Stone profiling cutting device

By designing a stone contour cutting device, a rotating mechanism and a dust collection mechanism are used to capture dust, thus solving the problem of dust diffusion during stone cutting and achieving efficient environmental protection.

CN223589756UActive Publication Date: 2025-11-25SUIZHOU FULEIBA DISTRICT STONE IND CO LTD
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Patent Information

Application Number
CN202422837500.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-11-25
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

Fine dust generated during the contour cutting process of stone can easily become suspended in the air, affecting environmental quality.

Method used

A stone contour cutting device was designed, comprising a cutting mechanism, a rotating mechanism, a dustproof box, and a dust collection mechanism. The rotating mechanism drives the stone to rotate, the cutting mechanism moves up and down to cut, and the dustproof box and dust collection mechanism capture dust to prevent it from spreading and reduce the concentration of airborne dust.

Benefits of technology

It effectively prevents dust from spreading to the outside world, reduces the dust concentration in the air, and improves the environmental protection effect of the cutting process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a stone profiling cutting device and belongs to the technical field of stone cutting. The device comprises a cutting mechanism, the cutting mechanism being vertically adjustable; a rotating mechanism, the rotating mechanism being rotatable and horizontally adjustable towards the cutting mechanism; a dustproof box, the cutting mechanism and the rotating mechanism being arranged in the dustproof box; and a dust collection mechanism for dust removal, the dust collection mechanism being connected with one side of the dustproof box in a penetrating mode, so that the stone profiling cutting is realized while dust is adsorbed, and the technical effect of reducing the dust concentration in the air is achieved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of stone cutting, in particular to a stone profiling cutting device. BACKGROUND

[0002] Stone profiling cutting is a stone processing technology using a stone profiling machine, which combines automatic functions such as scanning and processing, and can realize high-precision and high-efficiency cutting and profiling processing of stone. During the profiling cutting process of stone, a large amount of fine dust is generated due to the friction and collision between the cutter and the stone.

[0003] In view of this, the application provides a stone profiling cutting device. CONTENT OF THE UTILITY MODEL

[0004] 1. TECHNICAL PROBLEM TO BE SOLVED

[0005] The application aims to provide a stone profiling cutting device, which solves the technical problem in the background art, realizes the profiling cutting of stone while adsorbing dust, and reduces the dust concentration in the air.

[0006] 2. TECHNICAL SCHEME

[0007] The application provides a stone profiling cutting device, which comprises:

[0008] A cutting mechanism, which is vertically adjustable;

[0009] A rotating mechanism, which is rotatable and horizontally adjustable towards the cutting mechanism;

[0010] A dustproof box, in which the cutting mechanism and the rotating mechanism are arranged;

[0011] A dust collection mechanism for dust removal, which is connected with one side of the dustproof box.

[0012] By adopting the above technical scheme, when the stone is cut into a columnar structure, the stone is fixed on the rotating mechanism, and the stone is rotated by the rotating mechanism, then the stone is cut from top to bottom by the vertically adjustable cutting mechanism, and the shape of the stone is cut by the horizontally adjustable rotating mechanism. The dust particles generated during cutting are prevented from spreading to the outside by the dustproof box, and then the dust in the dustproof box is sucked into the dust collection mechanism, thereby reducing the dust concentration in the air.

[0013] As an optional solution of the technical scheme of the present application, the cutting mechanism comprises a workbench, a first linear module vertically fixed on one side of the workbench, a motor and a cutting blade coaxially fixed with the output shaft of the motor.

[0014] By adopting the above technical scheme, the first linear module drives the first slider to lift, and then the first slider drives the motor and the cutting blade to lift, the motor drives the cutting blade to rotate at high speed, and in the lifting process, the stone can be cut in the up-down direction.

[0015] As an optional solution of the technical scheme of the present application, the rotating mechanism comprises a second linear module, a servo motor, a disc coaxially fixed with the output shaft of the servo motor, a plurality of support rods distributed in a ring shape on the disc and long screws threadedly connected to the support rods, the second linear module comprises a second slider, the servo motor is fixed on the second slider, the workbench is provided with a strip-shaped hole, the output shaft of the servo motor passes through the strip-shaped hole, the second linear module is fixed on the lower surface of the workbench, and the workbench is fixed with a travel switch arranged below the first slider.

