CN214187890U - Quartz tube cutting device - Google Patents

Quartz tube cutting device Download PDF

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Publication number
CN214187890U
CN214187890U CN202023116195.6U CN202023116195U CN214187890U CN 214187890 U CN214187890 U CN 214187890U CN 202023116195 U CN202023116195 U CN 202023116195U CN 214187890 U CN214187890 U CN 214187890U
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CN
China
Prior art keywords
quartz tube
cutting table
guide
adjusting screw
movable cutting
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Active
Application number
CN202023116195.6U
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Chinese (zh)
Inventor
刘文森
刘卫国
周文婉
李志高
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Chaoyang Tongmei Crystal Technology Co ltd
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Chaoyang Tongmei Crystal Technology Co ltd
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Priority to CN202023116195.6U priority Critical patent/CN214187890U/en
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Abstract

The utility model relates to a quartz capsule cutting device, the workstation top is equipped with the removal cutting bed, it passes through linear guide with the workstation and is connected to remove the cutting bed, it is equipped with first adjusting screw to remove the cutting bed front portion, the workstation rear portion is equipped with rotary cutter, be equipped with a plurality of riding wheels on the removal cutting bed, be equipped with the belt on a set of riding wheel of relative setting, be equipped with the tight pulley that rises on the belt of removal cutting bed below, the tight pulley that rises sets up on the regulating block, be equipped with second adjusting screw on the regulating block, the regulating block passes through threaded connection with second adjusting screw, the regulating block both sides are equipped with first solid fixed splint respectively. The utility model discloses can carry out radial cutting to the quartz capsule, the cutting cut is neat.

