WO2018068288A1 - 一种用于加工头且能往复运动的加工装置 - Google Patents
一种用于加工头且能往复运动的加工装置 Download PDFInfo
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- WO2018068288A1 WO2018068288A1 PCT/CN2016/102086 CN2016102086W WO2018068288A1 WO 2018068288 A1 WO2018068288 A1 WO 2018068288A1 CN 2016102086 W CN2016102086 W CN 2016102086W WO 2018068288 A1 WO2018068288 A1 WO 2018068288A1
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q1/00—Members which are comprised in the general build-up of a form of machine, particularly relatively large fixed members
- B23Q1/25—Movable or adjustable work or tool supports
- B23Q1/26—Movable or adjustable work or tool supports characterised by constructional features relating to the co-operation of relatively movable members; Means for preventing relative movement of such members
- B23Q1/40—Movable or adjustable work or tool supports characterised by constructional features relating to the co-operation of relatively movable members; Means for preventing relative movement of such members using ball, roller or wheel arrangements
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q5/00—Driving or feeding mechanisms; Control arrangements therefor
- B23Q5/22—Feeding members carrying tools or work
- B23Q5/34—Feeding other members supporting tools or work, e.g. saddles, tool-slides, through mechanical transmission
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q5/00—Driving or feeding mechanisms; Control arrangements therefor
- B23Q5/22—Feeding members carrying tools or work
- B23Q5/34—Feeding other members supporting tools or work, e.g. saddles, tool-slides, through mechanical transmission
- B23Q5/38—Feeding other members supporting tools or work, e.g. saddles, tool-slides, through mechanical transmission feeding continuously
- B23Q5/40—Feeding other members supporting tools or work, e.g. saddles, tool-slides, through mechanical transmission feeding continuously by feed shaft, e.g. lead screw
Definitions
- the invention relates to the field of processing devices, in particular to a processing device for processing a head and capable of reciprocating motion.
- a processing apparatus for processing a head and reciprocating includes a frame and a machining head reciprocally mounted to the frame in a front-rear direction, wherein the machining head is provided with a front-rear direction
- An extended chute cavity for rollingly engaging with the roller pushing device to be pushed and pulled by the roller pushing device to adjust a position in a left-right direction orthogonal to the front-rear direction
- the roller pushing device includes a threaded sleeve member rotatably mounted to the frame for threadingly engaging with a threaded moving rod, the threaded sleeve member being driven to rotate by a driving motor, the threaded moving rod having a vertical symmetry
- the push heads of the two conical section roller assemblies are detachably fixedly connected, and the push head includes an elliptical cross-section tensioning push-pull column for detachably fixedly connecting with the threaded moving rod, the two a conical section roller assembly is located on the upper and lower sides of the top-t
- a roller shaft for rotatably mounting the conical section roller is fixedly disposed at an outer side surface of the main body fitting portion, whereby rotation of the conical section roller allows the machining head to be
- the driving force of the processing head fixed by the carrying guide plate member drives the movement back and forth, and the engagement of the guiding plate member with the frame allows the driving motor to drive the threaded moving rod to laterally translate to drive the machining Moving the head left and right to adjust its lateral processing position; wherein, by disassembling the top tension adjusting push-pull column and the main body engaging portion and the fixed connection with the thread moving rod, the top tightening push-pull column can be rotated to thereby
- the conical section roller of the two conical section roller assemblies is tightly mounted, and the LED illumination lamp is disposed at the lower left of the bottom of the processing head,
- a bending connecting rod is arranged between the LED lighting lamp and the processing head, and the connecting rods which can be bent can realize illumination at different angles, which is convenient for night lighting.
- the conical section roller capable of interacting with the inclined surface of the push-pull engagement groove is used, when the roller and the groove have a gap, the gap can be eliminated by tightening the two rollers toward both sides, thereby ensuring driving accuracy.
- the adjustment cylinder By providing an adjustment cylinder having an elliptical cross section, the adjustment cylinder can be rotated to adjust the gap and the operation method. By detaching the column and the push-pull stud and the support member, it is easy to adjust while ensuring the stability of the connection and the transmission of the push-pull force.
- the cylinder By arranging the fixed stop on the carrier, the cylinder can be positioned to ensure the positional accuracy in the push-pull direction while reinforcing the fastening force, thereby avoiding the push-pull direction caused by adjusting the gap.
