Lehmhus Dirk, Weise Jörg, Szlancsik Attila, Orbulov Imre Norbert
Department of Shaping and Functional Materials, Fraunhofer Institute for Manufacturing Technology and Advanced Materials IFAM, Wiener Strasse 12, 28359 Bremen, Germany.
Department of Materials Science and Engineering, Budapest University of Technology and Economics, Műegyetem rakpart 3, 1111 Budapest, Hungary.
Materials (Basel). 2020 Jun 4;13(11):2566. doi: 10.3390/ma13112566.
In this study, iron-based metal matrix syntactic foam (MMSF) containing hollow glass microspheres as filler was investigated with respect to notch sensitivity aspects. The MMSF was produced by means of metal powder injection molding. The notch sensitivity was studied via (i) elastic-plastic fracture mechanics measurements (determination of R-curves based on three-point bending tests) and (ii) Charpy impact tests. In both cases, the samples were machined with two different (U- and V-shaped) notch geometries. The critical J-integral value was determined for both notch types, which resulted in lower fracture toughness values in the case of the V-shaped notches and thus notch sensitivity of the material. This finding can be connected to the characteristics of the deformation zone and the associated stress concentration at the tip of the machined notches. The results were confirmed by Charpy impact tests showing ~30% higher impact energy in the case of the U-shaped notch. The failure modes were investigated by means of scanning electron microscopy. In contrast to the bulk material, the MMSF showed brittle fracture behavior.
在本研究中,对以空心玻璃微球为填料的铁基金属基复合泡沫材料(MMSF)的缺口敏感性进行了研究。MMSF通过金属粉末注射成型制备。通过(i)弹塑性断裂力学测量(基于三点弯曲试验确定R曲线)和(ii)夏比冲击试验研究缺口敏感性。在这两种情况下,样品均加工成两种不同的(U形和V形)缺口几何形状。测定了两种缺口类型的临界J积分值,结果表明V形缺口情况下的断裂韧性值较低,从而表明了材料的缺口敏感性。这一发现可与加工缺口尖端处变形区的特征及相关应力集中联系起来。夏比冲击试验证实了该结果,结果表明U形缺口情况下的冲击能量高出约30%。通过扫描电子显微镜研究了失效模式。与块状材料不同,MMSF表现出脆性断裂行为。