针对?66.675 mm QT900连续油管施工全过程寿命的破漏损伤特征,采取在倒换连续油管过程中进行在线检测和分段取样方法,对样品进行测量、爆破、弯曲、压扁和抗拉等系列试验检测工作,对该连续油管施工寿命情况和检测试验结果进行综合分析,...针对?66.675 mm QT900连续油管施工全过程寿命的破漏损伤特征,采取在倒换连续油管过程中进行在线检测和分段取样方法,对样品进行测量、爆破、弯曲、压扁和抗拉等系列试验检测工作,对该连续油管施工寿命情况和检测试验结果进行综合分析,发现影响连续油管寿命因素多,但弯曲是导致连续油管疲劳损伤影响其寿命的主要因素,根据寿命影响因素特征分析结果,提出了平均化弯曲次数、倒换连续油管、强化工艺设计等降低连续油管疲劳和损伤的系列对策,为提高连连续油管使用寿命提供了科学指导。展开更多
There is a pressing need for improving the current whole life shooting method in order to reduce ammunition consumption in the firearms lifetime test. The influencing factors, the characterization parameters and the c...There is a pressing need for improving the current whole life shooting method in order to reduce ammunition consumption in the firearms lifetime test. The influencing factors, the characterization parameters and the correlation analysis result of lifetime were considered. Accelerating life test and measuring scheme for machinegun were designed systematically by applying such theoretical methods as accelerating test, uniform design and lifetime model. As result, it provides a more scientific and reasonable accelerating life test scheme and proposes methods on modeling lifetime, optimizing model and characterizing lifetime. The conclusion can be used in preparing accelerating life test scheme and lifetime model for machinegun.展开更多
文摘针对?66.675 mm QT900连续油管施工全过程寿命的破漏损伤特征,采取在倒换连续油管过程中进行在线检测和分段取样方法,对样品进行测量、爆破、弯曲、压扁和抗拉等系列试验检测工作,对该连续油管施工寿命情况和检测试验结果进行综合分析,发现影响连续油管寿命因素多,但弯曲是导致连续油管疲劳损伤影响其寿命的主要因素,根据寿命影响因素特征分析结果,提出了平均化弯曲次数、倒换连续油管、强化工艺设计等降低连续油管疲劳和损伤的系列对策,为提高连连续油管使用寿命提供了科学指导。
文摘There is a pressing need for improving the current whole life shooting method in order to reduce ammunition consumption in the firearms lifetime test. The influencing factors, the characterization parameters and the correlation analysis result of lifetime were considered. Accelerating life test and measuring scheme for machinegun were designed systematically by applying such theoretical methods as accelerating test, uniform design and lifetime model. As result, it provides a more scientific and reasonable accelerating life test scheme and proposes methods on modeling lifetime, optimizing model and characterizing lifetime. The conclusion can be used in preparing accelerating life test scheme and lifetime model for machinegun.