Efficient sand blasting device for sand blasting of floor tiles

By designing an efficient sandblasting device for floor tiles, the coordination of fixing components and cleaning components is used to solve the problem that existing devices cannot clean the wire mesh residue through vibration, achieving the convenience of automatic cleaning and sand reuse.

CN222903672UActive Publication Date: 2025-05-27CHONGQING YONGLIANG MASCH MFG CO LTD
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Patent Information

Application Number
CN202421099443.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-20
Publication Date
2025-05-27
Estimated Expiration
2034-05-20

AI Technical Summary

Technical Problem

The existing floor tiles sandblasting device cannot clean the residue on the wire mesh by vibration when extracting the placement rack, resulting in increased equipment costs and inconvenient cleaning.

Method used

An efficient sandblasting device including a base, a cover, a connecting pipe, a sandblasting pipe, a fixing assembly and a cleaning assembly is designed. The fixing assembly uses the cooperation of the spring rod and the auxiliary rod to generate vibration when the placement frame is extracted to clean the residue on the wire mesh; the cleaning assembly uses the collection plate and the cleaning block driven by the motor to achieve the collection and cleaning of sand.

Benefits of technology

It realizes automatic cleaning of residue on the wire mesh when extracting the placement rack, reducing equipment costs, and through the installation of cleaning components, it facilitates the collection and reuse of sand, and improves the convenience of cleaning.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an efficient sand blasting device for floor tile sand blasting, and relates to the technical field of floor tile sand blasting devices. A cover body is welded to the top end face of the base, the cover body is of a rectangular cover-shaped structure, and a connecting pipe is welded to the cover body. Through the arrangement of the fixing assembly, on one hand, due to the fact that an iron sand net is welded to the containing frame, after sand blasting, sand grains can conveniently fall down, and follow-up sand grain cleaning is also facilitated; and on the other hand, through cooperation of a protrusion and an auxiliary rod, when the containing frame is pulled out for material taking, continuous vibration can be generated, residual sand grains on the containing frame are automatically removed, workers do not need to independently clean the containing frame, convenience is high, and the problem that although an existing device can achieve sand grain cleaning on an iron wire net through a rotating roller and brush bristles, the working efficiency is high is solved. The problems that the equipment cost is increased, and the cleaning of residues on the iron gauze cannot be completed in a vibration mode when the placing frame is pulled out through the structural improvement are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of floor tile sandblasting devices, and particularly relates to an efficient sandblasting device for floor tile sandblasting. Background Art

[0002] A sandblasting machine uses compressed air as power to form a high-speed jet beam to spray abrasive materials onto the surface of the workpiece to be processed at high speed, so that the mechanical properties of the outer surface of the workpiece change. A sandblasting device is required for sandblasting during floor tile processing.

[0003] Although the existing device can clean the sand grains on the wire mesh through a rotating roller and bristles, this leads to an increase in equipment cost, and it cannot clean the residue on the wire mesh in the form of vibration when the placement rack is pulled out through structural improvement. Summary of the Utility Model

[0004] In view of this, the utility model provides an efficient sandblasting device for floor tile sandblasting, which solves the problem that although the existing device can clean the sand grains on the wire mesh through a rotating roller and bristles, this leads to an increase in equipment cost, and it cannot clean the residue on the wire mesh in the form of vibration when the placement rack is pulled out through structural improvement.

[0005] The purpose and effect of the efficient sandblasting device for floor tile sandblasting of the utility model are achieved by the following specific technical means:

[0006] The utility model provides an efficient sandblasting device for floor tile sandblasting, which specifically includes: a base; a cover body is welded on the top surface of the base, the cover body is a rectangular cover structure, a connecting pipe is welded on the cover body, and the connecting pipe is connected to a sandblasting device; one end of the lower part of the connecting pipe is welded with a sandblasting pipe, and the sandblasting pipe is communicated with the connecting pipe.

[0007] Further, a fixing component is welded on the base, and the fixing component is composed of a spring rod, a placement rack, a welding block, an auxiliary rod, a handle, a fixing arm, a fixing screw, a placement block and a protrusion. There are four spring rods in total, and the four spring rods are all welded on the top surface of the base. One end of the upper part of the two spring rods on the left is welded to a placement block, and one end of the upper part of the two spring rods on the right is welded to another placement block. Both placement blocks are rectangular block structures.

