id	author	title	date	pages	extension	mime	words	sentence	flesch	summary	cache	txt
ap-1283	Čech, I.	A Model of Active Roll Vehicle Suspension	2010	10	.pdf	application/pdf	4892	211	66	From the inertia of the axle 0 = 2s2mw2(y 2 w/4 + tn · z2tw + tn · r2wx)· 2/yw · Zw2 from the unevennesses +ywkw2(Zw2 − Zk2) from the suspension −ycSbw2 from the lateral forces in the joint Sqb, Sqs +zqxw1/xw · (Sqb + Sqs) from the lateral motion of the axle −2tn · mw2(ztw − zq)(Ac − s2 · Yky2) from the weight of the displaced mass centre −2tn · mw2ztw · 2agZw2/yw from the weight of the body and seat to the displaced axle + 8(mb +ms)agzqZw2/yw · xw1/xw (3.8) Equation of lateral forces Lateral forces between the wheels and the road 0 = −2ky1Yky1 − 2ky2Yky2 inertia forces of the body and seat +Sqb + Sqs from solid axle roll +s2 · mw2 · ztw · 2/yw · (tn · Zw2 + nz · Zb) 18 Acta Polytechnica Vol. 50 − Zb, Zsb2 =Zs2 − Zb Dynamic-to-static ratio of lateral forces between wheels and road, front and rear Sy1/sst1 = ky1Yky1/sst1 , Sy2/sst2 = ky2Yky2/sst2 .	cache/ap-1283.pdf	txt/ap-1283.txt