- the size of the change. The whole device is reliable in operation and easy to operate, and can effectively solve the problems in the prior art.
- Figure 1 is a schematic overall view of a processing apparatus for a processing head and capable of reciprocating motion of the present invention
- Fig. 2 is an enlarged schematic view showing the detail of the processing head portion of Fig. 1.
- Fig. 3 is a schematic view showing the elliptical section of the top-tightening push-pull column of Fig. 2.
- a processing apparatus for processing a head and capable of reciprocating motion includes a frame 8 and a processing head 9 reciprocally mounted on the frame 8 in a front-rear direction, the processing The head 9 is provided with a chute cavity 90 extending in the front-rear direction, The chute cavity 90 is configured to be roll-fitted with the roller pushing device to be pushed and pulled by the roller pushing device to adjust a position in a left-right direction orthogonal to the front-rear direction, wherein the roller pushing device includes a rotatably A threaded sleeve member 82 mounted to the frame 8 is for threaded engagement with a threaded moving rod 83 that is driven to rotate by a drive motor 81 that has two symmetrical settings
- the pusher head of the conical section roller assembly is detachably fixedly coupled, and the pusher head includes an elliptical section of the top tension adjustment push-pull column 6 for detachably fixedly connecting with the threaded travel bar 83, the two cone
- a positioning stop 71 for engaging with the other end of the top-adjustment push-pull column 6, and a roller for rotatably mounting the conical section roller 94 is fixedly disposed at an outer side surface of the main body fitting portion 73.
- the sub-shaft 72 whereby the rotation of the conical section roller 94 allows the machining head 9 to be guided by the load bearing attached to the machining head 9.
- the driving force received by the plate member 93 is driven forward and backward, and the engagement of the guide plate member 93 with the frame 8 allows the drive motor 81 to drive the threaded movement lever 83 to laterally translate to drive the machining head 9 Moving left and right to adjust its lateral processing position; wherein, by disassembling the top tension adjusting push-pull column 6 and the main body engaging portion 73 and the fixed connection with the thread moving rod 83, the top tightening push-pull column 6 can be rotated
- the conical section rollers 94 of the two conical section roller assemblies are tightened to be pressed against the respective inclined planes, and the LED illumination lamp 901 is disposed at the lower left of the bottom of the processing head 9.
- a bendable connecting rod 902 is disposed between the LED illuminating lamp 901 and the processing head 9.
- the adjustable connecting rod 902 can realize different angles of illumination for convenient nighttime lighting.
- top-tightening push-pull post 6 and the main body engaging portion 73 and the fixed connection with the threaded moving rod 83 are adjusted by passing through the threaded moving rod 83 and the top tightening
- the fastening bolts 6 are pushed and pulled to enter the fastening bolts in the main body fitting portion 73 to be detachably fixedly connected.
- the inclined surface which is separated from the corresponding roller tapered surface serves as a protection against the overload of the push-pull force, avoiding the roller and the inclined surface of the joint An overload occurs and the deformation is damaged.
- the adjustment cylinder By using a conical section roller that can interact with the inclined surface of the push-pull engagement groove, when the roller and the groove have a gap, the gap can be eliminated by pressing the two rollers toward both sides, thereby ensuring driving accuracy.
- the adjustment cylinder By providing an adjustment cylinder having an elliptical cross section, the adjustment cylinder can be rotated to adjust the gap and the operation method. By detaching the column and the push-pull stud and detachably connecting the support member, it can be easily adjusted while ensuring The stability of the connection and the drive of the push-pull force.
- the cylinder By arranging the fixed stop on the carrier, the cylinder can be positioned to ensure the positional accuracy in the push-pull direction while reinforcing the fastening force, thereby avoiding the push-pull direction caused by adjusting the gap.
