CN220742580U - Stone surface pattern processing equipment - Google Patents

Stone surface pattern processing equipment Download PDF

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Publication number
CN220742580U
CN220742580U CN202321902194.5U CN202321902194U CN220742580U CN 220742580 U CN220742580 U CN 220742580U CN 202321902194 U CN202321902194 U CN 202321902194U CN 220742580 U CN220742580 U CN 220742580U
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China
Prior art keywords
connecting sliding
stone
fixedly connected
sliding blocks
lifting driving
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CN202321902194.5U
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Chinese (zh)
Inventor
卓伊螽
卓伊红
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Macheng Hongtai Stone Products Co ltd
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Macheng Hongtai Stone Products Co ltd
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Priority to CN202321902194.5U priority Critical patent/CN220742580U/en
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Abstract

The utility model relates to the technical field of stone processing equipment, in particular to stone surface pattern processing equipment, which comprises an engraving machine body, a box body and a water circulation mechanism, wherein the engraving machine body is arranged at the upper end of the box body, the water circulation mechanism is connected with the engraving machine body and the box body, the stone surface pattern processing equipment further comprises stone feeding devices, each stone feeding device comprises two supporting guide rails, a connecting sliding block, a lifting driving assembly, a placing rack and a rolling shaft, the two supporting guide rails are fixedly connected with the box body and are oppositely arranged at one side of the box body, connecting sliding blocks are slidably arranged in the two supporting guide rails respectively through the lifting driving assembly, the lifting driving assembly is connected with the connecting sliding blocks and drives the connecting sliding blocks to move, the placing rack is fixedly connected with the two connecting sliding blocks and is arranged between the two connecting sliding blocks, and the rolling shaft is rotatably connected with the placing rack and is arranged in the placing rack, so that the stone surface pattern processing equipment can more conveniently feed stone.

