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High temperature co-firing of 3D-printed AleZnO/Al_(2)O_(3) multimaterial two-phase flow sensor
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作者 Danwei Zhang Win Jonhson +5 位作者 Tun Seng Herng Xi Xu Xiaojing Liu Liang-ming Pan Hui He Jun Ding 《Journal of Materiomics》 SCIE 2022年第3期710-718,共9页
Sensors are crucial in the understanding of machines working under high temperatures and highpressure conditions.Current devices utilize polymeric materials as electrical insulators which pose a challenge in the devic... Sensors are crucial in the understanding of machines working under high temperatures and highpressure conditions.Current devices utilize polymeric materials as electrical insulators which pose a challenge in the device's lifespan.Ceramics,on the other hand,is robust and able to withstand high temperature and pressure.For such applications,a co-fired ceramic device which can provide both electrical conductivity and insulation is beneficial and acts as a superior candidate for sensor devices.In this paper,we propose a novel fabrication technique of complex multi-ceramics structures via 3D printing.This fabrication methodology increases both the geometrical complexity and the device's shape precision.Structural ceramics(alumina)was employed as the electrical insulator whilst providing mechanical rigidity while a functional ceramic(alumina-doped zinc oxide)was employed as the electrically conductive material.The addition of sintering additives,tailoring the printing pastes'solid loadings and heat treatment profile resolves multi-materials printing challenges such as shrinkage disparity and densification matching.Through high-temperature co-firing of ceramics(HTCC)technology,dense high quality functional multi-ceramics structures are achieved.The proposed fabrication methodology paves the way for multi-ceramics sensors to be utilized in high temperature and pressure systems in the near future. 展开更多
关键词 3D printing Multi-material robocasting SENSORS CERAMICS
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Biomet 3i的编码Robocast印模技术与传统种植印模技术精确性比较
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作者 Kent J. Howell Edwin A. McGlumphy +3 位作者 Carl Drago Gregory Knapik 戴文雍 汤春波 《中国口腔医学继续教育杂志》 2015年第6期316-326,共11页
目的:比较使用Biomet 3i编码Robocast技术和传统印模技术(闭窗式和开窗式)制取的工作模型的精确性。材料和方法:使用3D打印技术(stereolithographic)翻制一位下颌牙列肯氏l类缺损患者的模型用作主模型.在双侧后牙区(第二前磨牙... 目的:比较使用Biomet 3i编码Robocast技术和传统印模技术(闭窗式和开窗式)制取的工作模型的精确性。材料和方法:使用3D打印技术(stereolithographic)翻制一位下颌牙列肯氏l类缺损患者的模型用作主模型.在双侧后牙区(第二前磨牙和第二磨牙)植入种植体,其中一侧的两颗种植体相互平行(P).而另一侧两颗种植体不平行(NP)。对主模型制取印模.分别使用编码愈合基台、开窗和闭窗式印模帽进行取模操作。灌制石膏模型后,在每个种植体替代体上安装相同的金属球,并对石膏模型进行数字化扫描。测量球体中心的距离.并与主模型上的球体中心距离进行比较。数据分为P.NP和单个位点组.并进行统计学分析(a=0.05)。结果:在NP区域.使用编码愈合基台制取的模型准确度不及开窗式取模。在P区域.编码技术准确度不及开窗式与闭窗式取模。在编码技术取模的各组中,NP区的取模准确性不及P区。在下颔右侧第二前磨牙位点.编码技术取模的准确度不如开窗及闭窗式取模技术。在用编码技术取模的各组中.下颌左侧第二前磨牙工作模的准确性低于下颌右侧第二磨牙位点工作模。结论:在该实验研究和分析的方法下.编码Robocast技术制取的工作模的准确性低于传统的开窗式或闭窗式取模技术。要获得临床上更准确的判断还需进一步研究。 展开更多
关键词 数字化扫描 编码 种植体印模 Robocasts
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