Journal of Automotive Safety and Energy ›› 2025, Vol. 16 ›› Issue (6): 859-866.DOI: 10.3969/j.issn.1674-8484.2025.06.005
• Automotive Safety • Previous Articles Next Articles
ZHENG Wenxiang1(
), WANG Bingyu1,2,*(
), YANG Yao1, GONG You1,2, QIN Liyan1,2
Received:2025-09-01
Revised:2025-10-18
Online:2025-12-31
Published:2026-01-12
CLC Number:
ZHENG Wenxiang, WANG Bingyu, YANG Yao, GONG You, QIN Liyan. Analysis of collision patterns in truck-bicycle accidents on injuries and the kinematic of rider[J]. Journal of Automotive Safety and Energy, 2025, 16(6): 859-866.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.journalase.com/EN/10.3969/j.issn.1674-8484.2025.06.005
| 货车 | |
| 长×宽×高 | 8.52 m×2.55 m×3.46 m |
| 保险杠离地高度 | 0.60 m |
| 整备质量 | 12.50 t |
| 碰撞时总重 | 12.57 t |
| 重心高度 | 1.50 m |
| 电动两轮车 | |
| 长×宽×高 | 1.725 m×0.07 m×1.090 m |
| 轴距 | 1.25 m |
| 碰撞时总质量 | 150 kg |
| 车把离地高度 | 0.91 m |
| 座位离地高度 | 0.77 m |
| 摩擦因数 | |
| 货车与电动两轮车 | 0.30~0.50 |
| 货车与骑车人 | 0.30~0.50 |
| 电动两轮车与骑车人 | 0.40~0.50 |
| 骑车人与地面 | 0.50~0.70 |
| 电动两轮车与地面 | 0.55~0.70 |
| 货车 | |
| 长×宽×高 | 8.52 m×2.55 m×3.46 m |
| 保险杠离地高度 | 0.60 m |
| 整备质量 | 12.50 t |
| 碰撞时总重 | 12.57 t |
| 重心高度 | 1.50 m |
| 电动两轮车 | |
| 长×宽×高 | 1.725 m×0.07 m×1.090 m |
| 轴距 | 1.25 m |
| 碰撞时总质量 | 150 kg |
| 车把离地高度 | 0.91 m |
| 座位离地高度 | 0.77 m |
| 摩擦因数 | |
| 货车与电动两轮车 | 0.30~0.50 |
| 货车与骑车人 | 0.30~0.50 |
| 电动两轮车与骑车人 | 0.40~0.50 |
| 骑车人与地面 | 0.50~0.70 |
| 电动两轮车与地面 | 0.55~0.70 |
| [1] | 刘朝晖. 电动车产业浪潮奔涌苏南[J]. 新民周刊, 2024(12): 56-59. |
| LIU Chaohui. The wave of the electric vehicle industry is rushing to southern Jiangsu[J]. Xinmin Weekly, 2024(12): 56-59. (in Chinese) | |
| [2] | 杨扬, 杨小佳. 基于系统动力学的城市货车限行问题研究[J]. 公路交通科技, 2017, 34(5): 150-158. |
| YANG Yang, YANG Xiaojia. Study on travel restriction of urban freight vehicles based on system dynamics[J]. J Highw Transport Res Dev, 2017, 34(5): 150-158. (in Chinese) | |
| [3] | 张道文, 李敏, 庞劭荣, 等. 重型货车与二轮车事故致因及其拓扑层级分析[J]. 汽车安全与节能学报, 2023, 14(2): 157-164. |
| ZHANG Daowen, LI Min, PANG Shaorong, et al. A study on the dynamic response of an electric bicycle cyclist and a car collision[J]. J Autom Safe Energ, 2023, 14(2): 157-164. (in Chinese) | |
| [4] | 马兴会, 马国清, 冯居辉, 等. 电动两轮车及自行车与汽车碰撞损伤对比分析[J]. 汽车技术, 2021(3): 51-56. |
| MA Xinghui, MA Guoqing, FENG Juhui, et al. Comparative analysis of collision damage between electric two-wheelers and bicycles and automobiles[J]. Autom Tech, 2021(3): 51-56. (in Chinese) | |
| [5] | 薛海涛, 李海波, 赵小羽, 等. 汽车—电动自行车与汽车—自行车碰撞中骑车人动力学响应对比研究[J]. 公路与汽运, 2021(6): 37-42. |
| XUE Haitao, LI Haibo, ZHAO Xiaoyu, et al. Comparative study of cyclist dynamic response in automobile-electric bicycle and car-bicycle collision[J]. Highw Autom Appl, 2021(6): 37-42. (in Chinese) | |
| [6] | 胡林, 方胜勇, 陈强. 基于正交实验的汽车-两轮车碰撞事故再现的参数影响研究[J]. 汽车工程, 2016, 38(5): 567-573. |
| HU Lin, FANG Shengyong, CHEN Qiang. A Research on the parameter influences of the accident reconstruction for a car-motorcycle collision based on orthogonal experiments[J]. Autom Engi, 2016, 38(5): 567-573. (in Chinese) | |
| [7] | 刘娜, 周华, 张道文, 等. 碰撞形态对两轮车及骑车人运动响应的影响研究[J]. 广西大学学报: 自然科学版, 2017, 42(6): 2089-2096. |
