Anti-falling sodium silicate storage device
By designing a drop-proof flossil storage device, the combination of PVC rod and protective plate is used to solve the problem of shaking the storage tank during transportation and lack of outer wall protection, achieving double protection and stability of the storage tank.
Patent Information
- Application Number
- CN202422366926.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-09-27
AI Technical Summary
The existing flossil storage devices are prone to shaking during transportation and lack protection against the outer wall of the storage tank, resulting in the storage tank being prone to tilting or falling.
A storing device for anti-falling of the stool is designed, through the first PVC rod, the second positioning seat and the load-bearing seat, to realize the initial positioning of the storage tank, and through the adjustment of the second PVC rod and the protective plate, double protection is provided to prevent the storage tank from tilting.
It effectively prevents the inclination and fall of the soda storage tank during transportation, provides protection on the outside of the storage tank, and ensures the safety and stability of the storage tank.
Smart Images

Figure CN223015273U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sodium silicate storage, in particular to a sodium silicate storage device that prevents dropping. Background Technique
[0002] Sodium silicate, whose aqueous solution is called water glass, is a colorless, bluish-green or brown solid or viscous liquid. Sodium silicate has a very wide range of uses, almost covering all sectors of the national economy. For example, in the chemical industry system, it is used to manufacture various silicate products such as silica gel, white carbon black, zeolite molecular sieve, sodium metasilicate, silica sol, layered silicon, and instant powdered sodium silicate, potassium sodium silicate, etc., and is the basic raw material for silicon compounds; in the light industry, it is an indispensable raw material in detergents such as washing powder and soap, and is also a water softener and co-precipitant; in the textile industry, it is used for auxiliary dyeing, bleaching, and sizing of yarns.
[0003] Chinese Patent Publication No. CN218807589U discloses a cart and a plurality of storage tanks arranged on the upper end surface of the cart. The upper end surface of the cart is symmetrically and fixedly connected with a plurality of fixing blocks. A plurality of first cavities are symmetrically opened in the inner wall of the cart. A second cavity is opened in each of the fixing blocks. A worm is rotatably connected to the inner wall of each first cavity. A worm gear is meshed with each worm. A vertical rod is vertically and fixedly inserted through the center of each worm gear. Through the cooperative setting of the handle, the worm, and the worm gear, the vertical rod can be driven to rotate. The vertical rod can drive the bidirectional threaded rod to rotate through the first helical gear and the second helical gear. The bidirectional threaded rod can drive two bolts to move away from each other through the threaded sleeve and the push plate, and the bolts can be made to abut against the fixing grooves, thereby limiting and fixing the storage tank to prevent the storage tank from dropping during transportation, and further preventing the storage tank from being deformed and damaged.
[0004] When the sodium silicate storage tank in the above patent and common similar devices on the market are in use, generally, workers drive the sodium silicate storage device to move through the cart, and most of the devices for storing sodium silicate are cylindrical in shape. During transportation, the sodium silicate storage tank device is prone to shaking, and there is a lack of protection for the outer wall of the storage tank when the sodium silicate storage tank drops. Content of the Utility Model
[0005] In view of the above problems, a sodium silicate storage device that prevents dropping is provided, so that the first PVC rod penetrates through the first positioning seat, the second positioning seat, and the load-bearing seat, which is convenient for positioning and installing the first positioning seat and the second positioning seat, and can effectively perform preliminary positioning on the storage tank. Moreover, by changing the height of the storage tank, the height of the second PVC rod and the protection plate can be adjusted. Through the protection plate, the outside of the storage tank can be protected. Moreover, the first PVC rod and the second PVC rod can deform inward under the action of the protection plate, and double protection of the storage tank can be achieved, effectively avoiding the inclination of the storage tank.