Description

Quartz tube cutting device
Technical Field
The utility model relates to a cutting device, in particular to quartz capsule cutting device.
Background
Substances and materials in the nature can be classified into three categories, namely conductors, semiconductors and insulators according to the magnitude of the conductive capacity. The resistivity of the semiconductor is in the range of 1m omega cm to 1G omega cm.
The III-V family compound and single crystal semiconductor substrate material are mainly applied to the fields of mobile phones, satellite broadcasting, radar systems, lasers, optical fiber communication, ray and light detectors, aerospace solar energy and the like. The quartz tube is formed by heating and processing gallium arsenide, indium phosphide or germanium raw materials at high temperature, the raw materials need to be roasted at high temperature in a vacuum environment, so that the raw materials need to be put into a mold, the mold is placed into a quartz tube, the quartz tube is vacuumized, the opening of the quartz tube is melted by high-temperature flame after a cap plug is plugged on the opening of the quartz tube, the cap plug is adhered and sealed with the opening of the quartz tube, and the quartz tube is roasted at high temperature after being sealed.
After the quartz tube is roasted at high temperature and cooled, the quartz tube needs to be radially cut, and roasted materials are taken out of the quartz tube. In order for the quartz tube to be reused, the quartz tube needs to be radially cut at the tube opening, and the cut needs to be tidy.
Disclosure of Invention
An object of the utility model is to solve above-mentioned problem, provide quartz capsule cutting device, the quartz capsule can autogyration, can carry out radial cutting to the quartz capsule, and the cutting opening is neat.
In order to solve the above problem, the utility model discloses a technical scheme as follows:
the quartz tube cutting device is characterized in that a belt is arranged on a group of supporting wheels which are oppositely arranged, tension wheels are arranged on the belt below the movable cutting table and driven by a second rotating motor, the tension wheels are arranged on an adjusting block, a second adjusting screw rod is arranged on the adjusting block and connected with the second adjusting screw rod through threads, the end part of a screw rod lever of the second adjusting screw rod is arranged at the bottom of the movable cutting table, and first fixed clamp plates are respectively arranged on two sides of the adjusting block, the first fixed clamping plate is fixed at the bottom of the movable cutting table.
The optimization is that, the both ends of removing the cutting bed are equipped with respectively and end the position board, end the position board and connect the third and adjust the lead screw, and the lead screw seat of third regulation lead screw is fixed in and removes cutting bed tip, ends to be equipped with the second solid fixed splint on the removal cutting bed of position board both sides, is equipped with the guiding hole on the second solid fixed splint, ends the position board both sides and is equipped with the guide post, and the guide post card is gone into in the guiding hole.
The linear guide rail comprises a guide sliding block at the bottom of the movable cutting table and a guide groove on the workbench, the guide sliding block is arranged in the guide groove, and a bottom wheel is arranged at the bottom of the guide sliding block.
The utility model has the advantages that:
(1) adjust the second and adjust the lead screw, regulating block rebound, the belt relaxes and gets off, and the quartz capsule is placed in the riding wheel top, then the lead screw is adjusted to the back adjustment second, and the regulating block rebound, the belt is tight by rising, and the belt compresses tightly the quartz capsule.
(2) Adjust first regulation lead screw, first regulation lead screw promotes the removal cutting bed forward, and the removal cutting bed leans on last rotary cutter, and the quartz capsule on the removal cutting bed contacts with rotary cutter, and rotary cutter cuts the quartz capsule.
(3) The tensioning wheel is driven by the second rotating motor to rotate, the tensioning wheel drives the belt to rotate, the belt drives the quartz tube to rotate under the supporting of the supporting wheel, and the rotating cutter can be used for radially cutting the quartz tube to ensure that the quartz tube is cut neatly.
Drawings
In order to more clearly illustrate the embodiments of the present invention 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, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a front view of a quartz tube cutting device according to the present invention;
fig. 2 is a top view of the quartz tube cutting device according to the present invention;
reference numerals: the cutting machine comprises a workbench-1, a movable cutting table-2, a first adjusting lead screw-21, a riding wheel-22, a belt-23, a tensioning wheel-24, an adjusting block-241, a second adjusting lead screw-242, a first fixed clamping plate-243, a stop plate-251, a third adjusting lead screw-252, a second fixed clamping plate-253, a guide hole-254, a guide column-255, a linear guide rail-3, a guide sliding block-31, a guide groove-32, a bottom wheel-33 and a rotary cutter-4.
Detailed Description
The following detailed description of the preferred embodiments of the present invention is provided to enable those skilled in the art to more easily understand the advantages and features of the present invention, and to make more clear and definite definitions of the scope of the present invention.
Quartz tube cutting device, 1 top of workstation is equipped with removes cutting bed 2, removes cutting bed 2 and is connected through linear guide 3 with workstation 1, and linear guide 3 sets up around going up in the horizontal direction, removes cutting bed 2 front portion and is equipped with first regulation lead screw 21, and first regulation lead screw 21's lead screw seat sets up on workstation 1. The rear portion of the working table 1 is provided with a rotary cutter 4, the rotary cutter 4 is driven by a first rotary motor, a plurality of riding wheels 22 are arranged on the movable cutting table 2, the riding wheels 22 are arranged side by side along the two sides of the movable cutting table 2, a belt 23 is arranged on a group of riding wheels 22 which are arranged oppositely, a tension wheel 24 is arranged on the belt 23 below the movable cutting table 2, the tension wheel 24 is driven by a second rotary motor, the tension wheel 24 is arranged on an adjusting block 241, a second adjusting screw 242 is arranged on the adjusting block 241, the adjusting block 241 is in threaded connection with the second adjusting screw 242, the end portion of a screw rod of the second adjusting screw 242 is arranged at the bottom of the movable cutting table 2, two sides of the adjusting block 241 are respectively provided with a first fixed clamp plate 243, and the first fixed clamp plate 243 is fixed at the bottom of the movable cutting table 2.
