strong practicality. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the high-level tank for accelerator recovery and treatment according to this utility model;

[0018] Figure 2 This utility model Figure 1 Enlarged view of point A in the middle;

[0019] Figure 3 This is a top view of the high-level tank for accelerator recovery and treatment according to this utility model.

[0020] Explanation of reference numerals in the attached drawings: 100, tank body; 200, traveling wheel; 300, pallet; 310, guide groove; 320, guide and limit assembly; 321, placement groove; 322, telescopic component; 323, guide wedge block; 340, auxiliary slope plate; 341, guide groove. Detailed Implementation

[0021] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the following will be described in conjunction with the accompanying drawings of the embodiments of this utility model. Figure 1-3 The technical solutions of the embodiments of this utility model are clearly and completely described herein. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the described embodiments of this utility model are within the protection scope of this utility model.

[0022] like Figure 1-3 As shown: This embodiment provides a high-level tank for accelerator recovery and treatment, including a tank body 100. The tank body 100 can be made of stainless steel, such as 304 stainless steel, depending on the usage scenario and storage medium characteristics of the high-level tank. It has good corrosion resistance, high strength and long service life, and can adapt to the liquid storage needs of various industrial environments. The lower part of the tank body 100 is provided with a traveling wheel 200. The wheel body is made of high-strength polyurethane material, which has the characteristics of wear resistance, shock absorption and quietness, and can adapt to different ground environments, reducing noise and vibration during movement. The lower part of the tank body 100 is provided with a support plate 300. A telescopic push rod can be provided at the lower part of the support plate 300. The output rod of the telescopic push rod is in contact with the lower part of the support plate 300. The telescopic push rod is a hydraulic push rod or an electric push rod. The support plate 300 can be made of high-strength steel, such as Q235 steel plate, and is formed by welding or bolting. It has sufficient load-bearing capacity to support the weight of the high-level tank and the internal medium, ensuring structural stability. The steel surface can be treated with rust prevention, such as painting or galvanizing, to enhance its corrosion resistance and extend its service life. The pallet 300 is provided with multiple guide grooves 310 that are adapted to the traveling wheels 200. The traveling wheels 200 are rolled in the guide grooves 310. The end of the guide groove 310 is provided with a guide limiting component 320. The guide limiting component 320 can guide the movement of the traveling wheels 200 and lock the traveling wheels 200 in place. This utility model can realize automatic guidance and limiting operation of the high-level tank through the guide grooves 310 and the guide limiting component, which facilitates the rapid and stable installation of the high-level tank and greatly improves the installation efficiency and stability of the high-level tank.

[0023] According to one embodiment of the present invention, such as Figure 1-3As shown, the guide limiting component 320 includes a placement groove 321 opened on the tray 300. A telescopic member 322 is provided inside the placement groove 321. A guide wedge block 323 is provided at the end of the telescopic member 322. The outer side of the guide wedge block 323 is not higher than the top of the placement groove 321, and the inner side of the guide wedge block 323 is higher than the upper part of the placement groove 321. This utility model can quickly guide the wedge block 323 into the placement groove 321 through the guide wedge block 323. Moreover, the telescopic member 322 can lift the guide wedge block 323 to the initial state, which facilitates the limiting operation of the high-level groove and makes the operation more convenient.

[0024] According to another embodiment of the present invention, such as Figure 1 and Figure 2 As shown, the telescopic component 322 includes a limiting hole set inside the placement groove 321. A spring is set inside the limiting hole. It is made of high-quality spring steel, such as 65Mn spring steel, which has good elasticity and fatigue strength and can maintain stable performance during multiple compressions and rebounds, ensuring the normal operation of the telescopic component 322. A push rod is set on the upper part of the spring, and a guide wedge block 323 is set on the upper part of the push rod. The guide wedge block 323 is made of wear-resistant cast iron, which has high hardness and wear resistance and can withstand the extrusion and friction of the traveling wheel 200. The top rod is made of round steel, such as No. 45 steel, which has good strength and toughness, ensuring that it can stably support the guide wedge block 323 and realize the telescopic action under the action of spring force. This utility model can achieve the following: when the limiting groove passes through the guide wedge block 323, the top rod is pressed down by pressing the guide wedge block 323 to compress the spring. After the limiting groove passes through the guide wedge block 323, the compressed spring will lift the top rod and the guide wedge block 323 back to their original state due to its own restoring elasticity. The inner side of the guide wedge block 323 can then block and limit the limiting groove, greatly improving the stability of the limiting groove installation.