[0016] By adopting the above technical scheme, the second linear module is fixed on the bottom of the workbench to reduce dust adhering to the second linear module, and the second linear module drives the second slider to horizontally slide along the strip-shaped hole, and then the transverse shape of the stone can be cut and shaped, the stone is placed on the disc, and then the long screws are rotated to abut against the lower end of the stone, so that the stone can be fixed on the disc, and the disc is rotated by the servo motor, so that the rotation of the stone is finally realized, and at the same time, the servo motor is provided with a brake to avoid unstable positioning of the output shaft of the servo motor when the disc is positioned, and at the same time, when the first slider is lowered to the travel switch and touches the travel switch, the motor is stopped at this time to avoid excessive lowering of the motor causing the cutting blade to cut the support rod.

[0017] As an optional solution of the technical scheme of the present application, the dustproof box comprises a box body and a cabinet door hinged to the open end of the box body, the cabinet door is provided with a window with a transparent plate, and a plurality of air inlet holes are formed in one side of the box body.

[0018] By adopting the above technical scheme, the open end of the box body is hinged on one side edge by a hinge, and detachable on the other side edge by a buckle, and the window and the transparent plate are used to facilitate observation of the stone processing condition in the box body, and the air inlet holes are used to supplement air flow in the box body to balance the air pressure in the box body.

[0019] As an optional solution of the technical scheme of the application, the dust suction mechanism comprises a water tank, an intercepting net plate obliquely fixed in the water tank, a flow guide cover through-connected with the tank body, a flow guide pipe through-connected with the flow guide cover and penetrating through the intercepting net plate, and a blower fixed and through-connected above the water tank.

[0020] By adopting the above technical scheme, the water tank is filled with clean water and the water level is above the upper end of the oblique intercepting net plate. The flow guide pipe is arranged at the low end of the intercepting net plate. The gas in the water tank is extracted by the blower, so that the water tank is in a negative pressure state. The flow guide pipe and the flow guide cover extract the gas in the tank body and suck the dust into the water tank. After the stone material passes through the water in the water tank, the stone material dust particles are wetted, and are intercepted in the water tank under the action of the intercepting net plate. The intercepting net plate is normally ventilated and intercepted by the action of the airflow washing along the lower surface of the intercepting net plate during the downward movement of the airflow when the lower surface of the intercepting net plate is blocked.

[0021] 3. Beneficial effects

[0022] The one or more technical solutions provided in the embodiments of the application have at least the following technical effects or advantages:

[0023] 1. The application fixes the stone material on the rotating mechanism, drives the stone material to rotate through the rotating mechanism, cuts the stone material from top to bottom through the lifting cutting mechanism, adjusts the shape of the stone material through the horizontal sliding adjustment of the rotating mechanism, and cuts the dust particles generated in the cutting process through the dustproof box to prevent the dust particles from spreading to the outside. Then, the dust in the dustproof box is sucked into the dust suction mechanism to reduce the dust concentration in the air. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 The application discloses a stone profile cutting device, and a structure diagram of the stone profile cutting device is disclosed.

[0025] Figure 2 The application discloses a stone profile cutting device, and a structure diagram of the stone profile cutting device is disclosed.

[0026] Figure 3 The application discloses a stone profile cutting device, and a structure diagram of the stone profile cutting device is disclosed.

[0027] Figure 4 The application discloses a stone profile cutting device, and a structure diagram of the stone profile cutting device is disclosed. Figure 3 The application discloses a stone profile cutting device, and a structure diagram of the stone profile cutting device is disclosed.

[0028] Explanation of reference numerals in the figure: 1, cutting mechanism; 11, first linear module; 111, first sliding block; 12, motor; 13, cutting blade; 14, workbench; 141, strip-shaped hole; 15, travel switch; 2, rotating mechanism; 21, second linear module; 211, second sliding block; 22, servo motor; 23, disc; 24, support rod; 241, long screw rod; 3, dustproof box; 31, box body; 311, air inlet hole; 32, cabinet door; 4, dust suction mechanism; 41, water tank; 42, intercepting mesh plate; 43, flow guide cover; 431, flow guide pipe; 44, air blower. DETAILED DESCRIPTION

[0029] The application will be further described in detail below with reference to the accompanying drawings.

