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15篇 您的检索式:作者名="Jerry Ying"
    题名 作者 年代 出处 被引量
1SLS工艺参数对Al_2O_3/SiO_2/ZrO_2复合陶瓷烧结质量的影响显示文摘针对复合陶瓷材料Al2O3/SiO2/ZrO2脆性大难加工等问题,结合选择性激光烧结(SLS)工艺成形复合陶瓷粉末,采用Nd:YAG激光器及其送粉装置进行激光烧结试验.利用扫描电镜(SEM)、能量色散X射线光谱仪(EDX)和X射线衍射分析仪(XRD)观察了成形件的微观组织并分析了微观组织成分.探讨了激光烧结的主要工艺参数对单层烧结质量的影响及扫描速度对显微结构的影响.结果表明:采用正交试验方法系统地分析了工艺过程,获得最佳工艺参数为扫描速度15 mm/s、激光功率40 W、搭接量0.4 mm,得到了气孔较少、密度3.72 g/cm3的烧结表面,能够烧结出致密并具有枝状组织的陶瓷.王蔚 刘永贤 FUH Jerry Ying Hsi 2013东北大学学报(自然科学版)2013,34,3:5
2Investigation of process parameters of electrohydrodynamic jetting for 3D printed PCL fibrous scaffolds with complex geometries显示文摘Tissue engineering is a promising technology in the field of regenerative medicine with its potential to create tissues de novo.Though there has been a good progress in this field so far,there still exists the challenge of providing a 3D micro-architecture to the artificial tissue construct,to mimic the native cell or tissue environment.Both 3D printing and 3D bioprinting are looked upon as an excellent solution due to their capabilities of mimicking the native tissue architecture layer-by-layer with high precision and appreciable resolution.Electrohydrodynamic jetting(E-jetting)is one type of 3D printing,in which,a high electric voltage is applied between the extruding nozzle and the substrate in order to print highly controlled fibres.In this study,an E-jetting system was developed in-house for the purpose of 3D printing of fibrous scaffolds.The effect of various E-jetting parameters,namely the supply voltage,solution concentration,nozzle-to-substrate distance,stage(printing)speed and solution dispensing feed rate on the diameter of printed fibres were studied at the first stage.Optimized parameters were then used to print Polycaprolactone(PCL)scaffolds of highly complex geometries,i.e.,semi-lunar and spiral geometries,with the aim of demonstrating the flexibility and capability of the system to fabricate complex geometry scaffolds and biomimic the complex 3D micro-architecture of native tissue environment.The spiral geometry is expected to result in better cell migration during cell culture and tissue maturation.Hui Wang Sanjairaj Vijayavenkataraman Yang Wu Zhen Shu Jie Sun Jerry Fuh Ying Hsi 2016International Journal of Bioprinting2016,2,1:4
3Effect of single dead end entry inclination on DPM plume dispersion显示文摘Diesel particulate matter(DPM) is a by-product from operating diesel engines. Since diesel powers are one of the major sources of energy for mobile underground mining equipment, the adverse health effects of DPM are of a great concern. This paper used computational fluid dynamics(CFD) method to study the effect of entry inclination on DPM plume distribution in a dead end entry. An upward mining face and a downward mining face were built with a truck and a loader in loading operation close to the face area. A species transport model with incorporated buoyancy effect was used to examine the DPM dispersion pattern for the above steady-state scenarios. High DPM and temperature regions were identified for the two different faces. The model was used to assess the role of auxiliary ventilation in reducing DPM exposures of underground miners working in those entries. In this study, it is suggested to provide local ventilation at least three times of the diesel exhaust rate to be able to lower the average DPM level for the mining upward face. The requirement for local ventilation is much less for the mining downward face. This can provide guidelines for good working practices and selection of diesel emission reduction technologies underground.Zheng Yi Lan Hai Thiruvengadam Magesh Tien Jerry C. Li Ying 2017International Journal of Mining Science and Technology2017,27,3:3
4Study of the mechanism for poly (p-phenylene) benzoxazole polymerization-A remarkable reaction pathway to make rigid-rod polymers显示文摘Ying H S Jerry P H Bruce B 1998Macromolecules1998,31,:1
5A metadata architecture for multi-system interoperation 显示文摘Pamela Drew Jerry Ying 1996Proceeding of the First IEEE Metadata Conference April 16-181996,,:1