[0006] To achieve the above object, the present utility model provides the following technical solutions: A sodium silicate storage device for preventing falling, comprising a load-bearing seat, a first positioning seat, a second positioning seat, a storage tank, a first PVC rod, a second PVC rod, a protection plate, a buffer plate and a positioning plate. The first positioning seat is arranged at the top of the load-bearing seat, the second positioning seat is arranged on one side of the first positioning seat. Placement grooves are formed at the tops of the first positioning seat and the second positioning seat. The storage tank is arranged inside the placement groove. The first PVC rod is arranged above the first positioning seat and the second positioning seat. The second PVC rod is arranged above the first PVC rod. The protection plate is arranged on one side of the second PVC rod. The buffer plate is arranged on one side of the protection plate. The positioning plate is arranged above the protection plate.
[0007] Further, first clamping members are symmetrically arranged on the sides of the first positioning seat and the positioning plate, and a second clamping member matching the first clamping member is arranged on the side of the second positioning seat.
[0008] Further, threaded holes matching the first PVC rod are formed at the four corners of the first positioning seat and the second positioning seat. The first PVC rod threadedly penetrates through the first positioning seat and the second positioning seat. A limiting sliding groove matching the first PVC rod is formed at the bottom of the second PVC rod.
[0009] Further, the protection plate is connected to the second PVC rod. Threaded holes are symmetrically formed on the side of the protection plate. A positioning screw rod is arranged inside the threaded hole. The positioning screw rod penetrates through the second PVC rod and contacts the first PVC rod.
[0010] Further, a rectangular groove is formed on one side of the protection plate. First cross bars are symmetrically arranged inside the rectangular groove. A guiding groove is formed inside the first cross bar. A second cross bar connected to the buffer plate is slidably installed inside the guiding groove. A return spring is arranged inside the guiding groove.
[0011] Further, through holes are formed at the four corners inside the positioning plate. Positioning insertion rods connected to the top of the second PVC rod penetrate through the through holes. A threaded cap contacting the positioning plate is arranged at one end of the positioning insertion rod.
[0012] Compared with the prior art, the beneficial effects of the present utility model are: This sodium silicate storage device for preventing falling is reasonable and has the following advantages:
[0013] Place the first positioning seat and the second positioning seat above the load-bearing seat, and then pass the first PVC rod through the first positioning seat, the second positioning seat and the load-bearing seat, which is convenient for positioning and installing the first positioning seat and the second positioning seat, can effectively conduct preliminary positioning of the storage tank, and moreover, by changing the height of the storage tank, the height of the second PVC rod and the protective plate can be adjusted. The protective plate can protect the outside of the storage tank, and under the action of the protective plate, the first PVC rod and the second PVC rod can deform inward, achieving double protection for the storage tank and effectively preventing the storage tank from tilting;
[0014] Put the positioning plate on the upper end of the storage tank and position the positioning plate, which can protect the upper part of the storage tank and prevent the sodium silicate storage tank from falling. At the same time, when the sodium silicate storage tank falls, it can protect the outside of the sodium silicate storage tank. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a schematic diagram of the overall structure of the present utility model;
[0016] Figure 2 is a schematic diagram of the frame structure of the present utility model;
[0017] Figure 3 is a schematic diagram of the exploded structure of the present utility model;
[0018] Figure 4 is a schematic diagram of the connection structure of the first positioning seat and the second positioning seat of the present utility model;
[0019] Figure 5 is a schematic diagram of the partial sectional structure of the protective plate of the present utility model.
[0020] In the figure: 1, load-bearing seat; 2, first positioning seat; 3, second positioning seat; 4, storage tank; 5, first PVC rod; 6, second PVC rod; 7, protective plate; 8, buffer plate; 9, positioning plate; 10, first clamping part; 11, second clamping part; 12, positioning screw; 13, first cross bar; 14, second cross bar; 15, positioning insertion rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0021] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the 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.
