WO2020233353A1 - 一种高效率低成本多功能精密机床 - Google Patents
一种高效率低成本多功能精密机床 Download PDFInfo
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- WO2020233353A1 WO2020233353A1 PCT/CN2020/087154 CN2020087154W WO2020233353A1 WO 2020233353 A1 WO2020233353 A1 WO 2020233353A1 CN 2020087154 W CN2020087154 W CN 2020087154W WO 2020233353 A1 WO2020233353 A1 WO 2020233353A1
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- machine tool
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- sliding table
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- 230000007246 mechanism Effects 0.000 claims abstract description 37
- 238000003801 milling Methods 0.000 claims description 11
- 238000005553 drilling Methods 0.000 claims description 7
- 238000003754 machining Methods 0.000 abstract description 3
- 238000006243 chemical reaction Methods 0.000 abstract description 2
- 238000006073 displacement reaction Methods 0.000 abstract description 2
- 238000000034 method Methods 0.000 description 7
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23P—METAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
- B23P23/00—Machines or arrangements of machines for performing specified combinations of different metal-working operations not covered by a single other subclass
- B23P23/02—Machine tools for performing different machining operations
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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
- B23Q39/00—Metal-working machines incorporating a plurality of sub-assemblies, each capable of performing a metal-working operation
- B23Q39/02—Metal-working machines incorporating a plurality of sub-assemblies, each capable of performing a metal-working operation the sub-assemblies being capable of being brought to act at a single operating station
- B23Q39/021—Metal-working machines incorporating a plurality of sub-assemblies, each capable of performing a metal-working operation the sub-assemblies being capable of being brought to act at a single operating station with a plurality of toolheads per workholder, whereby the toolhead is a main spindle, a multispindle, a revolver or the like
- B23Q39/022—Metal-working machines incorporating a plurality of sub-assemblies, each capable of performing a metal-working operation the sub-assemblies being capable of being brought to act at a single operating station with a plurality of toolheads per workholder, whereby the toolhead is a main spindle, a multispindle, a revolver or the like with same working direction of toolheads on same workholder
- B23Q39/024—Metal-working machines incorporating a plurality of sub-assemblies, each capable of performing a metal-working operation the sub-assemblies being capable of being brought to act at a single operating station with a plurality of toolheads per workholder, whereby the toolhead is a main spindle, a multispindle, a revolver or the like with same working direction of toolheads on same workholder consecutive working of toolheads
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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
- B23Q39/00—Metal-working machines incorporating a plurality of sub-assemblies, each capable of performing a metal-working operation
- B23Q39/02—Metal-working machines incorporating a plurality of sub-assemblies, each capable of performing a metal-working operation the sub-assemblies being capable of being brought to act at a single operating station
- B23Q39/028—Metal-working machines incorporating a plurality of sub-assemblies, each capable of performing a metal-working operation the sub-assemblies being capable of being brought to act at a single operating station with a plurality of workholder per toolhead in operating position
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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
- B23Q39/00—Metal-working machines incorporating a plurality of sub-assemblies, each capable of performing a metal-working operation
- B23Q2039/008—Machines of the lathe type
Definitions
- the invention relates to the technical field of precision machine tools, in particular to a high-efficiency, low-cost, multifunctional precision machine tool.
- a precision machining center with more than three power axes can process more complex workpieces and meet high-precision requirements without reversing or turning the workpiece.
- five-axis precision machining centers are very expensive. At least several times the price of ordinary CNC machine tools.
- the present invention provides a high-efficiency, low-cost, multifunctional precision machine tool, which can process the workpiece without disassembling the workpiece.
- the present invention provides the following solutions:
- the present invention provides a high-efficiency and low-cost multifunctional precision machine tool, including a bed, a first workpiece fixing mechanism, a second workpiece fixing mechanism, and a tool mechanism; the first workpiece fixing mechanism and the second workpiece fixing mechanism are separately arranged On one side of the top of the bed, the cutter mechanism is arranged in the middle of the bed.
- the first workpiece fixing mechanism includes a first transverse guide rail, a first longitudinal sliding table, a first horizontal spindle power head and a first chuck; the first transverse guide rail is fixedly arranged on the bed, so The first longitudinal sliding table is slidably arranged on the first horizontal guide rail, the first horizontal spindle power head is arranged on the first longitudinal sliding table, and the first chuck is arranged on the first horizontal spindle On the power output end of the power head.
- the first chuck is an internal expansion chuck.
- the second workpiece fixing mechanism includes a second transverse guide rail, a second longitudinal sliding table, a second horizontal spindle power head and a second chuck;
- the second transverse guide rail is fixedly arranged on the bed, so
- the second longitudinal sliding table is slidably arranged on the second transverse guide rail
- the second horizontal spindle power head is arranged on the second longitudinal sliding table
- the second chuck is arranged on the second horizontal spindle On the power output end of the power head.
