A novel method for evaluating load restraint assemblies to ensure the safety of railway freight transportation

Author:

Zhang Duo,Wang Su-Mei,Tang Yin-Ying,Ni Yi-Qing,Guo Jing-Wei,Peng Qi-Yuan

Abstract

AbstractThe violent goods vibration during curve negotiation is a huge threat to the vehicle running safety. Qualified load restraint assemblies that can significantly suppress the cargo vibration are necessary. This study proposes a novel method for evaluating the essential restraint strength, focusing on the relative motion between cargo and wagon. In the beginning, as a comparison, current methods are used to calculate the necessary stiffness of lashings, which are adopted to restrain the cargo vibration on the wagon. Based on the data of the field test, the accuracy of the established wagon-cargo coupled dynamics model is validated. The loaded wagon model negotiates the curve under different running and loading conditions. The simulation results and analysis demonstrate effective strategies for suppressing the vibration of the cargo and reveal the necessary lashing stiffness. The comparison among the results of different evaluation methods shows that the stability of the cargo can be improved by optimizing the lashing stiffness with the method of dynamics simulations. We hope this study will make a positive contribution to the safety of railway freight transportation.

Funder

The Hong Kong Polytechnic University’s Postdoc Matching Fund Scheme

Project of Science and Technology Research and Development Program of China State Railway Group Co., Ltd.

China Railway Lanzhou Bureau Group Co., Ltd.

the National Key Research and Development Program of China

Research Grants Council of the Hong Kong Special Administrative Region (SAR), China

National Natural Science Foundation of China

Innovation and Technology Commission of Hong Kong SAR Government

Publisher

Springer Science and Business Media LLC

Reference36 articles.

1. Andersson, N., Andersson, P., Bylander, R., Sökjer-Petersen, S. & Zether, B. Equipment for rational securing of cargo on railway wagons. MariTerm AB (2004).

2. Australian Transport Safety Bureau. Collision between shifted freight load on freight train 5MA5 and passenger train 206A Eden Hills, South Australia. Canberra (2006).

3. Australian Transport Safety Bureau. Derailment of train 3WB3. Canberra (2015).

4. Australian Transport Safety Bureau. Shifted load collision with bridge. Canberra (2016).

5. CEN. EN 12195-1:2010 Load restraining on road vehicles—safety—part 1: Calculation of securing forces (2010).

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