- the size of the change By arranging the fixed stop on the carrier, the cylinder can be positioned to ensure the positional accuracy in the push-pull direction while reinforcing the fastening force, thereby avoiding the push-pull direction caused by adjusting the gap. The size of the change.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Machine Tool Units (AREA)
Abstract
一种用于加工头且能往复运动的加工装置,包括机架(8)以及在前后方向上能往复运动地安装于所述机架(8)上的加工头(9),所述加工头(9)中设置有前后方向延伸的滑槽空腔(90),所述滑槽空腔(90)用以与滚轮推动装置滚动配合从而由所述滚轮推动装置推拉以调整在正交于所述前后方向的左右方向上的位置,其中,所述滚轮推动装置包括可转动地安装与所述机架(8)的螺纹套筒件(82)用以与螺纹移动杆(83)螺纹配合。
Description
本发明涉及加工装置领域,具体为一种用于加工头且能往复运动的加工装置。
对于机械装置加工头的前后驱动以及横向驱动具有广泛需要。现有一些装置中往往采用正交的驱动系统相互叠加的方式进行,即以一个驱动为主,另一副驱动位于主驱动之内。这种方式容易造成加工头重量过大。而采用滚轮推拉式驱动虽然可以在执行副驱动时不必将驱动系统重量施加在加工头上,但是,滚轮与加工头之间的间隙往往对推拉驱动的精度造成影响。调整间隙往往带来复杂的工作量。
发明内容
本发明的目的在于提供一种用于加工头且能往复运动的加工装置,用于克服现有技术中的上述缺陷。
根据本发明的一种用于加工头且能往复运动的加工装置,包括机架以及在前后方向上能往复运动地安装于所述机架上的加工头,所述加工头中设置有前后方向延伸的滑槽空腔,所述滑槽空腔用以与滚轮推动装置滚动配合从而由所述滚轮推动装置推拉以调整在正交于所述前后方向的左右方向上的位置,其中,所述滚轮推动装置包括可转动地安装于所述机架的螺纹套筒件用以与螺纹移动杆螺纹配合,所述螺纹套筒件由驱动电机驱动转动,所述螺纹移动杆与具有上下对称设
置的两个圆锥部段滚子组件的推动头可拆卸地固定连接,所述推动头包括椭圆截面的顶紧调整推拉柱用以与所述螺纹移动杆可拆卸地固定连接,所述两个圆锥部段滚子组件位于所述顶紧调整推拉柱的上下两侧并且分别与所述顶紧调整推拉柱可拆卸地固定连接,每个所述圆锥部段滚子组件包括滚子承载传力部件以及圆锥部段滚子,其中,所述两个圆锥部段滚子组件中的一个的圆锥部段滚子的锥面与固定设置于所述滑槽空腔内侧的轨道垫板的斜面配合且离开所述滑槽空腔的外侧凸伸部的斜面,所述两个圆锥部段滚子组件中的另一个的圆锥部段滚子的锥面与所述滑槽空腔的外侧凸伸部的斜面配合且离开固定设置于所述滑槽空腔内侧的对应的轨道垫板的斜面,所述滚子承载传力部件包括一端与所述顶紧调整推拉柱的一端以及所述螺纹移动杆可拆卸地固定连接且内侧面与所述顶紧调整推拉柱的柱面配合的主体配合部,所述主体配合部的另一端固定设置有定位止挡部用以与所述顶紧调整推拉柱的另一端配合,所述主体配合部的外侧面处固定设置有用以可转动地安装所述圆锥部段滚子的滚子轴,由此,所述圆锥部段滚子的转动允许所述加工头由与所述加工头固连的承载导向板件所接收的驱动力而前后驱动运动,并且所述导向板件与所述机架的配合允许所述驱动电机驱动所述螺纹移动杆横向平移从而驱动所述加工头左右运动以调整其横向加工位置;其中,通过拆卸所述顶紧调整推拉柱与所述主体配合部以及与所述螺纹移动杆的固定连接,所述顶紧调整推拉柱能够转动从而将所述两个圆锥部段滚子组件的所述圆锥部段滚子顶紧,所述加工头底部左下方设有LED照明灯,所述
