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钛和锆的合金系属连续置换成固溶体。钛的热中子散射相位与锆的热中子散射丰位成及相关系。它们的散射方式分别是:b=-0.38×10_(-12)厘米;b=-0.62×10_(-12)厘米,含钛62%(原子)和锆38%(原子)的合金。在它的中子衍射图中不出现衍射峰。这时制作不希望出现热是子散射的装置时,是极为有用的。在同一元素的各同位素对热中子散射呈正负方位基础上,提出了同位素合金新概念。
Titanium and zirconium alloy system is a continuous replacement of solid solution. The thermal neutron scattering phase of titanium is related to the thermal neutron scattering of zirconium. Their scattering patterns are: b = -0.38 x 10 (- 12) cm; b = -0.62 x 10 (- 12) cm, an alloy containing 62% by atom of titanium and 38% by atom of zirconium. No diffraction peak appears in its neutron diffraction pattern. This is extremely useful when making devices that do not want heat to be scattered by the child. Based on the positive and negative azimuths of each isotope of the same element on the thermal neutron scattering, a new concept of isotope alloy was proposed.