WO2021031412A1 - 一种石英方棒异形倒角装置 - Google Patents

一种石英方棒异形倒角装置 Download PDF

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Publication number
WO2021031412A1
WO2021031412A1 PCT/CN2019/118676 CN2019118676W WO2021031412A1 WO 2021031412 A1 WO2021031412 A1 WO 2021031412A1 CN 2019118676 W CN2019118676 W CN 2019118676W WO 2021031412 A1 WO2021031412 A1 WO 2021031412A1
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Prior art keywords
shaft
driving
rotating
sliding box
chamfering device
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PCT/CN2019/118676
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English (en)
French (fr)
Inventor
盛文彬
沈根法
刘克勇
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湖州奥博石英科技有限公司
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Publication of WO2021031412A1 publication Critical patent/WO2021031412A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B27/00Other grinding machines or devices
    • B24B27/0023Other grinding machines or devices grinding machines with a plurality of working posts
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B27/00Other grinding machines or devices
    • B24B27/0076Other grinding machines or devices grinding machines comprising two or more grinding tools
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B41/00Component parts such as frames, beds, carriages, headstocks
    • B24B41/04Headstocks; Working-spindles; Features relating thereto
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B47/00Drives or gearings; Equipment therefor
    • B24B47/22Equipment for exact control of the position of the grinding tool or work at the start of the grinding operation
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B9/00Machines or devices designed for grinding edges or bevels on work or for removing burrs; Accessories therefor
    • B24B9/02Machines or devices designed for grinding edges or bevels on work or for removing burrs; Accessories therefor characterised by a special design with respect to properties of materials specific to articles to be ground
    • B24B9/06Machines or devices designed for grinding edges or bevels on work or for removing burrs; Accessories therefor characterised by a special design with respect to properties of materials specific to articles to be ground of non-metallic inorganic material, e.g. stone, ceramics, porcelain
    • B24B9/065Machines or devices designed for grinding edges or bevels on work or for removing burrs; Accessories therefor characterised by a special design with respect to properties of materials specific to articles to be ground of non-metallic inorganic material, e.g. stone, ceramics, porcelain of thin, brittle parts, e.g. semiconductors, wafers

Definitions

  • the invention relates to the field of quartz square rod processing, and more specifically, to a quartz square rod special-shaped chamfering device.
  • the quartz boat is an essential tool for the diffusion process. Whether it is the diffusion of semiconductor devices or the diffusion of solar technology, a large number of quartz devices are used as carriers.
  • the manufacture of the quartz boat requires the use of quartz square rods as parts, and the chamfering process is required during the processing and manufacturing of the quartz square rods.
  • Chinese patent document CN209062726U discloses a chamfering device for square crystal rods.
  • the chamfering device includes a base, a sliding box is arranged on the base, a drive motor is arranged above the sliding box, and a reducer is arranged in the sliding box, and the reducer has a rotating The input shaft and the rotating output shaft. The rotating input shaft is connected to the drive motor.
  • One end of the rotating output shaft is provided with bevel gears.
  • Mounting frames are provided above and below the bevel teeth.
  • the mounting frame is provided with a drive shaft; one end of the drive shaft is provided There are driven bevel teeth, a chamfered grinding wheel is arranged on the other end, and an inclined chamfering surface is arranged on the chamfered grinding wheel.
  • the chamfering device can only be used for chamfering square bars of fixed size. If you need to process square bars of different sizes, you need to replace the chamfering devices of different sizes, which results in limited chamfering of square bars and higher processing costs. .
  • the purpose of the present invention is to make up for the defects in the prior art and provide a special-shaped chamfering device for quartz square rods to facilitate chamfering of quartz square rods of different sizes.
