Sila gunakan pengecam ini untuk memetik atau memaut ke item ini: https://repositori.mypolycc.edu.my/jspui/handle/123456789/7091
Tajuk: FRACTURE MECHANISMS OF ELECTROTHERMALLY FATIGUED 631 STAINLESS STEEL FINE WIRES FOR PROBE SPRING APPLICATIONS
Pengarang: Huang, Chien-Te
Hung, Fei-Yi
Chang, Kai-Chieh
Kata kunci: 631 (17-7PH) stainless steel
Fine wire
Electrical fatigue
Electrothermal effect
Probe spring
Tarikh diterbit: 1-Ogo-2025
Penerbit: MDPI
Siri / Laporan No.: Applied Sciences;2025, 15, 8572
Abstrak: This study systematically investigates 50 µm-diameter 631 stainless steel fine wires subjected to both sequential and simultaneous electrothermomechanical loading to simulate probe spring conditions in microelectronic test environments. Under cyclic current loading (~104 A/cm2), the 50 µm 631SS wire maintained electrical integrity up to 0.30 A for 15,000 cycles. Above 0.35 A, rapid oxide growth and abnormal grain coarsening resulted in surface embrittlement and mechanical degradation. Current-assisted tensile testing revealed a transition from recovery-dominated behavior at ≤0.20 A to significant thermal softening and ductility loss at ≥0.25 A, corresponding to a threshold temperature of approximately 200 ◦C. These results establish the endurance limit of 631 stainless steel wire under coupled thermal–mechanical–electrical stress and clarify the roles of Joule heating, oxidation, and microstructural evolution in electrical fatigue resistance. A degradation map is proposed to inform design margins and operational constraints for fatigue-tolerant, electrically stable interconnects in high-reliability probe spring applications.
URI: https://repositori.mypolycc.edu.my/jspui/handle/123456789/7091
Muncul dalam Koleksi:JABATAN KEJURUTERAAN ELEKTRIK



Item di DSpace dilindungi oleh hak cipta, dengan semua hak dilindungi, kecuali dinyatakan sebaliknya.