Stainless Steel Bar
AISI 431 EN 1.4057 Stainless Steel Round Bars
AISI 431 EN 1.4057 Stainless Steel Round Bars Grade 431 is a nickel bearing chromium steel which can be treated to exceptionally high physical properities. In the heat treated condition, its corrosion resistance is superior to similar martensitic grades. This grade is ferro magnetic when annealed or heat treated. Because it is characteristically a two phase alloy, the normal structure contains ferrite and martensite with typical properities. However, depending on application,
EN 1.4542 Stainless Steel Rods Round Bars UNS S17400 17- 4PH 630
UNS S17400 17-4PH EN 1.4542 Stainless Steel Rods, 630 Stainless Round Bars 17-4PH is a chromium-nickel alloy that has a 4% copper additive, which enables it to be hardened by very low-temperature heat treatments known as precipitation hardening. The high percentages of chromium and nickel give this alloy excellent corrosion resistance, physical properties, and a high level of strength at temperatures up to 800° F. The major advantage of low temperature heat treatments is the
Annealed SUS440C Stainless Steel Wires And 440C Round Bars
SUS440C Stainless Steel Wires And 440C Stainless Round Bars Grade 440C stainless steel is a high carbon martensitic stainless steel. It has high strength, moderate corrosion resistance, and good hardness and wear resistance. Grade 440C is capable of attaining, after heat treatment, the highest strength, hardness and wear resistance of all the stainless alloys. Its very high carbon content is responsible for these characteristics, which make 440C particularly suited to such
Material INOX 446 ( EN 1.4762 ) Stainless Steel Round Bar, Wire
Material INOX 446 ( EN 1.4762 ) Stainless Steel Round Bar, Wire 446 is a ferritic heat resisting steel useful up to 1150°C. UNS designation Type C Si Mn P S Cr Ni N S44600 446 0.20 1.00 1.50 0.040 0.030 23.0~27.0 0.75 0.25 Grade 446 stainless combines the following characteristics: Good oxidation resistance Excellent resistance to sulphidation particularly in reducing conditions. Much better than austenitic heat resisting grades due to absence of nickel Good resistance to