相关期刊:《Rice science》《Journal of Civil Engineering and Architecture》《Progress in Natural Science:Materials International》《Acta Metallurgica Sinica(English Letters)》更多>>
supported by the National Natural Science Foundation of China(Nos.52003249,12072325 and 52273027);the Natural Science Foundation of Henan(No.242300421236).
In this work,a morphology transition mode is revealed in ultra-high molecular weight polyethylene(UHMWPE)when stretching at 120℃:moving from the slightly deformed region to the necked region,the morphology transfers ...
In recent years, the harmful effects of blue light (400 - 500 nm) as a component of visible light (400 - 700 nm) have increasingly gained attention of science, industry, and consumers. To date, only a few in vivo test...
This article presents a study on the structural behavior of transversely prestressed laminated timber slabs,focusing on an innovative approach:vertically misaligned lamellae.This misalignment,achieved by sliding verti...
supported by the National Natural Science Foundation of China(No.52275380).
Multi-scale lamellar structure significantly improves toughness of Ti_(2)AlNb based alloys,which are inher-ently brittle intermetallics,without compromising their strength.This structure was achieved through-B2-transu...
In the wake of ever-increasing environmental pollution, human skin in the modern urban world is exposed to increased levels of harmful environmental pollutants. Many studies have shown that these pollutants can weaken...
supported by the National Natural Science Foundation of China(Nos.51601194,51471171,and U1760201);the Chinese Academy of Sciences Youth Innovation Promotion Association(No.2021193);the Liaoning Provincial Natural Science Foundation(No.2021-YQ-01);the Liaoning Revitalization Talents Program(No.XLYC2002099)。
The spheroidization of the lamellar structure can greatly contribute to the superplasticity of the nugget zone(NZ)of Ti alloy welds,which is the key to achieve the integral superplastic forming of welds for the fabric...
financially supported by the National Key Research and Development Program of China(No.2016YFB0701304);the Natural Science Foundation of China(Nos.51671195 and51871225);the Chinese Academy of Sciences(Nos.QYZDJ-SSWJSC031-01,XDC01040100 and XXH13506-304)。
Phase field simulations incorporating contributions from chemical free energy and anisotropic interfacial energy are presented for theβ→αtransformation in Ti-6 Al-4 V alloy to investigate the growth mechanism ofαl...
supported by the grant from the Department of Biotechnology,Ministry of Science and Technology,India(Grant No.BT/PR18924/COE/34/48/2017).
Exploration of novel genetic resources against root-knot nematode(RKN)is necessary to strengthen the resistance breeding program in cultivated rice,and investigations on the role of genotype-specific root anatomy in c...
The microstructural kinetics of β grain growth in the β field of a Ti-6Al-4V alloy was studied by a series of controlled heat treatments at constant temperature rates. Heating rates of 5
financially supported by the Major Science and Technology Innovation Project of Shandong Province (No. 2019JZZY010352);Natural Science Foundation of Shandong Province (ZR2019MB072);Taishan Scholar Program
For the solid-solid transformation from form Ⅱ to form Ⅰ of isotactic polybutene-1(iPB),the temperature dependence of form Ⅰ nucleation and growth was deemed to control the transformation process.However,the relati...