• 其他栏目

    房怀英

    • 教授 硕士生导师
    • 性别:女
    • 学历:博士研究生
    • 学位:工学博士学位
    • 入职时间:2003-06-25
    • 所在单位:华侨大学机电及自动化学院
    • 电子邮箱:
    • 在职信息:在岗
    • 学科:机械电子工程
      机械设计及理论
      智能制造
      机械制造及其自动化

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    个人简介

    房怀英,女,博士,教授,硕士生导师。美国托莱多大学访问学者,厦门大学博士后,发表论文50余篇,获批专利40余件,主持/参与国家、省重大项目、自然科学基金等10余项,2023、2018、2013年获得福建省科技进步二等奖各1项,2025、2021年获得福建省科技进步三等奖1项,2018年获得泉州市科技进步一等奖1项。

    教育经历

    [1] 华侨大学       机械制造及其自动化       博士研究生       工学博士学位

    工作经历

    [1] 2021.1 -- 至今
    华侨大学机电及自动化学院      教授

    [2] 2010.12 -- 2020.12
    华侨大学机电及自动化学院      副教授

    论文成果

  • [1]E2E-AFNet An End-to-End adaptive NIR-RGB fusion network applied to solid waste recognition.Infrared Physics and Technology,2026,

  • [2]Simulation and experimental study on kneading and crushing of waste concrete for recycled aggregate production.Construction and Building Materials,2025,

  • [3]-Prediction of water absorption of recycled coarse aggregate based on deep learning image segmentation.tm–Technisches Messen,2025,

  • [4]Rapid dataset generation methods for stacked construction solid waste based on machine vision and deep learning.PLOS ONE,2024,

  • [5]Adaptive control method and experimental study of cone crusher based on aggregate online detection.Physicochemical Problems of Mineral Processing,2024,

  • [6]Surface mortar detection and performance evaluation of recycled aggregates based on hyperspectral technology.tm–Technisches Messen,2023,

  • [7]Prediction of water absorption of recycled coarse aggregate based on deep learning image segmentation.tm–Technisches Messen,2024,

  • [8]Rapid dataset generation methods for stacked construction solid waste based on machine vision and deep learning.PLOS ONE,2024,

  • [9]Low-value Recyclable Waste Identification Based on NIR Feature Analysis and RGB-NIR Fusion.Infrared Physics and Technology,2023,

  • [10]Automatic sorting of low-value recyclable waste - a comparative experimental study.Clean Technologies and Environmental Policy,2023,

  • [11]Three-dimensional angularity characterization of coarse aggregates based on experimental comparison of selected methods.Particulate Science and Technology,2022,

  • [12]Prediction method for void content of aggregate based on neural network model.PARTICULATE SCIENCE AND TECHNOLOGY,2022,

  • [13]机制砂空隙率软测量模型构建及试验研究.自动化仪表,2022,

  • [14]The independent characterization and experimental study of coarse aggregate angularity 1.PARTICULATE SCIENCE AND TECHNOLOGY,2021,

  • [15]High-quality coarse aggregate recycling from waste concrete by impact crushing.JOURNAL OF MATERIAL CYCLES AND WASTE MANAGEMENT,2020,

  • [16]Simulation and experimental study on the stone powder separator of a vertical shaft impact crusher.ADVANCED POWDER TECHNOLOGY,2020,

  • [17]Experimental Study on Limestone Cohesive Particle Model and Crushing Simulation.ADVANCES IN MATERIALS SCIENCE AND ENGINEERING,2018,

  • [18]Particle Size Distribution and Energy Consumption During Impact Crushing of Single Granite Particles.JOURNAL OF THE SOUTHERN AFRICAN INSTITUTE OF MINING AND METALLURGY,2018,

  • [19]立轴冲击式破碎机除尘的数值模拟与仿真分析.华侨大学学报(自然科学版),2018,

  • [20]立轴冲击破碎机加速板磨损仿真分析.矿山机械,2017,

  • [21]立轴冲击破碎机转子出料特性仿真实验.华侨大学学报(自然科学版),2015,

  • [22]基于火焰过程信息的沥青搅拌站燃烧状态监测.长安大学学报(自然科学版),2015,

  • [23]Burning state monitoring of asphalt mixing plant based on process information of flame.Chang'an Daxue Xuebao (Ziran Kexue Ban)/Journal of Chang'an University (Natural Science Edition),2015,

  • 其他联系方式

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    团队成员

    团队名称:面向高效低碳的机械装备智能化技术及监测方法团队


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