[0025] According to another embodiment of the present invention, such as Figure 1 and Figure 3 As shown, the traveling wheels 200 are omnidirectional wheels, and there are four of them, evenly distributed at the bottom of the tank body 100. The omnidirectional wheels are equipped with brakes. The brackets of the omnidirectional wheels are made of cast iron, which has high strength and ensures the load-bearing performance and service life of the traveling wheels 200. The brake components are made of wear-resistant metal to ensure the reliability of the brakes. This utility model can lock the position of the limit groove after it has been adjusted by the action of the brake, which greatly improves the stability of the limit groove after it is placed in place. When it is necessary to adjust its position, the brake at the bottom of the omnidirectional wheel is released, and then the limit groove is pushed to realize the portable movement of the limit groove, making the operation more convenient.

[0026] There are four guide grooves 310, which are arranged in pairs on the support plate 300, so that the two walking wheels 200 on the same side can slide smoothly in the groove 330.

[0027] An auxiliary ramp 340 is provided on the outer side of the pallet 300. A guide groove 341 adapted to the slide 330 is provided on the auxiliary ramp 340. The auxiliary ramp and guide groove 341 facilitate the pushing operation of the limiting groove, making it more convenient and labor-saving.

[0028] How to use this utility model:

[0029] First, it needs to be clarified that the high-level tank involved in this utility model is mainly used as an important liquid storage or supply device in the heating system of liquid phase thermal oil furnace. This utility model takes the recycling and treatment of rubber accelerators as an example to describe its installation and usage methods in detail. When the high-level tank needs to be installed...

[0030] Installation steps:

[0031] First, install the pallet 300 in the preset installation position, ensuring that the pallet 300 is placed stably and securely. According to the size of the elevated groove and the distribution of the traveling wheels 200, corresponding guide grooves 310, sliding grooves 330 and placement grooves 321 are opened on the pallet 300, and the auxiliary ramp 340 is fixed to the outside of the pallet 300, so that the guide groove 341 on the auxiliary ramp 340 is aligned and connected with the sliding groove 330 on the pallet 300.

[0032] Install the guide limiting assembly 320: A limiting hole is made at the bottom of the placement groove 321. The spring is placed into the limiting hole, and the lower part of the push rod is inserted into the limiting hole and connected to the spring. The top is connected to the guide wedge block 323, ensuring that the outer side of the guide wedge block 323 is not higher than the top of the placement groove 321, and the inner side is higher than the upper part of the placement groove 321. This completes the installation of the telescopic component 322 and the guide wedge block 323. Check that the casters at the bottom of the high-level groove are securely installed and that the braking function is normal. Push the high-level groove onto the support plate 300 via the auxiliary ramp 340, aligning the traveling wheels 200 with the guide groove 341 on the auxiliary ramp 340, and guide them along the guide groove 341 into the sliding groove 330 and guide groove 310 on the support plate 300.

[0033] The high-position groove is pushed to roll within the guide groove 310. When the traveling wheel 200 contacts the guide wedge block 323, the high-position groove is pushed further, and the traveling wheel 200 presses against the guide wedge block 323, causing the push rod to compress the spring downwards. The guide wedge block 323 then sinks into the placement groove 321, allowing the traveling wheel 200 to pass smoothly. After the traveling wheel 200 has completely passed, the spring returns to its elasticity, and the push rod drives the guide wedge block 323 to rise, with its inner side limiting the movement of the traveling wheel 200.

[0034] Once the elevated platform is in place, depress the brake on the caster wheel to lock the 200 travel wheel, thus completing the installation and fixing of the elevated platform.

[0035] Working principle:

[0036] When an elevated trough needs to be installed, the tilt angle of the auxiliary ramp 340 and the guiding effect of the guide groove 341 are used to push the elevated trough so that the traveling wheel 200 enters the slide groove 330 and guide groove 310 of the support plate 300 along the guide groove 341, thereby achieving automatic guidance and ensuring that the elevated trough moves along the preset path.

