CN213357331U - Glass processing device - Google Patents

Glass processing device Download PDF

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Publication number
CN213357331U
CN213357331U CN202022021473.3U CN202022021473U CN213357331U CN 213357331 U CN213357331 U CN 213357331U CN 202022021473 U CN202022021473 U CN 202022021473U CN 213357331 U CN213357331 U CN 213357331U
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China
Prior art keywords
mouth
cutting
fixedly connected
glass processing
tool apron
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CN202022021473.3U
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Chinese (zh)
Inventor
张大朋
赵伟
赵佳颖
褚建强
张克云
成战强
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Anhui Xinmin Glass Co ltd
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Anhui Xinmin Glass Co ltd
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Priority to CN202022021473.3U priority Critical patent/CN213357331U/en
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  • Re-Forming, After-Treatment, Cutting And Transporting Of Glass Products (AREA)

Abstract

The utility model discloses a glass processing device, including cutting plate, cutting plate's top sliding connection has cutting means, cutting means includes the mouth type blade holder, the bottom fixedly connected with mouth type sword of mouth type blade holder, both sides all are equipped with driver part around cutting means, and driver part is used for the drive the equal fixedly connected with frame in both sides around mouth type blade holder lift, the mouth type blade holder, the frame is including the horizontal pole portion that is located mouth type blade holder below, the frame still includes fixed connection in a mouth type blade holder left side, and right side lateral wall end position hangs the pole portion, hangs through stand fixed connection between pole portion and the horizontal pole portion, is located the right side position hang and be equipped with material loading part between the pole portion, be located the left side position hang and be equipped with down the material part between the pole portion. By adopting the design of the parts of the device, the cutting efficiency is high, manual excessive intervention operation is not needed, the feeding, cutting and discharging are integrated, the flexibility is high, and the processing efficiency of the glass plate is effectively improved.

