CN213411523U - Mine stone material base member internal cutting slit angle grinding device - Google Patents

Mine stone material base member internal cutting slit angle grinding device Download PDF

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Publication number
CN213411523U
CN213411523U CN202021907248.3U CN202021907248U CN213411523U CN 213411523 U CN213411523 U CN 213411523U CN 202021907248 U CN202021907248 U CN 202021907248U CN 213411523 U CN213411523 U CN 213411523U
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China
Prior art keywords
support frame
driving motor
throw
grind
seat
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Active
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CN202021907248.3U
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Chinese (zh)
Inventor
林孝狮
王少平
林光展
章仙凡
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Fujian Tianshiyuan Technology Co ltd
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Fuzhou Skystone Diamond Tool Co Ltd
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Abstract

The utility model relates to a mine stone material cutting technical field especially relates to a cut-off mill angle device in mine stone material base member, include host computer, drive flexible axle and throw and grind the mechanism, the host computer includes quick-witted case, driving motor and rotation mechanism set up in quick-witted incasement, and driving motor is connected with the rotation mechanism transmission, throw and grind the mechanism and include the connecting seat, throw and grind support frame, main drive shaft, roating seat and bistrique, throw and grind the support frame cover and locate outside the main drive shaft, connecting seat and roating seat set up respectively in throwing the both ends of grinding the support frame, the one end of drive flexible axle and main drive shaft is connected to the connecting seat, the other end and the roating seat of main drive shaft are fixed, and the roating seat can throw the grinding support frame relatively and rotate, the bistrique is fixed in. Polishing in this scheme is effectual, efficient, and labour saving and time saving, can effectively improve the life of diamond wire saw.

