Stone protective agent soaking device

By designing a support frame, placement tank, and sponge soaking device, and utilizing lifting and wetting mechanisms, the problem of uneven stone soaking was solved, achieving uniform soaking of the stone, reducing wear, and improving work efficiency.

CN223602743UActive Publication Date: 2025-11-28WUSHANG LIANGPIN ENVIRONMENTAL SERVICE (SHANGHAI) CO LTD
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Patent Information

Application Number
CN202422538993.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-11-28
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

In existing stone protective agent soaking devices, the stone is directly stacked on the support frame, which makes it difficult for the soaking liquid to be evenly distributed. Furthermore, the contact area between the stone and the support frame hinders penetration, resulting in uneven soaking.

Method used

An immersion device was designed, which includes a support frame, a placement tank, a sponge, and a wetting mechanism. The support frame is driven to rise and fall by a lifting mechanism, and the wetting mechanism injects immersion liquid into the sponge. The sponge wets the contact area between the stone and the support frame to ensure uniform immersion.

Benefits of technology

It achieves uniform soaking of the stone, reduces wear between the stone and the support frame, improves soaking efficiency and uniformity, and reduces labor costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a stone protective agent soaking device, and belongs to the technical field of stone protection, the soaking device comprises a soaking pool, a support frame longitudinally moving in the soaking pool, and a lifting mechanism arranged on the outer side of the soaking pool and used for driving the support frame to move; the soaking device further comprises placing grooves which are symmetrically formed in the supporting frame and used for placing stones, sponges fixedly arranged in the placing grooves and a wetting mechanism which is arranged in the soaking pool, connected with the lifting mechanism and used for injecting the protective agent in the soaking pool into the sponges. According to the stone protective agent soaking device, by arranging the containing groove and the sponge, stone can be independently placed, the supporting frame is driven by the lifting mechanism to ascend and descend, meanwhile, the wetting mechanism can suck a protective agent in the soaking pool and inject the protective agent into the sponge, and the position, making contact with the supporting frame, of the stone is wetted through the sponge; therefore, the soaking uniformity is improved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of stone protection, and particularly relates to a stone protection agent soaking device. BACKGROUND

[0002] In the field of stone processing and application, stone protection treatment is a crucial link. The use of stone protection agents can effectively prevent stone from being eroded by water, oil, stains and other pollutants, prolong the service life of the stone, and maintain the appearance and performance of the stone.

[0003] A stone protection agent soaking device is disclosed in Chinese Utility Model Patent No. CN212493692U. The device has a height-adjustable support, which can be used for stone of various thicknesses. However, when using the soaking device, the stone is directly stacked on the support frame. The gaps between the stones hinder the penetration of the soaking liquid, making it difficult for the soaking liquid to be evenly distributed, resulting in uneven soaking of some stones. In addition, when the stone is directly placed on the support frame, the contact part of the stone with the support frame also hinders the penetration of the soaking liquid, causing uneven soaking.

[0004] Therefore, the application provides a stone protection agent soaking device to solve the above problems. CONTENT OF THE UTILITY MODEL

[0005] The application provides a stone protection agent soaking device, which aims to solve the problem that the existing soaking device is directly stacked on the support frame, which hinders the penetration of the soaking liquid and causes uneven soaking.

[0006] To achieve the above-mentioned purpose, the application provides the following technical solution: a stone protection agent soaking device, comprising a soaking pool, a support frame moving longitudinally in the soaking pool, and a lifting mechanism arranged outside the soaking pool for driving the support frame to move;

[0007] The soaking device further comprises a placing groove symmetrically arranged on the support frame for placing stone, a sponge fixedly arranged in the placing groove, and a wetting mechanism arranged in the soaking pool and connected with the lifting mechanism for injecting the protection agent in the soaking pool into the sponge;

[0008] The wetting mechanism comprises a syringe fixedly arranged in the soaking pool and connected with the lifting mechanism, a fixed tube fixedly arranged in the support frame at a position corresponding to the lower side of the placing groove, and a liquid outlet hole opened on the side of the fixed tube close to the placing groove for injecting the sponge; the design of the placing groove and the sponge allows the stone to be placed individually, avoiding the uneven soaking problem caused by the traditional stacking soaking method, and the sponge can also reduce the abrasion of the stone directly contacting with the support frame; in addition, the connection design of the wetting mechanism and the lifting mechanism allows the wetting mechanism to suck and inject the protective agent in the soaking pool into the sponge while the support frame is lifted by the lifting mechanism, and the sponge can wet the position of the stone contacting with the support frame, so as to further improve the uniformity of soaking.

