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Axially accelerated saboted rods subjected to lateral forces.

机译:轴向加速的破坏棒承受侧向力。

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摘要

The methodology and analysis used to characterize the performance of a sabot/rod as it is subjected to lateral and axial loading during launch is presented. The methodology described incorporates the experimental and numerical portions of the evaluation. Three separate sabot/rod designs are evaluated for their performance in the launch tube and are compared with one another. The experimental portion of the research involved full-scale testing of two separate sabot/rod designs in a 120-mm launch tube that was slightly bent. When launched through the bent tube, the sabot/rod system was forced to negotiate lateral displacements at axial velocities of approximately 5400 fps. This combination of axial velocity and lateral displacement produced significant lateral loading on the sabot/rod system. A 2.3-MeV x-ray unit was used to determine the lateral displacement that occurred as the sabot/rod was forced through the bent tube. After the sabot/rod exited the launch tube, the sabot separation and rod straightness were recorded by four 150-keV x-ray units. The in-bore radiography experiments used x-ray shielding techniques to reduce x-ray scatter, and layered indexed film and intensifier screens to record the sabot/rod image. The processed film was computer scanned with a microdensitometer and was remapped on the computer to enhance the x-ray image. Results indicated rod lateral displacement accuracy to 0.007 in. Test results were used to benchmark the numerical analyses used to characterize the in-bore performance of each sabot/rod system studied. The numerical portion of the research involved three-dimensional modeling of the sabot/rod systems in three launch-tube environments: a perfectly straight launch tube, an existing accuracy tube, and the slightly bent tube used in the experimental program. Because of the good agreement between the experimental and numerical models, stress, strain, and displacement time histories were obtained from the numerical work and used to evaluate each of the three sabot/rod systems in three launch environments. A dynamic analysis was performed for each of nine separate models. Sliding surfaces, nonlinear constitutive relations, and multiple materials were used for each analysis. Results from both the experimental and numerical analyses are presented.
机译:提出了用于表征在发射过程中受到横向和轴向载荷的sa /棒性能的方法和分析。所描述的方法包括评估的实验和数字部分。评估了三种独立的sa形/杆形设计在发射管中的性能,并将它们相互比较。该研究的实验部分涉及在120毫米稍微弯曲的发射管中对两个独立的sa形/杆形设计进行全面测试。当通过弯曲的管子发射时,迫击炮/杆系统必须以大约5400 fps的轴向速度协商横向位移。轴向速度和侧向位移的这种结合在剑杆/杆系统上产生了很大的横向载荷。一个2.3 MeV的X射线装置被用来确定当木bot /木棒被迫通过弯曲管时发生的横向位移。在木桩/木棒离开发射管后,通过四个150-keV X射线仪记录木桩的分离和木杆的平直度。孔内射线照相实验使用X射线屏蔽技术来减少X射线散射,并使用分层的索引膜和增强屏来记录下盘/棒图像。用微光密度计在计算机上扫描处理过的胶片,然后将其重新映射到计算机上以增强X射线图像。结果表明,杆的侧向位移精度为0.007英寸。测试结果用于对数值分析进行基准测试,这些数值分析用于表征所研究的每个sa /杆系统的钻孔性能。研究的数字部分涉及在三种发射管环境中对木桶/杆系统的三维建模:完美笔直的发射管,现有的精度管以及实验程序中使用的微弯管。由于实验模型与数值模型之间的一致性好,因此可以从数值工作中获得应力,应变和位移时间的历史记录,并将其用于评估三个发射环境中的三个sa形/杆状系统。对九个单独的模型分别进行了动态分析。滑动表面,非线性本构关系和多种材料用于每次分析。给出了实验和数值分析的结果。

著录项

  • 作者

    Rabern Donald Allen.;

  • 作者单位
  • 年度 1988
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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