Vibration isolation blender system
A blender base is generally described. The blender base includes a base frame. An outer shell may be connected to the base frame. A motor housing is supported by the base frame and positioned inside the outer shell. The motor housing is isolated from direct connection with the outer shell to reduce the transfer of noise and vibration from the motor to the outer shell.
1. A blender base comprising:
a base frame;
a housing comprising a main body and a top shell, wherein the housing is operatively attached to the base frame;
a motor;
a motor housing operatively housing the motor, wherein the motor housing is isolated from directly contacting the housing via at least one bottom gasket;
a fan housing disposed generally below the motor housing;
at least one fan gasket disposed between the fan housing and the motor housing; and
a motor plate configured to operatively couple with the main body and top shell of the housing, wherein the motor plate is isolated from the top shell and the main body by at least one second gasket.
2. The blender base of claim 1 , wherein the motor housing is isolated from directly contacting the housing and the fan housing.
3. The blender base of claim 1 , further wherein the fan housing is monolithically formed with the base frame.
4. The blender base of claim 1 , wherein the motor plate is overmolded with the at least one gasket.
5. The blender base of claim 1 , wherein the housing comprises an inner shell and an outer shell.
6. The blender base of claim 1 , wherein the motor plate is directly attached to the motor housing.
7. A blender base comprising:
a motor housing that houses a motor;
a base frame;
a fan housing disposed generally below the motor housing;
at least one fan gasket disposed between the fan housing and the motor housing; and
a second gasket disposed between the base frame and the motor housing, wherein the motor housing does not directly contact the base frame.
8. The blender base of claim 7 , further comprising a motor plate operatively attached to the motor housing.
9. The blender base of claim 8 , further comprising a housing operatively enclosing the motor housing and operatively attached to the base frame.
10. The blender base of claim 9 , wherein the motor plate is disposed generally above side walls of the housing, and wherein the motor is suspended from the motor plate within the housing.
11. The blender base of claim 7 , wherein a portion of the base frame contacts the second gasket and a portion of the motor housing contacts the second gasket.
12. The blender base of claim 11 , wherein the portion of the base frame, the second gasket, and the portion of the motor housing comprise a flexible joint.
13. The blender base of claim 7 , wherein the fan gasket and second gasket comprise an elastomeric material.
14. A blender device comprising:
a base frame;
side walls extending upwards from the base frame, wherein the base frame and the side walls define a cavity;
a motor plate disposed above the side walls and operatively attached to a top side of a motor housing;
a fan housing disposed generally below the motor housing;
at least one fan gasket disposed between the fan housing and the motor housing;
a first gasket disposed between the motor plate and the side walls; and
a second gasket disposed between the base frame and a bottom side of the motor housing;
wherein the motor plate is isolated from direct contact with the side walls, and the motor housing is isolated from direct contact with the base frame.
15. The blender device of claim 14 , further comprising a pedestal disposed proximal to the motor plate.
16. The blender device of claim 14 , wherein the motor plate is directly connected to the motor housing.
17. The blender device of claim 14 , further comprising a third gasket disposed between the base frame and the side walls.