Stone machining slitting device
By introducing an automatic rotary cutting platform and a dust extraction device into the stone processing and slitting equipment, the problems of traditional equipment being unable to efficiently process different bevel angles and dust pollution have been solved, achieving efficient cutting and clean production.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2026-03-27
AI Technical Summary
Traditional stone cutting equipment cannot efficiently process different bevel angles and generates a lot of dust during cutting, affecting air quality and the health of operators.
A stone processing and slitting device with an automatic rotating cutting platform and a dust collection device was designed. The cutting platform is driven by a motor to rotate and the dust is collected by the dust collection device.
It enables efficient processing of stone cutting at different bevel angles and effectively reduces dust pollution, protecting the health of operators.
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Figure CN224044200U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of stone processing slitting device, it is related to stone processing technical field, specifically related to a kind of stone processing slitting device. BACKGROUND
[0002] Stone processing slitting is an important link in stone processing process, mainly related to cutting stone rough material into the required size of plate, stone processing slitting not only affects the appearance and quality of stone, but also is the key step to determine its applicability, through fine processing slitting, it can ensure that stone product meets the strict requirements of building and decoration field.
[0003] The cutting platform of traditional cutting equipment cannot be freely turned over, and different angle bevels cannot be efficiently cut in processing, which has certain limitations in adaptability, and a large amount of dust is generated during cutting, which will pollute the air and affect the health of operators if not treated. UTILITY MODEL CONTENT
[0004] The utility model provides a kind of stone processing slitting device, one purpose is to have the automatic rotation function of cutting platform, solve the problem that traditional equipment processing cannot efficiently process different bevels;Another purpose is to solve the problem that a large amount of dust is generated during cutting, to achieve the effect of reducing air pollution and protecting the health of operators.
[0005] To solve the above technical problems, the technical scheme adopted by the utility model is:
[0006] A kind of stone processing slitting device, including support one, cutting device is fixedly connected in support one, dust collection device is fixedly connected with the below of cutting device in support one, rotating platform is fixedly connected with the right side of dust collection device in support one.
[0007] The further improvement of the technical scheme of the utility model is that: rotating platform includes cutting platform, three evenly distributed semicircular gears are fixedly connected with the below of cutting platform, support two is rotatably connected with the below of cutting platform, two gears one are engaged with the below of gear of cutting platform front and rear sides, four gears one are slidably connected with the front and rear sides of four sliding rails, four gears one cannot rotate, eight sliding rails are fixedly connected with support two, connecting rod one is rotatably connected with the front and rear sides of gear and penetrates sliding rail, one connecting rod two is rotatably connected with the other end of four connecting rod one in front of cutting platform, another connecting rod two is rotatably connected with the other end of four connecting rod one in rear of cutting platform, connecting rod three is fixedly connected with the below of two connecting rod two, limiting block is slidably connected with the below of two connecting rod three, two limiting blocks are fixedly connected with support two.
[0008] The further improvement of the utility model technical scheme lies in that gear two is engaged below the cutting platform middle gear, fixed seat one and fixed seat two are fixedly connected with gear two on the front and back of support two respectively, fixed seat two and fixed seat one are rotationally connected with support two, motor one is fixedly connected behind fixed seat two, the output shaft of motor one is fixedly connected with gear two, cylinder support plate is fixedly connected in front of fixed seat one, straight line cylinder is fixedly connected below cylinder support plate, connecting rod four is fixedly connected below the push rod of straight line cylinder, the front and back of connecting rod four are fixedly connected with connecting rod three.
[0009] The further improvement of the utility model technical scheme lies in that the cutting device is provided with motor two, fixed plate one and fixed plate three, motor two is fixedly connected in the inside of support one, the output shaft of motor two is fixedly connected with pulley one, pulley one is rotationally connected with pulley two through belt, the axis of pulley two is provided with through hole and fixedly connected with transmission shaft, the other end of transmission shaft penetrates fixed plate one and fixed plate three and is fixedly connected with cutting piece, transmission shaft is rotationally connected with bearing seat one and bearing seat two in front of fixed plate one and behind fixed plate three respectively, bearing seat one and bearing seat two are fixedly connected with fixed plate one and fixed plate three respectively, fixed plate two is fixedly connected between fixed plate three and fixed plate one, fixed plate three and fixed plate one are fixedly connected with support one, dust cover is fixedly connected with the right side of fixed plate three.
