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贺良国

来源: 时间:2018-10-23 作者: 点击:

姓 名

贺良国

职 称

副教授

职 务


所属系

机械设计工程系

邮 箱

helg@hfut.edu.cn,lguohe@163.com

电 话

0551-62901756

个人基本情况

贺良国,博士,副教授,硕士生导师。

迄今,作为主要研究人员完成了1项国家自然科学基金项目,作为项目负责人主持国家自然科学基金1项、安徽省自然基金1项、博士后面上基金1项;发表科研论文20余篇其中SCI/EI收录20余篇;第一发明人授权发明专利近10项。

教育背景

2013.09–2016.11 合肥工业大学 机械工程博士后流动站 博士后

2008.09–2013.06 中国科学技术大学 精密仪器及机械 硕博士

2001.09–2005.07 合肥工业大学 机械设计及其自动化系 学士

研究工作经历

2015.12–今 合肥工业大学 机械设计工程系 副教授

2013.07–2015.12 合肥工业大学 机械设计工程系 讲师

2005.07–2007.05,富士康科技集团 冲压磨具研发部 助理工程师

主要研究方向

基于压电智能材料的驱动器、传感器和换能器的设计、分析和优化及应用研究;智能医疗器械、机械产品研发

开设课程

机械原理,机械设计基础

近年主持的项目

1.汽车门盖焊接瑕疵智能检测系统研发(W2025JSKF0183),2025.04.01-2027.03.31.

2.嵌入式折叠铰链研发(W2025JSKF0257),企业合作项目,2025.04.15-2025.09.30.

3.微型压电马达分析研究(W2024JSKF1254),企业合作项目,2024.12.01-2025.11.30.

4.超声软组织切割止血刀头研发(W2020JSKF0791),企业合作项目,2020.12.09-2023.12.29.

5.化纤倍捻用智能穿丝机(W2020JSKF0050),企业合作项目,2020.03.16-2023.03.15

6.基于自钳位的单谐波驱动谐振型惯性冲击压电马达研究(2008085ME154),安徽省自然科学基金面上项目,2020.07.01 – 2023.06.30.

7.基于机械波合成的谐振方波钳位式压电马达研究(51405127),国家自然科学基金,2015.01-2017.12.

8.利用谐振方波钳位提高压电马达效率的研究(2015M571921),中国博士后面上基金,2015.05-2016.09.

9.基于周期机械波合成的压电马达研究(2013HGBH0050),博士后专项基金,2014.06-2015.12.

10.新型同步箝位控制压电马达研究(JZ2014HGBZ0017),中央高校基本科研业务费,2013.09-2014.12

11.利用机械波合成的谐振方波钳位提高压电马达效率的研究(2014HGQC0031),合肥工业大学青年创新基金,2014.06-2015.12.

近年的专著与论文、专利、获奖

[1].Liangguo He, Zhangqiong Yang, An Qian; Xiangyu Liu, Menghao Sun, Yuge Dong, Xinfang Ge, Jiannan Wang, Magnetic-force-tunable multimodal resonant inertial impact piezoelectric rotary motor [J]. Review of Scientific Instruments, 2026, 97, 061301:1-10.

[2]. Liangguo He,Zhangqiong Yang, Haitao Tian, Manjin Dong, Jinwei Li, Yuhao Zhou,Yuge Dong,XinfangGe; Jiannan Wang,Bidirectional drive and multi-resolution adjustment across frequency bands in inertial impact piezoelectric motors via multimodal resonant vibration[J].Review of Scientific Instruments, 2026, 97, 075002:1-11.

[3] Liangguo He*,Fengyu Liu , An Qian , Zheng Huang , Haitao Tian , Zhikai Wan, Asymmetric clamping and backsliding suppression in linear piezoelectric motors via harmonic synthesis with multichannel signals [J] Mechanical Systems and Signal Process,2025, 240(000):17

[4] Liangguo He*, Menghao Sun , Fengyu Liu , and Xinfang Ge, Piezoelectric Actuator With a Single-Stator 3 and Dual-Mode Operation for Bidirectional No-Backward Motion [J] IEEE Transactions on Industrial Electronics, 2025,73(01) 1052-1062,.

[5] Liangguo He*,Xiangyu Liu, Zheng Huang, Fengyu Liu, Haitao Tian,Yuge Dong and Xinfang Ge. Inertial impact rotary piezoelectric motor with non-reversing properties and a clamping mechanism[J].Smart Materials and Structures, 2025,34, 055028:1-9.