Description

Stone surface pattern processing equipment
Technical Field
The utility model relates to the technical field of stone processing equipment, in particular to stone surface pattern processing equipment.
Background
The stone carving machine is a device for carving calligraphy and painting on natural stone, glass or ceramic by high-tech full-automatic computer control carving equipment. The stone carving machine generally adopts water to cool the stone and the carving knife during carving, and adopts water cooling to reduce dust during carving on the one hand, and on the other hand can wash out the scraps on the stone surface, thereby greatly improving the yield during carving. However, the existing stone carving machine cannot collect, treat and recycle the wastewater when in use, and mostly adopts a direct discharge mode to treat the wastewater, so that the waste of water resources is caused and the environment is polluted.
The prior art CN 217917425U discloses a stone material decorative pattern engraver for stone material processing, the on-line screen storage device comprises a base, base top fixedly connected with box, box top fixedly connected with engraver body, box surface fixedly connected with inlet tube, a plurality of hydraulic telescoping rods of base top fixedly connected with, a plurality of hydraulic telescoping rod end fixedly connected with racks, the inside roller bearings that are equipped with of rack, engraver body inside is equipped with hydrologic cycle mechanism, hydrologic cycle mechanism includes the recess, a plurality of boards of placing of recess inside fixedly connected with, recess bottom four corners all is equipped with the through-hole, the equal fixedly connected with of the inside both sides wall of engraver body a plurality of shower nozzles, the box top is equipped with the circulating water pond, a plurality of through-hole end all fixedly connected with drain pipes, a plurality of drain pipe ends all are equipped with the filter, realize the multiple reuse of water resource through hydrologic cycle mechanism, prevent to cause the waste of water resource.
However, in the technology, the hydraulic telescopic rod drives the placing rack to ascend so that the placing rack and the engraving machine body are at the same horizontal height, and the stone is moved into the engraving machine body by pushing the stone and then rotating by matching with a plurality of rollers, so that the burden of workers in feeding is reduced; however, the placing frame is arranged on the base, and the hydraulic telescopic rod can not be contacted with the ground as much as possible due to the telescopic reduction distance, so that the stone is manually moved, and the burden is high.
Disclosure of Invention
The utility model aims to provide stone surface pattern processing equipment, which solves the problems that in the prior art, a rack is arranged on a base, and the rack cannot be contacted with the ground as much as possible due to the fact that the hydraulic telescopic rod stretches and reduces the distance, so that the stone is manually moved, and the burden is high.
In order to achieve the above object, the present utility model provides a stone surface pattern processing apparatus, comprising a carving machine body, a box body and a water circulation mechanism, wherein the carving machine body is installed at the upper end of the box body, the water circulation mechanism is connected with the carving machine body and the box body, characterized in that,
the stone material feeding device is also included;
the stone material loading attachment includes supporting rail, connecting slider, lift drive assembly, rack and roller bearing, the quantity of supporting rail is two, two supporting rail respectively with box fixed connection, and relative being located one side of box, two through lift drive assembly slidable mounting respectively in the supporting rail connecting slider, lift drive assembly with connecting slider connects, and the drive connecting slider removes, the rack with two connecting slider fixed connection, and be located two between the connecting slider, the roller bearing with the rack rotates to be connected, and is located in the rack.
The lifting driving assembly comprises a screw rod, a bearing and a motor, wherein the screw rod is in threaded connection with the connecting sliding block, penetrates through the connecting sliding block and is in rotary connection with the supporting guide rail through the bearing; the inner side of the bearing is fixedly connected with the screw rod, the outer side of the bearing is fixedly connected with the support guide rail, and the bearing is rotationally connected with the screw rod and the support guide rail; the rotary output end of the motor is fixedly connected with the screw rod, and the motor is arranged at the top of the outer side wall of the supporting guide rail.
The lifting driving assembly further comprises a limiting block, wherein the limiting block is fixedly connected with the connecting sliding block and is positioned on one side of the connecting sliding block; the support guide rail is provided with a limiting chute, and the limiting chute is arranged on one side of the support guide rail and is matched with the connecting sliding block.
The lifting driving assembly further comprises a mounting plate and a fixing bolt, wherein the mounting plate is fixedly connected with the motor and sleeved on the motor; the fixing bolt is in threaded connection with the mounting plate and in threaded connection with the support guide rail.
The stone material loading device further comprises a cushion pad, wherein the cushion pad is fixedly connected with the placing frame and is positioned at the bottom of the placing frame.
According to the stone surface pattern processing equipment, when stone is fed and placed in the engraving machine body, one end of the stone is manually lifted up to be in contact with the rolling shaft, then the other end of the stone is pushed, the stone is driven to be placed on the placing frame through rotation of the rolling shaft, then the two connecting sliding blocks are simultaneously driven to simultaneously move upwards through the two lifting driving assemblies, the placing frame is driven to move upwards by the two connecting sliding blocks, the height of the upper end of the placing frame is horizontal to the bottom of a machine tool of the engraving machine body, then the stone is manually pushed, the stone is easily pushed into the engraving machine body through the rolling shafts, engraving work is carried out on the stone through the engraving machine body, and further stone surface pattern processing equipment is more convenient and convenient to feed the stone through the stone feeding device.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below.
