Národní úložiště šedé literatury Nalezeno 2 záznamů.  Hledání trvalo 0.00 vteřin. 
Optimization of HIC criterion during head impactor hit into the car hood
Kysilko, Vít ; Dobeš, Martin (oponent) ; Vrbka, Jan (vedoucí práce)
Due to still considerable number of death persons during car accidents, the car producers aim is to proper design of car to reduce severity consequence caused by accidents. During collision of head impactor with bonnet of car, the impactor is decelerated and to resultant deceleration curve is applied HIC criterion. HIC shows the rate of possible head injury during collision. Main aim of thesis is to look for most appropriate deceleration curve of child head impactor with collision of Škoda Superb II bonnet from HIC point of view, additionally to propose modification to bonnet structure and surrounding parts to approach of real decelera- tion curve to analytical physiologically admissible variant. The problem is solved, making use of computational modeling utilizing the explicit variant of Finite Element Method (FEM). In the first part of thesis, the data are analyzed from collision of child head impactor into the bonnet structure, especially data are analyzed of energy absorbed by bonnet. Mentioned data were provided by Škoda Auto a.s. Next part deals with design of analytical deceleration curves by using sinusoidal, rectangular and triangular functions. Further the 2 peak trian- gular function of deceleration is proposed and modifiable by parameters. Optimization of approximated geometry model of bonnet structure according to previously proposed 2 peak triangular function is done. In next part the original geometry model of bonnet is modified according to optimal deceleration curve.
Optimization of HIC criterion during head impactor hit into the car hood
Kysilko, Vít ; Dobeš, Martin (oponent) ; Vrbka, Jan (vedoucí práce)
Due to still considerable number of death persons during car accidents, the car producers aim is to proper design of car to reduce severity consequence caused by accidents. During collision of head impactor with bonnet of car, the impactor is decelerated and to resultant deceleration curve is applied HIC criterion. HIC shows the rate of possible head injury during collision. Main aim of thesis is to look for most appropriate deceleration curve of child head impactor with collision of Škoda Superb II bonnet from HIC point of view, additionally to propose modification to bonnet structure and surrounding parts to approach of real decelera- tion curve to analytical physiologically admissible variant. The problem is solved, making use of computational modeling utilizing the explicit variant of Finite Element Method (FEM). In the first part of thesis, the data are analyzed from collision of child head impactor into the bonnet structure, especially data are analyzed of energy absorbed by bonnet. Mentioned data were provided by Škoda Auto a.s. Next part deals with design of analytical deceleration curves by using sinusoidal, rectangular and triangular functions. Further the 2 peak trian- gular function of deceleration is proposed and modifiable by parameters. Optimization of approximated geometry model of bonnet structure according to previously proposed 2 peak triangular function is done. In next part the original geometry model of bonnet is modified according to optimal deceleration curve.

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