The optimization is that the two ends of the movable cutting table 2 are respectively provided with a stop plate 251, the stop plate 251 is connected with a third adjusting screw 252, a screw seat of the third adjusting screw 252 is fixed at the end of the movable cutting table 2, the movable cutting table 2 on the two sides of the stop plate 251 is provided with a second fixed clamp plate 253, the second fixed clamp plate 253 is provided with a guide hole 254, the two sides of the stop plate 251 are provided with guide posts 255, and the guide posts 255 are clamped in the guide holes 254.
The linear guide rail 3 comprises a guide sliding block 31 at the bottom of the movable cutting table and a guide groove 32 on the workbench, the guide sliding block 31 is arranged in the guide groove 32, and the bottom of the guide sliding block 31 is provided with a bottom wheel 33.
The specific structure and function of the quartz tube cutting device according to the above embodiment are described as follows with reference to the attached drawings of the specification:
referring to the attached drawings 1 and 2 in the specification, in the quartz tube cutting device, a movable cutting table 2 is arranged above a workbench 1, the movable cutting table 2 is connected with the workbench 1 through a linear guide 3, the linear guide 3 is arranged in front and at the back, a first adjusting screw 21 is arranged at the front part of the movable cutting table 2, and a screw base of the first adjusting screw 21 is arranged on the workbench 1. When the first adjusting screw 21 rotates, the first adjusting screw 21 extends forwards or moves backwards, and the first adjusting screw drives the movable cutting table 2 to move back and forth along the linear guide rail 3. The rear portion of the working table 1 is provided with a rotary cutter 4, the rotary cutter 4 is driven by a first rotary motor, when the movable cutting table 2 stretches forwards, the movable cutting table 2 is close to the rotary cutter 4, the rotary cutter 4 performs radial cutting on the quartz tube on the movable cutting table 2, when the movable cutting table 2 moves backwards, the movable cutting table 2 is far away from the rotary cutter 4, and the quartz tube on the movable cutting table 2 is separated from the movable cutting table 2. The movable cutting table 2 is provided with a plurality of riding wheels 22, the riding wheels 22 are arranged side by side along two sides of the movable cutting table 2, and the quartz tube is supported by the two riding wheels 22 which are opposite. The belt 23 is arranged on the group of supporting wheels 22 which are oppositely arranged, the belt 23 is sleeved outside the quartz tube, the belt 23 is fully contacted with the outside of the quartz tube, and after the belt pulley is driven, the quartz tube rotates under the driving of the belt pulley. The belt 23 below the movable cutting table 2 is provided with a tension wheel 24, the tension wheel 24 is arranged on the adjusting block 241, the tension wheel 24 is driven by a second rotating motor, the adjusting block 241 is provided with a second adjusting screw 242, the adjusting block 241 and the second adjusting screw 242 are connected through threads, the end of a screw rod of the second adjusting screw 242 is arranged at the bottom of the movable cutting table 2, two sides of the adjusting block 241 are respectively provided with a first fixing clamp plate 243, and the first fixing clamp plate 243 is fixed at the bottom of the movable cutting table 2. The tension wheel 24 is used for adjusting pressing force between the belt 23 and the quartz tube, when the belt 23 is loosened, the quartz tube is convenient to take down and place, when the belt 23 is tensioned, the belt 23 presses the quartz tube tightly, and transmission of the belt 23 drives the quartz tube to rotate.
The specific operation process of the present embodiment is as follows:
(1) adjust second regulation lead screw 242, regulating block 241 moves upwards, and belt 23 relaxes down, and the quartz capsule is placed in riding wheel 22 top, then reverse adjustment second regulation lead screw 242, and regulating block 241 moves down, and belt 23 is tight by rising, and belt 23 compresses tightly the quartz capsule.
(2) Adjust first regulation lead screw, first regulation lead screw promotes the removal cutting bed 2 forward, removes cutting bed 2 and leans on rotary cutter 4, and the quartz capsule on the removal cutting bed 2 contacts with rotary cutter 4, and rotary cutter 4 cuts the quartz capsule.
(3) The tension wheel 24 is driven by the second rotating motor, the tension wheel 24 rotates, the tension wheel 24 drives the belt 23 to rotate, the belt 23 drives the quartz tube to rotate under the supporting of the supporting wheel 22, and the rotary cutter can be used for radially cutting the quartz tube to ensure that the quartz tube is cut neatly.
In the cutting process, the problem that radial cutting openings of the quartz tube are uneven due to axial dislocation of the quartz tube is avoided. The structure of the above embodiment is optimized, and referring to the description and the attached drawings of fig. 1 and fig. 2, the two ends of the mobile cutting table 2 are respectively provided with a stop plate 251, and the stop plates 251 are used for stopping the end of the quartz tube. The stop plate 251 is connected with a third adjusting screw 252, a screw seat of the third adjusting screw 252 is fixed at the end of the movable cutting table 2, and the third adjusting screw 252 can be used for pushing the stop plate 251 to move axially along the movable cutting table 2, so that the stop plate 251 is used for fixing two ends of a quartz tube. The movable cutting table 2 on both sides of the stop plate 251 is provided with a second fixed clamp plate 253, the second fixed clamp plate 253 is provided with a guide hole 254, the stop plate 251 is provided with guide posts 255 on both sides, and the guide posts 255 are clamped in the guide holes 254. When the stop plate 251 is pushed by the third adjusting screw 252 to move, the guide hole 254 plays a role in positioning and guiding the movement of the guide post 255.
The structure of the most detailed embodiment is optimized, referring to the description and the attached drawing 1, the linear guide 3 includes a guiding slide block 31 at the bottom of the moving cutting table and a guiding groove 32 on the working table, the guiding slide block 31 is disposed in the guiding groove 32, and the bottom of the guiding slide block 31 is provided with a bottom wheel 33.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It should be understood by those skilled in the art that the present invention is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only preferred embodiments of the present invention, and the present invention is not limited by the above preferred embodiments, and various changes and modifications can be made without departing from the spirit and scope of the present invention, and these changes and modifications all fall into the scope of the present invention as claimed.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (3)