Fig. 1 is a schematic view showing the overall structure of a stone surface pattern processing apparatus according to a first embodiment of the present utility model.
Fig. 2 is a schematic structural view of a stone loading device according to a first embodiment of the present utility model.
Fig. 3 is a schematic structural view of a stone loading device according to a second embodiment of the present utility model.
In the figure: 101-engraver body, 102-box, 103-hydrologic cycle mechanism, 104-supporting rail, 105-connecting slide block, 106-rack, 107-roller, 108-lead screw, 109-bearing, 110-motor, 111-stopper, 112-limit chute, 113-mounting panel, 114-fixing bolt, 215-blotter.
Detailed Description
The following detailed description of embodiments of the utility model, examples of which are illustrated in the accompanying drawings and, by way of example, are intended to be illustrative, and not to be construed as limiting, of the utility model.
First embodiment:
referring to fig. 1 and 2, fig. 1 is a schematic diagram of an overall structure of a stone surface pattern processing apparatus according to a first embodiment of the present utility model, and fig. 2 is a schematic diagram of a stone loading device according to a first embodiment of the present utility model.
The utility model relates to stone surface pattern processing equipment, which comprises: including engraver body 101, box 102, hydrologic cycle mechanism 103 and stone material loading attachment, stone material loading attachment includes support rail 104, connection slider 105, lift drive assembly, rack 106 and roller bearing 107, lift drive assembly includes lead screw 108, bearing 109, motor 110, stopper 111, mounting panel 113 and fixing bolt 114, support rail 104 has spacing spout 112. The problem that the stone is manually moved or the burden is large because the placing frame 106 is arranged on the base and the hydraulic telescopic rod stretches and reduces the distance so that the placing frame 106 cannot contact the ground as much as possible is solved by the scheme; it can be appreciated that the above-mentioned scheme can make the descending of the lifting rack 106 close to the ground, so that the stone material can be fed more conveniently after being moved to the rack 106 by manpower.
In this embodiment, engraver body 101 includes the lathe, and the top of lathe is equipped with the lathe frame, and the lathe frame bottom is equipped with the carving tool, makes things convenient for the carving tool to remove through the lathe frame, and the stone material on the lathe is carved the operation, have circulating water pond in the box 102, the bottom of box 102 is equipped with the base, realizes the steady of stone material surface pattern processing equipment is placed, the top of box 102 is used for installing engraver body 101, fixed mounting has the inlet tube on the box 102, installs the solenoid valve on the inlet tube, be used for realizing to input water resource in the box 102, water circulation mechanism 103 includes the recess, and the recess sets up the lathe bottom of engraver body 101, a plurality of placing plates of recess inside fixedly connected with, recess bottom four corners all are equipped with the through-hole, the equal fixedly connected with of inside both sides wall of engraver body 101 is a plurality of shower nozzles, the circulating water pond at box 102 top is equipped with a plurality of through-hole end equal fixedly connected with drain pipes, and a plurality of end all are equipped with filters, and circulating water pond top symmetry is equipped with high-pressure water pump, both sides high-pressure water pump both ends equal fixedly connected with hose 103, through water circulation mechanism realizes multiple times of water resource and prevents that water resource from wasting.
The number of the support rails 104 is two, the two support rails 104 are respectively and fixedly connected with the box 102, and are relatively positioned at one side of the box 102, the two support rails 104 are respectively and slidably provided with the connecting slide blocks 105 through lifting driving components, the lifting driving components are connected with the connecting slide blocks 105 and drive the connecting slide blocks 105 to move, the placing frame 106 is fixedly connected with the two connecting slide blocks 105, and is positioned between the two connecting slide blocks 105, and the rolling shafts 107 are rotatably connected with the placing frame 106 and are positioned in the placing frame 106. The two supporting rails 104 are fixedly installed at one end of the box 102, which is close to the side opening of the machine tool of the engraving machine body 101, the supporting rails 104 are provided with sliding grooves, the sliding grooves of the two supporting rails 104 are installed oppositely, the sliding grooves of the supporting rails 104 are used for sliding installation of the connecting slide blocks 105 and provide conditions for rotating installation of the screw rods 108 of the lifting driving components, the two connecting slide blocks 105 are respectively installed in the sliding grooves of the two supporting rails 104, threaded through holes are formed in the middle positions of the two connecting slide blocks 105 and are used for being in threaded connection with the screw rods 108 of the lifting driving components, the connecting slide blocks 105 are connected with the lifting driving components, the two lifting driving components are respectively installed on the two supporting rails 104, the two lifting driving components are simultaneously controlled by the same external controller and are used for driving the two connecting slide blocks 105 to move upwards or downwards simultaneously, the placing frame 106 is of a cuboid structure with grooves at the upper ends, the grooves at the upper ends of the placing frame 106 are used for providing conditions for the rolling shafts 107 to rotate, and the rolling shafts 107 are installed in the rolling frames 107 conveniently through the rolling shafts 107; therefore, when the stone material is loaded and placed into the engraver body 101, one end of the stone material is manually lifted up to the rack 106 and is contacted with the roller 107, then the other end of the stone material is pushed, the stone material is driven to be placed on the rack 106 through the rotation of the roller 107, then the two connecting sliding blocks 105 are simultaneously driven to move upwards through the two lifting driving components, the two connecting sliding blocks 105 drive the rack 106 to move upwards, the upper end of the rack 106 is horizontal to the bottom of a machine tool of the engraver body 101, then the stone material is manually pushed, the stone material is easily pushed into the engraver body 101 through the plurality of rollers 107, the engraving work is carried out on the stone material through the engraver body 101, and then the stone material surface pattern processing equipment is more convenient for stone material loading through the stone material loading device.