- the second chuck is a soft jaw chuck.
- the tool mechanism includes a platform, a bracket, a sliding table, a power head, and a tool holder; the platform is fixedly arranged in the middle of the bed, the bracket is arranged on the platform, and the sliding table is arranged on On the support, the power head is slidably arranged on the sliding table, and the tool holder is arranged on the platform.
- the power head is a vertical combined drilling and milling power head.
- an oil milling groove cutter and a plurality of drill bits are installed on the power head.
- a turning step tool, a turning plane outside corner tool and an inside turning tool are installed on the tool holder.
- the main structure of the high-efficiency, low-cost, multifunctional precision machine tool in the present invention includes a bed and a first workpiece fixing mechanism, a second workpiece fixing mechanism, and a tool mechanism arranged on the bed; the first workpiece fixing mechanism and the second workpiece fixing mechanism are respectively
- the internal expansion chuck and soft jaw chuck for clamping the workpiece can not only drive the workpiece to rotate, but also make the workpiece perform horizontal and longitudinal linear displacement, so the workpiece can be clamped by the internal expansion chuck to process the workpiece The other end of the workpiece is clamped by the soft-jaw chuck to process the other end of the workpiece. Therefore, the workpiece can be processed without removing the workpiece, and the high-efficiency, low-cost, multifunctional precision machine tool of the present invention
- the structure is simple, and it has higher clamping conversion efficiency and processing efficiency of the workpiece.
- Figure 1 is a schematic diagram of the front structure of a high-efficiency, low-cost, multifunctional precision machine tool of the present invention
- Fig. 2 is a schematic top view of the high-efficiency and low-cost multifunctional precision machine tool of the present invention
- Figure 3 is a left-side structural schematic diagram of the high-efficiency and low-cost multifunctional precision machine tool of the present invention.
- Fig. 4 is a processing process diagram of the high-efficiency, low-cost, multifunctional precision machine tool of the present invention.
- this embodiment provides a high-efficiency and low-cost multifunctional precision machine tool, including a bed 1, a first workpiece fixing mechanism, a second workpiece fixing mechanism, and a tool mechanism; the first workpiece fixing mechanism and the The second workpiece fixing mechanisms are respectively arranged on one side of the top of the bed 1, and the cutter mechanism is arranged in the middle of the bed 1.
- the first workpiece fixing mechanism includes a first transverse guide rail 2, a first longitudinal sliding table 4, a first horizontal spindle power head 6 and an internal expansion chuck 8
- the first transverse guide rail 2 is fixedly arranged on the bed 1
- the first longitudinal sliding table 4 is slidably arranged on the first transverse guide rail 2
- the first horizontal spindle power head 6 is arranged in the On the first longitudinal sliding table 4, the internal expansion chuck 8 is arranged on the power output end of the first horizontal spindle power head 6.
- the second workpiece fixing mechanism includes a second transverse guide rail 3, a second longitudinal sliding table 5, a second horizontal spindle power head 7 and a soft jaw chuck 9; the second transverse guide rail 3 is fixedly arranged on the bed 1
- the second longitudinal sliding table 5 is slidably arranged on the second horizontal guide 3
- the second horizontal spindle power head 7 is arranged on the second longitudinal sliding table 5, and the soft jaw chuck 9 It is arranged on the power output end of the second horizontal main shaft power head 7.
- the tool mechanism includes a platform 10, a support 11, a sliding table 12, a vertical combined drilling and milling power head 13, and a tool holder 15.
- the platform 10 is fixedly arranged in the middle of the bed 1, and the support 11 is arranged on the platform 10, the sliding table 12 is arranged on the support 11, the vertical combined drilling and milling power head 13 is slidably arranged on the sliding table 12, and the tool holder 15 is arranged on the platform 10. .
- the tool holder 15 is equipped with a turning step tool 16, a turning plane outside corner tool 17, and an interior chamfering tool 18, and the combined drilling and milling power head 13 is equipped with a milling groove tool 19, a first drill bit 20 and a second drill bit 21. .
- the first horizontal spindle power head 6 drives the workpiece 14 to rotate, and the steps and the inner and outer chamfers at the other end of the workpiece 14 are turned.
- the combined power head rotates, and the workpiece 14 is milled and drilled through the movement of the first horizontal spindle power head 6.
- the first horizontal spindle power head 6 moves to the right to send the workpiece 14 into the soft jaw chuck 9 for clamping.