| LIU Na, ZHOU Hua, ZHANG Daowen, et al. A study on effect of collision form on motion response of two-wheelers vehicles and riders[J]. J Guangxi Univ: Nat Sci Ed, 2017, 42(6): 2089-2096. (in Chinese) | |
| [8] | 农立勇, 李雅禄. 基于物联网的大货车盲区监控与预警辅助驾驶系统设计[J]. 时代汽车, 2025(8): 115-117. |
| NONG Liyong, LI Yalu. Design of blind spot monitoring and early warning assisted driving system for large trucks based on the internet of things[J]. Autom Time, 2025(8): 115-117. (in Chinese) | |
| [9] | Pokorny P, Drescher J, Pitera K, et al. Accidents between freight vehicles and bicycles, with a focus on urban areas[J]. Transport Res Rec, 2017, 25: 999-1007 |
| [10] |
Hickman J, Hanowski R, Bocanegra J. A synthetic approach to compare the large truck crash causation study and naturalistic driving data[J]. Accid Anal Prev, 2018, 112: 11-14.
doi: S0001-4575(17)30444-X pmid: 29306085 |
| [11] | 张翔, 王丙雨, 杨垚, 等. 货车-两轮车前碰撞事故中骑行者运动学响应及损伤分析[J]. 汽车工程学报, 2024, 14(2): 294-303. |
| ZHANG Xiang, WANG Bingyu, YANG Yao, et al. Analysis of kinematic response and injuries to riders in frontal collisions between trucks and two-wheelers[J]. J Autom Engi, 2024, 14(2): 294-303. | |
| [12] | 中华人民共和国公安部. GB/T 33195-2016: 道路交通事故车辆速度鉴定[S/OL]. (2016-12-13) http://c.gb688.cn/bzgk/gb/showGb?type=online&hcno=4477946C3B913E4307355223CB323A0B. |
| Ministry of Public Security of the People’s Republic of China. GB/T 33195-2016: Identification for the speed of vehicle involved in road traffic accident[S/OL]. (2016-12-13) http://c.gb688.cn/bzgk/gb/showGb?type=online&hcno=4477946C3B913E4307355223CB323A0B. (in Chinese) | |
| [13] | 中华人民共和国公安部. GA/T 1133-2014: 基于视频图像的车辆行驶速度技术鉴定[S/OL]. (2014-02-10) https://std.samr.gov.cn/hb/search/stdHBDetailed?id=8B1827F218A9BB19E05397BE0A0AB44A. |
| Ministry of Public Security of the People’s Republic of China. GA/T 1133-2014: Vehicle speed identification based on video[S/OL]. (2014-02-10) https://std.samr.gov.cn/hb/search/stdHBDetailed?id=8B1827F218A9BB19E05397BE0A0AB44A. (in Chinese) | |
| [14] | 韩学源, 金先龙, 张晓云, 等. 基于视频图像与直接线性变换理论的车辆运动信息重构[J]. 汽车工程, 2012, 34(12): 1145-1149. |
| HAN Xueyuan, JIN Xianlong, ZHANG Xiaoyun, et al. Vehicle movement information reconstruction based on video images and DLT theory[J]. Autom Engi, 2012, 34(12): 1145-1149. (in Chinese) | |
| [15] | 杨垚, 王丙雨, 张翔, 等. 基于视频的电动两轮车-行人碰撞事故特征和场景分析[J]. 汽车安全与节能学报, 2025, 16(3): 396-404. |
| YANG Yao, WANG Bingyu, ZHANG Xiang et al. Scenarios of electric two-wheeler and pedestrian collision accidents based on video information[J]. J Autom Safe Energ, 2025, 16(3): 396-404. (in Chinese) | |
| [16] | 韩勇, 贺伟, 李泉, 等. 基于视频信息的汽车碰撞事故中骑行人运动学响应分析[J]. 汽车安全与节能学报, 2017, 8(4): 381-387. |
| HAN Yong, HE Wei, LI Quan, et al. Analysis of two-wheelers kinematics before/during/after vehicle collisions based on video records[J]. J Autom Safe Energ, 2017, 8(4): 381-387. (in Chinese) | |
| [17] | 国家市场监督管理总局. GB/T 10000—2023: 中国成年人人体尺寸[S/OL]. (2023-08-06) https://openstd.samr.gov.cn/bzgk/gb/newGbInfo?hcno=B19DCCA575D9406856ABF87A511EE11F. |
| Ministry of Public Security of the People’s Republic of China. GB/T 10000—2023: Human dimensions of Chinese adults[S/OL]. (2023-08-06) https://openstd.samr.gov.cn/bzgk/gb/newGbInfo?hcno=B19DCCA575D9406856ABF87A511EE11. (in Chinese) | |
| [18] | 聂进, 张翔, 张越, 等. 货车-两轮车碰撞事故典型场景提取及关联规则分析[J]. 汽车安全与节能学报, 2024, 15(4): 503-510. |