Secondly, the screw rod 108 is in threaded connection with the connecting slide block 105, penetrates through the connecting slide block 105, and is in rotary connection with the supporting guide rail 104 through the bearing 109; the inner side of the bearing 109 is fixedly connected with the screw rod 108, the outer side of the bearing 109 is fixedly connected with the support guide rail 104, and the bearing 109 is rotationally connected with the screw rod 108 and the support guide rail 104; the rotation output end of the motor 110 is fixedly connected with the screw rod 108, and the motor 110 is mounted on the top of the outer side wall of the support rail 104. The limiting block 111 is fixedly connected with the connecting slide block 105 and is positioned at one side of the connecting slide block 105; the limit chute 112 is disposed on one side of the support rail 104 and cooperates with the connecting slider 105. The two screw rods 108 are respectively arranged in the two support guide rails 104, the bearings 109 are sleeved at the upper ends of the two screw rods 108, the two support guide rails 104 are provided with round through holes matched with the diameters of the bearings 109, the outer side walls of the two bearings 109 are fixedly connected to the two support guide rails 104, the two screw rods 108 are respectively and rotatably arranged on the two support guide rails 104 through the two bearings 109, the two screw rods 108 are respectively positioned in sliding grooves of the support guide rails 104 and respectively penetrate through the two connecting slide blocks 105 and are in threaded connection with the connecting slide blocks 105, the connecting slide blocks 105 are limited by the limiting blocks 111 to vertically move in the support guide rails 104 through the screw rods 108, the two motors 110 are respectively connected with the tops of the two screw rods 108, the screw rods 108 are driven to rotate through the motors 110, the two ends of the connecting slide blocks 105 are respectively and fixedly arranged at the two ends of the connecting slide blocks 111 and respectively and are respectively connected with the two limiting blocks 111, and are connected with the two limiting blocks 112 in a vertical direction, and the two end blocks 112 are connected with the two end blocks through the two connecting slide blocks, and the two end blocks are in the vertical direction of the connecting slide blocks and the two end blocks are in the vertical direction and the vertical direction, and the two end blocks are in the vertical direction of the sliding blocks are in the vertical direction in the support guide rails 104.
Meanwhile, the mounting plate 113 is fixedly connected with the motor 110 and sleeved on the motor 110; the fixing bolt 114 is screwed with the mounting plate 113 and screwed with the support rail 104. The outside fixed cover of two motor 110 lower extreme is equipped with mounting panel 113, mounting panel 113 be inside have with motor 110 form fit's through-hole cuboid structure, four diagonal angle departments of mounting panel 113 are equipped with the screw hole that link up respectively, every screw hole internal stretching into fixing bolt 114, every fixing bolt 114's lower extreme part stretches into the top of supporting rail 104, through fixing bolt 114's screw thread rotation will mounting panel 113 is in the top of supporting rail 104, thereby realize motor 110's installation.
When the stone surface pattern processing equipment is used, one end of a stone is manually lifted to the placing frame 106 to be contacted with the roller 107 when the stone is placed in the engraving machine body 101, then the other end of the stone is pushed, the stone is driven to be placed on the placing frame 106 through the rotation of the roller 107, then the two connecting sliding blocks 105 are simultaneously driven to move upwards through the two lifting driving components, the placing frame 106 is driven to move upwards by the two connecting sliding blocks 105, the upper end of the placing frame 106 is horizontal to the bottom of a machine tool of the engraving machine body 101, then the stone is manually pushed, the stone is easily pushed into the engraving machine body 101 through the plurality of rollers 107, the engraving work is carried out on the stone through the engraving machine body 101, and further the stone surface pattern processing equipment is more convenient for stone feeding through the stone feeding device.
Second embodiment:
referring to fig. 3, fig. 3 is a schematic structural diagram of a stone loading device according to a second embodiment of the present utility model. On the basis of the first embodiment, the stone material feeding device of the present utility model further comprises a cushion pad 215.
In this embodiment, the cushion 215 is fixedly connected to the rack 106 and is located at the bottom of the rack 106. The buffer pad 215 is of a cuboid structure and is matched with the bottom of the placing rack 106 in shape, the buffer pad 215 is made of rubber, and has a buffer function and is used for buffering and protecting the bottom of the placing rack 106, so that the placing rack 106 is prevented from being in direct collision contact with the ground.
The foregoing disclosure is only illustrative of one or more preferred embodiments of the present application and is not intended to limit the scope of the claims hereof, as it is to be understood by those skilled in the art that all or part of the process of implementing the described embodiment may be practiced otherwise than as specifically described and illustrated by the appended claims.