- the horizontal spindle power head 7 drives the workpiece 14 to rotate, and turns the step at one end of the workpiece 14 and the inner and outer chamfers to complete the processing of the workpiece 14 and remove the workpiece 14 to enter the next processing cycle.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Physics & Mathematics (AREA)
- Optics & Photonics (AREA)
- Machine Tool Units (AREA)
- Turning (AREA)
Abstract
一种多功能精密机床,主要结构包括床身(1)以及设置于床身(1)上的第一工件固定机构、第二工件固定机构和刀具机构;第一工件固定机构和第二工件固定机构分别具有夹持工件(14)的内涨式夹头(8)和软爪卡盘(9),不仅能够驱动工件(14)进行旋转,还能使工件(14)进行横向和纵向的线性位移,因而可以先通过内涨式夹头(8)夹持工件(14)以加工工件(14)的一端,再通过软爪卡盘(9)夹持工件(14)的另一端以加工工件(14)的另一端,因此能够在不拆下工件的前提下对工件(14)进行加工,且该机床结构简单,具有较高的工件的夹持转换效率以及加工效率。
Description
本发明涉及精密机床技术领域,特别是涉及一种高效率低成本多功能精密机床。
传统的普通数控机床一般只有一个主轴和一个与之垂直的副轴来实现铣槽或钻孔,加工比较复杂的工件时需要将工件拆下换向或转向,这样工件的拆下再装上就大大限制了其加工精度。
而具有三个动力轴(通常称五轴)以上的精密加工中心不需要将工件换向或转向就能够加工比较复杂的工件并达到高精度要求,但是这样的五轴精密加工中心价格非常昂贵,至少是数倍于普通数控机床的价格。
发明内容
为解决以上技术问题,本发明提供一种高效率低成本多功能精密机床,并能够在不拆下工件的前提下对工件进行加工。
为实现上述目的,本发明提供了如下方案:
本发明提供一种高效率低成本多功能精密机床,包括床身、第一工件固定机构、第二工件固定机构和刀具机构;所述第一工件固定机构和所述第二工件固定机构分别设置于所述床身顶部的一侧,所述刀具机构设置于所述床身中部。
可选的,所述第一工件固定机构包括第一横向导轨、第一纵向滑台、第一水平主轴动力头和第一夹头;所述第一横向导轨固定设置于所述床身上,所述第一纵向滑台滑动设置于所述第一横向导轨上,所述第一水平主轴动力头设置于所述第一纵向滑台上,所述第一夹头设置于所述第一水平主轴动力头的动力输出端上。
可选的,所述第一夹头为内涨式夹头。
可选的,所述第二工件固定机构包括第二横向导轨、第二纵向滑台、第二水平主轴动力头和第二夹头;所述第二横向导轨固定设置于所述床身上,所述第二纵向滑台滑动设置于所述第二横向导轨上,所述第二水平主 轴动力头设置于所述第二纵向滑台上,所述第二夹头设置于所述第二水平主轴动力头的动力输出端上。
可选的,所述第二夹头为软爪卡盘。
可选的,所述刀具机构包括平台、支架、滑台、动力头和刀架;所述平台固定设置于所述床身中部,所述支架设置于所述平台上,所述滑台设置于所述支架上,所述动力头可滑动的设置于所述滑台上,所述刀架设置于所述平台上。
可选的,所述动力头为垂直组合钻铣动力头。
可选的,所述动力头上安装有铣油槽刀和多个钻头。
可选的,所述刀架上安装有车台阶刀、车平面外角刀和车内倒角刀。
本发明相对于现有技术取得了以下技术效果:
本发明中的高效率低成本多功能精密机床主要结构包括床身以及设置于床身上的第一工件固定机构、第二工件固定机构和刀具机构;第一工件固定机构和第二工件固定机构分别具有夹持工件的内涨式夹头和软爪卡盘,不仅能够驱动工件进行旋转,还能使工件进行横向和纵向的线性位移,因而可以先通过内涨式夹头夹持工件以加工工件的一端,再通过软爪卡盘夹持工件的另一端以加工工件的另一端,因此能够在不拆下工件的前提下对工件进行加工,且本发明中的高效率低成本多功能精密机床结构简单,具有较高的工件的夹持转换效率以及加工效率。
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中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性的前提下,还可以根据这些附图获得其他的附图。
图1为本发明高效率低成本多功能精密机床的主视结构示意图;
图2为本发明高效率低成本多功能精密机床的俯视结构示意图;
图3为本发明高效率低成本多功能精密机床的左视结构示意图;
图4为本发明高效率低成本多功能精密机床的加工工艺图。
