Material storage device for molecular sieve processing
By designing a molecular sieve storage device with moisture-proof components, the problem of molecular sieve being damp in a humid environment is solved, and the effect of maintaining adsorption and catalytic capabilities is achieved, ensuring the storage quality and use effect of molecular sieve.
Patent Information
- Application Number
- CN202421777879.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-25
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-07-25
AI Technical Summary
When stored in a humid environment, molecular sieve is easily affected by humid gases, resulting in a decrease in adsorption and catalytic capacity and affecting the quality of subsequent use.
A material storage device for molecular sieve processing is designed, including a storage tank, a U-shaped bracket and a moisture-proof assembly. The moisture-proof component consists of a movable plate, a ventilation part and a motor. The movable plate rotates under the motor drive and brings animal material to roll. At the same time, the ventilating part discharges humid gas through a cooling fan.
It effectively avoids the moisture absorption of molecular sieve, ensures the maintenance of its adsorption and catalytic capacity, and improves the storage quality and subsequent use effect of molecular sieve.
Smart Images

Figure CN222960420U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of material storage, in particular to a material storage device for molecular sieve processing. Background Art
[0002] Molecular sieves are porous materials with special pore structures. They all have excellent adsorption and separation properties. After molecular sieves are processed, they need to be stored in storage tanks. When molecular sieves are stored in a humid environment, moist gas is likely to be generated in the storage tank. The molecular sieves in the storage tank are affected by the moist gas. The damp molecular sieves may absorb more moisture, resulting in a decline in their adsorption and catalytic abilities, problems such as incomplete crystallization and pore blockage, and affecting the subsequent use quality of the molecular sieves. Summary of the Utility Model
[0003] By providing a material storage device for molecular sieve processing in an embodiment of the present application, the problem in the prior art that the molecular sieves in the storage tank are affected by the moist gas, and the damp molecular sieves may absorb more moisture, resulting in a decline in their adsorption and catalytic abilities is solved.
[0004] An embodiment of the present application provides a material storage device for molecular sieve processing, which includes a storage tank and a U-shaped bracket, and further includes a moisture-proof component;
[0005] The moisture-proof component includes a movable plate, a ventilation part and a motor, and the motor is movably arranged on the bracket;
[0006] The movable plate is an arc-shaped plate, the movable plate abuts against the inner side wall of the storage tank, and the axis of the movable plate coincides with the axis of the storage tank;
[0007] There are two movable plates, and the two movable plates are connected by a fixing plate, and the motor is used to drive the fixing plate to make a rotational movement;
[0008] Fixed tubes are uniformly spaced and fixed on the end surface of the movable plate far from the inner side wall of the storage tank;
[0009] Ventilation holes are opened at the bottom of the storage tank, and the ventilation part is located at the ventilation holes, and the ventilation part is used for ventilating and dehumidifying the inside of the storage tank.
[0010] Further, the ventilation part includes a fixed seat and a reserved groove;
[0011] The fixed seat is fixed at the bottom of the storage tank, and a heat dissipation fan is fixed at the inner bottom of the fixed seat;
[0012] The reserved groove is opened at the bottom of the storage tank and is located inside the fixed seat. The reserved groove is internally communicated with the ventilation holes, and a waterproof breathable membrane is fixed at the inner top of the reserved groove.
[0013] Further, a detection rod is fixed to the bottom of the fixing base, and a pigment chamber is fixed to the bottom of the detection rod. Pigment is stored in the pigment chamber;
[0014] A sponge strip is fixed to the bottom of the pigment chamber. One end of the sponge strip extends into the pigment chamber, and one end of the sponge strip is located below the pigment chamber.
[0015] Further, the moisture-proof component further includes an air duct and a connecting plate;
[0016] The connecting plate is a plate body with a hollow interior, and it is fixed to one side of the movable plate. The movable plate is a plate body with a hollow interior, and the interior of the connecting plate communicates with the interior of the movable plate;
[0017] The air outlet end of the air duct passes through the middle of the storage tank and is rotatably connected to the connecting plate. The axis of the air duct coincides with the axis of the storage tank, and the air inlet end of the air duct is connected to an air pump;
[0018] The fixed pipe is a pipe body with a hollow interior and open ends at both ends, and one end of it extends into the movable plate. A gas soft bag is fixed to one end of each fixed pipe.
[0019] Further, a storage bag is fixed to the free end of each gas soft bag, and gravity powder is stored in the storage bag.
[0020] Further, a material grabbing plate is fixed to the side of each storage bag.