| NIE Jin, ZHANG Xiang, ZHANG Yue, et al. Typical accident scene extraction and accident factor association rules analysis for truck-two-wheeler collisions[J]. J Autom Safe Energ, 2024, 15(4): 503-510. (in Chinese) | |
| [19] | 胡经国, 朱晓勇, 丁冉冉, 等. 碰撞假人头部性能指标HIC36及HIC15的区别研究[J]. 汽车零部件, 2022(6): 30-33. |
| HU Jingguo, ZHU Xiaoyong, DING Ranran, et al. Study on the difference between head injury criteria HIC36 and HIC15 of crash dummy[J]. Autom Parts, 2022(6): 30-33. (in Chinese) | |
| [20] |
Margulies S, Thibault L. A Proposed tolerance criterion for diffuse axonal injury in man[J]. J Biomech, 1992, 25(8): 917-923.
pmid: 1639835 |
| [21] | Ramli F, Yamazaki K. Optimal design of HGV front structure for pedestrian safety[J]. J Adva Mech Des Syst Manuf, 2012, 6(4): 541-557. |
| [22] | HUANG Yuan, ZHOU Qing, Caroline K, et al. Are riders of electric two-wheelers safer than bicyclists in collisions with motor vehicles?[J]. Accid Anal Prev, 2019, 134: Paper No 105336. |
| [1] | ZONG Jianzhuang, WU Guangqiang, MAO Libo, GUI Yuhui. Lateral control for unmanned mining trucks based on fuzzy MPC [J]. Journal of Automotive Safety and Energy, 2025, 16(4): 598-609. |
| [2] | HOU Shanshan, TAO Chao, DU Jiang, HU Zumin, XU Jin. Analysis of the distribution characteristics of overall dimensions and specific power of three axle trucks based on full sample data [J]. Journal of Automotive Safety and Energy, 2024, 15(6): 856-865. |
| [3] | CAO Liling, LIU Wei, DAI Kunpeng, ZHOU Guofeng. Path tracking control of autonomous container trucks using angular compensation LQR [J]. Journal of Automotive Safety and Energy, 2024, 15(3): 413-423. |
| [4] | LIU Zhi, LIN Miao, DAI Bing, WANG Wenxia, MENG Qingnan, MO Fuhao. Analysis of injury characteristics and risks comparison between elderly and young adult pedestrians driven by car-pedestrian collision accidents in China [J]. Journal of Automotive Safety and Energy, 2024, 15(2): 154-160. |
| [5] | ZHANG Daowen, LEI Yi, REN Yao, TANG Kaiwen, DONG Xinchi, LUO Jing, HU Wenhao. Pedestrian lower limb dynamic response and injury biomechanical analysis based on pedestrian-vehicle collision accident reconstruction [J]. Journal of Automotive Safety and Energy, 2023, 14(6): 671-680. |
| [6] | WANG Minghua, WANG Wen, CHEN Zeyu, LIU Jianzhe, OU Xunmin, REN Lei. Total ownership cost analysis of hydrogen-fuel-cell heavy-trucks in China [J]. Journal of Automotive Safety and Energy, 2023, 14(6): 762-773. |
| [7] | XU Jianmin, GONG Xiaoyan, SONG Lei, ZHENG Qingjie. Compound aerodynamic drag reduction schemes of van type trucks based on morphological bionics [J]. Journal of Automotive Safety and Energy, 2023, 14(2): 224-231. |
| [8] | LIU Tianquan, WANG Bingyu, WU He, ZOU Jun, MAO Mingxiang. Effects of the bumper stiffness characteristics on the pedestrian head injuries and the lower extremities injuries [J]. Journal of Automotive Safety and Energy, 2023, 14(1): 17-22. |
| [9] | GE Yunshan, DING Yan,Yin Hang. Research status of real driving emission measurement system for vehicles [J]. Journal Of Automotive Safety And Energy, 2017, 08(02): 111-121. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||