附图标记说明:1、床身;2、第一横向导轨;3、第二横向导轨、4、 第一纵向滑台;5、第二纵向滑台;6、第一水平主轴动力头;7、第二水平主轴动力头;8、内涨式夹头;9、软爪卡盘;10、平台;11、支架;12、滑台;13、垂直组合钻铣动力头;14、工件;15、刀架;16、车台阶刀;17、车平面外角刀、18、车内倒角刀;19、铣油槽刀;20、第一钻头;21、第二钻头。
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。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前提下所获得的所有其他实施例,都属于本发明保护的范围。
实施例一:
如图1所示,本实施例提供一种高效率低成本多功能精密机床,包括床身1、第一工件固定机构、第二工件固定机构和刀具机构;所述第一工件固定机构和所述第二工件固定机构分别设置于所述床身1顶部的一侧,所述刀具机构设置于所述床身1中部。
于本具体实施例中,如图1-4所示,所述第一工件固定机构包括第一横向导轨2、第一纵向滑台4、第一水平主轴动力头6和内涨式夹头8;所述第一横向导轨2固定设置于所述床身1上,所述第一纵向滑台4滑动设置于所述第一横向导轨2上,所述第一水平主轴动力头6设置于所述第一纵向滑台4上,所述内涨式夹头8设置于所述第一水平主轴动力头6的动力输出端上。
所述第二工件固定机构包括第二横向导轨3、第二纵向滑台5、第二水平主轴动力头7和软爪卡盘9;所述第二横向导轨3固定设置于所述床身1上,所述第二纵向滑台5滑动设置于所述第二横向导轨3上,所述第二水平主轴动力头7设置于所述第二纵向滑台5上,所述软爪卡盘9设置于所述第二水平主轴动力头7的动力输出端上。
所述刀具机构包括平台10、支架11、滑台12、垂直组合钻铣动力头13和刀架15;所述平台10固定设置于所述床身1中部,所述支架11设 置于所述平台10上,所述滑台12设置于所述支架11上,所述垂直组合钻铣动力头13可滑动的设置于所述滑台12上,所述的刀架15设置于所述平台10上。
所述刀架15上安装有车台阶刀16、车平面外角刀17、车内倒角刀18,所述组合钻铣动力头13上装有铣油槽刀19、第一钻头20和第二钻头21。
以加工圆筒形零件为例,通过内涨式夹头8固定工件14的一端,第一水平主轴动力头6带动工件14旋转,车削工件14另一端的台阶和内外倒角,后侧的垂直组合动力头旋转,通过第一水平主轴动力头6移动对工件14进行铣油槽、钻孔,第一水平主轴动力头6向右边移动把工件14送入软爪卡盘9中夹紧,第二水平主轴动力头7带动工件14旋转,车削工件14一端台阶和内外倒角,完成工件14加工取出工件14,进入下一加工循环。
本说明书中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处。综上所述,本说明书内容不应理解为对本发明的限制。
Claims (9)
- 一种高效率低成本多功能精密机床,其特征在于,包括床身、第一工件固定机构、第二工件固定机构和刀具机构;所述第一工件固定机构和所述第二工件固定机构分别设置于所述床身顶部的一侧,所述刀具机构设置于所述床身中部。
- 根据权利要求1所述的高效率低成本多功能精密机床,其特征在于,所述第一工件固定机构包括第一横向导轨、第一纵向滑台、第一水平主轴动力头和第一夹头;所述第一横向导轨固定设置于所述床身上,所述第一纵向滑台滑动设置于所述第一横向导轨上,所述第一水平主轴动力头设置于所述第一纵向滑台上,所述第一夹头设置于所述第一水平主轴动力头的动力输出端上。
- 根据权利要求2所述的高效率低成本多功能精密机床,其特征在于,所述第一夹头为内涨式夹头。
- 根据权利要求1所述的高效率低成本多功能精密机床,其特征在于,所述第二工件固定机构包括第二横向导轨、第二纵向滑台、第二水平主轴动力头和第二夹头;所述第二横向导轨固定设置于所述床身上,所述第二纵向滑台滑动设置于所述第二横向导轨上,所述第二水平主轴动力头设置于所述第二纵向滑台上,所述第二夹头设置于所述第二水平主轴动力头的动力输出端上。
- 根据权利要求4所述的高效率低成本多功能精密机床,其特征在于,所述第二夹头为软爪卡盘。
- 根据权利要求1所述的高效率低成本多功能精密机床,其特征在于,所述刀具机构包括平台、支架、滑台、动力头和刀架;所述平台固定设置于所述床身中部,所述支架设置于所述平台上,所述滑台设置于所述支架上,所述动力头可滑动的设置于所述滑台上,所述刀架设置于所述平台上。
- 根据权利要求6所述的高效率低成本多功能精密机床,其特征在于,所述动力头为垂直组合钻铣动力头。
- 根据权利要求7所述的高效率低成本多功能精密机床,其特征在 于,所述动力头上安装有铣油槽刀和多个钻头。
- 根据权利要求6所述的高效率低成本多功能精密机床,其特征在于,所述刀架上安装有车台阶刀、车平面外角刀和车内倒角刀。
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