Heat preservation storage device
By using an insulating base in the dark blue esterified product storage device to provide heat and equipped with an agitation mechanism, the problem of material precipitation at low temperatures is solved, and the stability of product quality and operation convenience is achieved.
Patent Information
- Application Number
- CN202422102571.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-08-28
AI Technical Summary
Dark blue esterified products are prone to material precipitation and precipitation in low temperature environments, affecting product quality.
The insulation storage device is adopted, and continuous heat is provided through the insulation seat and an auxiliary agitation mechanism is equipped to ensure the solution temperature is stable and prevent precipitation.
It effectively solves the material precipitation and precipitation problem of dark blue esterified products, ensures stable product quality and easy operation.
Smart Images

Figure CN223162371U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of chemical product storage equipment, and more specifically, to a heat-insulating storage device. Background Art
[0002] Dark blue esterification products are used industrially as disperse dye and azo dye intermediates and are important chemical products used in dye preparation. The finished product is a solution with an active ingredient concentration of approximately 65%. However, dark blue esterification products have certain temperature requirements for storage. In low ambient temperatures (such as winter), some material will precipitate, which can affect the quality of the dark blue esterification products. Manufacturers of dark blue esterification products require a storage device to meet these storage requirements, which is why this case was created. Utility Model Content
[0003] The purpose of the present utility model is to solve the needs of the above-mentioned prior art and provide a heat-insulating storage device. The dark blue esterification product solution is stored in a product storage tank. The heat-insulating seat can provide continuous heat to the product storage tank to ensure that the solution temperature is normal. The device is equipped with an auxiliary stirring mechanism to stir the solution. The combination of heat preservation and stirring can effectively solve the problem of material precipitation of the dark blue esterification product.
[0004] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0005] A heat-insulating storage device is used for storing dark blue esterification products, comprising a base frame, a heat-insulating seat and a product storage tank. The heat-insulating seat is fixedly mounted on the base frame, the product storage tank contains dark blue esterification products, the heat-insulating seat is provided with a tank body accommodating cavity, the product storage tank is matched and inserted into the tank body accommodating cavity, the heat-insulating seat is provided with a hollow heat-insulating liquid interlayer, the heat-insulating liquid interlayer contains heat-insulating liquid, a heater is mounted on the base frame, the heat-insulating seat is provided with a liquid inlet and a liquid outlet connected to the heat-insulating liquid interlayer, and the liquid inlet and the liquid outlet are both connected to the heater by pipelines.
[0006] Furthermore, the product storage tank includes a tank body and a tank cover, the tank cover can be sealed and installed on the top of the tank body, an auxiliary stirring mechanism is installed in the tank body, and a stirring power mechanism is installed on the base frame. The stirring power mechanism includes a motor, and the motor is transmission-connected to the auxiliary stirring mechanism.
[0007] Furthermore, the auxiliary agitation mechanism includes a clamping ring, a support rod, an intermediate shaft seat, and an agitation shaft. The clamping ring is fixedly clamped between the tank body and the tank cover. The intermediate shaft seat is arranged at the center point position of the clamping ring. The intermediate shaft seat and the clamping ring are connected by a plurality of support rods. The agitation shaft is rotatably installed on the intermediate shaft seat. The lower end of the agitation shaft extends towards the bottom of the tank body. A plurality of groups of stirring blades are connected to the side wall of the agitation shaft. The top end of the agitation shaft extends towards the tank cover.
[0008] Furthermore, a power transmission pipe is rotatably installed on the tank cover. The top end of the agitation shaft is connected with a polygonal docking head. When the tank cover is installed, the polygonal docking head can be inserted into the lower end of the power transmission pipe in a matching manner.
[0009] Furthermore, the top end of the power transmission pipe extends to the outside of the tank cover, and the output end of the motor can be docked with the top end of the power transmission pipe.
[0010] Furthermore, the stirring power mechanism further includes a column and a motor cross beam. The column is fixedly installed on the chassis. The motor cross beam is connected to the top of the column. A lifting push cylinder is installed on the motor cross beam. The lifting push cylinder is installed vertically downward. The piston rod end of the lifting push cylinder is connected with a motor seat. The motor is fixedly installed on the motor seat.
[0011] Furthermore, a rotary sleeve is rotatably installed at the top of the column, and the motor cross beam is fixedly connected to the outer wall of the rotary sleeve.
