Cutting device for marble processing
By designing an automated cleaning structure for clamping dust sweepers, air cylinders and fan dust exhaust parts, the problem of dust adhesion during marble cutting is solved, and efficient cleaning and environmentally friendly and safe cutting operations are achieved.
Patent Information
- Application Number
- CN202421845381.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-01
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-08-01
AI Technical Summary
The dust generated during marble cutting is easy to adhere to the cutting equipment, resulting in difficulty in cleaning, increasing time and cost, and affecting the processing progress.
An automated cleaning and dust removal structure including clamping dust sweeping parts, air cylinder parts and fan dust exhaust parts is designed. The dust is cleaned into the dust removal chamber by clamping dust sweeping parts, and the dust is discharged using the air cylinder parts and fan dust exhaust parts to achieve automatic cleaning.
It improves the working efficiency of marble cutting operations, improves the working environment and safety, and reduces the time and cost of cleaning dust.
Smart Images

Figure CN223199284U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of marble cutting, in particular to a cutting device for marble processing. Background Art
[0002] Marble is a metamorphic rock, mainly composed of calcite, limestone, serpentine and dolomite. Marble has beautiful texture and diverse colors. It can be used for various indoor and outdoor decoration and floor paving, adding beauty to the architectural environment. When processing marble, it needs to be cut by a cutting machine into different sizes and shapes.
[0003] When cutting marble, a large amount of fine dust particles are easily generated. These dust particles are easily attached to the base of the cutting equipment. When cleaning them, they are all cleaned manually, which increases the time and cost of cleaning and affects the progress of subsequent marble processing.
[0004] In order to solve the above problems, the present application proposes a cutting device for marble processing. Utility Model Content
[0005] Based on the technical problems existing in the background technology, the utility model proposes a cutting device for marble processing.
[0006] The utility model provides a cutting device for marble processing, comprising a cutting machine base and a cutting disc installed on the cutting machine base;
[0007] A dust exhaust chamber is provided in the cutting machine base, and densely arranged dust filter holes are provided on the top of the cutting machine base and communicate with the dust exhaust chamber. Two dust-sweeping clamping members and a driving member for driving the two dust-sweeping clamping members to move closer to or away from each other are installed on the cutting machine base;
[0008] Air cylinder parts are installed at both ends of the cutting machine base, and the two air cylinder parts are respectively connected to two clamping dust-sweeping parts. Two fan dust-exhausting parts connected to the dust exhaust chamber are installed at the bottom of the side of the cutting machine base, and the two air cylinder parts and the two fan dust-exhausting parts are connected through a conducting pipe.
[0009] Preferably, the clamping dust-sweeping member includes a clamping block, two sliding openings are opened on the top of the cutting machine base, the densely arranged dust filter holes are located between the two sliding openings, the two clamping blocks are arranged horizontally on the top of the cutting machine base, the bottom of the clamping block is connected with bristles for cleaning the dust filter holes, and two sliders are installed on the bottom of the clamping block, and the two sliders slide through the two sliding openings respectively and extend into the dust exhaust chamber, and the two clamping blocks are driven by the driving member to approach or move away from each other.
[0010] Preferably, the air cylinder component includes an air cylinder body, and the two air cylinder bodies are respectively installed at the two ends of the cutting machine base. An air cavity is opened in the air cylinder body, and a piston is slidably arranged in the air cavity. A movable rod is installed at the end of the piston, and the end of the movable rod away from the piston slides through one end of the air cylinder body and extends into the dust exhaust chamber. The ends of the two movable rods that are close to each other are respectively connected to the corresponding sliders at the bottom of the two clamping blocks.
[0011] Preferably, the fan dust removal component includes a dust removal pipe, and the two dust removal pipes are installed at the bottom of the side of the cutting machine base. A chip removal channel is opened in the dust removal pipe, which passes through and is connected to the dust removal chamber. A rotating rod extending into the dust removal chamber is provided in the chip removal channel, and one end of the rotating rod is rotatably connected to the inner wall of the cutting machine base. A number of axial flow fan blades are installed on the rotating rod, and the several axial flow fan blades are respectively located in the dust removal chamber and the chip removal channel. The two dust removal pipes are connected to a conducting pipe connected to the chip removal channel, and one end of the two conducting pipes is respectively connected to the end of the two air cylinders away from the cutting machine base.
