首页> 外文期刊>Russian Journal of Non-Ferrous Metals >Study into the Effect of the Amount of the Strengthening Phase in an Aluminum-Based Dispersion-Hardened Composite on Fracture Regularities
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Study into the Effect of the Amount of the Strengthening Phase in an Aluminum-Based Dispersion-Hardened Composite on Fracture Regularities

机译:在裂缝规律上施加强化相中强化相的影响

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摘要

The results of studying the static tensile strength of aluminum-based dispersion-hardened composite materials with various contents of the Al2O3 strengthening phase are given. The materials under study are fabricated according to a new in principle technology based on burning out the aluminum melt when interacting with oxygen or an oxygen-nitrogen mixture. The fractographic patterns of the static fracture surfaces were studied for the samples fractured at maximal stresses. It is established that samples with a low Al2O3 content have a poorly viscous fracture pattern mainly consisting of a single fibrous zone. A radial zone appears in the fractograph with a twofold increase in the amount of the solid phase, while the alternation of viscous fracture, according to the detachment and shear mechanism with the manifestation of a brittle cleavage fracture signs, is observed with a threefold increase in the Al2O3 content. An analysis of fracture profilograms of the samples containing 10 and 30% inclusions of the solid phase reveals no abrupt drop in the surface relief, but an absolutely different fracture character is herewith found. However, in both cases, the form of profilograms is not pronounced by any abrupt relief jumps or extreme profile values, which makes it possible to affirm the stability of fracture processes. This is not true for the fracture of the sample with 20% Al2O3, in which a rather significant one-time drop is observed. The features of varying the fracture surface profile and distinctions over the arrangement place and number of crack nucleation regions in the samples under study are revealed using optical microscopy.
机译:给出了使用Al 2 O 3强化相的各种含量的铝基分散体硬化复合材料的静态拉伸强度的结果。根据燃烧用氧气或氧氮混合物的燃烧铝熔体,根据燃烧铝熔体的新原理技术制造研究。研究了静态断裂表面的形式,用于在最大应力下裂缝的样品。建立具有低Al 2 O 3含量的样品具有粘性裂缝图案,主要由单一纤维区组成。在特性相位的辐射区中出现径向区域,同时粘性裂缝的交替,根据脆性切割骨折标志的脱离和剪切机制的粘性裂缝的交替,随着三倍的增加,观察到AL2O3内容。含有10%和30%固相夹杂物的样品的断裂型裂缝分析显示,表面浮雕突然下降,但是在此发现绝对不同的骨折性质。然而,在这两种情况下,任何突然的释放跳跃或极端轮廓值都没有发音的翻译形式,这使得可以肯定裂缝过程的稳定性。对于具有20%Al 2 O 3的样品的骨折不是真的,其中观察到相当大的一次性下降。使用光学显微镜揭示了在研究中,在研究中的样本中的布置位置和裂缝成核区域的区分和数量不同的特征。

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