the Singapore Ministry of Education,under its Academic Research Funds(Grant No.:MOE-T2EP501200010 and MOE-T2EP50220-0010)。
The plasticity of metals can be significantly affected by the application of a magnetic field,otherwise known as the magneto-plastic effect.This paper investigates the magneto-plastic effect in the microcutting of a n...
financially supported by the National Key Research and Development Program of China (No. 2017YFB0702704);the National Natural Science Foundation of China (No. 51671022);the State Key Lab of Advanced Metals and Materials (No. 2019-Z11);the Fundamental Research Funds for the Central Universities (No. FRF-TP-18-014B1);the Youth Teacher International Exchange & Growth Program (No. QNXM20210014)
MM'X(M,M'=transition metals,X=carbon or boron group elements)compounds could exhibit large magnetocaloric effect due to the magnetostructural transition,and the composition regulation has been widely studied to realiz...
supported by the Ministry of Education,Singapore,under its Academic Research Funds(Grant Nos.:MOE-T2EP50120-0010,MOE-T2EP50220-0010);the funding from the Ministère des Relations Internationales et de la Francophonie du Québec,Coopération Québec-Singapour,with which this work was partially supported。
Magneto-plasticity occurs when a weak magnetic field alters material plasticity and offers a viable solution to enhance ductile-mode cutting of brittle materials.This study demonstrates the susceptibility of non-magne...
the financial grant provided by the State Key Program of National Natural Science foundation of China(Grant No.51433008);Shenzhen Science and Technology Innovation Commission(Grant No.JCYJ20160331142330969)。
Lightweight,scalable,mechanically flexible conductive polymer composite was always desirable for electromagnetic interference(EMI)shielding applications.In this work,we showcased a novel approach to the superior EMI s...
This work was financially supported by National Key Research and Development Program of China(No.2016YFB0300500);the National Natural Science Foundation of China(No.51771215);the Ningbo Major Special Projects of the Plan“Science and Technology Innovation 2025”(No.2018B10084);K.C.Wong Magna Fund in Ningbo University。
Electromagnetic interference(EMI)shielding materials with ultrathin,flexible,superior mechanical and thermal management properties are highly desirable for smart and wearable electronics.Here,ultrathin and flexible Ni...
Flexible,lightweight,conductive materials,having both high rf losses and high permeability,are extremely desirable for applications as electromagnetic(EM)shielding.Gas atomized spherical FeSi-based ferromagnetic metal...
supported financially by the National Natural Science Foundation of China(No.51971212);the Russian Science Foundation(No.19-72-20080)。
Ferromagnetic high damping(FHA)alloys with a wide temperature range from-150℃to 300℃have unique application value in extreme environments.In the present work,the damping behaviors of Fe-21 Ga-xLa(x=0.12 wt.%,0.24 wt...
financially supported by the Key Project of Natural Science Foundation of Jiangxi Province(No.20192ACB20004);the National Natural Science Foundation of China(No.51671097);the Open Project awarded by National Key Laboratory State Microstructures Physics(No.M32037)。
Nowadays,searching for the materials with multiple magneto-functional properties and good mechanical properties is vital in various fields,such as solid-state refrigeration,magnetic actuators,magnetic sensors and inte...
funded by the Teaching and Research Award Program for Outstanding Young Teachers in Higher Education Institutions of Ministry of Education, China (No.[2002]383);the Science and Technology Planning Project of Wuhan City, China (No.20067003111-05)
Residual stress reduction in low alloy steel by a low frequency alternating magnetic treatment and its mechanism were investigated. Experimental results revealed that average stress reductions of 20%-24% were obtained...
supported by the National Basic Research Program of China (No. 2005CB623605);the National Natural Science Foundation of China (Nos. 50701022and 50831006);Jiangxi Provincial Sci&Tech Project(No. 2010AZX00200);the Program for New Century Excellent Talents of China (No. NCET-08-0278)
In Ni-Mn-X(X=In,Sn,Sb) ferromagnetic shape memory alloys,a ferromagnetic transition from paramagnetic to ferromagnetic austenite and a martensitic transformation from ferromagnetic austenite to weak magnetic martens...