[0012] Preferably, the driving part includes a servo motor, a bidirectional screw and a limit rod. The servo motor is installed at the end of the cutting machine base and is located at one end of one of the slides. The bidirectional screw is transversely arranged in a slide, and one end of the bidirectional screw is connected to the output end of the servo motor. The limit rod is transversely installed in another slide. The two sliders at the bottom of the two clamping blocks are respectively sleeved on the bidirectional screw and the limit rod. Two thread grooves in opposite directions are provided on the bidirectional screw. One of the sliders at the bottom of the two clamping blocks is threadedly connected to the two thread grooves, and the other slider at the bottom of the two clamping blocks is slidingly connected to the limit rod.
[0013] The above technical solution of the utility model has the following beneficial technical effects:
[0014] By providing the clamping dust-sweeping parts, the air cylinder parts and the fan dust-exhausting parts, after the marble is cut by the cutting disc, the two clamping dust-sweeping parts can be driven to move closer to or away from each other by the driving part, the dust-sweeping parts can be used to clean the dust on the cutting machine base, and the dust can be swept into the dust-exhausting chamber opened in the cutting machine base through the dust filter holes. When the two clamping dust-sweeping parts move closer to or away from each other, the air cylinder parts can be driven to move, and the gas in the air cylinder parts can be guided to the fan dust-exhausting parts through the conducting pipe, driving the fan dust-exhausting parts to rotate. When the fan dust-exhausting parts rotate, the dust in the cutting machine base can be discharged. This structure facilitates the cleaning of dust generated during marble cutting through the automated cleaning and dust-exhausting structure, which not only improves the working efficiency of the marble cutting operation, but also improves the working environment and enhances environmental protection and safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 The utility model is a structural schematic diagram of a cutting device for marble processing.
[0016] Figure 2 For this utility model Figure 1 Schematic diagram of the structure of the dust-sweeping part clamped in the middle.
[0017] Figure 3 For this utility model Figure 1 Schematic diagram of the structure of the middle fan dust exhaust component.
[0018] Figure 4 For this utility model Figure 1 Schematic diagram of the planar structure of the gas cylinder component.
[0019] Figure numerals: 1. Cutting machine base; 2. Cutting disc; 3. Dust filter hole; 4. Clamping and dust-sweeping part; 41. Clamping block; 42. Bristles; 43. Slider; 5. Driving part; 51. Servo motor; 52. Bidirectional screw; 53. Limit rod; 6. Cylinder part; 61. Cylinder body; 62. Piston; 63. Movable rod; 7. Fan and dust exhaust part; 71. Dust exhaust pipe; 72. Rotating rod; 73. Axial fan blade; 8. Conducting pipe. DETAILED DESCRIPTION
[0020] To make the objectives, technical solutions, and advantages of the present invention more clearly understood, the present invention is further described below in conjunction with specific embodiments and with reference to the accompanying drawings. It should be understood that these descriptions are merely illustrative and are not intended to limit the scope of the present invention. Furthermore, descriptions of known structures and technologies are omitted in the following description to avoid unnecessary confusion regarding the concepts of the present invention.
[0021] like Figure 1-4 As shown, the present invention provides a cutting device for marble processing, comprising a cutting machine base 1 and a cutting disc 2 mounted on the cutting machine base 1;
[0022] In this embodiment, a dust exhaust chamber is provided in the cutting machine base 1, and densely arranged dust filter holes 3 that are connected to the dust exhaust chamber are provided on the top of the cutting machine base 1. Two clamping dust sweeping members 4 and a driving member 5 for driving the two clamping dust sweeping members 4 to move closer to or away from each other are installed on the cutting machine base 1. The clamping dust sweeping member 4 includes a clamping block 41. Two sliding openings are provided on the top of the cutting machine base 1, and the densely arranged dust filter holes 3 are located between the two sliding openings. The two clamping blocks 41 are both arranged horizontally on the top of the cutting machine base 1. The bottom of the clamping block 41 is connected to a brush 42 for cleaning the dust filter holes 3. Two sliders 43 are installed on the bottom of the clamping block 41. The two sliders 43 slide through the two sliding openings and extend into the dust exhaust chamber. The two clamping blocks 41 are driven by the driving member 5 to move closer to or away from each other. The driving part 5 includes a servo motor 51, a bidirectional screw 52 and a limit rod 53. The servo motor 51 is installed at the end of the cutting machine base 1 and is located at one end of a slide. The bidirectional screw 52 is horizontally arranged in a slide, and one end of the bidirectional screw 52 is connected to the output end of the servo motor 51. The limit rod 53 is horizontally installed in another slide. The two sliders 43 at the bottom of the two clamping blocks 41 are respectively sleeved on the bidirectional screw 52 and the limit rod 53. Two thread grooves in opposite directions are opened on the bidirectional screw 52. One of the sliders 43 at the bottom of the two clamping blocks 41 is respectively threadedly connected to the two thread grooves, and the other slider 43 at the bottom of the two clamping blocks 41 is slidingly connected to the limit rod 53.