  • a quartz square rod special-shaped chamfering device comprising a base, a sliding box is arranged on the base, a driving motor is arranged above the sliding box, a reducer is arranged in the sliding box, and The reducer has a rotating input shaft and a rotating output shaft, the rotating input shaft is in transmission connection with the drive motor, and one end of the rotating output shaft protruding from the sliding box is provided with active bevel teeth, and the sliding box includes
  • the mounting brackets above and below the active bevel teeth are characterized in that: the mounting brackets above and below the active bevel teeth are respectively provided with adjustable drive shafts; One end of the bevel tooth is provided with a driven bevel tooth, the driven bevel tooth is meshed with the driving bevel tooth, and the end of the adjustable transmission shaft far away from the driving bevel tooth is provided with a chamfered grinding wheel.
  • the adjustable transmission shaft includes a mating shaft, a sleeve sleeved on the mating shaft, and a locking pin, and the sleeve is installed above or below the active bevel gear
  • the outer wall of the mating shaft and the inner wall of the sleeve are connected by threaded fitting
  • the wall of the sleeve is provided with a through hole that is matched with the locking pin
  • the outer wall of the mating shaft is provided with
  • the locking pin can pass through the through hole and be inserted into the strip groove to prevent the shaft sleeve from rotating relative to the mating shaft.
  • the end of the mating shaft away from the driving bevel tooth is provided with the chamfered grinding wheel, and the end of the shaft sleeve close to the driving bevel tooth is provided with the driven bevel tooth.
  • the chamfered grinding wheel is provided at one end of the sleeve away from the driving bevel tooth, and the driven bevel tooth is provided at the end of the mating shaft close to the driving bevel tooth.
  • the locking pin is a circular pin
  • the through hole is a circular hole
  • the width of the strip groove is the same as the diameter of the circular pin.
  • the locking pin is a square pin
  • the through hole is a square hole
  • the width of the strip groove is the same as the width of the square pin.
  • a driving gear is provided on the rotating shaft of the driving motor, and an end of the rotating input shaft extending out of the sliding box is provided with a driven gear, and the driving gear meshes with the driven gear.
  • a driving gear is provided on the rotating shaft of the driving motor, and a driven gear is provided at one end of the rotating input shaft that extends out of the sliding box, and the driving gear and the driven gear are connected by a chain transmission.
  • a driving wheel is provided on the rotating shaft of the driving motor
  • a driven wheel is provided at one end of the rotation input shaft that extends out of the sliding box, and the driving wheel and the driven wheel are connected by a belt drive.
  • the beneficial effect of the present invention is that the distance between the upper and lower chamfering grinding wheels can be adjusted through the adjustable transmission shaft, and one chamfering device can chamfer the quartz square rods of different sizes, and there is no need to use multiple chamfering devices to realize the quartz
  • the square bar special-shaped chamfering process reduces the expenditure of purchasing equipment and saves the processing cost.
  • Fig. 1 is a schematic structural diagram of a quartz square rod special-shaped chamfering device according to an embodiment of the present invention.
  • Figure 2 is an enlarged view of A in Figure 1.
  • 1- base 2- sliding box; 3- drive motor; 4- reducer; 5- rotating input shaft; 6- rotating output shaft; 7- active bevel gear; 8- adjustable drive shaft; 9- driven Bevel gear; 10-chamfer grinding wheel; 11-match shaft; 12-shaft sleeve; 13-lock pin.
  • a quartz square rod special-shaped chamfering device includes a base 1, a sliding box 2 is arranged on the base 1, a driving motor 3 is arranged above the sliding box 2, and the sliding box 2
  • a speed reducer 4 is provided inside, the speed reducer 4 has a rotating input shaft 5 and a rotating output shaft 6, the rotating input shaft 5 is in transmission connection with the driving motor 3, and the rotating output shaft 6 extends out of the sliding
  • One end of the box 2 is provided with active bevel teeth 7, and the sliding box 2 includes mounting frames located above and below the active bevel teeth 7, and the mounting frames located above and below the active bevel teeth 7 are respectively provided with Adjustable transmission shaft 8; one end of the adjustable transmission shaft 8 close to the driving bevel tooth 7 is provided with a driven bevel tooth 9 which meshes with the driving bevel tooth 7, and the A chamfered grinding wheel 10 is provided on the end of the adjustable transmission shaft 8 far away from the active bevel teeth 7, and the chamfered grinding wheel 10 is provided with an inclined chamfered surface.