[0010] The further improvement of the utility model technical scheme lies in that the dust collection device is provided with dust collection pipeline, the left side of dust collection pipeline is provided with ventilation hole and fixedly connected with ventilation pipeline, the other end of ventilation pipeline is fixedly connected with shell, the connection place of shell and ventilation pipeline is provided with air inlet, the rear of shell is provided with air outlet and is fixedly connected with fan in front of it, the lower of shell is provided with ash discharge opening and is rotationally connected with ash discharge window behind it.
[0011] The further improvement of the utility model technical scheme lies in that the upper of shell air inlet is fixedly connected with partition plate, the upper of partition plate is slidably connected with two filter bag supports, the inner side of two filter bag supports is fixedly connected with filter bag, the left side of shell is fixedly connected with baffle, the left side of filter bag support is provided with observation hole in baffle and is rotationally connected with observation window in the outer side.
[0012] Due to the adoption of the above technical scheme, the utility model has the following technical progress compared with the prior art:
[0013] 1、The utility model provides a kind of stone processing slitting device, when needing to overturn cutting platform, connecting rod three is lifted and is pushed connecting rod one by connecting rod two, connecting rod one drives gear one to slide along slide rail and is far away from the gear below cutting platform, cutting platform can be freely rotated at this time, motor one drives cutting platform by gear two, solve the problem that traditional equipment processing cannot efficiently process different angle of inclination.
[0014] 2. The utility model provides a kind of stone processing slitting device, when cutting, fan rotation provides suction, dust generated when cutting is absorbed from dust suction pipeline, is transported into shell by ventilation pipeline, shell inside is separated by partition, dust-containing gas flows into shell from ventilation pipeline, again by filter bag on the filter bag support interception falls to the bottom of shell, the dust collected is finally discharged by ash window, and filter bag support can be replaced by opening observation window, solve the problem of a large amount of dust generated when cutting. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is the structure diagram of the utility model stone processing slitting device;
[0016] Figure 2 It is the structure diagram of the utility model rotating platform;
[0017] Figure 3 It is the structure diagram of the utility model rotating platform;
[0018] Figure 4 It is the structure diagram of the utility model cutting device;
[0019] Figure 5 It is the structure diagram of the utility model dust collection device;
[0020] Figure 6 It is the structure diagram of the utility model dust collection device.
[0021] In the drawing: 1, support one;2, cutting device;3, rotating platform;4, dust collection device;31, cutting platform;32, support two;33, connecting rod one;34, limit block;35, connecting rod two;36, connecting rod three;37, gear one;38, cylinder support plate;39, linear cylinder;310, connecting rod four;311, fixed seat one;312, gear two;313, fixed seat two;314, motor one;315, slide rail;21, motor two;22, pulley one;23, fixed plate one;24, transmission shaft;25, pulley two;26, bearing seat one;27, fixed plate two;28, fixed plate three;29, bearing seat two;210, cutting piece;211, dust cover;41, dust suction pipeline;42, ventilation pipeline;43, shell;44, fan;45, ash window;46, filter bag support;47, partition;48, baffle;49, observation window. DETAILED DESCRIPTION
[0022] To make the technical means, creative features, purposes and effects realized by the utility model easy to understand, the following further describes the utility model in conjunction with specific implementation manners:
[0023] For example, Figure 1The utility model provides a kind of stone processing slitting device, including support one 1, cutting device 2 is fixedly connected in support one 1, dust extraction device 4 is fixedly connected with support one 1 below cutting device 2, rotating platform 3 is fixedly connected with support one 1 right side dust extraction device 4, when needing to cut stone, put stone on rotating platform 3, start cutting device 2 then push stone and complete cutting by cutting piece, dust generated in cutting process is collected and uniformly handled by dust extraction device 4.
