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scanning electron microscope fei nova nano sem430  (Thermo Fisher)


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    Thermo Fisher scanning electron microscope fei nova nano sem430
    Scanning Electron Microscope Fei Nova Nano Sem430, supplied by Thermo Fisher, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/scanning+electron+microscope+fei+nova+nano+sem430/10__1016_slash_j__ijplas__2025__104395-86-7-10
    Average 90 stars, based on 1 article reviews
    scanning electron microscope fei nova nano sem430 - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Microscopy:

    Article Title: Deposited Ductile-GPa CoCrNi-based FCC medium entropy alloy with continuously precipitation by directed energy deposition-Arc
    Article Snippet: An L12-strengthened Co30Cr18Ni42Al5Ti5 medium-entropy alloy was fabricated via directed energy deposition (DED)-Arc technique, focusing on investigating the modulation mechanism of the process on L12 phase precipitation behavior.. The results showed that the high heat input and moderate cooling rate features of DED-Arc process effectively suppressed the discontinuous precipitation (DP) behavior: the coarse columnar crystal structure significantly reduces the number of grain boundaries; moderate cooling rate promotes homogeneous distribution of Al/Ti elements and eliminates grain boundary segregation; This “coarse grain-element homogenization” synergy results in a high-density distribution of the L12 phase within the grain through a continuous precipitation (CP) behavior.. Directly deposited alloys exhibit gigapascal strength (~1090 MPa) and high uniform elongation (~28.4 %).

    Article Title: Structural, electrical and piezoelectric properties of V-, Nb- and W-substituted CaBi4Ti4O15 ceramics
    Article Snippet: The equimolar substitution of V, Nb and W ions in the B-site of CaBi4Ti4O15 (CBT) ceramics was performed, and their sintering characteristics and microstructures were investigated.. The results indicated that V2O5 has a substantial effect on the structure and properties of CaBi4Ti4O15 ceramics compared to Nb2O5 and WO3.. The V-substituted sample exhibited the lowest sintering temperature, the best sinterability and the lowest conductivity among all of these samples.

    Article Title: Effect of composition gradient design on microstructure and mechanical properties of dual-wire plasma arc additively manufactured 316L/IN625 functionally graded materials
    Article Snippet: Wire and arc additive manufacturing (WAAM) is a promising technology for the preparation of refractory metal functional gradient materials (FGMs) due to its high material utilization, high deposition efficiency and ability to create large-sized parts.. In the present work, 316L/IN625 FGM with chemical composition gradients of 25 wt% and 100 wt% were fabricated using dual-wire plasma arc additive manufacturing (DW-PAAM) by changing the wire feeding speeds (WFSs) layer by layer.. The phase evolution, microstructure, chemical composition and mechanical properties of the FGM were analyzed.

    Article Title: Enhancing strength-ductility synergy by introducing multilattice defects and heterogeneous structures in CoCrNi-based medium-entropy alloys prepared by powder plasma arc additive manufacturing
    Article Snippet: In the work, cold rolling and annealing were applied to powder plasma arc additively manufactured (CoCrNi)94Al3Ti3 medium-entropy alloy (MEA) to efficiently attain different types of lattice defects and heterogeneous structures, thereby enhancing the strength of the alloy.. Tensile tests show that mechanical properties of the MEA were significantly enhanced after cold rolling and annealing treatments compared to the directly deposited alloys.. The microstructure and mechanical properties of cold rolled samples (50 % thickness reduction) annealed at 1073–1273 K for 1 h are compared.

    Spectroscopy:

    Article Title: Effect of composition gradient design on microstructure and mechanical properties of dual-wire plasma arc additively manufactured 316L/IN625 functionally graded materials
    Article Snippet: Wire and arc additive manufacturing (WAAM) is a promising technology for the preparation of refractory metal functional gradient materials (FGMs) due to its high material utilization, high deposition efficiency and ability to create large-sized parts.. In the present work, 316L/IN625 FGM with chemical composition gradients of 25 wt% and 100 wt% were fabricated using dual-wire plasma arc additive manufacturing (DW-PAAM) by changing the wire feeding speeds (WFSs) layer by layer.. The phase evolution, microstructure, chemical composition and mechanical properties of the FGM were analyzed.



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