Very high damping body mount, subframe mount or engine mount with bolt-through construction
View Patent ↗A hydraulic mount has an upper support member and a lower support member. An upper elastomeric spring and a lower elastomeric spring are disposed between the upper support member and the lower support member to define an upper fluid chamber and a lower fluid chamber. A channel extends between the upper and lower chambers. During compression and extension of the hydraulic mount, fluid transfers between the upper and lower chamber to provide a damping force for the hydraulic mount.
1. A mount comprising:
an upper support member;
a lower support member attached to the upper support member;
first means for damping movement between the upper support member and the lower support member in a first direction;
second means for damping movement between the upper support member and the lower support member in a second direction, the second direction being generally perpendicular to the first direction; wherein
the second damping means comprises a frictional biasing member disposed between the upper support member and the lower support member, the frictional biasing member having a first end attached to the upper support member and a second end directly engaging the lower support member, radial movement of the upper support member with respect to the lower support member causing radial sliding movement of the frictional biasing member with respect to the lower support member.
2. The mount according to claim 1 , wherein the first damping means comprises:
an upper elastomeric spring disposed between the upper support member and the lower support member;
a lower elastomeric spring disposed between the upper support member and the lower support member;
an upper chamber defined by the upper elastomeric spring;
a lower chamber defined by the lower elastomeric spring; and
a channel extending between the upper chamber and the lower chamber.
3. The mount according to claim 1 , wherein the frictional biasing member comprises:
a friction member in contact with the lower support member; and
a biasing member disposed between the friction member and the upper support member.
4. The mount according to claim 3 , wherein the biasing member is a wavy spring.
5. A mount comprising:
an annular upper support member defining a central axis;
a lower support member; attached to the annular upper support member;
means for damping movement between the annular upper support member and the lower support member in a radial direction, the radial direction being generally perpendicular to the central axis; wherein
the second damping means comprises a frictional biasing member disposed between the upper support member and the lower support member, the frictional biasing member having a first end attached to the upper support member and a second end directly engaging the lower support member, radial movement of the upper support member with respect to the lower support member causing radial sliding movement of the frictional biasing member with respect to the lower support member.
6. The mount according to claim 5 , wherein the damping means comprises:
an upper elastomeric spring disposed between the upper support member and the lower support member;
a lower elastomeric spring disposed between the upper support member and the lower support member;
a first side chamber defined by one of the upper and lower elastomeric springs;
a second side chamber defined by one of the upper and lower elastomeric springs; and
a channel extending between the first side chamber and the second side chamber.
7. The mount according to claim 5 , wherein the frictional biasing member comprises:
a friction member in contact with the lower support member; and
a biasing member disposed between the friction member and the upper support member.
8. The mount according to claim 7 , wherein the biasing member is a wavy spring.