1 |
庄继德. 汽车轮胎学[M].北京:北京理工大学出版社,1995.
|
|
ZHUANG J D. Automobile tire science[M]. Beijing: Beijing Institute of Technology Press, 1995.
|
2 |
赵月青, 林德志, 陈汇, 等. 热隔膜成形中隔膜材料性能测试及本构模型选择[J/OL]. 北京航空航天大学学报, 1-14.doi: 10.13700/j.bh.1001-5965.2023.0350
|
|
ZHAO Y Q, LIN D Z, CHEN H, et al. Performance test of diaphragm materials and selection of constitutive model in hot diaphragm forming[J/OL]. Journal of Beijing University of Aeronautics and Astronautics, 1-14. doi: 10.13700/j.bh.1001-5965.2023.0350
|
3 |
SHUO C, CHEN F L, XIANG C, et al. A hierarchical estimation scheme of tire-force based on random-walk SCKF for vehicle dynamics control[J]. Journal of the Franklin Institute, 2020,357(18):13964-13985.
|
4 |
王凡勋,殷国栋,沈童,等.四轮驱动电动汽车质心侧偏角与轮胎侧向力非线性鲁棒融合估计[J].中国机械工程,2022,33(22):2673-2683.
|
|
FAN X W, DONG Y G, TONG S, et al. Nonlinear robust fusion estimation of center of mass lateral angle and tire lateral force in four-wheel drive electric vehicles [J]. China Mechanical Engineering, 2022, 33 (22) : 2673-2683.
|
5 |
刘钇汛,刘志浩,高钦和,等.基于周向应变分析的重载轮胎垂向力估计算法[J].上海交通大学学报,2023,57(10):1273-1281.
|
|
LIU Y X, LIU Z H, GAO Q H, et al. Heavy-load tire vertical force estimation algorithm based on circumferential strain analysis[J]. Journal of Shanghai Jiaotong University, 2023, 57(10): 1273-1281.
|
6 |
JIN Y Z, HONG X F, BOWEN Y N, et al. A spoke strain-based method to estimate tire condition parameters for intelligent tires[J]. Sensors and Actuators A: Physical, 2024,367:115035.
|
7 |
王岩, 梁冠群, 危银涛. 基于支持向量机的智能轮胎路面辨识算法[J]. 汽车工程, 2020, 42(12): 1671-1678.
|
|
WANG Y, LIANG G Q, WEI Y T. Intelligent tire-road surface recognition algorithm based on support vector machine[J]. Automotive Engineering, 2020, 42(12): 1671-1678.
|
8 |
祝晓龙. 基于轮胎智能化监测的车辆稳定性控制研究[D].长 春:吉林大学,2018.
|
|
ZHU X L. Research on vehicle stability control based on intelligent tire monitoring[D]. Changchun: Jilin University, 2018.
|
9 |
CUI L Z, AI J C, LEI W, et al. Analysis of effect on temperature field of tire curing process by initial temperatures and condensate discharging[J]. Applied Thermal Engineering, 2024, 257: 124424.
|
10 |
XU L, JIA P H, XUE Z D, et al. Monitoring overloaded trucks with infrared thermal imaging of tire sidewall[J]. Heliyon, 2024, 10(14):e34358.
|
11 |
MASAHIRO H, YOSUKE S, TMONHIKO S, et al. Measurement of road friction coefficient using strain on tire sidewall[J]. Precision Engineering, 2023,84:28-36.
|
12 |
FERNANDA M, GARCIA-POZUELO D, DIAZ V, et al. Characterization of the loss of grip condition in the strain-based intelligent tire at severe maneuvers[J]. Mechanical Systems and Signal Processing, 2022,168.
|
13 |
刘钇汛,刘志浩,高钦和,等.基于精细参数化建模的重载轮胎接地特性分析[J].计算机仿真,2023,40(11):243-251,310.
|
|
LIU Y X, LIU Z H, GAO Q H, et al. Analysis of heavy-duty tire ground contact characteristics based on refined parameterized modeling[J]. Computer Simulation, 2023, 40(11): 243-251,310.
|
14 |
TIAN T, DANIEL J, ROBERT E S, et al. Numerical evaluation of the temperature field of steady-state rolling tires[J]. Applied Mathematical Modelling, 2014,38:1622-1637.
|
15 |
JUN Z, HONG W L, XIAO K Y, et al. A novel moisture damage detection method for asphalt pavement from GPR signal with CWT and CNN[J]. NDT & International, 2024,145:103116.
|