[0021] One or more technical solutions provided in the embodiments of the present application have at least the following technical effects or advantages:
[0022] Through the provided moisture-proof component, the movable plate can flip in the storage tank, thereby driving the materials in the storage tank to roll. At the same time, in cooperation with the ventilation part, the humid gas in the storage tank is discharged, which can prevent the molecular sieve in the storage tank from being affected by moisture absorption and ensure the subsequent use quality of the molecular sieve. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 is a three-dimensional structural diagram of the material storage device for molecular sieve processing of the present utility model;
[0024] Figure 2 is a bottom three-dimensional structural diagram of the material storage device for molecular sieve processing of the present utility model;
[0025] Figure 3 is a front sectional structural diagram of the material storage device for molecular sieve processing of the present utility model;
[0026] Figure 4 is a front sectional structural diagram of the storage tank of the material storage device for molecular sieve processing of the present utility model;
[0027] Figure 5For the material storage device for molecular sieve processing of the present utility model Figure 3 The partial enlarged structural schematic diagram of part A in
[0028] Figure 6 The front view structural schematic diagram of the gas soft bag of the material storage device for molecular sieve processing of the present utility model;
[0029] Figure 7 The front view structural schematic diagram of the storage bag of the material storage device for molecular sieve processing of the present utility model.
[0030] In the figure: 100, storage tank; 130, ventilation hole; 200, support; 300, moisture-proof component; 310, air guide pipe; 320, movable plate; 3201, fixing plate; 321, fixed pipe; 322, gas soft bag; 323, storage bag; 324, material grabbing plate; 330, connecting plate; 340, ventilation part; 341, fixed seat; 342, heat dissipation fan; 343, detection rod; 344, pigment cavity; 345, sponge strip; 346, reserved groove; 3461, waterproof and breathable membrane; 350, motor. Detailed implementation manners
[0031] To facilitate the understanding of the present utility model, the present application will be described more comprehensively with reference to the relevant drawings; the preferred embodiments of the present utility model are shown in the drawings. However, the present utility model can be implemented in many different forms and is not limited to the embodiments described herein; on the contrary, these embodiments are provided to make the disclosure of the present utility model more thorough and comprehensive.
[0032] It should be noted that the terms "vertical", "horizontal", "upper", "lower", "left", "right" and similar expressions used herein are only for the purpose of illustration and do not represent the only embodiments.
[0033] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which the present utility model belongs; the terms used in the description of the present utility model in this specification are only for the purpose of describing specific embodiments and are not intended to limit the present utility model; the term "and / or" used herein includes any and all combinations of one or more of the related listed items.
[0034] As Figures 1 to 7 shown, the present application provides a material storage device for molecular sieve processing, including a storage tank 100 and a U-shaped support 200. The storage tank 100 is a hollow cylinder and is fixed in the installation space of the support 200. An inlet for feeding is fixed at the top of the storage tank 100, and an outlet for discharging is fixed at the bottom of the storage tank 100. The storage tank 100 is used for storing molecular sieves, and further includes a moisture-proof component 300;
[0035] The moisture-proof component 300 includes a movable plate 320, a ventilation part 340, and a motor 350. The motor 350 is movably mounted on the bracket 200;
[0036] The movable plate 320 is an arc-shaped plate. The movable plate 320 abuts against the inner side wall of the storage tank 100, and the axis of the movable plate 320 coincides with the axis of the storage tank 100;
[0037] There are two movable plates 320. The two movable plates 320 are connected by a fixing plate 3201. The motor 350 is used to drive the fixing plate 3201 to rotate. That is to say, as the fixing plate 3201 rotates, the movable plate 320 can rotate synchronously;
[0038] Fixed pipes 321 are uniformly spaced and fixed on the end surface of the movable plate 320 away from the inner side wall of the storage tank 100;
[0039] A ventilation hole 130 is opened at the bottom of the storage tank 100. The ventilation part 340 is located at the ventilation hole 130. The ventilation part 340 is used for ventilating and dehumidifying the inside of the storage tank 100.
[0040] It is easy to understand that the motor 350 can drive the fixing plate 3201 to rotate, and at the same time drive the movable plate 320 to rotate, so that the movable plate 320 flips inside the storage tank 100, thereby driving the materials inside the storage tank 100 to tumble, and dispersing the humid gas accumulated between the materials.
