汪红波 讲师(高校)

硕士生导师

个人信息Personal Information


教师英文名称:Hongbo Wang

入职时间:2022-06-29

学历:博士研究生毕业

学位:工学博士学位

办公地点:西南交通大学犀浦校区3号教学楼31719房间

性别:

在职信息:在岗

主要任职:智能制造与装备系主任助理

其他任职:智慧城市与交通学院本科教学秘书

毕业院校:西南交通大学

学科:机械制造及其自动化

所在单位:城市轨道交通学院(智慧城市与交通学院)

报考该导师研究生的方式

欢迎你报考汪红波老师的研究生,报考有以下方式:

1、参加西南交通大学暑期夏令营活动,提交导师意向时,选择汪红波老师,你的所有申请信息将发送给汪红波老师,老师看到后将和你取得联系,点击此处参加夏令营活动

2、如果你能获得所在学校的推免生资格,欢迎通过推免方式申请汪红波老师研究生,可以通过系统的推免生预报名系统提交申请,并选择意向导师为汪红波老师,老师看到信息后将和你取得联系,点击此处推免生预报名

3、参加全国硕士研究生统一招生考试报考汪红波老师招收的专业和方向,进入复试后提交导师意向时选择汪红波老师。

4、如果你有兴趣攻读汪红波老师博士研究生,可以通过申请考核或者统一招考等方式报考该导师博士研究生。

点击关闭

论文成果

当前位置: 中文主页 >> 科学研究 >> 论文成果

Orthogonal Pressure-Humidity Bimodal Sensing via Hierarchical Micro-Nano Engineering of Flexible Electronic Skins

影响因子:6.2

DOI码:10.1002/admt.71107

所属单位:西南交通大学

教研室:智能制造工程

发表刊物:Advanced Materials Technologies

摘要:Integrating multimodal sensing within a single, compact footprint is pivotal for next-generation intelligent systems, particularly embodied intelligent robots, precision medicine, and smart manufacturing, where spatially co-located perception of multiple physical cues is essential. Conventional flexible sensors, however, suffer from severe cross-talk when simultaneously detecting distinct stimuli at the same location, leading to signal ambiguity and degraded fidelity. Herein, we report a flexible pressure– humidity bimodal sensor achieved through a synergistic structure–material co-design strategy that couples a micro-nano hierarchical structure with multifunctional electrospun nanofibrous layers. The device delivers high-fidelity, real-time responses to pressure (sensitivity: 0.0955 kPa−1 over 0–10 kPa) and humidity (0.1245 kΩ/%RH), exhibits robust cycling stability (>3000 cycles), and achieves small crosstalk (<4.27%). Preliminary experimental and simulation results demonstrate the sensor’s future potential in two proof-of-concept demonstrations: non-destructive assessment of blueberry maturity based on flesh firmness and skin moisture, and co-located monitoring of interface pressure and skin wetness for proactive assessment of pressure ulcer risk in bedridden patients. This work establishes a “micro-nano architecture/multifunctional material” co-design paradigm, providing a scalable pathway enabling electronic skin to perceive diverse and complex environments with high integration and low interference.

合写作者:付宇轩,刘文珂,康康骦弘,赵志俊,余丙军,钱林茂

第一作者:韩文婧

论文类型:SCI

通讯作者:汪红波

论文编号:e71107

学科门类:工学

文献类型:J

卷号:11

期号:17

是否译文:

发表时间:2026-09-03

收录刊物:SCI

发布期刊链接:https://advanced.onlinelibrary.wiley.com/doi/abs/10.1002/admt.71107