[0009] Preferably, in order to facilitate the automatic lifting of the support frame and realize the soaking and taking out of the stone, the lifting mechanism comprises a connecting frame fixedly arranged on the side of the support frame away from the placing groove, a lifting frame fixedly arranged on the side of the connecting frame away from the support frame and located outside the soaking pool, a sliding block slidingly connected outside the soaking pool and fixedly connected with the lifting frame, and an electric cylinder fixedly arranged outside the soaking pool for driving the lifting frame to lift; the automatic lifting of the support frame can be realized by the driving mode of the electric cylinder, so as to improve the work efficiency, reduce the labor cost, and also reduce the operation difficulty.

[0010] Preferably, in order to facilitate the installation and connection of the sliding block and ensure the stability of the lifting of the support frame, a guide groove is opened at the position of the sliding block of the soaking pool, and the sliding block is slidingly connected in the guide groove; the design of the guide groove ensures the linear motion of the support frame during lifting, further improves the stability, and makes the installation and connection of the sliding block more convenient and easy to maintain.

[0011] Preferably, in order to facilitate the sucking and injecting of the protective agent in the soaking pool into the sponge, the syringe comprises a storage cylinder fixedly arranged in the soaking pool and located outside the connecting frame, a piston longitudinally moving in the storage cylinder, a push rod longitudinally penetrating the top end of the storage cylinder and fixedly connected with the piston and the connecting frame at both ends, a liquid outlet pipe fixedly arranged at the bottom end of the storage cylinder and communicated with the fixed tube, and a liquid inlet pipe fixedly arranged on one side of the storage cylinder, and the push rod is slidingly connected on the storage cylinder; the longitudinal movement of the piston in the storage cylinder can effectively suck the protective agent in the soaking pool and inject it into the sponge through the liquid outlet pipe, and this design ensures the uniform distribution and full use of the protective agent, and improves the soaking effect.

[0012] Preferably, in order to avoid interfering with the lifting movement of the support frame, the liquid inlet pipe is a hose; the hose design of the liquid inlet pipe enables the connection between the liquid inlet pipe and the fixed pipe to lift along with the lifting of the support frame, thereby ensuring smooth use of the device.

[0013] Preferably, in order to facilitate the placement of multiple stones for soaking at one time, the placement grooves and sponges are both provided in multiple; by providing multiple placement grooves and sponges, the device can place multiple stones for soaking at one time, which not only improves work efficiency but also reduces the trouble of multiple operations.

[0014] The stone protective agent soaking device enables the stone to be placed individually by providing the placement grooves and sponges, thereby avoiding the uneven soaking problem that may be caused by the traditional stacking soaking method, and the sponges can also reduce the abrasion caused by the direct contact between the stone and the support frame;

[0015] The stone protective agent soaking device enables the wetting mechanism to suck and inject the protective agent in the soaking pool into the sponge and wet the position of the stone in contact with the support frame through the sponge by driving the support frame to lift through the lifting mechanism, thereby further improving the uniformity of soaking. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a structural schematic diagram of a stone protective agent soaking device;

[0017] Figure 2 It is a sectional view of a soaking pool in a stone protective agent soaking device;

[0018] Figure 3 It is a sectional view of a support frame in a stone protective agent soaking device;

[0019] Figure 4 It is a sectional view of a syringe in a stone protective agent soaking device.

[0020] In the figure:

[0021] 1, soaking pool; 11, guide groove;

[0022] 2, support frame;

[0023] 3, lifting mechanism; 31, connecting frame; 32, lifting frame; 33, sliding block; 34, electric cylinder;

[0024] 4, placement groove;

[0025] 5, sponge;

[0026] 6. Wetting mechanism; 61. Syringe; 611. Storage cylinder; 612. Piston; 613. Push rod; 614. Discharge tube; 615. Inlet tube; 62. Fixing tube; 63. Discharge hole. Detailed Implementation

[0027] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0028] This embodiment provides a stone protective agent soaking device, such as... Figures 1-4 As shown, the soaking device includes a soaking pool 1, a support frame 2 that moves longitudinally within the soaking pool 1, and a lifting mechanism 3 located outside the soaking pool 1 for driving the support frame 2 to move. The soaking device also includes placement slots 4 symmetrically arranged on the support frame 2 for placing stone, a sponge 5 fixedly arranged in the placement slots 4, and a wetting mechanism 6 arranged in the soaking pool 1 and connected to the lifting mechanism 3 for injecting the protective agent in the soaking pool 1 into the sponge 5. The wetting mechanism 6 includes a syringe 61 fixedly arranged in the soaking pool 1 and connected to the lifting mechanism 3, a fixing tube 62 fixedly arranged in the support frame 2 at a position corresponding to the lower position of the placement slot 4, and an outlet hole 63 opened on the side of the fixing tube 62 near the placement slot 4 for injecting the sponge 5.