[0012] Furthermore, a first outer edge ring and a second outer edge ring are fixedly connected to the outer wall of the tank body. The first outer edge ring and the second outer edge ring are arranged in parallel. The installation height of the first outer edge ring is higher than that of the second outer edge ring. A heat insulation sleeve is installed on the first outer edge ring. A heat preservation pad is adhered to the lower end surface of the second outer edge ring. When the product storage tank is inserted into the accommodation cavity of the tank body in a matching manner, the second outer edge ring contacts and presses on the top plane of the heat preservation seat.
[0013] The beneficial effects of the present utility model are as follows:
[0014] The present utility model stores the deep blue esterification product solution in the product storage tank. The heat preservation seat can provide continuous heat for the product storage tank to ensure the normal temperature of the solution. The present utility model is equipped with an auxiliary agitation mechanism to agitate the solution. With the cooperation of heat preservation and agitation, the problem of material precipitation and separation of the deep blue esterification product can be effectively solved. The present utility model has the advantages of simple operation and can well meet the storage requirements of the deep blue esterification product. Description of the Drawings
[0015] Figure 1 It is a schematic diagram of the main structure of a heat preservation storage device in this embodiment;
[0016] Figure 2This is a schematic structural diagram of the product storage tank in this embodiment.
[0017] Reference numerals: chassis 1, thermal insulation seat 2, tank body accommodating cavity 21, thermal insulation liquid interlayer 22, liquid inlet 221, liquid outlet 222, thermal insulation liquid 23, product storage tank 3, tank body 31, first outer edge ring 311, second outer edge ring 312, heat insulation sleeve 313, heat insulation pad 314, tank cover 32, power transmission pipe 321, auxiliary stirring mechanism 33, clamping ring 331, support rod 332, intermediate shaft seat 333, stirring shaft 334, polygonal docking head 3341, stirring blade 335, heater 4, stirring power mechanism 5, motor 51, column 52, rotary sleeve 53, motor cross beam 54, lifting push cylinder 55, motor seat 56. Detailed implementation manners
[0018] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0019] As Figure 1 and Figure 2 shown, a thermal insulation storage device for storing and using deep blue esterification products includes a chassis 1, a thermal insulation seat 2 and a product storage tank 3. The chassis 1 is installed in a warehouse, the thermal insulation seat 2 is fixedly installed on the chassis 1, the product storage tank 3 contains deep blue esterification products, a tank body accommodating cavity 21 is provided on the thermal insulation seat 2, the outer dimension of the tank body accommodating cavity 21 conforms to the design of the product storage tank 3, the product storage tank 3 is inserted and installed in the tank body accommodating cavity 21, a hollow thermal insulation liquid interlayer 22 is provided in the thermal insulation seat 2, and a thermal insulation liquid 23 is contained in the thermal insulation liquid interlayer 22. A heater 4 is installed on the chassis 1, and a liquid inlet 221 and a liquid outlet 222 communicating with the thermal insulation liquid interlayer 22 are provided on the thermal insulation seat 2. The liquid inlet 221 and the liquid outlet 222 are both connected to the heater 4 through pipelines. Through the liquid inlet 221 and the liquid outlet 222, the thermal insulation liquid 23 can circulate between the thermal insulation liquid interlayer 22 and the heater 4 to continuously obtain stable heat. The outer wall of the product storage tank 3 and the cavity wall of the tank body accommodating cavity 21 are both made of heat-conducting materials, so that the heat of the thermal insulation liquid 23 can be conducted to the deep blue esterification products contained in the product storage tank 3. The deep blue esterification products are stored under temperature control, which can greatly reduce the probability of material precipitation and separation and stabilize the ex-factory quality of the products.
[0020] As Figure 2As shown, the product storage tank 3 includes a tank body 31 and a tank cover 32. The tank cover 32 can be sealed and installed on the top of the tank body 31. After the tank cover 32 is installed on the tank body 31, a closed product storage tank 3 can be formed. The dark blue esterified product is contained in the tank body 31. An auxiliary stirring mechanism 33 is installed in the tank body 31. A stirring power mechanism 5 is installed on the base frame 1. The stirring power mechanism 5 includes a motor 51. The motor 51 is transmission-connected to the auxiliary stirring mechanism 33. The motor 51 can provide power for the auxiliary stirring mechanism 33 to operate. The operation of the auxiliary stirring mechanism 33 can stir the dark blue esterified product, so that it can flow at a low speed during the storage process. The probability of material precipitation can be further reduced in the flowing state. This structure is used together with the heat preservation seat 2 to solve the problem of material precipitation during the storage of the dark blue esterified product and ensure the stability of product quality.