1. The quartz tube cutting device is characterized in that a belt is arranged on a group of supporting wheels which are oppositely arranged, tension wheels are arranged on the belt below the movable cutting table and driven by a second rotating motor, the tension wheels are arranged on an adjusting block, a second adjusting screw rod is arranged on the adjusting block and connected with the second adjusting screw rod through threads, the end part of a screw rod lever of the second adjusting screw rod is arranged at the bottom of the movable cutting table, and first fixed clamp plates are respectively arranged on two sides of the adjusting block, the first fixed clamping plate is fixed at the bottom of the movable cutting table.
2. The quartz tube cutting device according to claim 1, wherein the two ends of the movable cutting table are respectively provided with a stop plate, the stop plates are connected with a third adjusting screw, a screw seat of the third adjusting screw is fixed at the end of the movable cutting table, the movable cutting table on the two sides of the stop plates is provided with a second fixed clamping plate, the second fixed clamping plate is provided with a guide hole, the two sides of the stop plates are provided with guide posts, and the guide posts are clamped into the guide holes.
3. The quartz tube cutting device according to claim 1, wherein the linear guide comprises a guide slider moving the bottom of the cutting table and a guide groove on the worktable, the guide slider is arranged in the guide groove, and a bottom wheel is arranged at the bottom of the guide slider.
CN202023116195.6U 2020-12-22 2020-12-22 Quartz tube cutting device Active CN214187890U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023116195.6U CN214187890U (en) 2020-12-22 2020-12-22 Quartz tube cutting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023116195.6U CN214187890U (en) 2020-12-22 2020-12-22 Quartz tube cutting device

Publications (1)

Publication Number Publication Date
CN214187890U true CN214187890U (en) 2021-09-14

Family

ID=77654866

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023116195.6U Active CN214187890U (en) 2020-12-22 2020-12-22 Quartz tube cutting device

Country Status (1)

Country Link
CN (1) CN214187890U (en)

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