ENDLESS TRACTION MECHANISM TENSIONER
A tensioning device for an endless traction mechanism for a motor is provided and includes a housing ( 1 ) that has a cylinder chamber ( 9 ) for holding hydraulic fluid, a piston ( 2 ) that is supported so that it can slide in the cylinder chamber ( 9 ) and is biased by a spring ( 3 ), and a valve ( 4 ) that is arranged on the base ( 10 ) of the housing ( 1 ) and connects the cylinder chamber ( 9 ) to an oil supply space ( 8 ) . In the base ( 10 ) of the housing ( 1 ), there is at least one groove ( 5 ) that allows a ventilation of the cylinder chamber ( 9 ).
1 . A tensioning device for an endless traction mechanism in a motor, the tensioning device comprising:
a housing ( 1 ) that has a cylindrical chamber ( 9 ) for holding hydraulic fluid,
a piston ( 2 ) that is supported for sliding movement in the cylinder chamber ( 9 ) and is biased by a spring ( 3 ), and
a valve ( 4 ) that is arranged on a base ( 10 ) of the housing ( 1 ) and connects the cylinder chamber ( 9 ) to an oil supply space ( 8 ), and
at least one groove ( 5 ) that allows a ventilation of the cylinder chamber ( 9 ) located in the base ( 10 ) of the housing ( 1 ).
2 . The tensioning device according to claim 1 , wherein a defined leakage gap A that essentially defines a damping behavior of the tensioning device is formed by the at least one groove ( 5 ).
3 . The tensioning device according to claim 1 , wherein an inner diameter (D) of the housing ( 1 ) in a region of the valve ( 4 ) is selected so that, between the valve ( 4 ) and an inner wall of the housing ( 1 ), a defined leakage gap B is set by which a damping behavior of the tensioning device is essentially defined.
4 . The tensioning device according to claim 2 , wherein the damping behavior of the tensioning device is defined essentially by the leakage gap A and a leakage gap B that is defined between an inner diameter (D) of the housing ( 1 ) in a region of the valve ( 4 ) and the valve ( 4 ).
5 . The tensioning device according to claim 1 , wherein there are several of the grooves ( 5 ) directed in a radial direction and the grooves ( 5 ) are arranged equidistant on an imaginary circular path.
6 . The tensioning device according to claim 5 , wherein four of the grooves are arranged on the imaginary circular path at intervals of 90°.
7 . The tensioning device according to claim 5 , wherein an annular groove ( 11 ) is located in the base ( 10 ) of the housing ( 1 ) into which the grooves ( 5 ) open.
8 . The tensioning device according to claim 1 , wherein the at least one groove ( 5 ) is arranged in a sealing surface ( 12 ) arranged on the base ( 10 ).
9 . The tensioning device according to claim 8 , wherein the valve ( 4 ) has a closure body that contacts the sealing surface ( 12 ) and has a valve opening that can be closed by a spring-loaded valve body.
10 . The tensioning device according to claim 1 , wherein the housing ( 1 ) is a deep-drawn or extruded housing.