2017
DOI: 10.1557/jmr.2016.485
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Effect of quenching and tempering on microstructure and mechanical properties of 410 and 410 Ni martensitic stainless steels

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Cited by 25 publications
(15 citation statements)
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“…As Ni forms austenite, it increases the volume of retained austenite in the material. A higher percentage of Ni decreases the hardness of H1 material in comparison to H2 which is similarly reported by Mirzaee et al [34]. Another alloying element is Mo, which has a major influence on the hardness of a material.…”
Section: Microstructural Analysissupporting
confidence: 76%
“…As Ni forms austenite, it increases the volume of retained austenite in the material. A higher percentage of Ni decreases the hardness of H1 material in comparison to H2 which is similarly reported by Mirzaee et al [34]. Another alloying element is Mo, which has a major influence on the hardness of a material.…”
Section: Microstructural Analysissupporting
confidence: 76%
“…The surface of the probe, when fractured in a brittle field, the surface of the probe offers the characteristic morphological feature of quasi-cleavage fracture mode, which consists of slightly concave facets arising from individual micro-cracks, propagate through the material to coalesce. Tear ridges in the zones where metal ligaments rupture between separate microcracks, causing them to merge [30][31][32].…”
Section: Ductile To Brittle Transition Temperaturementioning
confidence: 99%
“…Fasa delta ferit dapat dilihat seperti pulau kecil yang berwarna terang membentuk struktur spheroidal. Fasa delta ferit memiliki sifat memicu nukleasi dan penggabungan microvoid dan dapat menimbulkan fracture pada material yang terekspos temperatur tinggi [20]. Oleh karena itu, fasa delta ferit sangat dibatasi jumlahnya agar sifat mekanik dari material dapat dikontrol dengan baik [21].…”
Section: Analisis Struktur Mikrounclassified