[0021] like Figure 2 As shown, the auxiliary stirring mechanism 33 includes a clamping ring 331, a support rod 332, an intermediate shaft seat 333 and a stirring shaft 334. The clamping ring 331 is fixedly clamped between the tank body 31 and the tank cover 32. Before installing the tank cover 32, the auxiliary stirring mechanism 33 is installed first. The tank cover 32 is pressed on the clamping ring 331 to press and fix the clamping ring 331. The intermediate shaft seat 333 is located at the center point of the clamping ring 331. The intermediate shaft seat 333 and the clamping ring 331 are connected by a number of support rods 332. The support rods 332 are used to support and fix the intermediate shaft seat 333. The stirring shaft 334 is rotatably installed on the intermediate shaft seat 333. The lower end of the stirring shaft 334 extends to the bottom of the tank body 31, and the side wall of the stirring shaft 334 is fixed to the bottom of the tank body 31. Several groups of stirring blades 335 are connected to it. The rotation of the stirring shaft 334 can drive the stirring blades 335 to stir the dark blue esterified product, so that the dark blue esterified product maintains a low-speed flow state during storage. This can effectively reduce the probability of material precipitation. The top of the stirring shaft 334 extends toward the tank cover 32. A power transmission tube 321 is rotatably installed on the tank cover 32. A polygonal docking joint 3341 is connected to the top of the stirring shaft 334. When the tank cover 32 is installed, the polygonal docking joint 3341 can be matched and plugged into the lower end of the power transmission tube 321. The power transmission tube 321 and the stirring shaft 334 form a docking relationship. As long as the power transmission tube 321 is driven to rotate, the stirring shaft 334 can be driven to rotate.
[0022] like Figure 1 As shown, the top end of the power transmission tube 321 extends to the outside of the tank cover 32, and the output end of the motor 51 can be connected to the top end of the power transmission tube 321. After the motor 51 is connected to the power transmission tube 321, a power transmission effect can be formed. After the motor 51 is started, the power transmission through the power transmission tube 321 can drive the auxiliary stirring mechanism 33 to run at a low speed. The motor 51 adopts a low-speed motor.
[0023] like Figure 1As shown in the figure, the stirring power mechanism 5 further includes a column 52 and a motor crossbeam 54. The column 52 is fixedly installed on the chassis 1. The motor crossbeam 54 is connected to the top of the column 52. A lifting push cylinder 55 is installed on the motor crossbeam 54. The lifting push cylinder 55 is installed vertically downward. The piston rod end of the lifting push cylinder 55 is connected to a motor seat 56. The motor 51 is fixedly installed on the motor seat 56. The telescopic movement of the piston rod of the lifting push cylinder 55 can form the lifting movement effect of the motor seat 56 and the motor 51. After the motor 51 descends, the output end of the motor 51 can be docked with the power transmission pipe 321, and the low-speed stirring movement of the dark blue esterification product can be carried out. After the motor 51 rises, the output end of the motor 51 can be disengaged from the power transmission pipe 321. At this time, the stirring power is cut off, and the disassembly, replacement and installation of the product storage tank 3 can be carried out. Since the motor 51 blocks the disassembly and installation path of the product storage tank 3, therefore, in the present utility model, a rotary sleeve 53 is rotatably installed on the top of the column 52, and the motor crossbeam 54 is fixedly connected to the outer wall of the rotary sleeve 53. The motor crossbeam 54 can make a rotary movement along with the rotary sleeve 53. That is to say, the motor crossbeam 54 and the motor 51 can rotate away from the area where the product storage tank 3 is located, so that the disassembly, replacement and installation of the product storage tank 3 can be carried out conveniently.
[0024] As Figure 2 shown, a first outer edge ring 311 and a second outer edge ring 312 are fixedly connected to the outer wall of the tank body 31. The first outer edge ring 311 and the second outer edge ring 312 are arranged in parallel. The installation height of the first outer edge ring 311 is higher than that of the second outer edge ring 312. A heat insulation sleeve 313 is installed on the first outer edge ring 311. The first outer edge ring 311 is used as the lifting position of the product storage tank 3. It can be lifted and placed manually or transported by mechanical equipment. The installation of the heat insulation sleeve 313 can prevent workers from being scalded during manual handling (the first outer edge ring 311 is connected to the outer wall of the tank body 31 and has a certain heat). A heat preservation pad 314 is adhered to the lower end surface of the second outer edge ring 312. When the product storage tank 3 is inserted and installed into the tank body accommodation cavity 21, the second outer edge ring 312 contacts and presses on the top plane of the heat preservation seat 2. The heat preservation pad 314 forms a heat insulation layer on the top plane of the heat preservation seat 2 to prevent heat from escaping from the gap between the tank body 31 and the tank body accommodation cavity 21. This design can reduce heat waste and improve the thermal energy utilization rate.