[0041] Specifically, as Figures 1 to 4 shown, the ventilation part 340 includes a fixed seat 341 and a reserved groove 346;
[0042] The fixed seat 341 is fixed to the bottom of the storage tank 100. A heat dissipation fan 342 is fixed to the inner bottom of the fixed seat 341. The heat dissipation fan 342 is used to drive the air flow around the ventilation hole 130;
[0043] The reserved groove 346 is opened at the bottom of the storage tank 100, and the reserved groove 346 is located inside the fixed seat 341. The reserved groove 346 is internally connected to the ventilation hole 130. A waterproof breathable membrane 3461 is fixed to the inner top of the reserved groove 346. The waterproof breathable membrane 3461 can ensure the air circulation and at the same time block the entry of external humid gas into the storage tank 100.
[0044] It is worth noting that the heat dissipation fan 342 drives the surrounding air flow, extracts the humid gas inside the storage tank 100, ventilates and exchanges the air inside the storage tank 100, so that the materials inside the storage tank 100 are not easily affected by the humid gas.
[0045] Specifically, as Figures 1 to 4As shown, a detection rod 343 is fixed to the bottom of the fixed seat 341, and a pigment chamber 344 is fixed to the bottom of the detection rod 343. Pigment is stored in the pigment chamber 344. The pigment is preferably bright colors such as red, yellow, and green for easy observation.
[0046] A sponge strip 345 is fixed to the bottom of the pigment chamber 344. The sponge strip 345 is preferably white, which is convenient for matching the color of the pigment. One end of the sponge strip 345 extends into the pigment chamber 344, and one end of the sponge strip 345 is located below the pigment chamber 344.
[0047] It should be noted that since the moist gas is close to the ground and the detection rod 343 is lower than the storage tank 100, the moist gas will first contact the sponge strip 345. The sponge strip 345 has the ability to adsorb, so the moist air will be adsorbed on the sponge strip 345, making the sponge strip 345 in a moist state. The pigment in the pigment chamber 344 will then smear onto the sponge strip 345, which can play a warning role and facilitate the staff to timely deal with the storage tank 100.
[0048] In the above embodiment, the moist air is adsorbed on the sponge strip 345, making the sponge strip 345 in a moist state. The pigment in the pigment chamber 344 will then smear onto the sponge strip 345, which is convenient for the staff to understand the humidity of the storage environment. When dehumidifying the storage tank 100, the motor 350 can drive the fixed plate 3201 to rotate, and at the same time drive the movable plate 320 to rotate, so that the movable plate 320 flips inside the storage tank 100, thereby driving the materials in the storage tank 100 to tumble. The fixed pipe 321 can increase the contact area with the materials and increase the contact force for flipping the materials, dispersing the moist gas accumulated between the materials, improving the efficiency of material tumbling. At the same time, cooperating with the cooling fan 342 to drive the surrounding air to flow, the moist gas in the storage tank 100 is pumped outwards, ventilating and replacing the air in the storage tank 100, so that the materials in the storage tank 100 are not easily affected by the moist gas, can prevent the molecular sieve in the storage tank 100 from being affected by moisture absorption, ensuring the subsequent use quality of the molecular sieve. At the same time, when discharging materials, the movable plate 320 can be driven to flip, accelerating the falling of the materials and not easily getting blocked.
[0049] In some embodiments of the present application, as Figures 1 to 7 shown, the moisture-proof component 300 further includes an air guide pipe 310 and a connecting plate 330;
[0050] The connecting plate 330 is a plate body with a hollow interior, and it is fixed to one side of the movable plate 320. The movable plate 320 is a plate body with a hollow interior, and the interior of the connecting plate 330 is communicated with the interior of the movable plate 320;
[0051] The air outlet end of the air duct 310 passes through the middle of the storage tank 100 and is rotatably connected to the connecting plate 330. The axis of the air duct 310 coincides with the axis of the storage tank 100. That is to say, the air duct 310 will not get entangled. The connection between the air duct 310 and the connecting plate 330 is rotationally sealed. The air inlet end of the air duct 310 is connected to an air pump, and the air pump is fixed on the bracket 200.
[0052] The fixed pipe 321 is a hollow pipe body with openings at both ends, and one end of it extends into the movable plate 320. A gas soft bag 322 is fixed at one end of each fixed pipe 321, and the outer periphery of the gas soft bag 322 is airtightly fixed to the fixed pipe 321.
[0053] It should be noted that by repeatedly filling and pumping air in the air duct 310 through the air pump, the gas enters the movable plate 320 through the connecting plate 330, and the gas soft bag 322 is inflated through the fixed pipe 321, so that the gas soft bag 322 expands and contracts repeatedly. When the movable plate 320 rotates, the gas soft bag 322 can repeatedly hammer the materials in the storage tank 100 to discharge the gas between the materials.