  • the adjustable transmission shaft 8 includes a matching shaft 11 and is sleeved on the The sleeve 12 on the mating shaft 11 and the locking pin 13 are arranged on a mounting frame located above or below the active bevel gear 7, and the outer wall of the mating shaft 11 is connected to the shaft sleeve 12
  • the inner wall is connected by threaded fitting, the wall of the sleeve 12 is provided with a through hole that cooperates with the locking pin 13, and the outer wall of the mating shaft 11 is provided with a strip groove extending along the axial direction of the mating shaft 11
  • the locking pin 13 can pass through the through hole and be inserted into the strip groove to prevent the shaft sleeve 12 from rotating relative to the mating shaft 11.
  • the working principle of the above-mentioned quartz square rod special-shaped chamfering device is as follows: when it is necessary to process quartz square rods of different sizes, remove the locking pin 13, screw the adjustable transmission shaft 8 so that the thread of the outer wall of the mating shaft 11 is along the inner wall of the sleeve 12 Thread rotation, so that the mating shaft 11 rotates relative to the sleeve 12 to adjust the length of the adjustable drive shaft 8, so that the distance between the upper and lower chamfering wheels can be adjusted, so that the upper and lower chamfering wheels can match the upper and lower sides of different sizes of quartz.
  • the above-mentioned quartz square rod special-shaped chamfering device can use one chamfering device to chamfer quartz square rods of different sizes. There is no need to use multiple chamfering devices to realize the special-shaped chamfering of quartz square rods, reducing purchases. The expenditure of equipment costs saves processing costs.
  • connection mode of the adjustable transmission shaft 8 with the driven bevel gear 9 and the chamfered grinding wheel 10 can be as follows: a chamfered grinding wheel 10 is provided at the end of the mating shaft 11 far away from the driving bevel gear 7, and the shaft sleeve 12 is close to the driving bevel gear. One end is provided with a driven bevel gear 9, the driving force of the driving gear 7 is sequentially transmitted to the chamfering grinding wheel 10 through the driven bevel gear 9, the sleeve 12, and the matching shaft 11, and the chamfering grinding wheel 10 rotates to the side of the quartz square rod matched with it.
  • the locking pin 13 prevents the shaft sleeve 12 and the mating shaft 11 from rotating relative to each other: the locking pin 13 is a circular pin, the through hole is a circular hole, and the width of the strip groove is the same as the diameter of the circular pin; or the locking pin 13 It is a square pin, the through hole is a square hole, and the width of the strip groove is the same as that of the square pin.
  • the locking pin 13 passes through the through hole and is inserted into the strip groove. Due to the limiting effect of the locking pin 13 on the sleeve 12 and the mating shaft 11, it can prevent the adjustable drive shaft 8 from transmitting torque power during the chamfering process. 12 and the relative rotation of the matching shaft 11.
  • the driving connection between the driving motor 3 and the rotating input shaft 5 is as follows: a driving gear is provided on the rotating shaft of the driving motor 3, a driven gear is provided at one end of the rotating input shaft 5 that extends out of the sliding box 2, and the driving gear meshes with the driven gear ,
  • the power of the driving motor 3 is sequentially transmitted to the rotating input shaft 5 through the driving gear and the driven gear, and then the rotating input shaft 5 passes through the reducer 4, and the rotating output shaft 6 transmits the power to the driving bevel gear 7; on the rotating shaft of the driving motor 3
  • a driving gear is provided.
  • One end of the rotating input shaft 5 that extends out of the sliding box 2 is provided with a driven gear.
