Effect of apex offset inconsistency on hole straightness deviation in deep hole gun drilling of Inconel 718
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Effect of apex offset inconsistency on hole straightness deviation in deep hole gun drilling of Inconel 718

机译:Apex偏移不一致对深孔枪钻孔孔直线偏差的影响718

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AbstractHole straightness deviation is the critical performance indicator in deep hole gun drilling process, particularly in manufacturing of corrosion resistant alloys like Inconel 718 with high yield strength. Poor understanding on the root causes of straightness deviation and difficulty to reduce it has dramatically increased the complexity and the manufacturing cost of this manufacturing process. Due to the fast tool wear in machining of Inconel, gun drills have to be changed frequently after a very short drilling distance. However, it has been found that the gun drill tool geometry cannot be precisely controlled, as there is a lack of appropriate gun drill regrinding and measurement system. In this study, a customized gun drill regrinding system integrated with an in-situ gun drill measurement system is designed and developed to obtain high-quality gun drills with precisely controlled tool geometry. The effect of apex offset variation on the hole straightness deviation is studied through 12 unsupported gun drilling experiments at thin-wall positions of an Inconel 718 workpiece with 160 ksi yield strength. 4 types of apex offset variation conditions (consistent, reciprocating, decreasing and increasing) with 3 times of repetition tests are conducted, and the measurement results have shown that consistent apex offset leads to the smallest hole straightness deviation among all the conditions. Through a series of FEM analysis and further measurement of internal cylindricity of machined holes, it has been concluded that unbalanced cutting force components applied on the previous gun drilled hole due to the inconsistent apex offset will cause the new formed hole to be deviated toward thin wall, due to the relatively larger material deformation at the thin-wall side than at the thick-wall side.Highlights?Apex offset's effect on straightness deviation of gun drilled holes is firstly studied.?A customized gun drill regrinding and in-situ measurement system is developed.?Consistent apex offset leads to better hole straightness than inconsistent ones.?Inconsistent apex offset leads to larger simulated deformation toward thin wall.?Inconsistent apex offset leads to larger measured cylindricity at drill change position.]]>
机译:<![CDATA [ 抽象 孔直线度偏差是深孔枪钻孔过程中的关键性能指标,特别是在制造耐腐蚀合金中的制造屈服强度高718。对直接偏差的根本原因和降低难度的理解差异显着提高了该制造过程的复杂性和制造成本。由于在机械加工中的快速工具磨损,在非常短的钻孔距离之后必须经常更换枪管。然而,已经发现,由于缺乏适当的枪笔钻重磨和测量系统,因此不能精确控制枪钻刀工具几何形状。在本研究中,设计并开发了一种与原位枪钻探测量系统集成的定制枪笔钻重新研磨系统,以获得具有精确控制的工具几何形状的高质量枪钻。通过12个不受支持的枪钻孔实验,在具有160ksi屈服强度的薄壁位置,通过12个不受支持的枪钻探实验研究了孔直线偏差对孔直线偏差的影响。通过进行3次重复测试的4种类型的APEX偏移变化条件(一致,往复,减小和增加),并且测量结果表明,一致的顶点偏移导致所有条件之间的最小孔直线度偏差。通过一系列有限元分析和进一步测量机加工孔的内圆筒,已经得出结论,由于不一致的顶点偏移引起的先前枪钻孔上施加的不平衡切割力部件将导致新的形成孔偏向薄壁,由于薄壁侧的材料变形相对较大,而不是厚壁侧。 亮点 首先研究了APEX偏移对枪钻孔的直线度偏差的影响。 开发了一种定制的枪钻重新研磨和原位测量系统。 一致的顶点偏移导致更好的孔直线度而不是不一致的孔。 不一致的顶点偏移导致更大的模拟变形向薄壁朝向薄壁。 不一致的顶点偏移导致钻取变化位置的更大测量圆柱形。 ]]>

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