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Characterization of clay composite ballistic witness materials

机译:粘土复合弹道见证材料的表征

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Mechanical and thermal properties of Roma Plastilina Clay #1 (RP1) were studied through small-amplitude oscillatory shear (SAOS), large-amplitude oscillatory shear (LAOS), and differential scanning calorimetry (DSC), supplemented with thermogravimetric analysis, X-ray diffraction, and X-ray florescence. Rheological characterizations of RP1 through SAOS indicate that the clay composite softens as it is worked and slowly stiffens as it rests. Upon heating, the clay composite softens, prior work history is erased, and the composite undergoes a melting transition, although melted clay is significantly stiffer when returned to the usage temperature. Continuing mechanical characterizations into the LAOS or nonlinear region, RP1 transitions from a transient network to a viscous shear-thinning material as the temperature is increased. Using the MITlaos framework, RP1 exhibits intra-cycle strain stiffening and intra-cycle shear thinning at all temperatures.
机译:通过小振幅振荡剪切(SAOS),大振幅振荡剪切(LAOS)和差示扫描量热法(DSC),并辅以热重分析,X射线研究了Roma Plastilina Clay#1(RP1)的机械和热性能。衍射和X射线荧光。 RP1通过SAOS的流变学特性表明,粘土复合材料在加工过程中会软化,而在其静止时会缓慢变硬。加热后,粘土复合物变软,先前的工作历史被清除,并且该复合物经历了熔融转变,尽管当回到使用温度时,熔融的粘土明显变硬。随着温度的升高,RP1继续在LAOS或非线性区域内进行机械表征,从瞬态网络过渡到粘性剪切稀化材料。使用MITlaos框架,RP1在所有温度下均表现出周期内应变变硬和周期内剪切稀化。

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