Description

Mine stone material base member internal cutting slit angle grinding device
Technical Field
The utility model relates to a mine stone material cutting technical field especially relates to a mine stone material base member internal cutting slot angle grinder.
Background
At present, in domestic mining, a circular saw is mainly adopted to saw and cut a vertical face, and then a rope saw machine is used for cutting a pocket bottom. Generally, a diamond wire saw for high-speed rotation cutting in a wire saw machine is hung in stone from a circular saw cutting slit, then is attached to the bottom surface of the cutting slit, and then is used for cutting the stone after a loop is formed by pressing and connecting joints at two ends so as to mine the stone. However, because the cross cutting seam edge sawed by the circular saw is a right angle, the diamond wire saw is greatly bent at the position, and the cutting seam edge is sharp, so that rubber on the wire saw is easily damaged, and the service life of the diamond wire saw is greatly shortened.
At present, in stone material exploitation work, generally the manual work is pressed old diamond wire saw with the band iron strip in the cutting seam and is treated the crooked outside of the angle of bending, and rethread both sides personnel are manual to be pulled, saw out the unfilled corner, and above operation is wasted time and energy, and the unfilled corner effect of grinding out is also not good, still can lead to the fact the influence to the life of diamond wire saw.
Disclosure of Invention
Therefore, the need provides a mine stone substrate internal cutting seam angle grinding device for when solving among the prior art mining stone material, the inside cutting seam edge of stone material all is the right angle, and the saw angle operation is wasted time and energy, and the unfilled corner effect of wearing out is also not good, causes the technical problem of the life reduction of diamond wire saw.
For realizing above-mentioned mesh, the utility model provides a cut-off mill angle device in mine stone material base member, the mill angle device includes host computer, drive flexible axle and throws the mill and construct, the host computer includes quick-witted case, driving motor and rotation mechanism set up in quick-witted incasement, and driving motor is connected with the rotation mechanism transmission, throw the mill and construct including the connecting seat, throw mill support frame, main drive axle, roating seat and bistrique, throw the mill support frame cover and locate outside the main drive axle, connecting seat and roating seat set up respectively in the both ends of throwing the mill support frame, the one end of drive flexible axle and main drive axle is connected to the connecting seat, the other end and the roating seat of main drive axle are fixed, and the roating seat can throw the mill support frame relatively and rotate, be fixed in on the roating seat, the drive.
As an optimized structure of the utility model, the host computer still includes the battery, the battery is connected with the driving motor electricity.
As the utility model discloses a preferred structure, the host computer still includes control switch, control switch sets up on quick-witted outer wall of the case, and control switch is used for controlling opening of driving motor and stops.
As the utility model discloses a preferred structure, rotation mechanism includes mount pad, pivot and slewing bearing, in the mount pad was located to the pivot cover, be provided with slewing bearing between pivot and the mount pad, pivot one end is connected with the drive flexible axle, and the other end is connected with the driving motor transmission.
As an optimized structure of the utility model, the driving motor is connected with the rotary mechanism through a belt transmission.
As a preferred structure of the utility model, the polishing and grinding mechanism further comprises a grinding head holder, which is sleeved between the rotary seat and the grinding head.
As the utility model discloses a preferred structure, be provided with the oiling mouth on polishing the lateral wall of support frame, the oiling mouth communicates to main drive shaft department.
As a preferred structure of the utility model, the host computer still includes handle frame and handle, handle frame is fixed with quick-witted case, the handle sets up on handle frame.
Different from the prior art, the technical scheme has the following advantages: the utility model relates to a mine stone material base member internal cutting seam angle grinding device, including the host computer, drive flexible axle and polishing mechanism, drive rotation mechanism through the driving motor in the host computer and take place to rotate, and then drive the drive flexible axle and take place to rotate, under the connection of connecting seat in polishing mechanism, drive main drive shaft and rotate around polishing the support frame, then drive the revolving bed and take place to rotate, and then the drive bistrique takes place to rotate, stretches into the marginal right angle department of cutting seam so with the bistrique, alright polish with the sharp edge of cutting seam. In this scheme, grind the angle device and use during drive flexible axle transmission power mine stone material cutting seam, will throw the bistrique that grinds the mechanism and deliver to the marginal angle department of cutting seam, start driving motor alright with the corner of drive bistrique to the cutting seam is polished, throw and grind effectual, efficient, and labour saving and time saving can effectively improve the life of diamond wire saw.
Drawings
FIG. 1 is a schematic perspective view of an internal cutting seam corner grinding device for a mine stone substrate according to an embodiment;
FIG. 2 is a schematic partial cross-sectional view of an internal cutting and corner grinding device for a mine stone substrate according to an embodiment;
FIG. 3 is a schematic diagram of a partial oblique view structure of a polishing mechanism of the device for grinding an angle of a cut-off seam in a mine stone substrate according to the embodiment;
FIG. 4 is an enlarged view of area A of FIG. 3;
FIG. 5 is a schematic structural diagram of a grinding head holder in the device for chamfering a slot in a mine stone substrate according to an embodiment;
fig. 6 is a schematic position diagram of the polishing mechanism in operation according to the embodiment.
Description of reference numerals:
100. a host;
110. a chassis;
120. a drive motor;
130. a swing mechanism;
140. a battery;
150. a control switch;
160. a handle frame;
170. a handle;
200. driving a flexible shaft;
300. a polishing mechanism;
310. a connecting seat;
320. polishing and grinding the support frame; 321. an oil injection nozzle;
330. a main drive shaft;
340. a rotary base;
350. grinding heads;
360. a grinding head holder;
400. a belt;
500. stone materials;
600. cutting a seam;
700. and (5) grinding the corner position.
Detailed Description
To explain technical contents, structural features, and objects and effects of the technical solutions in detail, the following detailed description is given with reference to the accompanying drawings in conjunction with the embodiments.
Referring to fig. 1 and 6, the present embodiment provides an angle grinding device for a cut seam in a mine stone substrate, the angle grinding device includes a main machine 100, a driving flexible shaft 200, and a polishing mechanism 300, the main machine 100 includes a machine box 110, a driving motor 120, and a swing mechanism 130, the driving motor 120 and the swing mechanism 130 are disposed in the machine box 110, the driving motor 120 is in transmission connection with the swing mechanism 130, the polishing mechanism 300 includes a connecting seat 310, a polishing support frame 320, a main driving shaft 330, a swing seat 340, and a grinding head 350, the polishing support frame 320 is sleeved outside the main driving shaft 330, the connecting seat 310 and the swing seat 340 are respectively disposed at two ends of the polishing support frame 320, the connecting seat 310 is connected to one end of the driving flexible shaft 200 and the main driving shaft 330, the other end of the main driving shaft 330 is fixed to the swing seat 340, the swing seat 340 is rotatable relative to the polishing support frame 320, the grinding head 350 is fixed, the driving flexible shaft 200 is in transmission connection with the swing mechanism 130.