[0037] When the traveling wheel 200 moves to the end of the guide groove 310, it contacts the guide wedge block 323. The pressure of the traveling wheel 200 causes the guide wedge block 323 to drive the top rod to compress the spring, and the guide wedge block 323 sinks down, allowing the traveling wheel 200 to pass. After the traveling wheel 200 passes, the restoring force of the spring causes the top rod and the guide wedge block 323 to reset. The inner side of the guide wedge block 323 blocks the traveling wheel 200 from moving backward, thus achieving initial limiting.

[0038] After the high-level slot is accurately positioned, the brakes on the casters are locked to mechanically lock the traveling wheels 200. This, combined with the limiting action of the guide wedge block 323, forms a double fixation, ensuring the stable placement of the high-level slot.

[0039] When it is necessary to move the high-level slot, release the brake of the caster wheel, push the high-level slot, and the traveling wheel 200 will roll in the guide groove 310 and the slide groove 330, which can easily adjust the position of the high-level slot. After it is in place again, lock the brake.

[0040] How to use:

[0041] During the installation of the high-level tank, follow the installation steps described above and utilize the guiding and limiting functions of the device to achieve precise installation. After installation, periodically check the stability of the support plate 300 and whether the guide groove 310 and guide groove 341 are deformed or damaged.

[0042] During daily use, pay attention to whether the position of the high-level slot is stable. If slight displacement is found, check in time whether the universal wheel brake is loose and whether the guide wedge block 323 is reset in place. If necessary, re-lock the brake or adjust the guide limit component 320.

[0043] When the elevated trough needs to be moved for maintenance or repositioning, first release the brakes on the casters, then slowly push the trough within the guide groove 310 and slide groove 330. During the movement, ensure that the traveling wheels 200 always roll along the trough to avoid deviation. After moving it into place, lock the brakes again to ensure the elevated trough is stably fixed.

[0044] Regularly lubricate and maintain the walking wheels 200, check the elasticity of the springs, and check whether the guide wedges 323 are severely worn. If any parts are found to be damaged or their performance deteriorates, replace the corresponding parts in time to ensure the normal operation and service life of the device.

[0045] This utility model enables rapid and portable installation of high-level tanks through the combination of the guide and limiting component 320 and the guide groove 310. It solves the problems of high manpower consumption, low installation position accuracy, low installation efficiency and insufficient limiting stability in the existing high-level tank installation process, realizes automatic guidance and limiting operation of high-level tanks, and improves the efficiency and stability of high-level tank installation.

[0046] Furthermore, it should be noted that, in the description of this utility model, 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 according to the specific circumstances.

[0047] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.

Claims

1. A promoter recovery treatment surge tank comprising a tank body (100), characterized by: The lower part of the tank body (100) is provided with a traveling wheel (200) and a support plate (300). The support plate (300) is provided with a plurality of guide grooves (310) adapted to the traveling wheel (200). The traveling wheel (200) is rolled in the guide groove (310). The end of the guide groove (310) is provided with a guide limiting component (320). The guide limiting component (320) can guide the movement of the traveling wheel (200) and lock the position of the traveling wheel (200) after it has moved into place.

2. The accelerator recovery treatment surge tank of claim 1, wherein: The guide limiting component (320) includes a placement groove (321) opened on the tray (300). A telescopic member (322) is provided inside the placement groove (321). A guide wedge block (323) is provided at the end of the telescopic member (322). The outer side of the guide wedge block (323) is not higher than the top of the placement groove (321), and the inner side of the guide wedge block (323) is higher than the upper part of the placement groove (321).

3. The high-level tank for accelerator recovery and treatment as described in claim 2, characterized in that: The telescopic component (322) includes a limiting hole disposed inside the placement groove (321), a spring disposed inside the limiting hole, a top rod disposed above the spring, and a guide wedge block (323) disposed above the top rod.

4. The high-level tank for accelerator recovery and treatment as described in claim 3, characterized in that: The traveling wheels (200) are omnidirectional wheels, and there are four of them, which are evenly distributed at the bottom of the tank (100).

5. The high-level tank for accelerator recovery and treatment as described in claim 1, characterized in that: There are four guide slots (310), which are arranged in pairs on the tray (300).

6. The high-level tank for accelerator recovery and treatment as described in claim 5, characterized in that: An auxiliary ramp (340) is provided on the outer side of the pallet (300), and a guide groove (341) adapted to the slide groove (330) is provided on the auxiliary ramp (340).