  • the driving gear and the driven gear are connected by a chain transmission.
  • the power of the driving motor 3 is transmitted through the driving gear, the chain and the driven gear in turn Rotate the input shaft 5, and then rotate the input shaft 5 through the reducer 4, and rotate the output shaft 6 to transmit power to the driving bevel gear 7;
  • a driving wheel is provided on the rotating shaft of the driving motor 3 to rotate the sliding box 2 of the input shaft 5
  • One end is provided with a driven wheel, the driving wheel and the driven wheel are connected by belt transmission, the power of the driving motor 3 is transmitted to the rotating input shaft 5 through the driving wheel, the belt, and the driven wheel in turn, and then the rotating input shaft 5 passes through the reducer 4 and rotates the output
  • the shaft 6 transmits power to the driving bevel gear 7.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Ceramic Engineering (AREA)
  • Inorganic Chemistry (AREA)
  • Grinding And Polishing Of Tertiary Curved Surfaces And Surfaces With Complex Shapes (AREA)
  • Gear Processing (AREA)

Abstract

一种石英方棒异形倒角装置,包括底座(1)、滑动箱(2)、驱动电机(3),滑动箱(2)内设置有减速器(4),减速器(4)具有转动输入轴(5)以及转动输出轴(6),转动输入轴(5)与驱动电机(3)传动连接,转动输出轴(6)的一端设置有主动锥齿(7),滑动箱(2)包括安装架,安装架上设置有可调传动轴(8);可调传动轴(8)的靠近主动锥齿(7)的一端设置有从动锥齿(9),从动锥齿(9)与主动锥齿(7)啮合,可调传动轴(8)的远离主动锥齿(7)的一端设置有倒角砂轮(10),倒角砂轮(10)上设置有倾斜倒角面;由于上下倒角砂轮之间的距离可通过可调传动轴进行调节,因此采用一台倒角装置即可对不同尺寸的石英方棒进行倒角加工,减少了购买设备费用的支出,节约了加工成本。

Description

一种石英方棒异形倒角装置 技术领域
本发明涉及石英方棒加工领域,并且更具体地,涉及一种石英方棒异形倒角装置。
背景技术
