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剖析五軸加工在轎車(chē)模具加工中的運用
來(lái)源:http://www.bnuj.com.cn 時(shí)間:2021-07-28
現在設計轎車(chē)零件主要運用的是CAD系統,并經(jīng)過(guò)逆向工程以及各種實(shí)驗完結零件的設計,加工模具的雜亂外表運用的是CAM軟件,但是,怎樣才能夠確保設計與加工時(shí)的精度則要靠數控加工了,筆者在下文剖析了五軸加工在模具加工中的運用同轎車(chē)模具質(zhì)量的之間的聯(lián)系。
At present, CAD system is mainly used to design car parts, and the design of parts is completed through reverse engineering and various experiments. CAM software is used to process the messy appearance of mold. However, how to ensure the accuracy of design and processing depends on NC machining, In the following, the author analyzes the relationship between the application of five axis machining center in die processing and the quality of car die.
1對深腔模具的加工
1. Processing of deep cavity mold
轎車(chē)模具制作的進(jìn)程傍邊,加工深腔模具時(shí)如運用五軸加工,要想完結有必要加長(cháng)刀柄和刀具,但是運用五軸加工加工比較深與比較陡的型腔時(shí),要想給模具加工發(fā)明較好的工藝條件能夠經(jīng)過(guò)工件或主軸頭的附加回轉和搖擺,能夠使刀具長(cháng)度得到適當地縮短,然后杜絕刀具同刀桿以及型腔壁之間發(fā)作碰撞現象的發(fā)作,削減加工時(shí)刀具的抖動(dòng)與破損,刀具的運用壽命得到延伸,模具的外表質(zhì)量和加工功率也大大進(jìn)步。
The process of car mold making is close to the side. If the five axis machining center is used to process the deep cavity mold, it is necessary to lengthen the tool handle and tool to finish. However, when the five axis machining center is used to process the deep and steep cavity, it is necessary to invent better process conditions for mold processing, which can pass through the additional rotation and swing of the workpiece or spindle head, It can appropriately shorten the length of the tool, prevent the occurrence of collision between the tool, the tool bar and the cavity wall, reduce the vibration and damage of the tool during processing, extend the service life of the tool, and greatly improve the appearance quality and processing power of the die.

2模具側壁的加工
2 processing of die side wall
對模具側壁的加工,運用五軸加工刀具長(cháng)度要比側壁深度大,也是由側壁深度來(lái)決議刀具長(cháng)度的,若增加刀具的長(cháng)度,其強度會(huì )顯著(zhù)下降,若刀具長(cháng)度高于3倍徑讓刀現象便會(huì )發(fā)作,工件的質(zhì)量將難以確保。如運用五軸加工對模具的側壁加工,能運用主軸或是工件的搖擺,使刀具與模具側壁呈現出筆直的狀況,銑模具側壁時(shí)能夠運用平面銑刀,這樣能夠進(jìn)步工件質(zhì)量并延伸刀具的運用壽命。
For the processing of the side wall of the die, the tool length of the five axis machining center is larger than the side wall depth, and the tool length is also determined by the side wall depth. If the tool length is increased, its strength will decrease significantly. If the tool length is higher than 3 times the diameter, the tool yield phenomenon will occur, and the quality of the workpiece will be difficult to ensure. If the five axis machining center is used to process the side wall of the die, the swing of the spindle or workpiece can be used to make the tool and the side wall of the die appear straight. When milling the side wall of the die, the plane milling cutter can be used, which can improve the quality of the workpiece and extend the service life of the tool.
3模具較平的曲面加工
3. Machining of flat curved surface of die
對模具較平的曲面加工時(shí),五軸加工需用球刀精銑,獲取好的外表質(zhì)量,而這種情況下需求增加刀路,但球頭刀刀具的旋轉線(xiàn)速簡(jiǎn)直為零,在模具加工時(shí)刀具損害的程度較大,刀具的運用壽命會(huì )縮短,而模具外表質(zhì)量也會(huì )變差。運用五軸加工加工較平的曲面,能夠在工件上把刀具上成必定的視點(diǎn)再進(jìn)行工件的加工,這樣能夠增加工件與球頭刀間的相對線(xiàn)速,不但能夠使刀具的運用壽命得到進(jìn)步,工件外表質(zhì)量也會(huì )大幅進(jìn)步。
When machining the flat surface of the die, the five axis machining center needs ball cutter finish milling to obtain good appearance quality. In this case, the tool path needs to be increased, but the central rotation linear speed of the ball head cutter is almost zero. During die machining, the degree of tool damage is large, the service life of the cutter will be shortened, and the appearance quality of the die will become worse. Using the five axis machining center to process a flat surface can make the tool into a certain point of view on the workpiece and then process the workpiece. In this way, the relative linear speed between the workpiece and the ball head cutter can be increased, which can not only improve the service life of the tool, but also greatly improve the appearance quality of the workpiece.
4對模具無(wú)方向變化直線(xiàn)的銑削
4 milling of straight lines without direction change of die
要想銑削沒(méi)有方向變化的一條直線(xiàn),只需刀尖劃條直線(xiàn)便可,若是方向需求改動(dòng),刀尖劃條曲線(xiàn)便可,刀具刀尖方向被改動(dòng),這時(shí)再想要直線(xiàn),就要給這條曲線(xiàn)以有必要的補償,運用五軸加工這點(diǎn)是極其重要的??刂葡到y若未考慮到刀具的長(cháng)度,刀具是環(huán)繞軸來(lái)旋轉的,刀具的刀尖不能夠固定,極有可能會(huì )移出當時(shí)的工作方位,但是在五軸加工的系統中具有五軸控制功能,在加工模具的操作中,運用五軸控制系統盡管刀具的方向被改動(dòng),但其刀尖的方位是能夠堅持不變的,這個(gè)進(jìn)程中xyz軸有必要的補償運動(dòng)一起也被自動(dòng)核算進(jìn)去,此時(shí)加工精度顯著(zhù)進(jìn)步。
If you want to mill a straight line without direction change, you only need to draw a straight line at the tool tip. If the direction needs to be changed, you can draw a curve at the tool tip, and the tool tip direction is changed. At this time, if you want a straight line again, you need to make necessary compensation for this curve. It is extremely important to use the five axis machining center. If the control system does not consider the length of the tool, the tool rotates around the axis center, and the tool tip cannot be fixed, it is very likely to move out of the current working direction. However, the five axis control function is provided in the system of the five axis machining center. In the operation of the machining die, the five axis control system is used, although the direction of the tool is changed, However, the orientation of the tool tip can remain unchanged. In this process, the necessary compensation motion of XYZ axis is also automatically calculated. At this time, the machining accuracy is significantly improved.
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