LED照明灯与所述加工头之间设有能弯折的连接杆,通过调节能弯折的所述连接杆可以实现不同角度的照明,方便夜间照明使用。
由于采用了能够与推拉接合槽的斜面互相作用的圆锥部段滚轮,因此,在滚轮与槽具有间隙时,能够通过将两个滚轮朝两侧顶紧而消除间隙,从而保证驱动精确性。通过设置具有椭圆截面的调整柱体,能够将该调整柱体进行转动而调整这种间隙,操作方法。通过将该柱体与推拉螺柱可拆卸以及支承件可拆卸连接,能够方便调整的同时保证连接的稳定性以及推拉力的传动。通过设置所述承载架上的固设的止动部,能够将该柱体实现定位,以在加强紧固力的同时确保推拉方向上的位置精确度,避免因为调整上述间隙而引起推拉方向上的尺寸变动。整个装置运行可靠,操作简便,能够有效解决现有技术中的问题。
图1是本发明的用于加工头且能往复运动的加工装置的整体示意图;
图2是示出了图1中的加工头部位处的细节放大示意图。
图3示出了图2中的顶紧调整推拉柱椭圆截面的示意图。
下面结合图1-3对本发明进行详细说明。
根据本发明的实施例,一种用于加工头且能往复运动的加工装置,包括机架8以及在前后方向上能往复运动地安装于所述机架8上的加工头9,所述加工头9中设置有前后方向延伸的滑槽空腔90,所
述滑槽空腔90用以与滚轮推动装置滚动配合从而由所述滚轮推动装置推拉以调整在正交于所述前后方向的左右方向上的位置,其中,所述滚轮推动装置包括可转动地安装于所述机架8的螺纹套筒件82用以与螺纹移动杆83螺纹配合,所述螺纹套筒件82由驱动电机81驱动转动,所述螺纹移动杆83与具有上下对称设置的两个圆锥部段滚子组件的推动头可拆卸地固定连接,所述推动头包括椭圆截面的顶紧调整推拉柱6用以与所述螺纹移动杆83可拆卸地固定连接,所述两个圆锥部段滚子组件位于所述顶紧调整推拉柱6的上下两侧并且分别与所述顶紧调整推拉柱6可拆卸地固定连接,每个所述圆锥部段滚子组件包括滚子承载传力部件7以及圆锥部段滚子94,其中,所述两个圆锥部段滚子组件中的一个的圆锥部段滚子94的锥面与固定设置于所述滑槽空腔90内侧的轨道垫板92的斜面配合且离开所述滑槽空腔90的外侧凸伸部91的斜面,所述两个圆锥部段滚子组件中的另一个的圆锥部段滚子94的锥面与所述滑槽空腔90的外侧凸伸部91的斜面配合且离开固定设置于所述滑槽空腔90内侧的对应的轨道垫板921的斜面,所述滚子承载传力部件7包括一端与所述顶紧调整推拉柱6的一端以及所述螺纹移动杆83可拆卸地固定连接且内侧面与所述顶紧调整推拉柱6的柱面配合的主体配合部73,所述主体配合部73的另一端固定设置有定位止挡部71用以与所述顶紧调整推拉柱6的另一端配合,所述主体配合部73的外侧面处固定设置有用以可转动地安装所述圆锥部段滚子94的滚子轴72,由此,所述圆锥部段滚子94的转动允许所述加工头9由与所述加工头9固连的承载导向
板件93所接收的驱动力而前后驱动运动,并且所述导向板件93与所述机架8的配合允许所述驱动电机81驱动所述螺纹移动杆83横向平移从而驱动所述加工头9左右运动以调整其横向加工位置;其中,通过拆卸所述顶紧调整推拉柱6与所述主体配合部73以及与所述螺纹移动杆83的固定连接,所述顶紧调整推拉柱6能够转动从而将所述两个圆锥部段滚子组件的所述圆锥部段滚子94顶紧,从而压迫在各自对应的斜面上,所述加工头9底部左下方设有LED照明灯901,所述LED照明灯901与所述加工头9之间设有能弯折的连接杆902,通过调节能弯折的所述连接杆902可以实现不同角度的照明,方便夜间照明使用。
示例性地或有益地,其中,所述顶紧调整推拉柱6与所述主体配合部73以及与所述螺纹移动杆83的固定连接由穿过所述螺纹移动杆83以及所述顶紧调整推拉柱6而进入所述主体配合部73中的紧固螺栓来可拆卸地固定连接。
有益地,所述外侧凸伸部的斜面和内侧的轨道垫板的斜面中,与对应的滚子锥面相离的斜面用作在推拉力过载情形下的保护作用,避免滚子以及接合的斜面发生过载而变形损坏。