石英舟是扩散工艺的必备工具,无论是半导体器件的扩散,还是太阳能工艺的扩散都大量使用石英器件做为载体。石英舟的制造需要使用石英方棒作为零部件,石英方棒加工制造过程中需要进行倒角工艺。中国专利文件CN209062726U公开了一种方形晶棒的倒角装置,其中倒角装置包括底座,底座上设置有滑动箱,滑动箱上方设置有驱动电机,滑动箱内设置有减速器,减速器具有转动输入轴以及转动输出轴,转动输入轴与驱动电机传动连接,转动输出轴的一端设置有锥齿,锥齿的上方和下方均设置有安装架,安装架上设置有传动轴;传动轴一端设置有从动锥齿,另一端设置有倒角砂轮,倒角砂轮上设置有倾斜倒角面。但该倒角装置仅能用于固定尺寸的方棒的倒角加工,如果需要加工不同尺寸的方棒,需要更换不同尺寸的倒角装置,导致方棒异形倒角加工受限,加工成本增高。
发明概述
技术问题
问题的解决方案
技术解决方案
本发明目的就是为了弥补现有技术存在的缺陷,提供一种石英方棒异形倒角装置,便于对不同尺寸的石英方棒进行倒角加工。
本发明技术方案如下:一种石英方棒异形倒角装置,包括底座,所述底座上设置有滑动箱,所述滑动箱上方设置有驱动电机,所述滑动箱内设置有减速器,所述减速器具有转动输入轴以及转动输出轴,所述转动输入轴与所述驱动电机传动连接,所述转动输出轴的伸出所述滑动箱的一端设置有主动锥齿,所述滑 动箱包括位于所述主动锥齿的上方和下方的安装架,其特征在于:位于所述主动锥齿的上方和下方的安装架上分别设置有可调传动轴;所述可调传动轴的靠近所述主动锥齿的一端设置有从动锥齿,所述从动锥齿与所述主动锥齿啮合,所述可调传动轴的远离所述主动锥齿的一端设置有倒角砂轮,倒角砂轮上设置有倾斜倒角面,所述可调传动轴包括配合轴、套设在所述配合轴上的轴套以及锁定销,所述轴套设置在位于所述主动锥齿的上方或下方的安装架上,所述配合轴的外壁与所述轴套的内壁通过螺纹配合连接,所述轴套的壁上设置有与所述锁定销配合的通孔,所述配合轴的外壁设置有沿所述配合轴的轴向延伸的条形槽,所述锁定销可穿过所述通孔并***所述条形槽内以阻止所述轴套与所述配合轴的相对转动。
进一步,所述配合轴的远离所述主动锥齿的一端设置所述倒角砂轮,所述轴套的靠近所述主动锥齿的一端设置所述从动锥齿。
进一步,所述轴套的远离所述主动锥齿的一端设置所述倒角砂轮,所述配合轴的靠近所述主动锥齿的一端设置所述从动锥齿。
进一步,所述锁定销为圆形销,所述通孔为圆形孔,所述条形槽的宽度与所述圆形销的直径相同。
进一步,所述锁定销为方形销,所述通孔为方形孔,所述条形槽的宽度与所述方形销的宽度相同。
进一步,所述驱动电机的转轴上设置有主动齿轮,所述转动输入轴的伸出所述滑动箱的一端设置有从动齿轮,所述主动齿轮与所述从动齿轮啮合。
进一步,所述驱动电机的转轴上设置有主动齿轮,所述转动输入轴的伸出所述滑动箱的一端设置有从动齿轮,所述主动齿轮与所述从动齿轮通过链条传动连接。
进一步,所述驱动电机的转轴上设置有主动轮,所述转动输入轴的伸出所述滑动箱的一端设置有从动轮,所述主动轮与所述从动轮通过皮带传动连接。
发明的有益效果
有益效果
本发明的有益效果在于:上下倒角砂轮的距离可通过可调传动轴进行调节,一 台倒角装置可以对不同尺寸的石英方棒进行倒角加工,不需要使用多台倒角装置实现石英方棒异形倒角加工,减少了购买设备费用的支出,节约了加工成本。
对附图的简要说明
附图说明
为了更清楚地说明本发明的技术方案,下面将本对发明描述中所需要使用的附图作简单地介绍,显而易见地,下面所描述的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本发明实施例的石英方棒异形倒角装置的结构示意图。
图2为图1中A处的放大图。
其中,1-底座;2-滑动箱;3-驱动电机;4-减速器;5-转动输入轴;6-转动输出轴;7-主动锥齿;8-可调传动轴;9-从动锥齿;10-倒角砂轮;11-配合轴;12-轴套;13-锁定销。
发明实施例
本发明的实施方式
