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Reduction of Piston System Friction by Applying a Bore Circularity Machining Technique to the Cylinder Block

机译:通过将孔圆形加工技术应用于气缸体来减少活塞系统摩擦

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The bores of the cylinder block are usually machined prior to assembly with the cylinder head. In this case, bore distortion occurs when the cylinder block is assembled with the cylinder head due to the load applied by the head bolts and the surface pressure of the head gasket. This bore distortion influences sealing and operating characteristics of the pistons and piston rings, requiring an increase in bore thickness and addition of ribs to obtain higher cylinder block rigidity, which lead to an increase in weight. In order to improve engine performance, it is necessary to control bore distortion more effectively. With the aim of reducing bore distortion when assembled with the cylinder head, the bores are machined with a dummy cylinder head installed on the block to provide an equivalent head bolt load and gasket surface pressure. By using this bore circulatory machining technology, bore distortion after cylinder head assembly can be reliably suppressed.
机译:汽缸体的孔通常在装配与气缸盖之前加工。在这种情况下,当由于头螺栓施加的负载和头部垫圈的表面压力而与气缸盖组装时,发生孔失真。这种孔失真影响活塞和活塞环的密封和操作特性,需要增加孔厚度和添加肋,以获得更高的气缸缸刚度,这导致重量增加。为了提高发动机性能,有必要更有效地控制孔失真。随着在用气缸盖组装时减小孔失真的目的,孔用安装在块上的虚设气缸头加工,以提供等效的头螺栓载荷和垫圈表面压力。通过使用该孔循环加工技术,可以可靠地抑制气缸盖组件后的孔失真。

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