DocumentCode
246635
Title
Analysis of Mechanical Properties Based on the Cutting Breaking Process of Solid Ice-Snow
Author
Li Yaqin ; Wu Wenfu ; Wang Junfa ; Qiu Xinwei
Author_Institution
Biol. & Agric. Eng. Coll., Jilin Univ., Changchun, China
fYear
2014
fDate
20-23 Dec. 2014
Firstpage
80
Lastpage
83
Abstract
In winter, our country northern regions snowfall has the characteristics of lasting a long period, large amount and wide of snow. The temperature lower is the reason why snow isn´t melted for a long time, the road will form a hard solid ice and snow with membrane on its surface by means of vehicles and pedestrians repeatedly rolling, which has caused great inconvenience to vehicle traffic and people travel. Effective removal of solid ice-snow is an important means to solve the icy snow in winter. Analysis the characteristics of solid ice-snow fracture damage based on the cutting and breaking process of solid ice-snow. According to the characteristics of solid ice-snow brittle fracture, its physical and mechanical properties of the model is established, and then establishing its mathematical model. This model better describes the solid ice-snow fracture failure conditions and points out the impact of cutting resistance factor, which provides theoretical reference for cutting resistance analysis and designing snow removal equipment when solid ice-snow removal.
Keywords
cutting; fracture; ice; snow; cutting breaking process; cutting resistance analysis; hard solid ice; icy snow; mathematical model; mechanical properties; membrane; pedestrians; snow removal equipment design; solid ice-snow fracture damage; solid ice-snow removal; vehicle traffic; vehicles; winter; Force; Ice; Immune system; Mathematical model; Snow; Solids; Stress; Cutting resistance; Mechanical properties; Solid ice-snow;
fLanguage
English
Publisher
ieee
Conference_Titel
Future Generation Communication and Networking (FGCN), 2014 8th International Conference on
Conference_Location
Haikou
Print_ISBN
978-1-4799-7779-6
Type
conf
DOI
10.1109/FGCN.2014.27
Filename
7024349
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