[0029] When in use, a proper amount of protective agent is added into the soaking pool 1, and then the stone to be soaked is placed in the placing grooves 4 symmetrically arranged on the support frame 2. Since the sponge 5 is arranged in the placing groove 4, the abrasion of the stone directly contacting with the support frame 2 can be reduced. Then, the lifting mechanism 3 is started to drive the support frame 2 to descend. At this time, the support frame 2 will synchronously drive the stone placed in the placing groove 4 to descend. When the stone is completely immersed in the protective agent in the soaking pool 1, the driving of the lifting mechanism 3 is paused, so that the stone can be soaked in the protective agent in the soaking pool 1. After the soaking is completed, the lifting mechanism 3 is started again to drive the support frame 2 to ascend. At this time, the support frame 2 will synchronously drive the soaked stone to ascend, so as to be taken out by the staff. However, since the syringe 61 is connected with the lifting mechanism 3, when the lifting mechanism 3 drives the support frame 2 to ascend, the protective agent in the soaking pool 1 will be sucked into the syringe 61. When the lifting mechanism 3 drives the support frame 2 to descend, the syringe 61 will inject the sucked protective agent into the fixed pipe 62. Finally, the protective agent is injected into the corresponding sponge 5 through the liquid outlet hole 63 arranged on the fixed pipe 62. At this time, the sponge 5 will absorb the injected protective agent and wet the part of the stone contacting with the placing groove 4, so as to improve the uniformity of the soaking. When the stone is soaked in the soaking pool 1, the driving of the lifting mechanism 3 to the support frame 2 is paused, and the syringe 61 is also paused. At this time, the sponge 5 itself can also absorb the protective agent in the soaking pool 1 and wet the part of the stone contacting with the placing groove 4 by the suction force of the sponge 5 itself. Before the initial use, the lifting mechanism 3 can be started to drive the support frame 2 to ascend, so that the syringe 61 can suck the protective agent in advance.

[0030] Specifically, the lifting mechanism 3 comprises the connecting frame 31 symmetrically and fixedly arranged on the side of the support frame 2 away from the placing groove 4, the lifting frame 32 fixedly arranged on the side of the connecting frame 31 away from the support frame 2 and located outside the soaking pool 1, the sliding block 33 slidingly connected outside the soaking pool 1 and fixedly connected with the lifting frame 32, and the electric cylinder 34 fixedly arranged outside the soaking pool 1 and used for driving the lifting frame 32 to ascend and descend. The guiding groove 11 is arranged at the position corresponding to the sliding block 33 of the soaking pool 1, and the sliding block 33 is slidingly connected in the guiding groove 11.

[0031] When the support frame 2 needs to be driven to ascend and descend, the corresponding electric cylinder 34 can be started. At this time, the electric cylinder 34 will drive the lifting frame 32 connected therewith to ascend and descend. Since the sliding block 33 is connected to the lifting frame 32 and slidingly arranged in the guiding groove 11, when the electric cylinder 34 drives the lifting frame 32 to ascend and descend, the guiding effect of the sliding block 33 will ensure that the lifting frame 32 can stably drive the connecting frame 31 to synchronously ascend and descend, so that the connecting frame 31 can drive the support frame 2 connected therewith to ascend and descend, so as to automatically lower the stone placed on the support frame 2 to soak in the soaking pool 1 and automatically lift the soaked stone, so as to be taken out.

[0032] Further, the injector 61 comprises a storage cylinder 611 fixedly arranged in the soaking pool 1 and located outside the connecting frame 31, a piston 612 longitudinally moving in the storage cylinder 611, a push rod 613 longitudinally penetrating the top end of the storage cylinder 611 and fixedly connected with the piston 612 and the connecting frame 31 at both ends respectively, a liquid outlet pipe 614 fixedly arranged at the bottom end of the storage cylinder 611 and communicated with the fixed pipe 62, and a liquid inlet pipe 615 fixedly arranged at one side of the storage cylinder 611, and the push rod 613 is slidingly connected with the storage cylinder 611.

