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Design and manufacture of composite high speed machine tool structures

机译:复合高速机床结构的设计与制造

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The high transfer speed as well as the high cutting speed of machine tools is important for the productivity improvement in the fabrication of molds/dies because non-machining time, called the air-cutting-time, amounts to 70% of total machining time with complex shape products. One of the primary reasons for low productivity is large mass of the moving parts of machine tools, which cannot afford high acceleration and deceleration encountered during operation. Moreover, the vibrations of the machine tool structure are among the other causes that restrict high speed operations. In this paper, the slides of high speed CNC milling machines were designed with fiber reinforced composite materials to overcome this limitation. The vertical and horizontal slides of a large CNC machine were manufactured by joining high-modulus carbon-fiber epoxy composite sandwiches to welded steel structures using adhesives and bolts. These composite structures reduced the weight of the vertical and horizontal slides by 34% and 26%, respectively, and increased damping by 1.5-5.7 times without sacrificing the stiffness. Without much tuning, this machine had a positional accuracy of +-5 μm per 300 mm of the slide displacement.
机译:机床的高传送速度和高切削速度对于提高模具制造的生产率至关重要,因为非加工时间(称为气割时间)占总加工时间的70%,形状复杂的产品。生产率低下的主要原因之一是机床运动部件的质量大,不能承受在操作过程中遇到的高加速度和减速度。此外,机床结构的振动是限制高速操作的其他原因之一。在本文中,高速CNC铣床的滑轨采用纤维增强复合材料设计,以克服这一限制。大型CNC机器的垂直和水平滑块是通过使用粘合剂和螺栓将高模量碳纤维环氧复合材料三明治结构焊接到钢结构上而制成的。这些复合结构分别将垂直滑道和水平滑道的重量减少了34%和26%,并在不牺牲刚度的前提下将阻尼增加了1.5-5.7倍。无需太多调整,该机器的定位精度为每300 mm滑块位移+ -5μm。

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