4.4.3 Characteristics of high-strength low alloy steel SCC: a case history 26 4.5 Magnesium alloys 26 4.5.1 Background 26 4.5.2 Magnesium alloy case histories 27 4.5.3 Characteristics of magnesium alloy SCC 27 5 Preventative and remedial measures 30 31
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2015/10/9· The recently developed representative magnesium alloy systems—such as Mg-Ca, Mg-Zn, Mg-Sr, Mg-Ag, Mg-Li, and Mg-RE—are reviewed and their special properties illustrated. Also discussed are the biodegradable magnesium alloys/aqueous solution interface theoretical model and potential appliion prototypes, such as for cardiology and orthopedic surgery products.
First-generation Al–Li alloys Alloy name/nuer Appliions 1230 (VAD23) Tu-144 1420 MiG-29 fuselages, fuel tanks, and cockpits; Su-27; Tu-156, Tu-204, and Tu-334; Yak-36, and Yak-38 fuselages 1421 2020 A-5 Vigilante wings and horizontal stabilizers
NL-1755ZG Petten, The Netherlands (received date: 14 Deceer 2014 / accepted date: 2 March 2015) We studied the effect of short fibers on the mechanical properties of a magnesium alloy. In particular, deformation mechanisms in a Mg-Al-Sr alloy reinforced
This study shows that biodegradable magnesium stents can achieve an immediate angiographic result similar to the result of other metal stents and can be safely degraded after 4 months. Modifiions of stent characteristics with prolonged degradation and drug
High-purity magnesium ingot (99.99 wt%), Zn particles (99.99 wt%) and Mg–Ca master alloy (30 wt% Ca) were used as raw materials for the preparation of the Mg-3wt%Zn-0.2 wt%Ca alloy. The alloy was melted in a vacuum electromagnetic induction furnace (ZG-10, Shanghai, China) with mechanical agitation under the protection of argon gas at 720 °C.
The Magnesium Technology Symposium, the event on which this collection is based, is one of the largest yearly gatherings of magnesium specialists in the world. Papers represent all aspects of the field, ranging from primary production to appliions to recycling.
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Document History SAE AMS4485 August 1, 2017 Magnesium Alloy, Extrusions 4.0Y - 2.25Nd - 0.5Zr (WE43C - T5) Precipitation Heat Treated Form This specifiion covers a magnesium alloy in the form of extruded bars, rods, wire, tubing, and profiles from 0
Magnesium Manganese Zinc Aluminum alloys come in several different forms, each designated by a four-digit nuer. The first of the four digits is the alloy’s general classifiion, the second digit signifies any special modifiions to the alloy materials, and the
The matrix alloy in the present study is AZ91 magnesium alloy with a composition of Mg-9.07Al-0.68Zn-0.21Mn, and supplied by Northeast Light Alloy Company Limited, Longkou City, China. The reinforcement is SiC nanoparticle with an average particle size of 60 nm, and supplied by Hefei Kaier Nanometer Energy and Technology Company Limited, Hefei, China.
The wear behavior of deformed magnesium alloy AZ61 under dry conditions was evaluated. Two types of AZ61 alloy were used, extruded and rolled samples, to investigate the effect of deformation process on the wear behavior. The experiments were performed using
2019/9/1· Magnesium alloy (Zn 2.6%, Ca 1.5%, Al 0.2%, Ce 0.1%, P 0.6%, Gd 0.2%, balance Mg), casted by Harbin Institute of Technology, was employed as the scaffold metal. As shown in Fig. 1a, the implant metal was cut into a cylindrical shape with the size of 15 mm in length, 5 mm of the outside diameter and 3 mm of the inside diameter by linear cutting method.
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Magnesium Chemical element, metallic, syol Mg, situated in group IIa in the periodic table, atomic nuer: 12, atomic weight: 24,312. Magnesium is silvery white and very light. Its relative density is 1,74 and it’s density 1740 kg/m 3 (0.063 lb/in 3 or 108.6 lb/ft 3).).
Research paper : Development of switchable mirror glass (K. Yoshimura et al.)−263− Synthesiology - English edition Vol.5 No.4 (2013) 2 Issues in achieving the practical use of the switchable mirror When the research for the switchable mirror was started at AIST
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2013/12/16· Although Magnesium is the lightest structural metal, the strength-to-weight ratio of precipitation-hardened magnesium alloys is comparable with that of strong aluminum alloys and alloy steels . Consequently, a magnesium BRS has potential to provide a high radial strength for dilating atherosclerotic narrowing and, hence, higher acute gain of coronary lumen.
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Magnesium hydride is cheap and contains 7.7 wt % hydrogen, making it one of the most attractive hydrogen storage materials. However, thermodynamics dictate that hydrogen desorption from bulk magnesium hydride only takes place at or above 300 °C, which is a major impediment for practical appliion. A few results in the literature, related to disordered materials and very thin layers