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THE REVERSE DIRECTION OF MODELING OF MATERIAL PROPERTIES

机译:材料特性建模的反向方向

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During past several decades, the material science research workers had successfully used a forward direction of modeling of material properties. It is based on a macro-analysis of plasto-elastic properties of metals and a detail examination of effects of chemical compositions, thermo-mechanical treatment, grain structures and crystal structures on the material properties. This direction of modeling led to the development of numerous new grades of materials for various industrial applications. Still, we may expect a growing demand for the materials with substantially superior properties during a forthcoming age of exploration of space. This paper describes briefly the reverse direction of modeling of material properties based on the Unified Space Multiverse (USM) theory developed by the author since 1993. The efficiency of any mathematical model of a natural phenomenon is defined by its ability to calculate accurately as many as possible properties of the modeled phenomena based on as a few as possible assumptions. A high efficiency of the USM theory is due to the utilization of the 4D spiral spacetime called toryx as a prime element of the Multiverse. The unique polarization, quantum, unification and generic properties of the toryx allow us to model structures and properties of entities of both micro- and macro-worlds of various levels of the Multiverse, including our ordinary Universe, by using mostly the same spacetime equations.
机译:在过去的几十年中,物质科学研究员成功地使用了材料特性建模的前进方向。它基于金属塑性弹性性质的宏观分析,以及细化物质组合物,热机械处理,晶粒结构和晶体结构对材料特性的细节检查。这种建模方向导致了各种工业应用的许多新型材料的开发。尽管如此,我们可能期望在即将到来的空间勘探年龄期间,对材料的需求不断增长。本文简要介绍了自1993年以来作者开发的统一空间多层次(USM)理论的统一空间的建模的反向方向。自然现象的任何数学模型的效率是通过其准确计算的能力来定义基于少数假设的模型现象的可能性质。 USM理论的高效率是由于利用称为Toryx的4D螺旋形时期作为多层的主要元素。 Toryx的独特偏振,量子,统一和通用性质允许我们使用大多数相同的时空方程来模拟多个普通宇宙的微观和宏观世界的实体的结构和性质。

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