[0023] In this embodiment, an air cylinder member 6 is installed at both ends of the cutting machine base 1, and the two air cylinder members 6 are respectively connected to the two clamping dust-sweeping members 4. The air cylinder member 6 includes an air cylinder body 61, which is respectively installed at the two ends of the cutting machine base 1. An air cavity is defined in the air cylinder body 61, and a piston 62 is slidably arranged in the air cavity. A movable rod 63 is installed at the end of the piston 62. The end of the movable rod 63 away from the piston 62 slides through one end of the air cylinder body 61 and extends into the dust exhaust chamber. The ends of the two movable rods 63 that are close to each other are respectively connected to the corresponding sliders 43 at the bottom of the two clamping blocks 41.
[0024] In this embodiment, two fan dust removal parts 7 connected to the dust removal chamber are installed at the bottom of the side of the cutting machine base 1, and the two air cylinder parts 6 are connected to the two fan dust removal parts 7 through a conducting pipe 8. The fan dust removal part 7 includes a dust removal pipe 71, and the two dust removal pipes 71 are both installed at the bottom of the side of the cutting machine base 1. A chip removal channel that passes through and is connected to the dust removal chamber is opened in the dust removal pipe 71. A rotating rod 72 that extends into the dust removal chamber is provided in the chip removal channel, and one end of the rotating rod 72 is rotatably connected to the inner wall of the cutting machine base 1. A number of axial flow fan blades 73 are installed on the rotating rod 72 at intervals. The number of axial flow fan blades 73 are respectively located in the dust removal chamber and the chip removal channel. The two dust removal pipes 71 are both connected to a conducting pipe 8 connected to the chip removal channel, and one end of the two conducting pipes 8 is respectively connected to the end of the two air cylinder bodies 61 away from the cutting machine base 1.
[0025] It should be noted that: in order to facilitate the processing of marble, the marble can be placed on the cutting machine base 1 so that it is placed between the two clamping blocks 41, and then the bidirectional screw 52 can be driven by the servo motor 51 to drive the two clamping blocks 41 closer to each other, so that the marble can be clamped between the two clamping blocks 41, and then the marble can be cut by the cutting disc 2 on the cutting machine base 1. This structure can maintain the stability of the marble during cutting through the clamping structure.
[0026] In order to facilitate the cleaning of dust generated during marble cutting, after the marble is cut, it can be taken off the cutting machine base 1, and then the servo motor 51 can be used to drive the bidirectional screw 52 to drive the two clamping blocks 41 to move closer to or away from each other. The bristles 42 at the bottom of the clamping block 41 can be used to clean the dust on the cutting machine base 1, and the dust can be swept into the dust exhaust chamber opened in the cutting machine base 1 through the dust filter hole 3. When the two clamping blocks 41 move closer to or away from each other, the slider 43 at the bottom of the clamping block 41 can be used to drive the piston connected to the cylinder body 61. 62 moves back and forth in the cylinder body 61. When the piston 62 moves back and forth, the gas can be guided along the guide pipe 8 to the dust exhaust pipe 71. When the gas blows toward the axial flow fan blades 73, the axial flow fan blades 73 and the rotating rod 72 can be driven to rotate at the same time. When the axial flow fan blades 73 rotate, the dust in the dust exhaust chamber can be discharged through the dust exhaust pipe 71. This structure facilitates the cleaning of dust generated during marble cutting through the automated cleaning and dust exhaust structure, which not only improves the work efficiency of the marble cutting operation, but also improves the working environment and enhances environmental protection and safety.
