主要成就
1.Application of Particle Swarm Optimization in Hollow Cylinder Type Force Transducer with Ultra Low Height.Sensor Letters (SCI), Vol.11, 2013(4):719-721,第一作者
2.臂架驱动双纽线型起重机变幅机构的受力分析和实现[J].中国工程机械学报(中文核心期刊、SCD期刊),2017(5):447-451,第一作者
3.双纽线型起重机两种类型变幅机构的比较[J].中国工程机械学报(中文核心期刊、SCD期刊),2016(1):50-53,第一作者
4.Simulation of Luffing Mechanism of Lemniscate Type Crane with Boom Driving[J].Applied Mechanics and Materials(EI 20134516956385 Compendex),Vols. 397-400 (2013):p611-614,第一作者
5.新型后摇杆驱动四连杆变幅机构的受力分析与程序实现. 科学技术与工程(中文核心),2012(13):3231-3234,第一作者
6.Kinematics and Luffing Moment of Lemniscate Type Crane with Boom Driving. Advanced Materials Research(EI 20122015019101 Compendex.),Vols. 503-504 (2012): p923-926,第一作者
7.Force Analysis of Luffing Mechanism of Lemniscate Type Crane with Boom Driving. Advanced Materials Research(EI 20124515656618 Compendex),Vols. 538-541 (2012):2618-2621,第一作者
8.Force Implementation of Luffing Mechanism of Jib Type Crane with Back-rocker Driving.Advanced Materials Research(EI 20124515656664 Compendex),Vols. 538-541 (2012):2846-2849,第一作者.
9.Inverse Design of A New Double-link Luffing Mechanism of Lemniscate Floating Crane.Advanced Materials Research(EI 20124215573556 Compendex),Vols. 562-564(2012):564-567,第一作者
10.Comparison research on two luffing mechanisms of lemniscate type crane. Applied Mechanics and Materials(EI 20125015780614 Compendex),Vols. 215-216 (2012):146-149,第一作者
11.新型后摇杆驱动四连杆变幅机构的传力特性与变幅力矩分析,科学技术与工程(中文科技核心),2011(35):8723-8725,8730,第一作者