[0054] Specifically, as Figure 7 shown, a storage material bag 323 is fixed at the free end of each gas soft bag 322, and gravity powder is stored in the storage material bag 323.
[0055] It should be noted that by fixing the storage material bag 323 at the free end of the gas soft bag 322, the contact force when the gas soft bag 322 hammers the materials can be increased, and the gas accumulated in the materials can be better discharged.
[0056] Specifically, as Figure 7 shown, a material grabbing plate 324 is fixed on the side of each storage material bag 323.
[0057] It should be noted that the material grabbing plate 324 can increase the contact area with the materials and improve the efficiency of material turning.
[0058] In the above embodiment, when the movable plate 320 rotates through the motor 350, the air pump repeatedly fills and pumps air in the air duct 310. The gas enters the movable plate 320 through the connecting plate 330, and the gas soft bag 322 is inflated through the fixed pipe 321, so that the gas soft bag 322 expands and contracts repeatedly. When the movable plate 320 rotates, the gas soft bag 322 can repeatedly hammer the materials in the storage tank 100. By increasing the hammering force of the gas soft bag 322 through the storage material bag 323, the gas between the materials can be discharged, the efficiency of dehumidifying the storage tank 100 can be improved, the quality of the materials in the storage tank 100 can be ensured, and at the same time, the falling speed of the materials can be accelerated and it is not easy to be blocked.
[0059] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. For those skilled in the art, various modifications and variations can be made to the present utility model. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A material storage device for molecular sieve processing, comprising a storage tank (100) and a U-shaped bracket (200), characterized in that: Also included is a moisture-proof component (300); The moisture-proof component (300) comprises a movable plate (320), a ventilation part (340) and a motor (350), wherein the motor (350) is movable on the bracket (200); The movable plate (320) is an arc-shaped plate, the movable plate (320) abuts against the inner wall of the storage tank (100), and the axis of the movable plate (320) coincides with the axis of the storage tank (100); There are two movable plates (320), and the two movable plates (320) are connected via a fixed plate (3201). The motor (350) is used to drive the fixed plate (3201) to perform rotational motion; Fixed pipes (321) are evenly spaced and fixed on the end surface of the movable plate (320) away from the inner wall of the storage tank (100); The storage tank (100) has a ventilation hole (130) at the bottom, and a ventilation portion (340) is located at the ventilation hole (130). The ventilation portion (340) is used to ventilate and dehumidify the storage tank (100).
2. The material storage device for molecular sieve processing according to claim 1, characterized in that: The ventilation portion (340) includes a fixing seat (341) and a reserved groove (346); The fixing seat (341) is fixed to the bottom of the storage tank (100), and a cooling fan (342) is fixed to the bottom of the fixing seat (341); The reserved groove (346) is provided at the bottom of the storage tank (100), and the reserved groove (346) is located in the fixing seat (341). The reserved groove (346) is communicated with the inside of the ventilation hole (130), and a waterproof breathable membrane (3461) is fixed on the top of the reserved groove (346).
3. The material storage device for molecular sieve processing according to claim 2, characterized in that: A detection rod (343) is fixed at the bottom of the fixing seat (341), a pigment cavity (344) is fixed at the bottom of the detection rod (343), and pigment is stored in the pigment cavity (344); A sponge strip (345) is fixed at the bottom of the pigment cavity (344), one end of the sponge strip (345) extends into the pigment cavity (344), and one end of the sponge strip (345) is located below the pigment cavity (344).
4. The material storage device for molecular sieve processing according to claim 1, characterized in that: The moisture-proof assembly (300) further includes an air guide tube (310) and a connecting plate (330); The connecting plate (330) is a plate body with a hollow interior, and is fixed to one side of the movable plate (320). The movable plate (320) is a plate body with a hollow interior, and the connecting plate (330) is in communication with the interior of the movable plate (320); The air outlet end of the air guide pipe (310) passes through the middle of the storage tank (100) and is rotatably connected to the connecting plate (330), the axis of the air guide pipe (310) coincides with the axis of the storage tank (100), and the air inlet end of the air guide pipe (310) is connected to the air pump; The fixed tube (321) is a tube body with a hollow interior and openings at both ends, and one end thereof extends into the movable plate (320). A gas soft bag (322) is fixed to one end of each fixed tube (321).
5. The material storage device for molecular sieve processing according to claim 4, characterized in that: A material storage bag (323) is fixed to the free end of each of the gas soft bags (322), and gravity powder is stored in the material storage bag (323).
6. The material storage device for molecular sieve processing according to claim 5, characterized in that: A material grabbing plate (324) is fixed to the side of each material storage bag (323).