[0027] It should be understood that the above-described specific embodiments of the present invention are merely illustrative of or explanation of the principles of the present invention and do not constitute limitations of the present invention. Therefore, any modifications, equivalent substitutions, improvements, etc. made without departing from the spirit and scope of the present invention shall be included within the scope of protection of the present invention. In addition, the appended claims of the present invention are intended to cover all variations and modifications that fall within the scope and metes and bounds of the appended claims, or equivalents thereof.
Claims
1. A cutting device for marble processing, comprising a cutting machine base (1) and a cutting disc (2) mounted on the cutting machine base (1), characterized in that: A dust exhaust chamber is provided in the cutting machine base (1), and densely arranged dust filter holes (3) are provided on the top of the cutting machine base (1) and communicate with the dust exhaust chamber. Two clamping dust sweeping members (4) and a driving member (5) for driving the two clamping dust sweeping members (4) to move closer to or away from each other are installed on the cutting machine base (1); Both ends of the cutting machine base (1) are equipped with air cylinder parts (6), and the two air cylinder parts (6) are respectively connected to the two clamping dust-sweeping parts (4). The bottom of the side of the cutting machine base (1) is equipped with two fan dust-discharging parts (7) that are connected to the dust-discharging chamber. The two air cylinder parts (6) and the two fan dust-discharging parts (7) are connected through a conducting pipe (8).
2. A cutting device for marble processing according to claim 1, characterized in that: The clamping dust sweeping member (4) includes a clamping block (41), two sliding openings are provided on the top of the cutting machine base (1), the densely arranged dust filter holes (3) are located between the two sliding openings, the two clamping blocks (41) are both arranged horizontally on the top of the cutting machine base (1), the bottom of the clamping block (41) is connected with a brush (42) for cleaning the dust filter holes (3), and two sliders (43) are installed on the bottom of the clamping block (41), the two sliders (43) slide through the two sliding openings respectively and extend into the dust exhaust chamber, and the two clamping blocks (41) are driven by the driving member (5) to move closer to or away from each other.
3. A marble processing cutting device according to claim 2, characterized in that: The air cylinder component (6) includes an air cylinder body (61), and the two air cylinder bodies (61) are respectively installed at the two ends of the cutting machine base (1). An air cavity is opened in the air cylinder body (61), and a piston (62) is slidably arranged in the air cavity. A movable rod (63) is installed at the end of the piston (62). The end of the movable rod (63) away from the piston (62) slides through one end of the air cylinder body (61) and extends into the dust exhaust chamber. The ends of the two movable rods (63) that are close to each other are respectively connected to the corresponding sliders (43) at the bottom of the two clamping blocks (41).
4. A marble processing cutting device according to claim 3, characterized in that: The fan dust removal component (7) includes a dust removal pipe (71), and the two dust removal pipes (71) are both installed at the bottom of the side of the cutting machine base (1). A chip removal channel is provided in the dust removal pipe (71) and is connected to the dust removal chamber. A rotating rod (72) is provided in the chip removal channel and extends into the dust removal chamber. One end of the rotating rod (72) is rotatably connected to the inner wall of the cutting machine base (1). A plurality of axial flow fan blades (73) are installed on the rotating rod (72) and are arranged at intervals. The plurality of axial flow fan blades (73) are respectively located in the dust removal chamber and the chip removal channel. The two dust removal pipes (71) are both connected to a conducting pipe (8) connected to the chip removal channel. One end of the two conducting pipes (8) is respectively connected to one end of the two cylinder bodies (61) away from the cutting machine base (1).
5. The cutting device for marble processing according to claim 2, characterized in that: The driving member (5) includes a servo motor (51), a bidirectional screw (52) and a limiting rod (53). The servo motor (51) is installed at the end of the cutting machine base (1) and is located at one end of one of the sliding ports. The bidirectional screw (52) is horizontally arranged in one sliding port, and one end of the bidirectional screw (52) is connected to the output end of the servo motor (51). The limiting rod (53) is horizontally installed in the other sliding port. The two sliders (43) at the bottom of the two clamping blocks (41) are respectively sleeved on the bidirectional screw (52) and the limiting rod (53). Two thread grooves in opposite directions are provided on the bidirectional screw (52). One of the sliders (43) at the bottom of the two clamping blocks (41) is threadedly connected to the two thread grooves respectively, and the other sliders (43) at the bottom of the two clamping blocks (41) are both slidably connected to the limiting rod (53).