Machinability of Cobalt Chromium Molybdenum Alloys—Ⅱ
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- Category: Tungsten Information
- Published on Tuesday, 11 October 2022 20:43
- Written by Caodan
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In general, the term machinability can be defined as how easily the material can be machined or cut to the desired shape in terms of tool and process conditions, taking into account surface finish and tool life. The machinability of cobalt chromium molybdenum alloys is comparable to other advanced materials such as nickel and titanium alloys, which are classified as difficult-to-cut materials due to their unique characteristics of high strength, toughness, wear resistance, and low thermal conductivity.
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Machinability of Cobalt Chromium Molybdenum Alloys—Ⅰ
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- Category: Tungsten Information
- Published on Tuesday, 11 October 2022 20:38
- Written by Caodan
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Cobalt chromium molybdenum alloys are considered advanced materials and are popular in a variety of engineering and medical applications. However, it is classified as a difficult material to machine due to its unique combination of properties, including high strength, toughness, wear resistance, and low thermal conductivity.
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Tungsten Disulfide for Laser Saturable Absorbers Application
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- Category: Tungsten Information
- Published on Thursday, 15 September 2022 21:55
- Written by Caodan
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The researchers found that tungsten disulfide (WS2) can be converted into a direct semiconductor with a band gap of 2.1 eV by controlling the chemical composition and number of layers due to the quantum confinement effect. In addition, WS2 has better saturable absorption properties than graphene and carbon nanotubes in the near- and mid-infrared bands. Due to these excellent properties, it is increasingly being used in laser saturable absorbers (SAs).
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Effect of Zrb2 Addition on 93wt% Tungsten Heavy Alloy
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- Category: Tungsten Information
- Published on Monday, 10 October 2022 21:50
- Written by yuntao
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Tungsten Disulfide for Electrocatalysis Application
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- Category: Tungsten Information
- Published on Thursday, 15 September 2022 21:48
- Written by Caodan
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Tungsten disulfide (WS2) is promising electrocatalysis with a layered structure with adjustable electrical properties and exposed edges that can act as the active center. It is mainly used as an electrocatalyst for hydrogen evolution reactions. The surface of WS2 is inert; however, the catalytic activity of WS2 occurs at the lamellar edges, which determines the overall catalytic performance. In order to improve the catalytic effect of WS2, the electrolyte must be in complete contact with the WS2 layer.
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