[0024] As Figure 2 The utility model provides a kind of technical scheme: rotating platform 3 includes cutting platform 31, three evenly distributed semicircular gears are fixedly connected below cutting platform 31, support two 32 are rotatably connected below cutting platform 31, two gear one 37 are engaged below gear of cutting platform 31 front and rear sides, four gear one 37 front and rear sides are slidably connected with slide rail 315, four gear one 37 cannot rotate, eight slide rails 315 are fixedly connected with support two 32, gear one 37 front and rear sides are slidably connected with connecting rod one 33 and are rotatably connected with slide rail 315, another end of four connecting rod one 33 in front of cutting platform 31 is rotatably connected with one connecting rod two 35, another end of four connecting rod one 33 behind cutting platform 31 is rotatably connected with another connecting rod two 35, connecting rod three 36 are fixedly connected below two connecting rod two 35, two limiting blocks 34 are slidably connected below two connecting rod three 36, two limiting blocks 34 are fixedly connected with support two 32, when needing to overturn cutting platform 31, connecting rod three 36 is lifted and pushes connecting rod one 33 by connecting rod two 35, connecting rod one 33 pushes gear one 37 and slides along slide rail 315 and is away from the gear below cutting platform 31, cutting platform 31 can be freely rotated at this time, when needing to lock cutting platform 31, connecting rod three 36 is lowered, so that gear one 37 gradually approaches the gear below cutting platform 31 and engages, slide rail 315 prevents gear one 37 from rotating and also plays the role of support.
[0025] As Figure 3As shown, the utility model provides a technical scheme: the lower gear wheel of cutting platform 31 is engaged with gear wheel no. 2 312, support no. 2 32 is fixedly connected with fixed seat no. 1 311 and fixed seat no. 2 313 on the front and rear sides of gear wheel no. 2 312 respectively, fixed seat no. 2 313 and fixed seat no. 1 311 are rotatably connected with support no. 2 32, motor no. 1 314 is fixedly connected with the rear of fixed seat no. 2 313, the output shaft of motor no. 1 314 is fixedly connected with gear wheel no. 2 312, cylinder support plate 38 is fixedly connected with the front of fixed seat no. 1 311, linear cylinder 39 is fixedly connected with the lower of cylinder support plate 38, connecting rod no. 4 310 is fixedly connected with the lower of the push rod of linear cylinder 39, the front and rear ends of connecting rod no. 4 310 are fixedly connected with connecting rod no. 3 36, when cutting platform 31 needs to rotate, motor no. 1 314 drives cutting platform 31 through gear wheel no. 2 312, when needing to lock cutting platform 31, linear cylinder 39 pushes down connecting rod no. 4 310, connecting rod no. 4 310 drives gear wheel no. 1 37 through connecting rod no. 3 36 to engage the gear wheel below cutting platform 31, gear wheel no. 2 312 supports motor no. 1 314, cylinder support plate 38 supports linear cylinder 39 to prevent it from falling.
[0026] As Figure 4 As shown, the utility model provides a technical scheme: cutting device 2 includes motor no. 2 21, fixed plate no. 1 23, fixed plate no. 3 28, the inside fixedly connected with motor no. 2 21 of support no. 1 1, the output shaft of motor no. 2 21 is fixedly connected with pulley no. 1 22, pulley no. 1 22 is rotatably connected with pulley no. 2 25 through belt, the axis of pulley no. 2 25 is provided with through hole and is fixedly connected with transmission shaft 24, the other end of transmission shaft 24 penetrates fixed plate no. 1 23 and fixed plate no. 3 28 and is fixedly connected with cutting blade 210, transmission shaft 24 is rotatably connected with bearing seat no. 1 26 and bearing seat no. 2 29 respectively in the front of fixed plate no. 1 23 and the rear of fixed plate no. 3 28, bearing seat no. 1 26 and bearing seat no. 2 29 are fixedly connected with fixed plate no. 1 23 and fixed plate no. 3 28 respectively, fixed plate no. 3 28 and fixed plate no. 1 23 are fixedly connected with fixed plate no. 2 27, fixed plate no. 3 28 and fixed plate no. 1 23 are fixedly connected with support no. 1 1, fixed plate no. 3 28 is fixedly connected with dust cover 211 on the right side, when needing cutting, motor no. 2 21 drives pulley no. 1 22 to rotate, pulley no. 1 22 drives pulley no. 2 25 to rotate synchronously through belt, pulley no. 2 25 then drives cutting blade 210 to rotate synchronously through transmission shaft 24, bearing seat no. 1 26 and bearing seat no. 2 29 reduce the power loss of transmission, fixed plate no. 3 28 and fixed plate no. 1 23 support bearing seat no. 1 26 and bearing seat no. 2 29.
