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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Potential applications of cold sprayed Cu50Ti20Ni30 metallic glassy alloy powders for antibacterial protective coating in medical and food sectors
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Potential applications of cold sprayed Cu50Ti20Ni30 metallic glassy alloy powders for antibacterial protective coating in medical and food sectors

机译:冷喷涂Cu50Ti20Ni30金属玻璃态合金粉末在医疗和食品领域的抗菌保护涂层的潜在应用

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Mechanical alloying was utilized for synthesizing of metallic glassy Cu50Ti20Ni30 alloy powders, using a low energy ball milling technique. The metallic glassy powders obtained after 100 h of ball milling had an average particle size of 1.7 mm in diameter and possessed excellent thermal stability, indexed by a relatively high glass transition temperature (358.3 degrees C) with a wide supercooled liquid region (61 degrees C). This amorphous phase crystallized into Ti2Cu and CuTiNi2 ordered phases through two overlapped crystallization temperatures at 419.3 degrees C and 447.5 degrees C, respectively. The total enthalpy change of crystallization was -4.8 kJ/mol. The glassy powders were employed as feedstock materials to double-face coating the surface of SUS 304 substrate, using cold spraying process under helium gas pressure at 400 degrees C. This coating material had an extraordinary high nanohardness value of 3.1 GPa. Moreover, it showed a high resistance to wear with a low value of the coefficient of friction ranging from 0.45 to 0.45. Biofilms were grown on 20-mm(2) SUS304 sheets coated coupons inoculated with 1.5 x 10(8) CFU ml(-1) E. coli. Significant biofilm inhibition (p The inhibition of biofilm formation by nanocrystalline powders of Cu-based provides a practical approach to achieve the inhibition of biofilms formation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:机械合金化利用低能球磨技术用于合成金属态玻璃态Cu50Ti20Ni30合金粉末。球磨100小时后获得的金属玻璃粉末的平均粒径为1.7毫米,具有出色的热稳定性,以较高的玻璃化转变温度(358.3摄氏度)和较宽的过冷液体区域(61摄氏度)进行分度)。该非晶相通过两个重叠的结晶温度分别在419.3℃和447.5℃下结晶成Ti2Cu和CuTiNi2有序相。结晶的总焓变为-4.8kJ / mol。使用玻璃状粉末作为原料,在氦气压力为400摄氏度的条件下,通过冷喷涂工艺对SUS 304基材的表面进行双面涂层。该涂层材料的纳米硬度值极高,为3.1 GPa。此外,它显示出高的耐磨性,并且摩擦系数的值在0.45至0.45的范围内较低。生物膜生长在接种有1.5 x 10(8)CFU ml(-1)大肠杆菌的20-mm(2)SUS304涂层涂布的试样上。明显的生物膜抑制作用(p抑制基于铜的纳米晶粉末对生物膜形成的抑制作用是实现抑制生物膜形成的实用方法。(C)2015 Elsevier Ltd.保留所有权利。

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