Shiraishi T
Shika Rikogaku Zasshi. 1981 Apr;22(58):119-28.
The isothermal ordering process in CuPd alloys containing 34.74 approximately 50.22 at % Pd was investigated by means of electrical resistivity measurements, X-ray diffraction, metallographic observations and hardness tests. The ordering mechanism and the order-hardening mechanism were discussed. Ordering in the alloys which are in the region of beta (ordered) single phase in equilibrium phase diagram, apparently occurred through single process, and the ordering rate was very high. On the other hand, ordering occurred through two processes (stage I and II) in the case of the alloys in which ordered and disordered phases, i.e. beta and alpha phases coexist, and the ordering rate was low. Ordering was attained by discontinuous ordering mechanism in both regions. Considering the value of activation energy for ordering and results of metallographic observations, it is suggested that the ordering is attained by grain boundary diffusion both in the beta single phase region and in stage II of the (alpha + beta) two phased region. It can be also interpreted that the order-hardening in these alloys is attributed to the increase of volume fraction of beta phase in both regions.
通过电阻率测量、X射线衍射、金相观察和硬度测试等手段,对含34.74%至50.22%(原子分数)钯的铜钯合金中的等温有序化过程进行了研究。讨论了有序化机制和有序强化机制。在平衡相图中处于β(有序)单相区域的合金中,有序化显然通过单一过程发生,且有序化速率非常高。另一方面,在有序相和无序相(即β相和α相)共存的合金中,有序化通过两个过程(阶段I和阶段II)发生,且有序化速率较低。在这两个区域中,有序化均通过不连续有序化机制实现。考虑到有序化的激活能值和金相观察结果,表明在β单相区域和(α + β)两相区域的阶段II中,有序化均通过晶界扩散实现。还可以解释为,这些合金中的有序强化归因于两个区域中β相体积分数的增加。