[0027] As Figure 5As shown, the utility model provides a technical scheme: dust suction device 4 includes dust suction pipeline 41, dust suction pipeline 41's left side is equipped with ventilation hole and is fixedly connected with ventilation pipeline 42, ventilation pipeline 42's other end is fixedly connected with casing 43, casing 43 is equipped with air inlet at the junction with ventilation pipeline 42, casing 43's rear is equipped with exhaust hole and is fixedly connected with fan 44 in its front, casing 43 is equipped with ash discharge hole below fan 44 and is rotatably connected with ash discharge window 45 in its rear, fan 44 rotation provides suction, the dust generated when cutting is absorbed from dust suction pipeline 41, is delivered to casing 43 through ventilation pipeline 42, and the collected dust is finally discharged by ash discharge window 45.
[0028] As Figure 6 As shown, the utility model provides a technical scheme: casing 43 air inlet's top is fixedly connected with partition 47, two filter bag supports 46 of partition 47's top are slidably connected, the inside of two filter bag supports 46 is fixedly connected with filter bag, the left side of casing 43 is fixedly connected with baffle 48, baffle 48 is equipped with observation port in filter bag support 46's left side and is rotatably connected with observation window 49 in its outside, casing 43 is separated by partition 47 inside, the gas containing dust flows into casing 43 from ventilation pipeline 42, and the filter bag on filter bag support 46 top is intercepted and falls to the bottom of casing 43, and opening observation window 49 can replace filter bag support 46.
[0029] The working principle of the stone processing cutting device will be described below.
[0030] As Figures 1-6 As shown,
[0031] When the cutting platform 31 needs to be turned over, the connecting rod three 36 is lifted and pushes the connecting rod one 33 through the connecting rod two 35, the connecting rod one 33 pushes the gear one 37 to slide along the slide rail 315 and away from the gear below the cutting platform 31, at this time the cutting platform 31 can be freely rotated, the motor one 314 drives the cutting platform 31 through the gear two 312, when the cutting platform 31 needs to be locked, the linear cylinder 39 pushes the connecting rod four 310 to descend, the connecting rod four 310 makes the gear one 37 gradually close to the gear below the cutting platform 31 through the connecting rod three 36, the slide rail 315 prevents the gear one 37 from rotating and also plays a supporting role, the gear two 312 supports the motor one 314, the cylinder support plate 38 supports the linear cylinder 39 to prevent it from falling, when cutting starts, the motor two 21 drives the pulley one 22 to rotate, the pulley one 22 drives the pulley two 25 to rotate synchronously through the belt, the pulley two 25 drives the cutting blade 210 to rotate synchronously through the transmission shaft 24, at this time the stone is pushed and can be cut, the bearing seat one 26 and the bearing seat two 29 reduce the power loss of transmission, the fixed plate three 28 and the fixed plate one 23 support the bearing seat one 26 and the bearing seat two 29, when cutting, the fan 44 rotates to provide suction, the dust generated during cutting is sucked from the dust suction pipeline 41, transported to the shell 43 through the ventilation pipeline 42, the inside of the shell 43 is separated by the partition plate 47, the gas containing dust flows from the ventilation pipeline 42 into the shell 43, and is intercepted by the filter bag on the filter bag support 46 and falls to the bottom of the shell 43, the collected dust is finally discharged from the ash discharge window 45, and the observation window 49 is opened to replace the filter bag support 46.
[0032] The above is a detailed description of the general utility model, but some modifications or improvements can be made on the basis of the utility model, which is obvious to those skilled in the art. Therefore, without departing from the spirit of the utility model, the modifications or improvements are within the scope of the utility model.