[0030] A stone profiling cutting device comprises:

[0031] A cutting mechanism 1, which is vertically adjustable;

[0032] A rotating mechanism 2, which is rotatable and horizontally adjustable towards the cutting mechanism 1;

[0033] A dustproof box 3, in which the cutting mechanism 1 and the rotating mechanism 2 are placed;

[0034] A dust suction mechanism 4 for dust removal, which is connected with one side of the dustproof box 3.

[0035] REFERENCE Figures 1-4 When profiling cutting a stone into a columnar structure, the stone is fixed on the rotating mechanism 2, and the rotating mechanism 2 drives the stone to rotate, and then the cutting mechanism 1 cuts the stone from top to bottom, and the horizontal sliding adjustment of the rotating mechanism 2 can profile cut the shape of the stone, the dust particles generated in the cutting process are prevented from spreading to the outside by the dustproof box 3, and then the dust in the dustproof box 3 is sucked into the dust suction mechanism 4 to reduce the dust concentration in the air.

[0036] The cutting mechanism 1 comprises a workbench 14, a first linear module 11 fixed vertically on one side of the workbench 14, a motor 12, and a cutting blade 13 fixed coaxially with the output shaft of the motor 12, the first linear module 11 comprises a first sliding block 111, and the motor 12 is fixed on the first sliding block 111.

[0037] REFERENCE Figure 3 The first sliding block 111 is driven to ascend and descend by the first linear module 11, and then the first sliding block 111 drives the motor 12 and the cutting blade 13 to ascend and descend, the motor 12 drives the cutting blade 13 to rotate at high speed, and in the process of ascending and descending, the stone can be cut in the up-down direction.

[0038] The rotating mechanism 2 comprises a second linear module 21, a servo motor 22, a disc 23 fixed coaxially with an output shaft of the servo motor 22, a plurality of support rods 24 distributed in a ring shape on the disc 23 and long screws 241 threadedly connected to the support rods 24, the second linear module 21 comprises a second sliding block 211, the servo motor 22 is fixed on the second sliding block 211, the workbench 14 is provided with a strip-shaped hole 141, the output shaft of the servo motor 22 penetrates through the strip-shaped hole 141, the second linear module 21 is fixed on the lower surface of the workbench 14, and the workbench 14 is fixed with a travel switch 15 arranged below the first sliding block 111.

[0039] With reference to Figure 3 and Figure 4 , the second linear module 21 is fixed on the bottom of the workbench 14, so as to reduce dust adhesion on the second linear module 21, and the second sliding block 211 is driven by the second linear module 21 to slide horizontally along the strip-shaped hole 141, thereby the transverse shape of the stone material can be cut and shaped, the stone material is placed on the disc 23, then the plurality of long screws 241 are rotated to abut against the lower end of the stone material, so as to fix the stone material on the disc 23, and the disc 23 is rotated by the servo motor 22, so as to finally realize the rotation of the stone material, meanwhile, the servo motor 22 is provided with a brake, so as to avoid unstable positioning of the output shaft of the servo motor 22 when the disc 23 is positioned, and when the first sliding block 111 is lowered to the travel switch 15 and touches the travel switch 15, the motor 12 is stopped at this time, so as to avoid that the cutting blade 13 is cut on the support rod 24 due to excessive lowering of the motor 12.

[0040] The dustproof box 3 comprises a box body 31 and a cabinet door 32 hinged to an open end of the box body 31, the cabinet door 32 is provided with a window with a transparent plate, and a plurality of air inlet holes 311 are formed in one side of the box body 31.

[0041] With reference to Figure 1 and Figure 2 , one side edge of the open end of the box body 31 is hinged through a hinge, and the other side edge is detachably connected through a buckle, and the window and the transparent plate are used for conveniently observing the stone material processing condition in the box body 31 and supplementing air flow in the box body 31 through the air inlet holes 311 to balance the air pressure in the box body 31.

[0042] The dust collection mechanism 4 comprises a water tank 41, an intercepting net plate 42 obliquely fixed in the water tank 41, a flow guide cover 43 through-connection with the box body 31, a flow guide pipe 431 through-connection with the flow guide cover 43 and penetrating through the intercepting net plate 42 and a blower 44 fixed and through-connection above the water tank 41.

