High-friction fluid seal and shock absorber
View Patent ↗A high-friction fluid seal used for high-friction sealing, comprising a fluid seal lip provided on the working fluid filling side to intercept a working fluid; and a dust lip provided on the working fluid non-filling side (the outer side) of the fluid seal lip to intercept dust coming from the outside, wherein the thickness of a working fluid film formed on the extension stroke by the dust lip is smaller than the thickness of a working fluid film formed on the extension stroke by the fluid seal lip.
1. A high-friction fluid seal used for high-friction sealing, comprising a fluid seal lip provided on the working fluid filling side to intercept a working fluid; and a dust lip provided on the working fluid non-filling side (the outer side) of the fluid seal lip to intercept dust coming from the outside and prevent leakage of the working fluid to the outside,
wherein by making an angle between an inclined face on the fluid seal lip side of the dust lip and a contact surface with which the fluid seal lip is in contact larger than an angle between an inclined face on the working fluid filling side of the fluid seal lip and the contact surface, the thickness of a working fluid film formed on the extension stroke by the dust lip is smaller than the thickness of a working fluid film formed on the extension stroke by the fluid seal lip, thereby substantially preventing the leakage of the working fluid past the dust lip to the outside.
2. The high-friction fluid seal according to claim 1 , wherein a highly inclined face is provided on the inside of the tip end of the dust lip, and an angle between the highly inclined face and the contact surface is made larger than an angle between a general inclined face on the inside of the dust lip and the contact surface, whereby the thickness of the working fluid film formed on the extension stroke by the dust lip is made smaller than the thickness of the working fluid film formed on the extension stroke by the fluid seal lip.
3. A cylinder-type shock absorber using a working fluid, wherein the high-friction fluid seal described in claim 2 is used as a seal between a piston rod and a cylinder body.
4. A cylinder-type shock absorber using a working fluid, wherein the high-friction fluid seal described in claim 1 is used as a seal between a piston rod and a cylinder body.
5. A high-friction fluid seal used for high-friction sealing, comprising a fluid seal lip provided on the working fluid filling side to intercept a working fluid; and a dust lip provided on the working fluid non-filling side (the outer side) of the fluid seal lip to intercept dust coming from the outside and prevent leakage of the working fluid to the outside, wherein by making a maximum surface pressure inclination on the fluid seal lip side of the dust lip larger than a maximum surface pressure inclination on the working fluid filling side of the fluid seal lip, the thickness of the working fluid film formed on the extension stroke by the dust lip is made smaller than the thickness of the working fluid film formed on the extension stroke by the fluid seal lip, thereby substantially preventing the leakage of the working fluid past the dust lip to the outside.
6. A cylinder-type shock absorber using a working fluid, wherein the high-friction fluid seal described in claim 5 is used as a seal between a piston rod and a cylinder body.
7. A cylinder-type shock absorber using a working fluid, wherein the high-friction fluid seal described in claim 2 is used as a seal between a piston rod and a cylinder body.
8. A high-friction fluid seal used for high-friction sealing, comprising:
a fluid seal lip provided on the working fluid filling side to intercept a working fluid;
a dust lip provided on the working fluid non-filling side (the outer side) of the fluid seal lip to intercept dust coming from the outside and prevent leakage of the working fluid to the outside;
the high-friction fluid seal further comprising a first angle, said first angle being between an inclined face on the fluid seal lip side of the dust lip and a contact surface with which the fluid seal lip is in contact; and
a second angle, said second angle being between an inclined face on the working fluid filling side of the fluid seal lip and the contact surface, wherein the first angle is made larger than the second angle, and wherein making the first angle larger than the second angle results in the thickness of a working fluid film formed on the extension stroke by the dust lip being smaller than the thickness of a working fluid film formed on the extension stroke by the fluid seal lip, thereby substantially preventing the leakage of the working fluid past the dust lip to the outside.