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| 1 | Effect of laminate configuration and feed rate on cutting performance when drilling holes in carbon fibre reinforced plastic composites 显示文摘 | Shyha I Soo S L Aspinwall D | 2010 | Journal of Materials Processing Tech- rtology2010,210,8: | 1 |
| 2 | Hole quality assessment following drilling of metallic-composite stacks显示文摘 | Shyha I S Soo S L Aspinwall D K | 2011 | International Journal of Machine Tools&Manufacture2011,51,78: | 1 |
| 3 | Drilling of titanium/CFRP/aluminium stacks显示文摘 | Shyha I Soo S L Aspinwall D K | 2010 | Key Engineering Materials2010,,: | 1 |
| 4 | Hole quality assessment following drilling of metallic-composite stacks显示文摘 | SHYHA I S SOO S L ASPINWALL D K | 2011 | International Journal of Machine Tools & Manufacture2011,51,78: | 1 |
| 5 | Eficl of laminate configuration and feed rate on cutting pertormance when drilling holes in carbon fibre reinfin'ced plastic composites 显示文摘 | Shyha I Soo S L Aspinwall 1) | 2010 | Journal of materials processing technology2010,210,8: | 1 |
| 6 | Drilling of Titanium/CFRP/Aluminium Stacks显示文摘 | Shyha I Soo S L Aspinwall D K | 2010 | Key Engineering Material2010,,: | 1 |
| 7 | Grinding performance and workpiece integrity when superahrasive edge routing carbon fibre reinforced plastic (CFRP) composites显示文摘 | SOO S L SHYHA 1 S BARNETT T | 2012 | CIRP Annals- Manufacturing Technology2012,61,1: | 1 |
| 8 | Hole quality as- sessment following drilling of metallic-composite stacks 显示文摘 | Shyha I S Soo S L Aspinwall D K | 2011 | 51 (7/8) :569-5782011,51,78: | 1 |
| 9 | Grinding performance and workpiece integrity when superabrasive edge routing carbon fibre reinforced plastic (CFRP) composites显示文摘 | Sein Leung Soo Islam S. Shyha Tom Barnett David K. Aspinwall Wei-Ming Sim | 2012 | CIRP Annals - Manufacturing Technology2012,,1: | 1 |
| 10 | Effect of laminate configuration and feed rate on cutting performance when drilling holes in carbon fibre reinforced plastic composites显示文摘 | Islam Shyha Sein Leung Soo David Aspinwall | 2010 | Journal of Materials Processing Technology2010,210,: | 1 |
| 11 | Drilling of Titanium/CFRP/Aluminium Stacks显示文摘 | Shyha Islam Soo Sein Leung Aspinwall David K. Bradley Sam Dawson Stuart Pretorius Cornelius J | 2010 | Key Engineering Materials2010,,447: | 1 |
| 12 | Hole quality as- sessment following drilling of metallic-composite staeks显示文摘 | Shyha I S Soo S L Aspinwall D K | 2011 | International Journal of Machine Tools and Manufacture2011,51,78: | 1 |
| 13 | Hole quality assessment following drilling of metallic-composite stacks显示文摘 | Shyha I S Soo S L Aspinwall P K | 2011 | International Journal of Machine Tools and Manufacture2011,51,78: | 1 |
| 14 | Energy storage properties in Nd-doped AgNbTaO_(3) lead-free antiferroelectric ceramics with Nb-site vacancies显示文摘It is crucial to discover lead-free materials with ultrahigh recoverable energy density(Wrec)that can be employed in future pulse power capacitors.In this work,a high Wrec of 4.51 J/cm^(3) was successfully obtained in lead-free Nd-doped AgNb_(0.8)Ta_(0.2)O_(3) antiferroelectric ceramics at an applied electric field of 290 kV/cm.It is discovered that Nd doping paired with Nb-site vacancies could stabilize the antiferroelectric phase by lowering the temperatures of the M1-M2 and M2-M3 phase transitions,which leads to higher energy storage efficiency.Furthermore,Nd and Ta co-doping will contribute to the electrical homogeneity and low electrical conductivity,resulting in large breakdown strengths.Aliovalent doping in Ag-site with Nb-site vacancies serves as a novel strategy for the construction of AgNbO_(3)-based ceramics with excellent energy storage performance. | Zhilun Lu Dongyang Sun Ge Wang Jianwei Zhao Bin Zhang Dawei Wang Islam Shyha | 2023 | Journal of Advanced Dielectrics2023,13,1: | 0 |
| 15 | Preparation of elastomeric nanocomposites using nanocellulose and recycled alum sludge for flexible dielectric materials显示文摘Flexible dielectric materials with environmental-friendly,low-cost and high-energy density characteristics are in increasing demand as the world steps into the new Industrial 4.0 era.In this work,an elastomeric nanocomposite was developed by incorporating two components:cellulose nanofibrils(CNFs)and recycled alum sludge,as the reinforcement phase and to improve the dielectric properties,in a bio-elastomer matrix.CNF and alum sludge were produced by processing waste materials that would otherwise be disposed to landfills.A biodegradable elastomer polydimethylsiloxane was used as the matrix and the nanocomposites were processed by casting the materials in Petri dishes.Nanocellulose extraction and heat treatment of alum sludge were conducted and characterized using various techniques including scanning electron microscopy(SEM),thermogravimetric analysis/derivative thermogravimetric(TGA/DTG)and X-ray diffraction(XRD)analysis.When preparing the nanocomposite samples,various amount of alum sludge was added to examine their impact on the mechanical,thermal and electrical properties.Results have shown that it could be a sustainable practice of reusing such wastes in preparing flexible,lightweight and miniature dielectric materials that can be used for energy storage applications. | Dongyang Sun Bernard L.H.Saw Amaka J.Onyianta Bowen Wang Callum Wilson Dominic O’Rourke Chan H.See Carmen-Mihaela Popescu Mark Dorris Islam Shyha Zhilun Lu | 2023 | Journal of Advanced Dielectrics2023,13,1: | 0 |