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Design, Fabrication, Calibration, and Testing of a Centrifugal Ice Adhesion Test Rig with Strain Rate Control Capability

机译:具有应变速率控制功能的离心式冰附着试验机的设计,制造,校准和测试

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To develop technologies for mitigating ice accretion on aircraft, a test rig to quantify the shear adhesion strength of impact ice is sought. One of the most effective methods of measuring ice adhesion strength without manually handling any accreted ice is through instrumented centrifuge adhesion tests (ICAT). One of the drawbacks of most ICAT rigs is the inability to perform controllable strain rate variations on the accreted ice. A new test rig has been designed, built, and calibrated for installation in the NASA Icing Research Tunnel. The unit can also be installed in a walk-in freezer using an icing nozzle to generate impact icing clouds. The unit can perform all the same functions as modern ICAT stands, with the added capability of varying the motor acceleration to introduce controllable strain rates on accreted ice. This allows strain rate to be isolated and investigated as a parameter that affects ice adhesion strength. The design of the new test rig is documented, and preliminary adhesion and liquid water content (LWC) test results are presented. The LWC of the impact icing cloud in the freezer configuration was found to be approximately 1.1. Preliminary impact ice adhesion tests suggest that higher impact velocity and higher surface roughness cause higher ice adhesion strength on isotropic metals. Adhesion strength values range between 6.5 psi to 9.5 psi for the roughest samples, with a standard deviation of approximately 1.5 psi. For the same samples, freezer ice yielded a much higher adhesion strength of 35 psi. A procedure for future testing of strain rate effects on ice adhesion strength is also outlined.
机译:为了开发减轻飞机上积冰的技术,寻求一种用于量化撞击冰的剪切粘附强度的试验设备。在无需人工处理任何积冰的情况下,测量冰附着强度的最有效方法之一是通过仪器离心附着力测试(ICAT)。大多数ICAT钻机的缺点之一是无法对积冰进行应变控制。已经设计,建造和校准了新的测试台,以安装在NASA结冰研究隧道中。该装置还可以使用结冰喷嘴安装在步入式冷冻机中,以产生冲击性结冰云。该单元可以执行与现代ICAT支架相同的所有功能,并具有改变电机加速度以在可积冰上引入可控应变率的附加功能。这样可以隔离应变率,并将其作为影响冰附着强度的参数进行研究。记录了新测试台的设计,并提供了初步的附着力和液态水含量(LWC)测试结果。发现在冷冻机配置中的防冰层的LWC约为1.1。初步的冲击冰附着力测试表明,更高的冲击速度和更高的表面粗糙度会导致各向同性金属的更高的冰附着强度。对于最粗糙的样品,粘合强度值在6.5 psi至9.5 psi之间,标准偏差约为1.5 psi。对于相同的样品,冷冻冰的粘合强度更高,为35 psi。还概述了将来测试应变率对冰附着强度的影响的过程。

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