Results 201 to 210 of about 56,284 (261)

Advances in Welding Process and Materials. [PDF]

open access: yesMaterials (Basel)
Codrean C, Opriș C, Feier A.
europepmc   +1 more source

Binder Jetting - Reusability Of 17-4 PH Stainless Steel Powder

World PM2022 Proceedings, 2022
Binder Jetting (BJT) is a binder-based Additive Manufacturing technology, where only a small fraction of the processed powder is bonded inside the green parts after printing. Unbound powder, which is recovered during the BJT process, is reused for printing.
Zissel, Kai   +4 more
openaire   +2 more sources

Aging reactions in a 17-4 PH stainless steel

Materials Chemistry and Physics, 2002
Abstract Microstructural development and aging reactions in a commercial 17-4 PH (precipitation hardening) stainless steel have been investigated. It is found that after solution treatment, the steel produces a uniform matrix, which consists chiefly of lath martensite with micro-twins.
C.N. Hsiao, C.S. Chiou, J.R. Yang
openaire   +1 more source

Hydrogen susceptibility of 17-4 PH stainless steel

Materials Letters, 2003
This paper is to report the hydrogen transport and hydrogen embrittlement of the high-strength 17-4 precipitation hardening (PH) stainless steel with solution annealing (SA) and peak-aging treatment.
W.C. Chiang, C.C. Pu, B.L. Yu, J.K. Wu
openaire   +1 more source

Hot Ductility of the 17-4 PH Stainless Steels

Journal of Materials Engineering and Performance, 2016
The mechanisms of loss of hot ductility and the mechanical behavior of 17-4 PH alloys were investigated using hot tensile testing at temperatures between 700 and 1100 °C and strain rates of 10−4, 10−2, and 10−1 s−1. Scanning electron microscopy was used in conjunction with the results of the tensile tests to find the temperature region of loss of ...
V. Herrera Lara   +4 more
openaire   +1 more source

Kinetics of precipitation in 17–4 PH stainless steel

Materials Science and Technology, 1989
AbstractThe sequence of precipitation and its kinetics in 17–4 PH (precipitation hardening) stainless steel were studied by observing the electrical resistivity and microstructure of the alloy during isothermal aging at various temperatures in the range 320–600°C.
U. K. Viswanathan   +2 more
openaire   +1 more source

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