Evaluation of prevailing longitudinal forces in the couplings of electric trains

سال انتشار: 1402
نوع سند: مقاله کنفرانسی
زبان: انگلیسی
مشاهده: 69

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شناسه ملی سند علمی:

ICRARE08_054

تاریخ نمایه سازی: 10 مرداد 1402

چکیده مقاله:

administrations used to have no requirements to fatigue strength endurance of electric trains’ couplings. However, mass decommissioning of ICE۱ trains in Germany due to cracked couplings and two coupling breakages of electric train in Russia happened. Forces transferred through couplings are low-levelled which are not compared with couplings’ yield stress. Consequently, abovementioned problems arise from fatigue damage. Need for detection of forces in electric trains’ couplings, devel-opment of fatigue strength requirements and test methodologies became obvious.In ۲۰۲۲ VNIIZHT assessed forces into couplings of different electric trains under low and high tem-peratures; mileage was ۹ ۶۰۰ km. Maximal recorded forces under compression and tension were +۱۱۷/-۱۲۸ kN – far less than yield stress of electric train couplings (+۱۵۰۰/-۱۰۰۰ kN). It verifies as-sumed fatigue damage.After data processing, statistical distribution of peak-to-peak amplitudes of forces in couplings per run unit and per service life of electric train (۴۰ years) with account of their average annual run (۱۳۰ and ۱۷۰ ths. km for electric trains with constructional speed ۱۲۰ and ۱۶۰ km/h accordingly) was de-rived. Impact of forces of different levels to fatigue strength was calculated regarding to fatigue curve, and value of peak-to-peak amplitudes was set to ۴ (normalized couplings) and ۵ (quenched and tempered couplings).Estimated required resource values for couplings under multi-cycle load during service life of electric train and average annual run was ۷.۳۸ . ۱۰۱۵ kN۴ (normalized couplings); ۱.۴۳ . ۱۰۱۸ kN۵ (quenched and tempered). Values and measures of this parameter do not have transparent physical meaning, but they set specific requirements to couplings’ endurance that can be checked during tests.Endurance under cyclic loading depends not only on quantity of amplitudes of forces of each level, but also on asymmetry coefficient of load cycle R = Pmin/Pmax. In terms of endurance, most rigid is symmetrical cycle with forces of different signs (R = -۱), which predominantly corresponds with lon-gitudinal forces transferred through electric trains’ couplings in operation.Developed methodology contains specific quantities of load cycles depending on force amplitude and asymmetry coefficient of load cycle R.

نویسندگان

Vladimir Belyaev

Leading Researcher, Laboratory for Automatic Coupling, Joint Stock Company “Railway Research Institute” (JSC “VNIIZHT”), Moscow, Russian Federation