By Shadia Jamil Ikhmayies, Bowen Li, John Carpenter, Jiann-Yang Hwang, Sergio Neves Monteiro, Jian Li, Donato Firrao, Mingming Zhang, Zhiwei Peng, J. Pablo Escobedo-Diaz, Chengguang Bai
Characterization is a crucial and primary step in fabric examine sooner than and after processing. This bookfocuses at the characterization of minerals, metals, and fabrics in addition to the appliance of characterization effects at the processing of those fabrics. it's a hugely authoritative selection of articles written via specialists from all over the world. The articles heart on fabrics characterization, extraction, processing, corrosion, welding, solidification, and approach improvement. additionally, articles specialize in clays, ceramics, composites, ferrous metals, non-ferrous metals, minerals, digital, magnetic, environmental, complex and tender fabrics. This publication will serve the twin goal of furnishing a extensive creation of the sphere to newcomers whereas concurrently helping hold material specialists up-to-date.
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Additional resources for Characterization of Minerals, Metals, and Materials 2016
9] Bansiddhi A, Dunand DC. Shape-memory NiTi foams produced by solid-state replication with NaF. Intermetallics. 2007;15:1612-22.  Smorygo O, Marukovich A, Mikutski V, Gokhale AA, Reddy GJ, Kumar JV. High-porosity titanium foams by powder coated space holder compaction method. Mater Lett. 2012;83:17-9.  Bram M, Stiller C, Buchkremer HP, Stöver D, Baur H. High Porosity Titanium, Stainless Steel, and Superalloy Parts. Adv Eng Mater. 2000;2:196-9.  Kim SW, Jung H-D, Kang M-H, Kim H-E, Koh Y-H, Estrin Y.
Gu, “Dynamic response of conventional and hot isostatically pressed Ti-6Al-4V alloys: experiments and modeling,” Mechanics of Materials, (2001), pp. 425-439. 12. E. R. Siviour and N. Petrinic, “On the correlation between macrozones and twinning in Ti-6Al-4V at very high strain rates,” Scripta Materialia, (2012), pp. 229-232. 13. J. Peirs, P. Verleysen, J. Degrieck, “Experimental study of the influence of strain rate on fracture of Ti6Al4V,” Procedia Engineering, (2011), pp. 2336-2341. 14. F. Cogue, W.
The principal objective is to identify primary dendrite arms and their orientations. However, the identification of secondary dendrite arms is also of interest. This was accomplished by using FIJI to identify image features that represent dendritic solidification structures. The key to using this approach effectively is to prepare the image in a manner that assists the software identification of features that represent actual dendritic structures by using select digital image processing and particle filtering techniques.