[6]Liangguo He* ,Xukang Yue , Zengxiang Shan, Chengliang Pan, Liansheng Zhang , and Feiyun Xiao. Research on a Single-Vibrator Multimodal Inertial ImpactPiezoelectricMotor With Self-Clamping Backsliding Suppression[J].IEEE Transactions on Industrial Electronics,2024, 71(11):14546-14557.

[7]Liangguo He*,An Qian, Xinyu Li, Yuge Dong, Xukang Yue and Zhikai Wan. An adjustable magnetic type resonant multimodal inertialimpactmotor[J].Smart Materials and Structures, 2024, 33(2):025023:1-12.

[8]Liangguo He*, Xukang Yue, Haotian Dou, Xinfang Ge, Zhikai Wan and An Qian. Research on variable stiffness asymmetrical resonantlinearpiezoelectric actuator based on multi-modal drive[J].Smart Materials andStructures,2024, 33(1):025023:1-11.

[9]Liangguo He*,An Qian , Xinyu Li , Xukang Yue , Zhikai Wan, Liang Huang. Research on the bidirectional motion of resonant single-wing bionicpiezoelectricmotor based on a biasing self-clamping mechanism[J].Review of Scientific Instruments, 2023,94(12), 125003:1-6.

[10]Liangguo He*, Zhikai Wan, Kun Li, Liang Huang, Chengliang Pan, Xinfang Ge, Xukang Yue, and An Qian. Bidirectional motion characteristics of resonant inertial impact rotating piezoelectric motor based on self-clampingstructure[J].Review of Scientific Instruments, 2023, 94(8):085003:1-5.

[11]Liangguo He*,An Qian, Yuge Dong, Xinyu Li, Zhikai Wan, and Xukang Yue. A resonant single-wing bionic piezoelectric motor based on a biasing self-clamping mechanism[J].Review of ScientificInstruments, 2023,94(6):065005:1-9.

[12]Liangguo He*,Zhikai Wan, Kun Li, Yong Wang, Xinyu Li, Xinfang Ge, Haotian Dou, Zengxiang Shan, Xukang Yue, and An Qian. A resonant inertial impact rotary piezoelectric motor based on a self-clamping structure[J].Review of Scientific Instruments, 2023 94(4):045003:1-9.

[13]Liangguo He*Kun Li, Yi Yan, Ziyang Cheng, Lei Xu, Xinyu Li, Xinfang Ge, Zengxiang Shan, and Haotian Dou. Bidirectional linear inertial impactpiezoelectricmotor with multimodal resonance[J].Review of Scientific Instruments, 2022, 93(8):085004:1-11.

[14] Liangguo He*,Kun Li, Yi Yan, Yong Wang, Feiyun Xiao, Xinfang Ge,Guangjie Gao, Zengxiang Shan and Haotian Dou. Resonant-type inertial impact linearpiezoelectricmotor based on coupling of driving and clamping parts[J].Smart Materials and Structures,2022, 31(9):095026:1-9.

[15] Liangguo He*, Haotian Dou, Xinfang Ge, Xinyu Li, and Guangjie Gao. Resonant-type rotating piezoelectric motor with inchworm-inertia composite impact[J]. Review of Scientific Instruments, 2022, 93(3):035004:1-7.

[16].Liangguo He*,ZengxiangShan, Xinyu Li, Kun Li, Haotian Dou, Xinfang Ge, Yuge Dong, and Hu Wang, Bidirectional motion characteristics of a single harmonic-driven self-clamping linear piezoelectric motor[J]. Review of Scientific Instruments, 2022, 93(2):025008:1-4.

[17]. LiangguoHe*,Guangjie Gao, Yan Kan, Sai Hao, Xinyu Li, Xinfang Ge, Jian Chen, and Weijie Chang , Resonant-type inertial impact piezoelectric motor based on a cam locking mechanism [J]. Review of Scientific Instruments, 2021, 92(7): 075001:1-8.

[18]. Liangguo He*,ZiyangCheng, Lei Xu, Xinyu Li, Xinfang Ge, Jian Chen and Jiang Han , Resonant-type inertia linear piezoelectric motor based on a synchronized switching stimulated by harmonic synthesized mechanical square wave [J]. Review of Scientific Instruments, 2020, 91(8): 085003:1-8.

[19]. Liangguo He,YongZhang, Yong Wang, Xinyu Li, Jian Chen, Xiaoyong Zhao, Yuge Dong, and Xinfang Ge, Novel piezoelectric rotary motor on the basis of synchronized switching control [J]. Review of Scientific Instruments, 2020, 91(9): 095004:1-9.

[20]. Liangguo He, Sai Hao, Xiaoyong Zhao, Yuge Dong, Xinyu Li, Jian Chen and Yong Wang , Resonant-type piezoelectric linear motor driven by harmonic synthesized mechanical square wave[J].Review of Scientific Instruments, 2020, 91(3): 035005:1-10.