[0022] Please refer to Figures 1 to 5, A sodium silicate storage device for preventing falling, comprising a load-bearing seat 1, a first positioning seat 2, a second positioning seat 3, a storage tank 4, a first PVC rod 5, a second PVC rod 6, a protective plate 7, a buffer plate 8 and a positioning plate 9. The first positioning seat 2 is arranged on the top of the load-bearing seat 1, the second positioning seat 3 is arranged on one side of the first positioning seat 2, placing grooves are formed on the tops of both the first positioning seat 2 and the second positioning seat 3, the storage tank 4 is arranged inside the placing groove, the first PVC rod 5 is arranged above the first positioning seat 2 and the second positioning seat 3, the second PVC rod 6 is arranged above the first PVC rod 5, the protective plate 7 is arranged on one side of the second PVC rod 6, the buffer plate 8 is arranged on one side of the protective plate 7, and the positioning plate 9 is arranged above the protective plate 7.
[0023] Place the first positioning seat 2 and the second positioning seat 3 on the load-bearing seat 1, and then pass the first PVC rod 5 through the first positioning seat 2, the second positioning seat 3 and the load-bearing seat 1, which is convenient for positioning and installing the first positioning seat 2 and the second positioning seat 3. Then install the storage tank 4 on the top of the placing groove. By changing the height of the storage tank 4, the second PVC rod 6 can be adjusted in height under the action of the first PVC rod 5. When the second PVC rod 6 moves, it drives the protective plate 7 to move. The protective plate 7 can protect the storage tank 4, effectively preventing the storage tank 4 from tilting. Finally, put the positioning plate 9 on the upper end of the storage tank 4 and position the positioning plate 9, which can protect the upper part of the storage tank 4, and can provide multiple protections for the sodium silicate storage tank 4 to prevent it from falling. At the same time, when the sodium silicate storage tank 4 falls, it can protect the outside of the sodium silicate storage tank 4.
[0024] As Figure 4 shown, first clamping members 10 are symmetrically arranged on the sides of the first positioning seat 2 and the positioning plate 9, and a second clamping member 11 matching the first clamping member 10 is arranged on the side of the second positioning seat 3.
[0025] Move the first positioning seat 2 and the second positioning seat 3 to engage the first clamping member 10 on one side of the first positioning seat 2 with the second clamping member 11 on one side of the second positioning seat 3, which can realize the stable installation of the first positioning seat 2 and the second positioning seat 3.
[0026] As Figure 3 and Figure 5As shown, threaded holes matching the first PVC rod 5 are provided at the four corners of the first positioning seat 2 and the second positioning seat 3. The first PVC rod 5 passes through the first positioning seat 2 and the second positioning seat 3 in a threaded manner. A limiting sliding groove matching the first PVC rod 5 is provided at the bottom of the second PVC rod 6. The protective plate 7 is connected to the second PVC rod 6. Threaded holes are symmetrically provided on the side surface of the protective plate 7. A positioning screw 12 is arranged inside the threaded hole. The positioning screw 12 passes through the second PVC rod 6 and contacts the first PVC rod 5.
[0027] The first PVC rod 5 is positioned and installed through the threaded holes inside the first positioning seat 2 and the second positioning seat 3. Then, the limiting sliding groove at the bottom of the second PVC rod 6 is adapted to the first PVC rod 5, so that the height of the second PVC rod 6 can be adjusted. When the second PVC rod 6 moves to a suitable position, the positioning screw 12 is installed under the action of the threaded hole, so that the positioning screw 12 passes through the second PVC rod 6 and contacts the first PVC rod 5, which is convenient for the user to adjust the height of the second PVC rod 6 and the protective plate 7, and enables the sodium silicate storage tank 4 to effectively prevent falling.
[0028] As Figure 1 and Figure 5 shown, a rectangular groove is provided on one side of the protective plate 7. First cross bars 13 are symmetrically arranged inside the rectangular groove. A guiding groove is provided inside the first cross bar 13. A second cross bar 14 connected to the buffer plate 8 is slidably installed inside the guiding groove. A return spring is arranged inside the guiding groove.