[0008] Further, a placement rack is placed above the two placement blocks. An iron sand mesh is welded on the placement rack. A handle is welded on the front end surface of the placement rack. Four fixing arms are welded on the placement rack. All four fixing arms are L-shaped structures, and a fixing screw is threadedly connected to each fixing arm.

[0009] Further, the top surface of the placement rack is welded with protrusions in a rectangular array, and the protrusions are semi-cylindrical rod-shaped structures; a welding block is welded to both the left end face and the right end face of the inner wall of the cover body. Both welding blocks are rectangular block-shaped structures. The bottom end face of each welding block is welded with auxiliary rods in a linear array. The auxiliary rods are cylindrical rod-shaped structures. One end of the lower part of the auxiliary rod is polished. After polishing, one end of the lower part of the auxiliary rod is an arc-shaped structure. One end of the lower part of the auxiliary rod contacts the top surface of the placement rack. When the placement rack is pulled forward, the auxiliary rod elastically contacts the protrusion.

[0010] Further, a hinge is fixed to the left end face of the cover body, a baffle is fixed to the hinge, and a curtain is fixed to the front end face of the cover body. The bottom of the curtain contacts the top of the placement rack.

[0011] Further, a cleaning assembly is welded to the spring rod. The cleaning assembly is composed of a collection plate, a motor, a threaded rod, and a cleaning block. The collection plate is welded to the four spring rods. The collection plate is inclined. The inclination angle of the collection plate is 15 degrees.

[0012] Further, a motor is fixed to the right end face of the cover body. A threaded rod is fixed to the rotating shaft of the motor. A cleaning block is threadedly connected to the threaded rod. The bottom end face of the cleaning block fits the top end face of the collection plate. The cleaning block is aligned with the baffle.

[0013] Further, four support blocks are welded to the bottom end face of the base. All four support blocks contact the ground. All four support blocks are rectangular block-shaped structures. The four support blocks together form the support structure of the base.

[0014] Compared with the prior art, the utility model has the following beneficial effects:

[0015] Through the setting of the fixing component in this application, on the one hand, since an iron sand mesh is welded on the placement rack, after sandblasting, it is convenient for the sand grains to fall downward, which facilitates the subsequent cleaning of the sand grains; on the other hand, through the cooperation of the protrusions and the auxiliary rods, when the placement rack is pulled out for material taking, continuous vibration can be generated, and the residual sand grains on the placement rack are automatically cleaned, without the need for staff to clean the placement rack separately, and the convenience is high.

[0016] Through the setting of the cleaning component in this application, on the one hand, the collection of sand grains can be realized through the collection plate; on the other hand, driven by the motor, the cleaning of the collected sand grains can be completed, which facilitates the subsequent reuse of the sand grains. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings of the embodiments will be briefly introduced below.

[0018] The accompanying drawings in the following description only relate to some embodiments of the present utility model and do not limit the present utility model.

[0019] In the accompanying drawings:

[0020] Figure 1 is an axonometric structural schematic diagram of the high-efficiency sandblasting device for floor tiles of the present utility model.

[0021] Figure 2 is a front view structural schematic diagram of the high-efficiency sandblasting device for floor tiles of the present utility model.

[0022] Figure 3 is a front view structural schematic diagram of the high-efficiency sandblasting device for floor tiles of the present utility model after partial resection.

[0023] Figure 4 is the present utility model Figure 3 's axonometric structural schematic diagram.

[0024] Figure 5 is the present utility model Figure 3 's right view structural schematic diagram.

[0025] Figure 6 is the present utility model Figure 5 's enlarged structural schematic diagram at position A.

[0026] List of reference numerals

[0027] 1, base; 101, support block;

[0028] 2, cover body; 201, baffle; 202, curtain;

[0029] 3, connecting pipe;

[0030] 4, sandblasting pipe;

[0031] 5, fixing component; 501, spring rod; 502, placing rack; 503, welding block; 504, auxiliary rod; 505, handle; 506, fixing arm; 507, fixing screw; 508, placing block; 509, protrusion;

[0032] 6, cleaning component; 601, collecting plate; 602, motor; 603, threaded rod; 604, cleaning block. Detailed implementation manners

[0033] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions of the embodiments of the present invention in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present invention.