[21]. Liangguo He,YuhengChu, Sai Hao, Xiaoyong Zhao, Yuge Dong, and Yong Wang ,Inertial piezoelectric linear motor driven by a single-phase harmonic wave with automatic clamping mechanism[J].Review of Scientific Instruments, 2018, 89, 055008.

[1]贺良国、楚宇恒、王勇等,一种谐振型惯性冲击压电马达,中国发明专利,专利号:ZL201610761493.X,授权:2018.05.22.

[2]贺良国、庞席德、董玉革等,一种谐振方波同步钳位压电直线马达,中国发明专利,专利号:ZL201710107697.6,授权:2018.09.07

[3]贺良国、楚宇恒、王勇等,一种直线压电马达,中国发明专利,专利号:ZL201710493979.4,授权:2019.01.11

[4]贺良国、楚宇恒、王勇等,一种压电马达,中国发明专利,专利号:ZL201711088360.1,授权:2019.03.26

[5]贺良国、郝赛、赵小勇等,一种旋转压电马达,中国发明专利,专利号:ZL201810288415.1,授权:2019.09.10

[6]贺良国、徐磊、王勇等,一种惯性直线压电马达,中国发明专利,专利号:ZL201811049645.9,授权:2019.12.03

[7]贺良国、程子阳、贺提曼等,一种谐振型惯性冲击式压电马达,中国发明专利,专利号:ZL201910230949.3,授权:2019.12.03.

[8]贺良国、张勇、葛新方等,一种由合成方波驱动的直线压电马达,中国发明专利,专利号:ZL 201910230966.7,授权:2020.01.03

[9]贺良国、徐磊、李新宇等,一种惯性旋转压电马达,中国发明专利,专利号:ZL201910265851.1,授权:2020.03.27

[10]贺良国、郝赛、王武等,一种旋转压电驱动器,中国发明专利,专利号:ZL201910721798.1,授权:2020.07.17

[11]贺良国、高广杰、王武等,一种同步冲击压电马达,中国发明专利,专利号:ZL201911375792.X,授权:2020.12.29

[12]贺良国、严毅、王武等,一种钳位控制的惯性冲击马达,中国发明专利,专利号:ZL202010041224.2,授权:2020.12.29

[13]贺良国、程子阳、韩江等,一种锯齿波驱动的压电马达,中国发明专利,专利号:ZL 202010410573.7,授权:2021.03.12

[14]贺良国、严毅、王勇等,一种基于悬臂梁结构的惯性冲击直线压电马达,中国发明专利,专利号:ZL202010857159.0,授权:2021.08.24

[15]贺良国、高广杰、韦邦暄等,一种下肢被动康复机构,中国发明专利,专利号:ZL202010304769.8,授权:2021.10.08

[16]贺良国、张勇、代国军等,一种洗鞋机,中国发明专利,专利号:ZL202010596938.X,授权:2022.10.04

[17]贺良国、单增祥、阚艳等,一种惯性旋转压电马达,中国发明专利,专利号:ZL202110377062.4,授权:2022.10.18

[18]贺良国、李锟、孙同明等,一种钳位控制的惯性直线压电马达,中国发明专利,专利号:ZL202110377072.8,授权:2022.10.18

[19]贺良国、窦浩天、程宗辉等,一种旋转压电马达,中国发明专利,专利号:ZL202110377238.6,授权:2023.02.24

[20]贺良国、单增祥、王勇等,一种同步谐振惯性冲击的线性压电马达,中国发明专利,专利号:ZL2202210332921.2,授权:2024.03.15

[21]贺良国、钱安、李新宇等,一种直线压电马达,中国发明专利,专利号:ZL2202210509791.5,申请:2022.05.11,授权:2024.03.15

[22]贺良国、岳旭康、李新宇等,一种线缆收放装置,中国发明专利,专利号:ZL2202210312723.X,授权:2023.06.30

[23]贺良国、万志凯、王勇等,一种谐振型旋转压电马达,中国发明专利,专利号:ZL2202210986325.6,授权:2024.04.16

[24]贺良国、孙梦浩、刘丰羽等,一种多模态双向运动旋转压电马达,中国发明专利,专利号:ZL202510825099.7,授权:2025.08.22

[25]贺良国、万志凯、王勇等,一种双向驱动直线压电马达,中国发明专利,专利号:ZL2202210740865.6,授权:2025.12.02

[26]贺良国、岳旭康、窦浩天等,一种变刚度惯性冲击直线压电马达,中国发明专利,专利号:ZL202310431702.4,授权:2026.04.14


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