SHOCK ABSORBER
A shock absorber includes expanding-side and contracting-side chambers formed in a cylinder, a housing that forms a pressurizing chamber, a free piston that partitions the pressurizing chamber into an expansive pressurizing chamber communicating with the expanding-side chamber and a contractive pressurizing chamber communicating with the contracting-side chamber, and expanding-side and contracting-side springs that exert biasing forces for suppressing the free piston from being displaced from a neutral position. The contracting-side spring has a non-linear characteristic by which the spring constant increases as it is compressed.
1 . A shock absorber comprising:
a cylinder;
a piston slidably inserted into the cylinder to partition the cylinder into an expanding-side chamber and a contracting-side chamber;
a damping passage that communicates the expanding-side chamber to the contracting-side chamber;
a housing that forms a pressurizing chamber;
a free piston slidably inserted into the pressurizing chamber to partition the pressurizing chamber into an expansive pressurizing chamber and a contractive pressurizing chamber;
an expanding-side passage that communicates the expanding-side chamber to the expansive pressurizing chamber;
a contracting-side passage that communicates the contracting-side chamber to the contractive pressurizing chamber; and
a spring element being configured to position the free piston in a neutral position with respect to the housing, the spring element being configured to exert a biasing force for suppressing the free piston from being displaced from the neutral position,
wherein the contracting-side passage has an orifice formed to penetrate through the housing and a recess formed in an outer circumference of the free piston, the recess communicating with the contractive pressurizing chamber,
the spring element has an expanding-side spring housed in the expansive pressurizing chamber and a contracting-side spring housed in the contractive pressurizing chamber to interpose the free piston,
a flow path area of the contracting-side passage is maximized when the free piston is in the neutral position, and the recess is positioned to face the orifice,
the flow path area of the contracting-side passage is minimized when the free piston is displaced from the neutral position to compress the contractive pressurizing chamber by a predetermined displacement amount, and the recess is positioned not to face the orifice, and
the contracting-side spring has a non-linear characteristic by which a spring constant increases as it is compressed when the free piston is displaced from the neutral position to compress the contractive pressurizing chamber over the predetermined displacement amount.
2 . The shock absorber according to claim 1 , wherein the expanding-side spring has a non-linear characteristic by which the spring constant increases as it is compressed.
3 . The shock absorber according to claim 1 , wherein the contracting-side spring is a variable pitch coil spring, a conical coil spring, or a tapered coil spring.
4 . The shock absorber according to claim 1 , wherein the expanding-side spring is a variable pitch coil spring, a conical coil spring, or a tapered coil spring.
5 . The shock absorber according to claim 1 , wherein any one or both of the expanding-side spring and the contracting-side spring include(s) a spring having a long natural length and making contact with the free piston at all times, and a spring having a short natural length and making contact with the free piston to exert a spring reaction force when the free piston is displaced from the neutral position by a predetermined amount.