In situ and correlative study of dislocation density and deformation mechanisms in Inconel 690
In situ experimental techniques are critical for understanding the deformation evolution of materials, as they enable real-time tracking of microstructure changes.
Smith, Albert +5 more
core +1 more source
Voltage-gated and Ca(2+)-activated K+ channels in intact human T lymphocytes. Noninvasive measurements of membrane currents, membrane potential, and intracellular calcium. [PDF]
Verheugen JA +3 more
europepmc +1 more source
A simulation study on deformation behavior of IN690 superalloy tube during hot extrusion process
Li Rui, Sun Chaoyang, Zhang Qingdong
core +1 more source
Constitutive relationship of IN690 superalloy by using uniaxial compression tests
Jianxin Dong, Chaoyang Sun, Rui Li
exaly +2 more sources
Constitutive model of supper-alloy IN690 based on extrusion test
Shihong Zhang, Zhongtang Wang, Defu Li
exaly +2 more sources
Critical Condition of Dynamic Recrystallization of IN690 Using Strain Hardening Rate
Applied Mechanics and Materials, 2012Shi Hong Zhang, Zhong Tang Wang
exaly
Tube Extrusion Technology for Super-Alloy Inconel690
Advanced Materials Research, 2013Shi Hong Zhang, Zhong Tang Wang
exaly
Non-Uniform Deformation Characteristic of in 690 Superalloy Tube in Glass Lubricated Hot Extrusion
Advanced Materials Research, 2011Qing Dong Zhang
exaly

