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Results: 1 to 20 of 93

Similar articles for PubMed (Select 24453818)

1.

Structure and microhardness of cu-ta joints produced by explosive welding.

Maliutina IuN, Mali VI, Bataev IA, Bataev AA, Esikov MA, Smirnov AI, Skorokhod KA.

ScientificWorldJournal. 2013 Dec 23;2013:256758. doi: 10.1155/2013/256758. eCollection 2013.

3.

Influence of different brazing and welding methods on tensile strength and microhardness of orthodontic stainless steel wire.

Bock JJ, Fraenzel W, Bailly J, Gernhardt CR, Fuhrmann RA.

Eur J Orthod. 2008 Aug;30(4):396-400. doi: 10.1093/ejo/cjn022. Epub 2008 Jul 9.

4.

Tensile strength and corrosion resistance of brazed and laser-welded cobalt-chromium alloy joints.

Zupancic R, Legat A, Funduk N.

J Prosthet Dent. 2006 Oct;96(4):273-82.

PMID:
17052472
5.

Investigation of Ti/Al2O3 joints with intermediate tantalum and niobium layers.

Gibbesch B, Elssner G, Petzow G.

Biomaterials. 1992;13(7):455-61.

PMID:
1633220
6.

Effects of joint configuration for the arc welding of cast Ti-6Al-4V alloy rods in argon.

Taylor JC, Hondrum SO, Prasad A, Brodersen CA.

J Prosthet Dent. 1998 Mar;79(3):291-7.

PMID:
9553882
8.

Evaluation of welded titanium joints used with cantilevered implant-supported prostheses.

Hart CN, Wilson PR.

J Prosthet Dent. 2006 Jul;96(1):25-32.

PMID:
16872927
9.

Microstructure of friction stir welded joints of 2017A aluminium alloy sheets.

Mroczka K, Dutkiewicz J, Pietras A.

J Microsc. 2010 Mar;237(3):521-5. doi: 10.1111/j.1365-2818.2009.03319.x.

PMID:
20500429
10.

[Titanium joints welded with laser and infrared techniques: comparative analysis of its microstructure].

Manicone P, Valentini G, Raffaelli L, Raffaelli R.

Minerva Stomatol. 2000 Oct;49(10):463-74. Italian.

PMID:
11268935
11.

Improved microstructure and mechanical properties in gas tungsten arc welded aluminum joints by using graphene nanosheets/aluminum composite filler wires.

Fattahi M, Gholami AR, Eynalvandpour A, Ahmadi E, Fattahi Y, Akhavan S.

Micron. 2014 Sep;64:20-7. doi: 10.1016/j.micron.2014.03.013. Epub 2014 Apr 5.

PMID:
24981209
12.

Morphology and structure of various phases at the bonding interface of Al/steel formed by explosive welding

Li Y, Hashimoto H, Sukedai E, Zhang Y, Zhang Z.

J Electron Microsc (Tokyo). 2000;49(1):5-16.

PMID:
10791415
13.

Direct electroplating of copper on tantalum from ionic liquids in high vacuum: origin of the tantalum oxide layer.

Schaltin S, D'Urzo L, Zhao Q, Vantomme A, Plank H, Kothleitner G, Gspan C, Binnemans K, Fransaer J.

Phys Chem Chem Phys. 2012 Oct 21;14(39):13624-9.

PMID:
22872155
14.

Mechanism of bonelike apatite formation on bioactive tantalum metal in a simulated body fluid.

Miyaza T, Kim HM, Kokubo T, Ohtsuki C, Kato H, Nakamura T.

Biomaterials. 2002 Feb;23(3):827-32.

PMID:
11771702
15.

Structure, metallurgy, and mechanical properties of a porous tantalum foam.

Zardiackas LD, Parsell DE, Dillon LD, Mitchell DW, Nunnery LA, Poggie R.

J Biomed Mater Res. 2001;58(2):180-7.

PMID:
11241337
16.

Mechanical strength of laser-welded cobalt-chromium alloy.

Baba N, Watanabe I, Liu J, Atsuta M.

J Biomed Mater Res B Appl Biomater. 2004 May 15;69(2):121-4.

PMID:
15116400
17.

Study on antibacterial alginate-stabilized copper nanoparticles by FT-IR and 2D-IR correlation spectroscopy.

Díaz-Visurraga J, Daza C, Pozo C, Becerra A, von Plessing C, García A.

Int J Nanomedicine. 2012;7:3597-612. doi: 10.2147/IJN.S32648. Epub 2012 Jul 11.

18.

Structural modifications during heating of bulk nanocrystalline FeAl produced by high-pressure torsion.

Mangler C, Gammer C, Karnthaler HP, Rentenberger C.

Acta Mater. 2010 Oct;58(17):5631-5638.

19.

Characterization of the mechanical and thermal interface of copper films on carbon substrates modified by boron based interlayers.

Schäfer D, Eisenmenger-Sittner C, Chirtoc M, Kijamnajsuk P, Kornfeind N, Hutter H, Neubauer E, Kitzmantel M.

Surf Coat Technol. 2011 Mar 15;205(12-7):3729-3735.

20.

Studies on laser- and plasma-welded titanium.

Roggensack M, Walter MH, Böning KW.

Dent Mater. 1993 Mar;9(2):104-7.

PMID:
8595837
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