[0043] With reference to Figure 1 and Figure 2, water tank 41 filled with clean water, and over the end of the intercepting net board 42, diversion pipe 431 placed in the low point end of the intercepting net board 42, through the blower 44 to extract the gas in the water tank 41, so that the water tank 41 is in a state of negative pressure, diversion pipe 431 and the flow guide cover 43 to extract the gas in the box 31, and the dust is sucked into the water tank 41, stone after the water in the water tank 41, stone dust particles wet, and under the action of the intercepting net board 42, so that the dust particles are intercepted in the water tank 41, and through the intercepting net board 42 is arranged obliquely, when the lower surface of the intercepting net board 42 appears to be blocked, the airflow from the bottom to the top of the movement process will produce a flush along the lower surface of the intercepting net board 42 effect, so as to guarantee the normal ventilation of the intercepting net board 42.

[0044] Working principle: open the cabinet door 32, put the stone on the disc 23, and through the multiple long screw rod 241 clockwise rotation, and relative movement, the stone is clamped on the disc 23, then close the cabinet door 32, start the first linear module 11 and the second linear module 21, the first linear module 11 drives the first sliding block 111 to adjust the lifting, to drive the cutting piece 13 to adjust the lifting, to carry on the vertical cutting of stone, at the same time, through the second linear module 21 to drive the second sliding block 211 horizontal sliding, so that the stone contacts the cutting piece 13, and the stone is cut by the cutting piece 13, the dust generated in the cutting, through the blower 44 to extract the gas in the water tank 41, so that the water tank 41 is in a state of negative pressure, diversion pipe 431 and the flow guide cover 43 to extract the gas in the box 31, and the dust is sucked into the water tank 41, stone after the water in the water tank 41, stone dust particles wet, and under the action of the intercepting net board 42, so that the dust particles are intercepted in the water tank 41.

Claims

1. A stone profiling cutting device, characterized by: Include: Cutting mechanism (1), the cutting mechanism (1) can be vertically adjusted; Rotary mechanism (2), the rotary mechanism (2) can be rotated, the rotary mechanism (2) can also be adjusted horizontally sliding towards the direction of cutting mechanism (1); Dustproof box (3), the cutting mechanism (1) and rotary mechanism (2) are placed in dustproof box (3); The dust removal mechanism (4) is connected with one side of dustproof box (3) through hole.

2. A stone profiling cutting device according to claim 1, characterized in that: The cutting mechanism (1) includes a workbench (14), a first linear module (11) vertically fixed on one side of the workbench (14), a motor (12) and a cutting blade (13) coaxially fixed with the output shaft of the motor (12), the first linear module (11) includes a first sliding block (111), and the motor (12) is fixed on the first sliding block (111).

3. A stone profiling cutting device according to claim 2, wherein: The rotary mechanism (2) includes a second linear module (21), a servo motor (22), a disc (23) coaxially fixed with the output shaft of the servo motor (22), a plurality of support rods (24) distributed in a ring on the disc (23) and a long screw rod (241) screwed on the support rod (24), the second linear module (21) includes a second sliding block (211), the servo motor (22) is fixed on the second sliding block (211), the workbench (14) is provided with a strip-shaped hole (141), the output shaft of the servo motor (22) passes through the strip-shaped hole (141), the second linear module (21) is fixed on the lower surface of the workbench (14), and the workbench (14) is fixed with a travel switch (15) placed below the first sliding block (111).

4. A stone profiling cutting device according to claim 1, characterized in that: The dustproof box (3) includes a box body (31) and a cabinet door (32) hinged to the opening end of the box body (31), the cabinet door (32) is provided with a window with a transparent plate, and a plurality of air inlet holes (311) are formed in one side of the box body (31).

5. A stone profiling cutting device according to claim 4, wherein: The dust removal mechanism (4) includes a water tank (41), an intercepting screen (42) obliquely fixed in the water tank (41), a flow guide cover (43) through connection with the box body (31), a flow guide pipe (431) through connection with the flow guide cover (43) and passing through the intercepting screen (42), and a blower (44) fixed and through connection above the water tank (41).