[0025] The structure layout of the present utility model is reasonable and the operation is very convenient. The disassembly, replacement and installation of the product storage tank 3 and the power docking of the auxiliary stirring mechanism 33 can be conveniently completed. The present utility model has good practicability and is worthy of being vigorously promoted and applied.
[0026] The above are only the preferred embodiments of the present utility model, and the protection scope of the present utility model is not limited to the above embodiments. All technical solutions falling within the concept of the present utility model belong to the protection scope of the present utility model. It should be noted that for those of ordinary skill in the art, several improvements and refinements made without departing from the principle of the present utility model should also be regarded as within the protection scope of the present utility model.
Claims
1. A thermal insulation storage device for storing and using deep blue esterification products, characterized in that, The invention comprises a base frame (1), a heat preservation seat (2) and a product storage tank (3), wherein the heat preservation seat (2) is fixedly mounted on the base frame (1), the product storage tank (3) contains a dark blue esterified product, the heat preservation seat (2) is provided with a tank body accommodating cavity (21), the product storage tank (3) is matched and inserted into the tank body accommodating cavity (21), the heat preservation seat (2) is provided with a hollow heat preservation liquid interlayer (22), the heat preservation liquid interlayer (22) contains heat preservation liquid (23), the base frame (1) is provided with a heater (4), the heat preservation seat (2) is provided with a liquid inlet (221) and a liquid outlet (222) which are in communication with the heat preservation liquid interlayer (22), and the liquid inlet (221) and the liquid outlet (222) are both connected to the heater (4) through pipelines.
2. The thermal storage device according to claim 1, wherein, The product storage tank (3) comprises a tank body (31) and a tank cover (32); the tank cover (32) can be sealed and installed on the top of the tank body (31); an auxiliary stirring mechanism (33) is installed in the tank body (31); a stirring power mechanism (5) is installed on the base frame (1); the stirring power mechanism (5) comprises a motor (51); and the motor (51) is transmission-connected to the auxiliary stirring mechanism (33).
3. The thermal storage device according to claim 2, wherein, The auxiliary stirring mechanism (33) comprises a clamping ring (331), a support rod (332), an intermediate shaft seat (333) and a stirring shaft (334); the clamping ring (331) is fixedly clamped between the tank body (31) and the tank cover (32); the intermediate shaft seat (333) is arranged at the center point of the clamping ring (331); the intermediate shaft seat (333) and the clamping ring (331) are connected via a plurality of support rods (332); the stirring shaft (334) is rotatably mounted on the intermediate shaft seat (333); the lower end of the stirring shaft (334) extends toward the bottom of the tank body (31); a plurality of groups of stirring blades (335) are connected to the side wall of the stirring shaft (334); and the top end of the stirring shaft (334) extends toward the tank cover (32).
4. The thermal storage device according to claim 3, wherein, A power transmission tube (321) is rotatably mounted on the tank cover (32), and a polygonal butt joint (3341) is connected to the top end of the stirring shaft (334). When the tank cover (32) is installed, the polygonal butt joint (3341) can be matched and plugged into the lower end of the power transmission tube (321).
5. The thermal storage device according to claim 4, wherein The top end of the power transmission tube (321) extends to the outside of the tank cover (32), and the output end of the motor (51) can be connected to the top end of the power transmission tube (321).
6. The thermal storage device according to claim 2, characterized in that The stirring power mechanism (5) further comprises a column (52) and a motor beam (54), wherein the column (52) is fixedly mounted on the base frame (1), the motor beam (54) is connected to the top of the column (52), a lifting cylinder (55) is mounted on the motor beam (54), the lifting cylinder (55) is mounted vertically downward, a piston rod end of the lifting cylinder (55) is connected to a motor base (56), and the motor (51) is fixedly mounted on the motor base (56).
7. The thermal storage device according to claim 6, wherein A rotary sleeve (53) is rotatably mounted on the top of the upright column (52), and the motor beam (54) is fixedly connected to the outer wall of the rotary sleeve (53).
8. The thermal storage device according to claim 2, wherein, The outer wall of the tank body (31) is fixedly connected with a first outer edge ring (311) and a second outer edge ring (312). The first outer edge ring (311) and the second outer edge ring (312) are arranged in parallel. The installation height of the first outer edge ring (311) is higher than that of the second outer edge ring (312). A heat insulation sleeve (313) is installed on the first outer edge ring (311). A heat preservation pad (314) is adhesively mounted on the lower end surface of the second outer edge ring (312). When the product storage tank (3) is inserted and fitted into the tank body accommodation cavity (21), the second outer edge ring (312) contacts and presses on the top plane of the heat preservation seat (2).