Description

Glass processing device
Technical Field
The utility model relates to a glass processing device field especially relates to a glass processing device.
Background
Glass is a very common material, and most of glass has light transmittance, so that the glass is widely applied to industrial processing and production processes.
Wherein, the plate made of glass, namely the glass plate, has wider application in industry. In the processing process of the glass plate, the formed high-temperature plate has high flexibility and low hardness, so that the plate is often cut at high temperature in order to be processed into a specific size, the edge is neat by cutting, and the glass plate with the specific size is obtained by cutting.
However, most of the cutting devices disclosed in the prior art are large-scale mechanical devices, and the cutting size parameter range is small, so that the cutting device is suitable for mass production of size glass.
In practical application, glass with special size is often obtained by small-batch processing, manual cutting is mostly adopted in the prior art, and the method has the defects that: the manual cutting is dangerous, the manual cutting efficiency is low, and workers are easily scalded by the manual cutting at high temperature, so that safety accidents are caused.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that a glass processing device is provided.
The utility model discloses a solve above-mentioned technical problem through following technical scheme:
the glass processing device comprises a cutting plate, wherein the top of the cutting plate is slidably connected with a cutting component;
the cutting component comprises a mouth-shaped cutter holder, and the bottom of the mouth-shaped cutter holder is fixedly connected with a mouth-shaped cutter;
the front side and the rear side of the cutting part are both provided with driving parts;
the driving part is used for driving the mouth-shaped tool apron to lift;
the front side and the rear side of the mouth-shaped tool apron are fixedly connected with a rack;
the rack comprises a cross rod part positioned below the mouth-shaped tool apron and also comprises suspension rod parts fixedly connected to the end parts of the side walls at the left side and the right side of the mouth-shaped tool apron;
the suspension rod part is fixedly connected with the cross rod part through the upright post part;
a feeding part is arranged between the suspension rod parts at the right side part;
and a blanking part is arranged between the suspension rod parts at the left side.
Preferably, the bottom of the cutting board is fixedly connected to the top of the cross rod part through a plurality of upright column parts.
Preferably, the top of the mouth-shaped tool apron is provided with four bevel parts;
the bevel parts are all upwards fixedly connected with guide rods, and the guide rods upwards penetrate through the mouth-shaped tool apron;
the guide rod is connected with the mouth-shaped tool apron in a sliding mode.
Preferably, the driving part comprises a top plate fixedly connected to the central part of the side wall of the die holder;
the bottom fixedly connected with cylinder of roof, the piston rod fixed connection of cylinder is in the bottom of roof.
Preferably, the cylinder barrel of the cylinder is fixedly connected to the cross rod part through a bolt.
Preferably, the feeding part and the discharging part each comprise a plurality of rotating rollers assembled between the suspension rod parts;
the rotating rollers are in transmission connection through a transmission component.
Preferably, the front side wall and the rear side wall of the rotating roller are both fixedly connected with rotating shafts;
the rotating shaft is rotatably connected to the suspension rod part;
and the rotating shaft is positioned at the rear side part and is provided with a transmission part.
Preferably, the transmission component comprises a chain wheel fixedly connected to the rotating shaft;
the chain wheels are in transmission connection through chains;
and a driving motor is assembled on the chain wheel at the end position.
Compared with the prior art, the utility model has the following advantages:
the utility model discloses a glass processing device, the top sliding connection who cuts board, cutting board through the design has cutting parts, cutting parts includes the mouth type blade holder, the bottom fixedly connected with mouth type sword of mouth type blade holder, cutting parts all are equipped with drive part, drive part and are used for the drive both sides all around the mouth type blade holder goes up and down, the equal fixedly connected with frame in both sides, frame are including the horizontal pole portion that is located mouth type blade holder below around the mouth type blade holder, the frame still includes fixed connection in the left and right both sides lateral wall end position of mouth type blade holder hang the pole portion, hang through stand portion fixed connection, be located the right side position between pole portion hang and be equipped with material loading part, be located the left side position hang and be equipped with unloading parts between the pole portion, realize cutting glass panels in a flexible way.
By adopting the design of the parts of the device, the cutting efficiency is high, manual excessive intervention operation is not needed, the feeding, cutting and discharging are integrated, the flexibility is high, and the processing efficiency of the glass plate is effectively improved.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of the present invention;
fig. 2 is a schematic structural diagram of another view angle in fig. 1 according to the embodiment of the present invention;
FIG. 3 is a schematic structural diagram of a loading component in an embodiment of the present invention;
fig. 4 is a front view of the embodiment of the present invention in fig. 1;
fig. 5 is a top view of fig. 1 in an embodiment of the present invention.
Detailed Description
The embodiments of the present invention will be described in detail below, and the present embodiment is implemented on the premise of the technical solution of the present invention, and a detailed implementation manner and a specific operation process are given, but the scope of the present invention is not limited to the following embodiments.
As shown in fig. 1 to 5, the glass processing device comprises a cutting plate 7, and a cutting part is connected to the top of the cutting plate 7 in a sliding mode.
The cutting part can realize the rapid cutting of the high-temperature glass plate into the glass plate with a specific size.
The specific structure of the cutting part is as follows:
the cutting component comprises a mouth-shaped cutter holder 1, and the bottom of the mouth-shaped cutter holder 1 is fixedly connected with a mouth-shaped cutter 2; the front side and the rear side of the cutting part are both provided with driving parts; the driving component is used for driving the mouth-shaped tool apron 1 to lift.
Specifically, the top of the mouth-shaped tool holder 1 is provided with four bevel parts; the bevel parts are all upwards fixedly connected with guide rods 3, and the guide rods 3 upwards penetrate through the mouth-shaped tool apron 1; the guide rod 3 is connected with the mouth-shaped tool apron 1 in a sliding way. This mode realizes that mouth type blade holder 1 moves up and down steadily.
The driving part comprises a top plate 41 fixedly connected with the central part of the side wall of the mouth-shaped tool apron 1; the bottom of the top plate 41 is fixedly connected with an air cylinder 42, and a piston rod of the air cylinder 42 is fixedly connected to the bottom of the top plate 41 (a cylinder barrel of the air cylinder 42 is fixedly connected to a cross rod part through a bolt).
And the air cylinder 42 is opened, and the air cylinder 42 drives the mouth-shaped cutter holder 1 downwards to carry the mouth-shaped cutter 2 downwards to cut.
The front side and the rear side of the mouth-shaped tool apron 1 are fixedly connected with a frame 5; supported by a frame 5.
The specific structure of the frame 5 is as follows:
the frame 5 comprises a cross rod part 51 positioned below the mouth-shaped tool apron 1, and the frame 5 further comprises a suspension rod part 52 fixedly connected to the end parts of the left side wall and the right side wall of the mouth-shaped tool apron 1; the suspending rod part 52 and the horizontal rod part 51 are fixedly connected through a column part 53. Meanwhile, the bottom of the cutting plate 7 is fixedly connected to the top of the beam portion 51 through a plurality of pillar portions 53.
In order to realize the feeding of the high-temperature glass plate, a feeding part is assembled between the suspension rod parts 52 at the right side part; and a blanking part is arranged between the suspension rod parts 52 at the left side part.
The structure of the feeding member is the same as that of the discharging member, and specifically, the feeding member and the discharging member each include a plurality of rotating rollers 61 fitted between the suspension lever portions 52 (between the suspension lever portions 52 on both front and rear sides). The rotating rollers 61 are in transmission connection through a transmission component.
Specifically, the front and rear side walls of the rotating roller 61 are fixedly connected with rotating shafts; the rotating shaft is rotatably connected to the suspension rod part 52; and the rotating shaft is positioned at the rear side part and is provided with a transmission part. Specifically, the transmission member includes a sprocket 62 fixedly connected to the shaft; in the prior art, the chain wheels 62 are in transmission connection with each other through a chain, and specifically, the chain is in transmission connection with all the chain wheels 62 in an alternate meshing manner.
Meanwhile, a driving motor 63 is mounted on the sprocket 62 at the end position.
The glass plate is placed on the rotating rollers 61 on the feeding part, the driving motor 63 is started to give friction power to the glass plate under the coordination of all the rotating rollers 61, at the moment, the glass plate enters the cutting plate 7, after the glass plate is cut according to the mode, an operator clamps the glass plate on the feeding roller on the feeding part by means of tools, and similarly, the glass plate is fed in the coordination of the rotating rollers 61.
By adopting the device component design, the glass plate with special size can be processed, and the mouth-shaped tool apron 1 and the mouth-shaped tool 2 can be designed into different sizes to meet the processing requirement.
The device has the advantages that the cutting efficiency is high, manual excessive intervention operation is not needed, the feeding, cutting and discharging are integrated, the flexibility is high, and the processing efficiency of the glass plate is effectively improved.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (8)