下面将结合本发明中的附图,对本发明中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本发明的一部分实施例,而不是全部实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动的前提下所获得的所有其他实施例,都应属于本发明保护的范围。
如图1、2所示,一种石英方棒异形倒角装置,包括底座1,所述底座1上设置有滑动箱2,所述滑动箱2上方设置有驱动电机3,所述滑动箱2内设置有减速器4,所述减速器4具有转动输入轴5以及转动输出轴6,所述转动输入轴5与所述驱动电机3传动连接,所述转动输出轴6的伸出所述滑动箱2的一端设置有主动锥齿7,所述滑动箱2包括位于所述主动锥齿7的上方和下方的安装架,位于所述主动锥齿7的上方和下方的安装架上分别设置有可调传动轴8;所述可调传动轴8的靠近所述主动锥齿7的一端设置有从动锥齿9,所述从动锥齿9与所述主动锥齿7啮合,所述可调传动轴8的远离所述主动锥齿7的一端设置有倒角砂轮10,倒角砂 轮10上设置有倾斜倒角面,所述可调传动轴8包括配合轴11、套设在所述配合轴11上的轴套12以及锁定销13,所述轴套12设置在位于所述主动锥齿7的上方或下方的安装架上,所述配合轴11的外壁与所述轴套12的内壁通过螺纹配合连接,所述轴套12的壁上设置有与所述锁定销13配合的通孔,所述配合轴11的外壁设置有沿所述配合轴11的轴向延伸的条形槽,所述锁定销13可穿过所述通孔并***所述条形槽内以阻止所述轴套12与所述配合轴11的相对转动。
上述石英方棒异形倒角装置的工作原理如下:当需要加工不同尺寸的石英方棒时,取下锁定销13,拧动可调传动轴8使配合轴11外壁的螺纹沿着轴套12内壁的螺纹转动,从而使配合轴11相对轴套12转动从而调节可调传动轴8的长度,因此可以实现上下倒角砂轮的距离的调节,以使上下倒角砂轮与不同尺寸的石英的上下边角配合,然后将锁定销13穿过通孔并***条形槽内能够防止配合轴11与轴套12的相对转动,倒角装置能够正常工作对石英方棒进行倒角加工。因此,上述石英方棒异形倒角装置使用一台倒角装置就可以对不同尺寸的石英方棒进行倒角加工,不需要使用多台倒角装置实现石英方棒异形倒角加工,减少了购买设备费用的支出,节约了加工成本。
可调传动轴8与从动锥齿9和倒角砂轮10的连接方式可以为:配合轴11的远离所述主动锥齿7的一端设置倒角砂轮10,轴套12的靠近主动锥齿的一端设置从动锥齿9,主动齿轮7的驱动力依次经过从动锥齿9、轴套12、配合轴11传递给倒角砂轮10,倒角砂轮10转动对与其配合的石英方棒的边角进行倒角加工;或轴套12的远离主动锥齿7的一端设置倒角砂轮10,配合轴11的靠近主动锥齿7的一端设置从动锥齿9,主动齿轮7的驱动力依次经过从动锥齿9、配合轴11、轴套12传递给倒角砂轮10,倒角砂轮10转动对与其配合的石英方棒的边角进行倒角加工。
锁定销13阻止轴套12与配合轴11的相对转动的方式为:锁定销13为圆形销,通孔为圆形孔,条形槽的宽度与圆形销的直径相同;或锁定销13为方形销,通孔为方形孔,条形槽的宽度与方形销的宽度相同。锁定销13穿过通孔并***条形槽内,由于锁定销13对轴套12与配合轴11的限位作用,能够阻止倒角加工过程中可调传动轴8传递转矩动力时轴套12与配合轴11的相对转动。
驱动电机3与转动输入轴5的传动连接方式为:驱动电机3的转轴上设置有主动 齿轮,转动输入轴5的伸出滑动箱2的一端设置有从动齿轮,主动齿轮与从动齿轮啮合,驱动电机3的动力依次经过主动齿轮、从动齿轮传递给转动输入轴5,然后转动输入轴5经过减速器4、转动输出轴6将动力传递给主动锥齿7;驱动电机3的转轴上设置有主动齿轮,转动输入轴5的伸出滑动箱2的一端设置有从动齿轮,主动齿轮与从动齿轮通过链条传动连接,驱动电机3的动力依次经过主动齿轮、链条、从动齿轮传递给转动输入轴5,然后转动输入轴5经过减速器4、转动输出轴6将动力传递给主动锥齿7;驱动电机3的转轴上设置有主动轮,转动输入轴5的伸出滑动箱2的一端设置有从动轮,主动轮与从动轮通过皮带传动连接,驱动电机3的动力依次经过主动轮、皮带、从动轮传递给转动输入轴5,然后转动输入轴5经过减速器4、转动输出轴6将动力传递给主动锥齿7。