[0029] The first cross bar 13 is installed through the rectangular groove, and the return spring is installed under the action of the guiding groove so that the return spring contacts the second cross bar 14, which can provide a buffering force when the protective plate 7 is collided, and can effectively protect the outside of the sodium silicate storage tank 4.
[0030] As Figure 2 and Figure 3 shown, through holes are provided at the four corners inside the positioning plate 9. Positioning insertion rods 15 connected to the top of the second PVC rod 6 penetrate through the inside of the through holes. A threaded cap contacting the positioning plate 9 is arranged at one end of the positioning insertion rod 15.
[0031] The positioning insertion rod 15 is installed through the through holes inside the positioning plate 9. The positioning insertion rod 15 is connected to the top of the second PVC rod 6. Then, the positioning insertion rod 15 is threadedly installed with the threaded cap, so that the positioning of the positioning plate 9 can be realized, and the upper side of the side surface of the sodium silicate storage tank 4 can be protected.
[0032] The above embodiments only represent one or several implementation manners of the present utility model. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several variations and improvements can still be made, and these all belong to the protection scope of the present utility model. Therefore, the protection scope of the present utility model shall be subject to the appended claims.
Claims
1. A drop-proof sodium silicate storage device, characterized in that , comprising a load-bearing seat (1), a first positioning seat (2), a second positioning seat (3), a storage tank (4), a first PVC rod (5), a second PVC rod (6), a protective plate (7), a buffer plate (8) and a positioning plate (9), wherein the first positioning seat (2) is arranged on the top of the load-bearing seat (1), the second positioning seat (3) is arranged on one side of the first positioning seat (2), a placement groove is provided on the top of the first positioning seat (2) and the second positioning seat (3), the storage tank (4) is arranged inside the placement groove, the first PVC rod (5) is arranged above the first positioning seat (2) and the second positioning seat (3), the second PVC rod (6) is arranged above the first PVC rod (5), the protective plate (7) is arranged on one side of the second PVC rod (6), the buffer plate (8) is arranged on one side of the protective plate (7), and the positioning plate (9) is arranged above the protective plate (7).
2. The anti-falling sodium carbonate storage device according to claim 1, characterized in that: The first positioning seat (2) and the positioning plate (9) are both symmetrically provided with first clamping parts (10) on their side surfaces, and the second positioning seat (3) is provided with a second clamping part (11) matching the first clamping part (10) on its side surface.
3. The anti-falling sodium carbonate storage device according to claim 1, characterized in that: The first positioning seat (2) and the second positioning seat (3) are provided with thread holes matching the first PVC rod (5) at their four corners, the first PVC rod (5) is threadedly passed through the first positioning seat (2) and the second positioning seat (3), and the bottom of the second PVC rod (6) is provided with a limiting sliding groove matching the first PVC rod (5).
4. The anti-falling sodium carbonate storage device according to claim 3 is characterized in that: The protective plate (7) is connected to the second PVC rod (6), threaded holes are symmetrically provided on the side of the protective plate (7), and a positioning screw (12) is arranged inside the threaded hole. The positioning screw (12) passes through the second PVC rod (6) and contacts the first PVC rod (5).
5. The anti-falling sodium carbonate storage device according to claim 1, characterized in that: A rectangular groove is provided on one side of the protective plate (7), a first cross bar (13) is symmetrically arranged inside the rectangular groove, a guide groove is provided inside the first cross bar (13), a second cross bar (14) connected to the buffer plate (8) is slidably installed inside the guide groove, and a return spring is arranged inside the guide groove.
6. The anti-falling sodium carbonate storage device according to claim 1, characterized in that: Through holes are provided at the four corners of the positioning plate (9), and a positioning rod (15) connected to the top of the second PVC rod (6) is provided through the through hole, and a threaded cap in contact with the positioning plate (9) is provided at one end of the positioning rod (15).
Citation Information
Patent Citations
Drop-proof sodium silicate storage device
CN218807589U