1. The glass processing device is characterized by comprising a cutting plate, wherein the top of the cutting plate is connected with a cutting part in a sliding manner;
the cutting component comprises a mouth-shaped cutter holder, and the bottom of the mouth-shaped cutter holder is fixedly connected with a mouth-shaped cutter;
the front side and the rear side of the cutting part are both provided with driving parts;
the driving part is used for driving the mouth-shaped tool apron to lift;
the front side and the rear side of the mouth-shaped tool apron are fixedly connected with a rack;
the rack comprises a cross rod part positioned below the mouth-shaped tool apron and also comprises suspension rod parts fixedly connected to the end parts of the side walls at the left side and the right side of the mouth-shaped tool apron;
the suspension rod part is fixedly connected with the cross rod part through the upright post part;
a feeding part is arranged between the suspension rod parts at the right side part;
and a blanking part is arranged between the suspension rod parts at the left side.
2. The glass processing apparatus of claim 1, wherein the bottom portion of the cutting plate is fixedly attached to the top portion of the beam portion by a plurality of post portions.
3. The glass processing apparatus according to claim 2, wherein the top of the die holder has four beveled portions;
the bevel parts are all upwards fixedly connected with guide rods, and the guide rods upwards penetrate through the mouth-shaped tool apron;
the guide rod is connected with the mouth-shaped tool apron in a sliding mode.
4. The glass processing apparatus as defined in claim 3, wherein the driving member includes a top plate fixedly attached to a central portion of a side wall of the die holder;
the bottom fixedly connected with cylinder of roof, the piston rod fixed connection of cylinder is in the bottom of roof.
5. The glass processing apparatus of claim 4, wherein the bore of the cylinder is fixedly attached to the crossbar by bolts.
6. The glass processing apparatus of claim 5, wherein the feeding member and the discharging member each comprise a plurality of rotating rollers fitted between the hanger bar portions;
the rotating rollers are in transmission connection through a transmission component.
7. The glass processing apparatus of claim 6, wherein the rotating rollers are fixedly connected to a rotating shaft at both front and rear side walls thereof;
the rotating shaft is rotatably connected to the suspension rod part;
and the rotating shaft is positioned at the rear side part and is provided with a transmission part.
8. The glass processing apparatus of claim 7, wherein the drive member comprises a sprocket fixedly attached to a shaft;
the chain wheels are in transmission connection through chains;
and a driving motor is assembled on the chain wheel at the end position.
CN202022021473.3U 2020-09-14 2020-09-14 Glass processing device Active CN213357331U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022021473.3U CN213357331U (en) 2020-09-14 2020-09-14 Glass processing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022021473.3U CN213357331U (en) 2020-09-14 2020-09-14 Glass processing device

Publications (1)

Publication Number Publication Date
CN213357331U true CN213357331U (en) 2021-06-04

Family

ID=76152277

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022021473.3U Active CN213357331U (en) 2020-09-14 2020-09-14 Glass processing device

Country Status (1)

Country Link
CN (1) CN213357331U (en)

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