The main body 100 mainly serves as a power supply unit for supplying a driving force to the polishing mechanism 300. Specifically, the mainframe 100 includes a chassis 110, a driving motor 120, and a swing mechanism 130, wherein the chassis 110 serves as an outer protection mechanism for the mainframe 100 and is used for installing the driving motor 120 and the swing mechanism 130. The driving motor 120 is used to provide a rotational driving force. The swing mechanism 130 is used for transmitting the power of the driving motor 120 to the driving flexible shaft 200, so that the driving motor 120 and the driving flexible shaft 200 can be conveniently connected. The driving flexible shaft 200 is used for transmitting the rotation driving force of the driving motor 120, the driving flexible shaft 200 is more convenient to place the polishing mechanism 300, and the polishing mechanism 300 can be conveniently stretched into the cutting seam 600. The polishing mechanism 300 is used for polishing the right-angled corners of the cut seam 600. Specifically, the polishing mechanism 300 includes a connecting base 310, a polishing support frame 320, a main driving shaft 330, a rotary base 340 and a grinding head 350. The connecting base 310 is used for connecting the driving flexible shaft 200 and the main driving shaft 330, so that power can be conveniently transmitted to the main driving shaft 330, the butt joint is convenient, and the connection is firm. The polishing support frame 320 is used as a main body mechanism of the polishing mechanism 300 and is used for installing other components. The main driving shaft 330 is used as a power transmission structure between the rotary seat 340 and the main driving shaft 330, and the main driving shaft 330 rotates in the polishing support frame 320. In a specific embodiment, a rotating bearing is disposed between the main driving shaft 330 and the inner wall of the polishing support frame 320. The rotary base 340 serves as a mounting mechanism for the grinding head 350, and the grinding head 350 is driven to rotate under the condition that the main driving shaft 330 drives the rotary base 340 to rotate. The grinding heads 350 are directly used to contact the stone material 500 at the corners of the cutting joints 600 to perform high-speed rotation grinding on the sharp corners. Preferably, the grinding head 350 can be a diamond grinding head 350, so that the use cost is low and the grinding effect is good.
The embodiment provides a mine stone substrate internal cutting slot angle grinder, including host computer 100, drive flexible axle 200 and polishing mechanism 300, drive rotation mechanism 130 through driving motor 120 in host computer 100 and take place to rotate, and then drive flexible axle 200 and take place to rotate, under the connection of connecting seat 310 in polishing mechanism 300, drive main drive shaft 330 and rotate around polishing support frame 320, then drive revolving bed 340 and take place to rotate, and then drive bistrique 350 takes place to rotate, then stretch into bistrique 350 into the waiting to grind angle position 700 of cutting slot 600, alright polish with the sharp edge of cutting slot 600. In this scheme, the angle grinding device uses drive flexible axle 200 transmission power to 500 cutting joints 600 of mine stone material in, will throw the bistrique 350 of grinding mechanism 300 and deliver 700 departments of waiting to grind the angle position of cutting joints 600, start driving motor 120 alright with the corner of drive bistrique 350 pair cutting joints 600 is polished, throw and grind effectually, efficient, and labour saving and time saving, can effectively improve diamond wire saw's life.
Referring to fig. 2, as a preferred embodiment of the present invention, the main body 100 further includes a battery 140, and the battery 140 is electrically connected to the driving motor 120. The battery 140 is used for supplying power to the driving motor 120 so that the driving motor 120 can work normally. The mode of adopting rechargeable battery 140 power supply more is fit for the angle grinding device and uses in the mine, is convenient for remove. In a specific embodiment, the host 100 further includes a control switch 150, the control switch 150 is disposed on an outer wall of the chassis 110, and the control switch 150 is configured to control starting and stopping of the driving motor 120.
In the embodiment shown in fig. 2, the rotation mechanism 130 includes a mounting seat, a rotation shaft and a rotation bearing, the rotation shaft is sleeved in the mounting seat, the rotation bearing is disposed between the rotation shaft and the mounting seat, one end of the rotation shaft is connected to the driving flexible shaft 200, and the other end of the rotation shaft is in transmission connection with the driving motor 120. The mounting seat serves as a main structure of the swing mechanism 130, and is used for mounting the rotating shaft and the swing bearing, and the mounting seat is fixed to the case 110. The arrangement of the slewing bearing is convenient for the rotating shaft to stably rotate. In a preferred embodiment, the driving motor 120 is in transmission connection with the swing mechanism 130 through a belt 400. One end of a power output shaft in the driving motor 120 and one end of a rotating shaft in the swing mechanism 130 are both provided with a belt 400 wheel, and the two belt 400 wheels are connected and driven through the belt 400.
Referring to fig. 1, 3 and 4, as a preferred embodiment of the present invention, the polishing mechanism 300 further includes a grinding head holder 360, and the grinding head holder 360 is sleeved between the rotary base 340 and the grinding head 350. The arrangement of the grinding head holder 360 facilitates the mounting and fixing of the grinding head 350, and also facilitates the replacement of the grinding head 350 when the grinding head is worn seriously. Specifically, the grinding head 350 includes a polishing portion and a rod portion, the rod portion is inserted into the grinding head holder 360, and then the grinding head holder 360 is fixed to the revolving bed 340.
Referring to fig. 3, as a preferred embodiment of the present invention, an oil nozzle 321 is disposed on a sidewall of the polishing support frame 320, and the oil nozzle 321 communicates with a main driving shaft 330. The oil nozzle 321 is provided to facilitate the addition of lubricating oil to lubricate the main driving shaft 330, which is more advantageous for polishing.
As shown in fig. 1, as a preferred embodiment of the present invention, the main body 100 further includes a handle frame 160 and a handle 170, the handle frame 160 is fixed to the casing 110, and the handle 170 is disposed on the handle frame 160. The handle frame 160 and the handle 170 are arranged to facilitate carrying and moving of the angle grinding device, thereby saving more effort.
It should be noted that, although the above embodiments have been described herein, the scope of the present invention is not limited thereby. Therefore, based on the innovative concept of the present invention, the changes and modifications of the embodiments described herein, or the equivalent structure or equivalent process changes made by the contents of the specification and the drawings of the present invention, directly or indirectly apply the above technical solutions to other related technical fields, all included in the scope of the present invention.