[0034] Embodiment 1:

[0035] Please refer to Figures 1 to 6 :

[0036] The present utility model provides an efficient sandblasting device for floor tiles, including: a base 1; a cover body 2 is welded to the top surface of the base 1, the cover body 2 is a rectangular cover-shaped structure, a connecting pipe 3 is welded to the cover body 2, and the connecting pipe 3 is connected to a sandblasting device; one end of the lower part of the connecting pipe 3 is welded with a sandblasting pipe 4, and the sandblasting pipe 4 is communicated with the connecting pipe 3.

[0037] Among them, a fixing component 5 is welded to the base 1. The fixing component 5 is composed of a spring rod 501, a placement rack 502, a welding block 503, an auxiliary rod 504, a handle 505, a fixing arm 506, a fixing screw 507, a placement block 508, and a protrusion 509. There are four spring rods 501 in total. The four spring rods 501 are all welded to the top surface of the base 1. One end of the upper part of the two spring rods 501 on the left is welded to a placement block 508, and one end of the upper part of the two spring rods 501 on the right is welded to another placement block 508. The two placement blocks 508 are both rectangular block structures.

[0038] Among them, a placement rack 502 is placed above the two placement blocks 508. An iron sand mesh is welded to the placement rack 502. A handle 505 is welded to the front end surface of the placement rack 502. Four fixing arms 506 are welded to the placement rack 502. The four fixing arms 506 are all L-shaped structures, and a fixing screw 507 is threadedly connected to each fixing arm 506.

[0039] Among them, protrusions 509 are welded to the top surface of the placement rack 502 in a rectangular array. The protrusions 509 are semi-cylindrical rod-shaped structures; a welding block 503 is welded to the left end surface and the right end surface of the inner wall of the cover body 2. The two welding blocks 503 are both rectangular block structures. An auxiliary rod 504 is welded to the bottom end surface of each welding block 503 in a linear array. The auxiliary rod 504 is a cylindrical rod-shaped structure. One end of the lower part of the auxiliary rod 504 is polished. After polishing, one end of the lower part of the auxiliary rod 504 is an arc structure. One end of the lower part of the auxiliary rod 504 contacts the top surface of the placement rack 502. When the placement rack 502 is pulled forward, the auxiliary rod 504 elastically contacts the protrusion 509.

[0040] Wherein, a hinge is fixed to the left end face of the cover body 2, a baffle 201 is fixed to the hinge, a curtain 202 is fixed to the front end face of the cover body 2, and the bottom of the curtain 202 contacts the top of the placement rack 502.

[0041] Wherein, a cleaning assembly 6 is welded to the spring rod 501. The cleaning assembly 6 is composed of a collecting plate 601, a motor 602, a threaded rod 603, and a cleaning block 604. The collecting plate 601 is welded to the four spring rods 501. The collecting plate 601 is arranged in an inclined shape, and the inclination angle of the collecting plate 601 is 15 degrees.

[0042] Wherein, a motor 602 is fixed to the right end face of the cover body 2. A threaded rod 603 is fixed to the rotating shaft of the motor 602. A cleaning block 604 is threadedly connected to the threaded rod 603. The bottom end face of the cleaning block 604 is attached to the top end face of the collecting plate 601, and the cleaning block 604 is aligned with the position of the baffle 201.

[0043] Embodiment Two:

