专利:
1.一种适用于桥梁的可变刚度粒子阻尼减震装置.肖望强,潘天龙.中国发明专利.ZL201611254175.0,2019;
2.一种基于多层复合阻尼的浮置道床减振方法和减振装置.肖望强,潘天龙.中国发明专利.ZL202110255694.3,2021;
3.一种粒子阻尼壁板的设计方法.肖望强,叶淑祯.中国发明专利. CN202110926628.4,2021;
4.一种轨道颗粒阻尼减振扣件.肖望强,陈辉.中国实用新型专利.ZL202120504781.3,2021;
5.基于亚流态接触应力网络的粒子耗能阻尼器.肖望强,罗元易.中国发明专利.CN201811549805.6,2018;
6.一种基于颗粒阻尼的减振方法和减振轨枕.肖望强,陈辉.中国发明专利.ZL202110256896.X,2022;
7.一种轴系抱箍式颗粒阻尼减振器及设计方法.肖望强,章立豪.中国发明专利.ZL202110147225.X,2022;
8.一种非弹性碰撞和滚动粘滞阻力颗粒耦合耗能数控机床.肖望强.中国实用新型专利.ZL2014 20449492.8,2014;
9.一种基于颗粒阻尼的减振杆.肖望强,罗元易.中国实用新型专利.ZL 2019 2 1555128.9,2020;
10.一种双基锥螺旋伞齿轮齿形的设计方法.肖望强,潘天龙.中国发明专利,ZL201410512635.X,2014;
11.非弹性碰撞和滚动粘滞阻力粒子耦合耗能刀杆.肖望强.中国发明专利,ZL201410392332.9,2014;
12.非弹性碰撞和滚动粘滞阻力粒子耦合耗能低噪音齿轮.肖望强.中国发明专利,ZL201410392495.7,2014;
13.基于不同齿形角球面齿形的圆弧伞齿轮齿面设计方法.肖望强,潘天龙.中国发明专利,ZL201410514207.0,2014.
论文:
1.Wangqiang Xiao*, Dajun Lu, Liming Song, et al. Influence of particle damping on ride comfort of mining dump truck. Mechanical Systems and Signal Processing, 2020(136). SCI一区(TOP期刊);
2.Wangqiang Xiao*, Zhanhao Xu, Hechuan Bian, et al. Lightweight heavy-duty CNC horizontal lathe based on particle damping materials. Mechanical Systems and Signal Processing, 2021(147). SCI一区(TOP期刊);
3.Wangqiang Xiao*, Zhiwei Chen, Tianlong Pan, et al. Research on the impact of surface properties of particle on damping effect in gear transmission under high speed and heavy load. Mechanical Systems and Signal Processing, 2018(98). SCI一区(TOP期刊);
4.Wangqiang Xiao*, Jiani Lia, Tianlong Pan, et al. Investigation into the influence of particles' friction coefficient on vibration suppression in gear transmission. Mechanism and Machine Theory, 2017(108). SCI一区 TOP期刊;
5.Wangqiang Xiao*, Yuxiang Huang, Hong Jiang, et al. Effect of powder material on vibration reduction of gear system in centrifugal field. Powder Technology, 2016(294). SCI二区;
6.Chiming Wang,Wangqiang Xiao*, Dehui Wu, et al. Exploring bandgap generation mechanism of phonon crystal. New Journal of Physics, 2020(22). SCI二区;
7.Wangqiang Xiao*, Jiani Lia, Sheng Wang, et al. Study on vibration suppression based on particle damping in centrifugal field of gear transmission. Journal of Sound and Vibration, 2016(366). SCI二区;
8.Wangqiang Xiao*, Yuxiang Huang, Hong Jiang, et al. Energy dissipation mechanism and experiment of particle dampers for gear transmission under centrifugal loads. Particuology, 2016(27). SCI二区;
9. Wangqiang Xiao, Zhanhao Xu, Fengbo Zhang. Effect of particle damping on high-power gear transmission with dynamic coupling for continuum and non-continuum. Applied Acoustics, 2021(173).SCI三区;
10. Wangqiang Xiao, Shaowei Yu, Lijie Liu. Vibration reduction design of extension housing for printed circuit board based on particle damping materials. Applied Acoustics, 2020(168). SCI三区;
11.肖望强,卢大军,宋黎明,杨哲,李泽光.基于颗粒阻尼的矿用自卸车振动舒适性[J].交通运输工程学报,2019,19(06):111-124. EI;
12.肖望强,余少炜,林昌明,刘利杰.基于颗粒阻尼的PCB动力学与电路联合设计研究[J].振动与冲击,2019,38(10):124-132. EI;
13.肖望强,黄玉祥,李威,林宏,陈智伟.颗粒阻尼器配置对齿轮传动系统动特性影响[J].机械工程学报,2017,53(07):1-12. EI封面论文;
14.肖望强,李威.基于双压力角轻量化设计的弧齿锥齿轮接触应力分析与试验[J].机械工程学报,2015,51(23):68-75. EI;
15.肖望强,许展豪,边贺川.基于颗粒阻尼技术的数控机床轻量化研究[J].航空制造技术,2018,61(11):40-47. 中文核心。
1.国家自然科学基金,面上项目,基于颗粒阻尼减振的大功率齿轮传动连续一非连续多体耦合机制研究,2019-2022,主持;
2.国家自然科学基金,青年科学基金,齿轮传动离心场中颗粒阻尼的被动抑振机理研究,2013-2015,负责;
3. 国家工程实验室基金项目:基于粒子阻尼的变电设备低频振动噪声控制研究,2021-2023,负责;
4.国家能源集团科技重点项目,长距离管状带式输送机噪声综合治理技术研究,2021-2022,主持;
5.福建省科技重点项目,高端精密数控机床颗粒阻尼提质降耗关键共性技术研究,2016-2019,负责;
6.福建省科技计划项目,轨道交通减振降噪研究,2021-2024,主持;
7.航天专项项目,CZ-5B站箭降冲用阻尼盒优化设计,2018-2020,主持;
8.航天专项项目,梦天载荷舱减冲击环境仿真和试验研究,2021-2022,主持;
9.航天专项项目,星箭界面载荷精细化控制,2020-2022,负责;
10.中船重工集团项目,净化泵支承改进试验及仿真研究,2019-2022,负责。
1.福建省科学技术奖一等奖,第一完成人,2020;
2.中国机械制造工艺协会杰出青年,2015;
3.福建省最美科技工作者,2020;
4.福建省优秀共产党员,2021;
5.中国质量协会质量技术奖优秀六西格玛项目,2017;
6.福建省重点人才,2017;
7.厦门市双百人才(A类),2017;