Claims (4)

1. The stone surface pattern processing equipment comprises an engraving machine body, a box body and a water circulation mechanism, wherein the engraving machine body is arranged at the upper end of the box body, the water circulation mechanism is connected with the engraving machine body and the box body,
the stone material feeding device is also included;
the stone material loading device comprises two support guide rails, connecting sliding blocks, lifting driving assemblies, a placing frame and rolling shafts, wherein the two support guide rails are fixedly connected with the box body respectively and are oppositely arranged on one side of the box body, the connecting sliding blocks are slidably arranged in the two support guide rails respectively through the lifting driving assemblies, the lifting driving assemblies are connected with the connecting sliding blocks and drive the connecting sliding blocks to move, the placing frame is fixedly connected with the two connecting sliding blocks and is arranged between the two connecting sliding blocks, and the rolling shafts are rotatably connected with the placing frame and are arranged in the placing frame;
the lifting driving assembly comprises a screw rod, a bearing and a motor, wherein the screw rod is in threaded connection with the connecting sliding block, penetrates through the connecting sliding block and is in rotary connection with the supporting guide rail through the bearing; the inner side of the bearing is fixedly connected with the screw rod, the outer side of the bearing is fixedly connected with the support guide rail, and the bearing is rotationally connected with the screw rod and the support guide rail; the rotary output end of the motor is fixedly connected with the screw rod, and the motor is arranged at the top of the outer side wall of the supporting guide rail.
2. The stone surface pattern processing apparatus according to claim 1, wherein,
the lifting driving assembly further comprises a limiting block, and the limiting block is fixedly connected with the connecting sliding block and is positioned on one side of the connecting sliding block; the support guide rail is provided with a limiting chute, and the limiting chute is arranged on one side of the support guide rail and is matched with the connecting sliding block.
3. The stone surface pattern processing apparatus according to claim 1, wherein,
the lifting driving assembly further comprises a mounting plate and a fixing bolt, wherein the mounting plate is fixedly connected with the motor and sleeved on the motor; the fixing bolt is in threaded connection with the mounting plate and in threaded connection with the support guide rail.
4. The stone surface pattern processing apparatus according to claim 1, wherein,
the stone material loading device also comprises a cushion pad, wherein the cushion pad is fixedly connected with the placing frame and is positioned at the bottom of the placing frame.
CN202321902194.5U 2023-07-19 2023-07-19 Stone surface pattern processing equipment Active CN220742580U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321902194.5U CN220742580U (en) 2023-07-19 2023-07-19 Stone surface pattern processing equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321902194.5U CN220742580U (en) 2023-07-19 2023-07-19 Stone surface pattern processing equipment

Publications (1)

Publication Number Publication Date
CN220742580U true CN220742580U (en) 2024-04-09

Family

ID=90568486

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321902194.5U Active CN220742580U (en) 2023-07-19 2023-07-19 Stone surface pattern processing equipment

Country Status (1)

Country Link
CN (1) CN220742580U (en)

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