[0044] On the basis of Embodiment One, four support blocks 101 are welded to the bottom end face of the base 1. The four support blocks 101 are all in contact with the ground. The four support blocks 101 are all in the shape of rectangular blocks. The four support blocks 101 together form the support structure of the base 1. During use, the base 1 can be protected through the supporting effect of the four support blocks 101, avoiding serious corrosion caused by the contact between the base 1 and the ground. The specific usage method and function of this embodiment: When in use, hold the handle 505 and pull out the placement rack 502 from the cover body 2. Place the floor tile on the placement rack 502. After placing it, turn the fixing screw 507 to fix the floor tile. After the floor tile is fixed, push the placement rack 502 back into the cover body 2, and then start the sandblasting equipment for sandblasting. After the sandblasting is completed, hold the handle 505 and pull it outwards. When pulling the handle 505, the continuous vibration of the placement rack 502 can be realized under the action of the auxiliary rod 504 and the protrusion 509. During vibration, the sand grains on the placement rack 502 can be shaken off. The shaken-off sand grains will fall onto the collecting plate 601. Because the collecting plate 601 is in an inclined shape, the shaken-off sand grains will converge forward. When cleaning the sand grains, control the motor 602 to rotate. When the motor 602 rotates, it can drive the threaded rod 603 to rotate. Driven by the threaded rod 603, the cleaning block 604 moves to the left, and finally the cleaning block 604 can push the sand grains to the baffle 201 for...

Claims

1. An efficient sandblasting device for floor tiles, characterized in that: include: Base; A cover body is welded on the top surface of the base, and the cover body is a rectangular cover-shaped structure. A connecting pipe is welded on the cover body, and the connecting pipe is connected to the sandblasting equipment; a sandblasting pipe is welded at one end below the connecting pipe, and the sandblasting pipe is connected to the connecting pipe; a fixing assembly is welded on the base, and the fixing assembly consists of a spring rod, a placement frame, a welding block, an auxiliary rod, a handle, a fixed arm, a fixed screw, a placement block and a protrusion. There are four spring rods in total, and the four spring rods are welded to the top surface of the base, the upper ends of the two spring rods on the left are welded to a placement block, and the upper ends of the two spring rods on the right are welded to another placement block, and the two placement blocks are both rectangular block structures.

2. The high-efficiency sandblasting device for floor tile sandblasting according to claim 1, characterized in that: A placement rack is placed above the two placement blocks, an iron sand mesh is welded on the placement rack, a handle is welded on the front end of the placement rack, and four fixed arms are welded on the placement rack. The four fixed arms are all L-shaped structures, and each fixed arm is threadedly connected with a fixing screw.

3. The high-efficiency sandblasting device for floor tile sandblasting according to claim 1, characterized in that: The top surface of the placement rack is welded with a protrusion in a rectangular array, and the protrusion is a semi-cylindrical rod-shaped structure; a welding block is welded on the left end surface of the inner wall of the cover body and the right end surface of the inner wall, and the two welding blocks are both rectangular block structures, and the bottom end surface of each welding block is welded with an auxiliary rod in a linear array, and the auxiliary rod is a cylindrical rod-shaped structure. The lower end of the auxiliary rod is polished, and after polishing, the lower end of the auxiliary rod is an arc structure. The lower end of the auxiliary rod is in contact with the top surface of the placement rack, and when the placement rack is pulled forward, the auxiliary rod is in elastic contact with the protrusion.

4. The high-efficiency sandblasting device for floor tile sandblasting according to claim 1, characterized in that: A hinge is fixed on the left end surface of the cover body, a baffle is fixed on the hinge, a baffle curtain is fixed on the front end surface of the cover body, and the bottom of the baffle curtain contacts the top of the placement frame.

5. The high-efficiency sandblasting device for floor tile sandblasting according to claim 1, characterized in that: A cleaning assembly is welded on the spring rod, and the cleaning assembly consists of a collecting plate, a motor, a threaded rod and a cleaning block. The collecting plate is welded on the four spring rods, and the collecting plate is arranged in an inclined state, and the inclination angle of the collecting plate is 15 degrees.

6. The high-efficiency sandblasting device for floor tile sandblasting according to claim 1, characterized in that: A motor is fixed on the right end face of the cover body, a threaded rod is fixed on the rotating shaft of the motor, a cleaning block is threadedly connected on the threaded rod, the bottom end face of the cleaning block is fitted with the top end face of the collecting plate, and the cleaning block is aligned with the baffle.

7. The high-efficiency sandblasting device for floor tile sandblasting as claimed in claim 1, characterized in that: Four support blocks are welded to the bottom end surface of the base, and the four support blocks are all in contact with the ground. The four support blocks are all rectangular block structures, and the four support blocks together constitute the support structure of the base.