通过采用能够与推拉接合槽的斜面互相作用的圆锥部段滚轮,因此,在滚轮与槽具有间隙时,能够通过将两个滚轮朝两侧顶紧而消除间隙,从而保证驱动精确性。通过设置具有椭圆截面的调整柱体,能够将该调整柱体进行转动而调整这种间隙,操作方法。通过将该柱体与推拉螺柱可拆卸以及支承件可拆卸连接,能够方便调整的同时保证
连接的稳定性以及推拉力的传动。通过设置所述承载架上的固设的止动部,能够将该柱体实现定位,以在加强紧固力的同时确保推拉方向上的位置精确度,避免因为调整上述间隙而引起推拉方向上的尺寸变。
本领域的技术人员可以明确,在不脱离本发明的总体精神以及构思的情形下,可以做出对于以上实施例的各种变型。其均落入本发明的保护范围之内。本发明的保护方案以本发明所附的权利要求书为准。
Claims (2)
- 一种用于加工头且能往复运动的加工装置,包括机架(8)以及在前后方向上能往复运动地安装于所述机架(8)上的加工头(9),所述加工头(9)中设置有前后方向延伸的滑槽空腔(90),所述滑槽空腔(90)用以与滚轮推动装置滚动配合从而由所述滚轮推动装置推拉以调整在正交于所述前后方向的左右方向上的位置,其中,所述滚轮推动装置包括可转动地安装于所述机架(8)的螺纹套筒件(82)用以与螺纹移动杆(83)螺纹配合,所述螺纹套筒件(82)由驱动电机(81)驱动转动,所述螺纹移动杆(83)与具有上下对称设置的两个圆锥部段滚子组件的推动头可拆卸地固定连接,所述推动头包括椭圆截面的顶紧调整推拉柱(6)用以与所述螺纹移动杆(83)可拆卸地固定连接,所述两个圆锥部段滚子组件位于所述顶紧调整推拉柱(6)的上下两侧并且分别与所述顶紧调整推拉柱(6)可拆卸地固定连接,每个所述圆锥部段滚子组件包括滚子承载传力部件(7)以及圆锥部段滚子(94),其中,所述两个圆锥部段滚子组件中的一个的圆锥部段滚子(94)的锥面与固定设置于所述滑槽空腔(90)内侧的轨道垫板(92)的斜面配合且离开所述滑槽空腔(90)的外侧凸伸部(91)的斜面,所述两个圆锥部段滚子组件中的另一个的圆锥部段滚子(94)的锥面与所述滑槽空腔(90)的外侧凸伸部(91)的斜面配合且离开固定设置于所述滑槽空腔(90)内侧的对应的轨道垫板(921)的斜面,所述滚子承载传力部件(7)包括一端与所述顶紧调整推拉柱(6)的一端以及所述螺纹移动杆(83)可拆卸地固定连接且内侧 面与所述顶紧调整推拉柱(6)的柱面配合的主体配合部(73),所述主体配合部(73)的另一端固定设置有定位止挡部(71)用以与所述顶紧调整推拉柱(6)的另一端配合,所述主体配合部(73)的外侧面处固定设置有用以可转动地安装所述圆锥部段滚子(94)的滚子轴(72),由此,所述圆锥部段滚子(94)的转动允许所述加工头(9)由与所述加工头(9)固连的承载导向板件(93)所接收的驱动力而前后驱动运动,并且所述导向板件(93)与所述机架(8)的配合允许所述驱动电机(81)驱动所述螺纹移动杆(83)横向平移从而驱动所述加工头(9)左右运动以调整其横向加工位置;其中,通过拆卸所述顶紧调整推拉柱(6)与所述主体配合部(73)以及与所述螺纹移动杆(83)的固定连接,所述顶紧调整推拉柱(6)能够转动从而将所述两个圆锥部段滚子组件的所述圆锥部段滚子(94)顶紧,所述加工头(9)底部左下方设有LED照明灯(901),所述LED照明灯(901)与所述加工头(9)之间设有能弯折的连接杆(902),通过调节能弯折的所述连接杆(902)可以实现不同角度的照明,方便夜间照明使用。
- 如权利要求1所述的一种用于加工头且能往复运动的加工装置,其中,所述顶紧调整推拉柱(6)与所述主体配合部(73)以及与所述螺纹移动杆(83)的固定连接由穿过所述螺纹移动杆(83)以及所述顶紧调整推拉柱(6)而进入所述主体配合部(73)中的紧固螺栓来可拆卸地固定连接。
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