Claims
1. A stone processing slitting device comprising a support (1), characterized in that: The cutting device (2) is fixedly connected in the support one (1), the dust collection device (4) is fixedly connected below the cutting device (2), the rotating platform (3) is fixedly connected to the right of the dust collection device (4); The rotating platform (3) includes a cutting platform (31), the cutting platform (31) is fixedly connected with three evenly distributed semicircular gears below, the cutting platform (31) is rotatably connected with a support two (32) below, the gears below the front and rear sides of the cutting platform (31) are engaged with two gear one (37), the front and rear sides of the four gear one (37) are slidably connected with a slide rail (315), the four gear one (37) cannot rotate, the eight slide rails (315) are fixedly connected with the support two (32), the front and rear sides of the gear one (37) are rotatably connected with a connecting rod one (33) penetrating the slide rail (315), the other end of the four connecting rod one (33) in front of the cutting platform (31) is rotatably connected with a connecting rod two (35), the other end of the four connecting rod one (33) behind the cutting platform (31) is rotatably connected with another connecting rod two (35), the connecting rod two (35) below is fixedly connected with a connecting rod three (36), the connecting rod three (36) below is slidably connected with a limiting block (34), the limiting block (34) is fixedly connected with the support two (32); The gear two (312) is engaged below the intermediate gear of the cutting platform (31), the support two (32) is fixedly connected with a fixed seat one (311) and a fixed seat two (313) on the front and rear sides of the gear two (312), the fixed seat two (313) and the fixed seat one (311) are rotatably connected with the support two (32), the rear of the fixed seat two (313) is fixedly connected with a motor one (314), the output shaft of the motor one (314) is fixedly connected with the gear two (312), the front of the fixed seat one (311) is fixedly connected with a cylinder support plate (38), the cylinder support plate (38) is fixedly connected with a linear cylinder (39) below, the push rod of the linear cylinder (39) is fixedly connected with a connecting rod four (310) below, the front and rear ends of the connecting rod four (310) are fixedly connected with the connecting rod three (36).
2. A stone processing slitting device according to claim 1, characterized in that: The cutting device (2) includes motor two (21), fixed plate one (23), fixed plate three (28), the inside of the support one (1) is fixedly connected with motor two (21), the output shaft of motor two (21) is fixedly connected with pulley one (22), pulley one (22) is rotatably connected with pulley two (25) through the belt, the axis of pulley two (25) is provided with a through hole and is fixedly connected with a transmission shaft (24), the other end of the transmission shaft (24) penetrates fixed plate one (23) and fixed plate three (28) and is fixedly connected with cutting piece (210), the transmission shaft (24) is rotatably connected with bearing seat one (26) and bearing seat two (29) in front of fixed plate one (23) and behind fixed plate three (28) respectively, bearing seat one (26) and bearing seat two (29) are fixedly connected with fixed plate one (23) and fixed plate three (28) respectively, fixed plate two (27) is fixedly connected between fixed plate three (28) and fixed plate one (23), fixed plate three (28) and fixed plate one (23) are fixedly connected with support one (1), the right side of fixed plate three (28) is fixedly connected with dust cover (211).
3. A stone processing slitting device according to claim 2, characterized in that: The dust suction device (4) includes a dust suction pipeline (41), the left side of the dust suction pipeline (41) is provided with a ventilation hole and is fixedly connected with a ventilation pipeline (42), the other end of the ventilation pipeline (42) is fixedly connected with a shell (43), the shell (43) is provided with an air inlet at the connection with the ventilation pipeline (42), the rear of the shell (43) is provided with an air outlet and is fixedly connected with a fan (44) in front of it, the shell (43) is provided with a dust discharging hole below the fan (44) and is rotatably connected with a dust discharging window (45) behind it.
4. A stone processing slitting device according to claim 3, characterized in that: The upper side of the air inlet of the shell (43) is fixedly connected with a partition plate (47), the upper side of the partition plate (47) is slidably connected with two filter bag supports (46), the inner sides of the two filter bag supports (46) are fixedly connected with filter bags, the left side of the shell (43) is fixedly connected with a baffle (48), the baffle (48) is provided with a viewing hole at the left side of the filter bag support (46) and is rotatably connected with a viewing window (49) outside it.