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Reactive Co-Evaporation of YBCO for Coated Conductors
Matias, V.,Hanisch, J.,Sheehan, C.,Ugurlu, O.,Storer, J. The Korean Society of Superconductivity and Cryoge 2007 한국초전도저온공학회논문지 Vol.9 No.4
We describe methods for depositing high temperature superconducting films on textured metal tapes by reactive co-evaporation (RCE). We discuss how RCE can be used to deposit on moving tape in a continuous fashion in a Garching-style process. Results are presented on films deposited by RCE at Los Alamos on IBAD-MgO textured tapes. The performance achieved, attaining over 500A/cm-width in self-field at 75.5 K, is competitive with the best results obtained by other processes for coated conductors. Tape production throughput is critical for the economics of the process and high deposition rates achieved in RCE are attractive for this. We present a detailed cost analysis model for HTS deposition using an RCE Garching process. The results indicate that HTS deposition can cost $<$5/kA{\cdot}m$ in a scaled up manufacturing environment.
rhBMP-2를 이용한 조직공학;치과 임프란트에서의 골 재건
울프비케쇼,올리버하니쉬,마이클데니쉬마이어,조규성,김종관,Wikesj, Ulf ME.,Hanisch, Oliver,Danesh-Meyer, Michael J.,Cho, Kyoo-Sung,Kim, Chong-Kwan 대한치주과학회 1999 Journal of Periodontal & Implant Science Vol.29 No.3
The preclinical and clinical studies reviewed herein show that rhBMP-2 induces normal physiologic bone in relevant defects in the craniofacial skeleton. The newly formed bone assumes characteristics of the adjacent resident bone, and allows placement and osseointegration of dental implants. Clearly, the bone inducing capacity of rhBMP-2 is carrier and site dependent. rhBMP-2 in an absorbable collagen sponge carrier induces relevant bone formation in space providing defects. Space providing carries extends this possibility to non-space providing sites. Notably, some ceramic and polymeric biomaterials may substantially interfere with rhBMP-2 induced osteogenesis.