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웹인장 강도 (σ t) 145 1 MPa (21.0 27.0 ksi) 파단 신장 (ε): 18 33%: 포아송 비율 (ν) 0.3: 열적 특성. 용융 온도 (T m) 615 °C (1,139 °F) 6061 T6 내부 인장 강도 알루미늄. 알루미늄 튜브 - Kloeckner Metals. T6 알루미늄 각 튜브는 6061과 6063 모두에서 사용할 수 있으며 극한 인장
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웹인장 강도 (σ t) 145 1 MPa (21.0 27.0 ksi) 파단 신장 (ε): 18 33%: 포아송 비율 (ν) 0.3: 열적 특성. 용융 온도 (T m) 615 °C (1,139 °F) 6061 T6 내부 인장 강도 알루미늄. 알루미늄 튜브 - Kloeckner Metals. T6 알루미늄 각 튜브는 6061과 6063 모두에서 사용할 수 있으며 극한 인장
웹2021년 2월 1일 The measured Brinell hardness, yield strength, ultimate tensile strength, and elongation for these groups ranged between 48 - 98 HB, 49 - 103 MPa, 90 - 202 MPa,
웹2022년 6월 15일 We have examined tensile properties of a novel heat-resistant aluminium (Al)-based alloy (with a composition of Al-5Mg-3.5Zn (at%)) strengthened by the T
웹2023년 9월 1일 The tensile strength (σ T i − x A l) of α-type Ti-xAl alloys can be drawn by stacking the strength increments and the foundational strength of pure Ti. The tensile
웹2019년 8월 7일 Shanmugasundaram et al reported a significant enhancement in the tensile strength (540 MPa) and ductility (11%) for UFG Al 2219 alloy processed by cryorolling and
웹2020년 10월 15일 Figure 1 shows the fatigue and the tensile strength correlation for three of the most common precipitate-strengthened Al alloys: AA2024 (Al–Cu–Mg), AA6061
웹2020년 9월 8일 Tensile tests were performed to determine the stress–strain behavior of the material both in uniform and non-uniform deformation regions. Mechanical material
웹2020년 11월 2일 Based on the results from uniaxial tensile test results, Zhou et al. calculated the theoretical yield loci from the von Mises, Hill48 and Barlat89 yield criterion of AA7075
웹2017년 8월 30일 As specified in , the yield strength (YS), the ultimate tensile strength (UTS) and the elongation to fracture (EL%) in as-die-cast condition are, respectively, 140
웹2023년 8월 3일 The research aim was to optimize post-weld heat-treatment (PWHT) modes for a laser-welded joint of the Al–Cu–Li alloy and improve their respective strength
웹인장 강도 (σ t) 145 1 MPa (21.0 27.0 ksi) 파단 신장 (ε): 18 33%: 포아송 비율 (ν) 0.3: 열적 특성. 용융 온도 (T m) 615 °C (1,139 °F) 6061 T6 내부 인장 강도 알루미늄. 알루미늄 튜브 - Kloeckner Metals. T6 알루미늄 각 튜브는 6061과 6063 모두에서 사용할 수 있으며 극한 인장
웹2021년 2월 1일 The measured Brinell hardness, yield strength, ultimate tensile strength, and elongation for these groups ranged between 48 - 98 HB, 49 - 103 MPa, 90 - 202 MPa, and 3 - 10.4%, respectively. The best results were obtained for a mixture of modifier (Na 2 SiF 6) and refiner
웹2022년 6월 15일 We have examined tensile properties of a novel heat-resistant aluminium (Al)-based alloy (with a composition of Al-5Mg-3.5Zn (at%)) strengthened by the T-Al6Mg11Zn11 (cubic) intermetallic phase at various temperatures. The tested specimens of the present alloy were solution-treated at 450oC for 24 h and subsequently aged at 200 or 300
웹2023년 9월 1일 The tensile strength (σ T i − x A l) of α-type Ti-xAl alloys can be drawn by stacking the strength increments and the foundational strength of pure Ti. The tensile strength ( σ T i − x A l ) can be calculated as
웹2019년 8월 7일 Shanmugasundaram et al reported a significant enhancement in the tensile strength (540 MPa) and ductility (11%) for UFG Al 2219 alloy processed by cryorolling and post roll short annealing and aging
웹2020년 10월 15일 Figure 1 shows the fatigue and the tensile strength correlation for three of the most common precipitate-strengthened Al alloys: AA2024 (Al–Cu–Mg), AA6061 (Al–Mg–Si), and AA7050 (Al–Zn
웹2020년 9월 8일 Tensile tests were performed to determine the stress–strain behavior of the material both in uniform and non-uniform deformation regions. Mechanical material properties including yield, ultimate and fracture strengths, uniform and total strains, hardness, strength coefficient, and strain-hardening exponent were obtained
웹2020년 11월 2일 Based on the results from uniaxial tensile test results, Zhou et al. calculated the theoretical yield loci from the von Mises, Hill48 and Barlat89 yield criterion of AA7075-T6 at five temperatures (50, 100, 150, 200 and 250
웹2017년 8월 30일 As specified in , the yield strength (YS), the ultimate tensile strength (UTS) and the elongation to fracture (EL%) in as-die-cast condition are, respectively, 140 MPa, 240 MPa and less than 1% for the most high-pressure die-cast (HPDC) alloys, while these are around 90 MPa, 170 MPa and in the range 1–2.5% for the main gravity die
웹2023년 8월 3일 The research aim was to optimize post-weld heat-treatment (PWHT) modes for a laser-welded joint of the Al–Cu–Li alloy and improve their respective strength properties. As a result, the ultimate tensile strength, yield point, and elongation of the joint were enhanced up to 95%, 94%, and 38%, respectively, of those inherent in the