以上所述,仅为本发明的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,可轻易想到各种等效的修改或替换,这些修改或替换都应涵盖在本发明的保护范围之内。因此,本发明的保护范围应以权利要求的保护范围为准。

Claims (8)

  1. 一种石英方棒异形倒角装置,包括底座(1),所述底座(1)上设置有滑动箱(2),所述滑动箱(2)上方设置有驱动电机(3),所述滑动箱(2)内设置有减速器(4),所述减速器(4)具有转动输入轴(5)以及转动输出轴(6),所述转动输入轴(5)与所述驱动电机(3)传动连接,所述转动输出轴(6)的伸出所述滑动箱(2)的一端设置有主动锥齿(7),所述滑动箱(2)包括位于所述主动锥齿(7)的上方和下方的安装架,其特征在于:位于所述主动锥齿(7)的上方和下方的安装架上分别设置有可调传动轴(8);所述可调传动轴(8)的靠近所述主动锥齿(7)的一端设置有从动锥齿(9),所述从动锥齿(9)与所述主动锥齿(7)啮合,所述可调传动轴(8)的远离所述主动锥齿(7)的一端设置有倒角砂轮(10),倒角砂轮(10)上设置有倾斜倒角面,所述可调传动轴(8)包括配合轴(11)、套设在所述配合轴(11)上的轴套(12)以及锁定销(13),所述轴套(12)设置在位于所述主动锥齿(7)的上方或下方的安装架上,所述配合轴(11)的外壁与所述轴套(12)的内壁通过螺纹配合连接,所述轴套(12)的壁上设置有与所述锁定销(13)配合的通孔,所述配合轴(11)的外壁设置有沿所述配合轴(11)的轴向延伸的条形槽,所述锁定销(13)可穿过所述通孔并***所述条形槽内以阻止所述轴套(12)与所述配合轴(11)的相对转动。
  2. 根据权利要求1所述的石英方棒异形倒角装置,其特征在于,所述配合轴(11)的远离所述主动锥齿(7)的一端设置所述倒角砂轮(10),所述轴套(12)的靠近所述主动锥齿(7)的一端设置所述从动锥齿(9)。
  3. 根据权利要求1所述的石英方棒异形倒角装置,其特征在于,所述轴套(12)的远离所述主动锥齿(7)的一端设置所述倒角砂轮(10),所述配合轴(11)的靠近所述主动锥齿(7)的一端设置所 述从动锥齿(9)。
  4. 根据权利要求1所述的石英方棒异形倒角装置,其特征在于,所述锁定销(13)为圆形销,所述通孔为圆形孔,所述条形槽的宽度与所述圆形销的直径相同。
  5. 根据权利要求1所述的石英方棒异形倒角装置,其特征在于,所述锁定销(13)为方形销,所述通孔为方形孔,所述条形槽的宽度与所述方形销的宽度相同。
  6. 根据权利要求1所述的石英方棒异形倒角装置,其特征在于,所述驱动电机(3)的转轴上设置有主动齿轮,所述转动输入轴(5)的伸出所述滑动箱(2)的一端设置有从动齿轮,所述主动齿轮与所述从动齿轮啮合。
  7. 根据权利要求1所述的石英方棒异形倒角装置,其特征在于,所述驱动电机(3)的转轴上设置有主动齿轮,所述转动输入轴(5)的伸出所述滑动箱(2)的一端设置有从动齿轮,所述主动齿轮与所述从动齿轮通过链条传动连接。
  8. 根据权利要求1所述的石英方棒异形倒角装置,其特征在于,所述驱动电机(3)的转轴上设置有主动轮,所述转动输入轴(5)的伸出所述滑动箱(2)的一端设置有从动轮,所述主动轮与所述从动轮通过皮带传动连接。
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