6DPM dispersion inside a single straight entry using dynamic mesh model显示文摘Yi Zheng Ying Li Magesh Thiruvengadam Hai Lan Jerry C. Tien 2017International Journal of Coal Science & Technology2017,4,3:1
7Study of the mechanism for poly (p-phenylene) benzoxazole polymerization-A remarkable reaction pathway to make rigid-rod polymers显示文摘Ying H S Jerry P H Bruce B 1998Macromolecules1998,31,:1
8Telomerase and cancer显示文摘Jerry W Shay BN Ying Z 2001Hum Mol Genet2001,10,7:1
9Study of the meehanism for poly( p-phenylene ) remarkable reaction pathway 显示文摘Ying H S Jerry P H Bruce B 1998Macromolecules1998,31,:1
10A study of the poly (p-phenebenzoxazole) polymerization显示文摘So Ying Hung Heeschen Jerry P Bell Bruce 1999Polymer Priprints Division of Polymer Chemisty1999,40,:1
11Study of the mechanism for poly(p-phenylene)benzoxazole polymerization-Aremarkablereaction pathway tomake rigid-rod polymers显示文摘Ying H S Jerry P H Bruce B 1998Macromolecules1998,31,16:1
12Synthesis methods of functionalized nanoparticles:a review显示文摘With the recent advancement in nanotechnology,nanoparticles(NPs)offer an ample variety of smart functions than conventional materials in various aspects.As compared to larger particles,NPs possess unique characteristics and excellent abilities,such as low toxicity,chemical stability,surface functionality,and biocompatibility.These advantageous properties allow them to be widely utilized in many applications,including biomedical applications,energy applications,IT applications,and industrial applications.In order to fulfill the increasing demands of NP applications,existing NP synthesis methods need to be improved based on the requirements of different applications to further their usage.A comprehensive understanding of the relationships between synthesis parameters and properties of NPs can help us better fine-tune them with designed properties and minimal toxicity.This review paper will discuss the commonly used synthesis methods of functionalized NPs,as well as future directions and challenges to develop various synthesis methods further.Niyou Wang Jerry Ying Hsi Fuh S.Thameem Dheen A.Senthil Kumar 2021Bio-Design and Manufacturing2021,4,2:1
13Telornerase and cancer显示文摘Jerry W Shay Ying Zou 2001Hum Mol Genet2001,10,7:1
14Octree grid topology preserving geometric deformable model for three-dimen- sional medical image segmentation 显示文摘YING B XIAO H JERRY L P 2007Computer Sci- ence2007,4584,:1
15Effects of Various Processing Parameters on Mechanical Properties and Biocompatibility of Fe-based Bulk Metallic Glass Processed via Selective Laser Melting at Constant Energy Density显示文摘The unique properties of bulk metallic glass(BMG)render it an excellent material for bone-implant applications.BMG samples are difficult to produce directly because of the critical cooling rate of molding.Advancements in additive manufacturing technologies,such as selective laser melting(SLM),have enabled the development of BMG.The successful production of materials via SLM relies significantly on the processing parameters;meanwhile,the overall energy density affects the crystallization and,thus,the final properties.Therefore,to further determine the effects of the processing parameters,SLM is performed in this study to print Fe-based BMG with different properties three dimensionally using selected processing parameters but a constant energy density.The printed amorphous Fe-based BMG outperforms the typical 316 L stainless steel(316 L SS)in terms of mechanical properties and corrosion resistance.Moreover,observations from nanoindentation tests indicate that the hardness and elastic modulus of the Fe-based BMG can be customized explicitly by adjusting the SLM processing parameters.Indirect cytotoxicity results show that the Fe-based BMG can enhance the viability of SAOS2 cells,as compared with 316 L SS.These intriguing results show that Fe-based BMG should be investigated further for orthopedic implant applications.Niyou Wang Shuai Chang Guiwei Li S Thameem Dheen A Senthil Kumar Wenzheng Wu Qingping Liu Ji Zhao Luquan Ren Jerry Ying Hsi Fuh 2022Chinese Journal of Mechanical Engineering(Additive Manufacturing Frontiers)2022,1,3:0
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