[0033] It should be noted that the liquid outlet pipe 614 and the liquid inlet pipe 615 are both provided with a one-way valve to prevent the backflow of the protective agent.

[0034] When the electric cylinder 34 drives the lifting frame 32 to rise, the connecting frame 31 is driven to rise by the lifting frame 32, and since the connecting frame 31 is connected with the push rod 613 and the other end of the push rod 613 is connected with the piston 612, the push rod 613 can drive the piston 612 to rise synchronously with the rising of the connecting frame 31, and at this time, the protective agent in the soaking pool 1 is sucked and immersed into the storage cylinder 611 from the liquid inlet pipe 615 as the piston 612 rises, and when the electric cylinder 34 drives the lifting frame 32 to descend, the connecting frame 31 is driven to descend by the lifting frame 32, and the push rod 613 is driven to descend synchronously with the piston 612, so that the piston 612 injects the protective agent sucked by the storage cylinder 611 into the fixed pipe 62 from the liquid outlet pipe 614, and finally the protective agent is injected into the sponge 5 through the liquid outlet hole 63 arranged on the fixed pipe 62.

[0035] Among them, in order to avoid interfering with the lifting movement of the support frame 2, the liquid inlet pipe 615 is a hose; the hose design of the liquid inlet pipe 615 makes the connection between the liquid inlet pipe 615 and the fixed pipe 62 be able to rise and fall with the lifting of the support frame 2, so as to ensure the smooth use of the device.

[0036] In addition, in order to facilitate the placement of multiple stone materials for soaking at one time, the placing groove 4 and the sponge 5 are both provided with multiple; by providing multiple placing grooves 4 and sponges 5, the device can place multiple stone materials for soaking at one time, which not only improves the work efficiency, but also reduces the trouble of multiple operations.

[0037] The above is only the preferred specific implementation of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical solution and concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A stone protector soaking device, comprising a soaking pool (1), a support frame (2) moving longitudinally in the soaking pool (1), and a lifting mechanism (3) arranged outside the soaking pool (1) for driving the support frame (2) to move; characterized in that The soaking device further comprises a placing groove (4) symmetrically arranged on the support frame (2) for placing stone, a sponge (5) fixedly arranged in the placing groove (4), and a wetting mechanism (6) arranged in the soaking pool (1) and connected with the lifting mechanism (3) for injecting the protector in the soaking pool (1) into the sponge (5); The wetting mechanism (6) comprises a syringe (61) fixedly arranged in the soaking pool (1) and connected with the lifting mechanism (3), a fixed tube (62) fixedly arranged in the support frame (2) corresponding to the position below the placing groove (4), and a liquid outlet hole (63) arranged on the side of the fixed tube (62) close to the placing groove (4) for injecting the sponge (5).

2. The stone protector soaking device of claim 1, wherein: The lifting mechanism (3) comprises a connecting frame (31) symmetrically fixedly arranged on the side of the support frame (2) away from the placing groove (4), a lifting frame (32) fixedly arranged on the side of the connecting frame (31) away from the support frame (2) and located outside the soaking pool (1), a sliding block (33) slidingly connected outside the soaking pool (1) and fixedly connected with the lifting frame (32), and an electric cylinder (34) fixedly arranged outside the soaking pool (1) for driving the lifting frame (32) to lift.

3. The stone protector soaking device of claim 2, wherein: The soaking pool (1) is provided with a guide groove (11) corresponding to the position of the sliding block (33), and the sliding block (33) is slidingly connected in the guide groove (11).

4. The stone protector soaking device of claim 2, wherein: The syringe (61) comprises a storage cylinder (611) fixedly arranged in the soaking pool (1) and located outside the connecting frame (31), a piston (612) moving longitudinally in the storage cylinder (611), a push rod (613) longitudinally penetrating the top end of the storage cylinder (611) and fixedly connected with the piston (612) and the connecting frame (31) at both ends, a liquid outlet tube (614) fixedly arranged at the bottom end of the storage cylinder (611) and communicated with the fixed tube (62), and a liquid inlet tube (615) fixedly arranged on one side of the storage cylinder (611), wherein the push rod (613) is slidingly connected on the storage cylinder (611).

5. The stone protector soaking device of claim 4, wherein: The liquid inlet tube (615) is a hose.

6. The stone protector soaking device of claim 1, wherein: The placing groove (4) and the sponge (5) are both provided with a plurality of.

Citation Information

Patent Citations

  • Stone protective agent soaking device

    CN212493692U