Claims (8)

1. The utility model provides a mine stone material base member inscribe slot grinds angle device, a serial communication port, it includes host computer, drive flexible axle and throws and grinds the mechanism to grind the angle device, the host computer includes quick-witted case, driving motor and rotation mechanism set up in quick-witted incasement, and driving motor is connected with the rotation mechanism transmission, throw and grind the mechanism and include the connecting seat, throw and grind support frame, main drive axle, roating seat and bistrique, throw and grind the support frame cover and locate outside the main drive axle, connecting seat and roating seat set up respectively in throwing the both ends of grinding the support frame, the one end of drive flexible axle and main drive axle is connected to the connecting seat, the other end and the roating seat of main drive axle are fixed, and the roating seat can throw relatively and grind the support frame and rotate, the.
2. The mining stone substrate internal cutting seam angle grinding device of claim 1, wherein the main machine further comprises a battery, and the battery is electrically connected with a driving motor.
3. The mining stone substrate internal cutting seam angle grinding device of claim 2, wherein the main machine further comprises a control switch, the control switch is arranged on the outer wall of the machine case, and the control switch is used for controlling the start and stop of the driving motor.
4. The device for chamfering mine stone substrates according to claim 1, wherein the rotating mechanism comprises a mounting seat, a rotating shaft and a rotating bearing, the rotating shaft is sleeved in the mounting seat, the rotating bearing is arranged between the rotating shaft and the mounting seat, one end of the rotating shaft is connected with the driving flexible shaft, and the other end of the rotating shaft is in transmission connection with the driving motor.
5. The device for chamfering mine stone substrates according to claim 1, wherein the driving motor is connected to the revolving mechanism through a belt drive.
6. The mine stone substrate internal cutting seam corner grinding device of claim 1, wherein the polishing mechanism further comprises a grinding head holder, and the grinding head holder is sleeved between the rotary base and the grinding head.
7. The mining stone substrate internal cutting seam corner grinding device as claimed in claim 1, wherein an oil injection nozzle is arranged on the side wall of the polishing support frame, and the oil injection nozzle is communicated to a main driving shaft.
8. The mining stone substrate internal cutting seam angle grinding device of claim 1, wherein the main machine further comprises a handle frame and a handle, the handle frame is fixed with the machine case, and the handle is arranged on the handle frame.
CN202021907248.3U 2020-09-03 2020-09-03 Mine stone material base member internal cutting slit angle grinding device Active CN213411523U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021907248.3U CN213411523U (en) 2020-09-03 2020-09-03 Mine stone material base member internal cutting slit angle grinding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021907248.3U CN213411523U (en) 2020-09-03 2020-09-03 Mine stone material base member internal cutting slit angle grinding device

Publications (1)

Publication Number Publication Date
CN213411523U true CN213411523U (en) 2021-06-11

Family

ID=76260238

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021907248.3U Active CN213411523U (en) 2020-09-03 2020-09-03 Mine stone material base member internal cutting slit angle grinding device

Country Status (1)

Country Link
CN (1) CN213411523U (en)

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Address after: No.6 Nanxing Road, sugarcane street, Minhou County, Fuzhou City, Fujian Province, 350100

Patentee after: Fujian Tianshiyuan Technology Co.,Ltd.

Address before: No.6 Nanxing Road, sugarcane street, Minhou County, Fuzhou City, Fujian Province, 350100

Patentee before: FUZHOU SKYSTONE DIAMOND TOOL Co.,Ltd.