HIGH-PRESSURE HOSE VIBRATION SUPPRESSOR
A vibration suppressor is disclosed that is configured for use in a system having a hose under pulsating hydraulic pressure. The pulsating hydraulic pressure causes vibration of the hose at the pulsation frequency. The vibration suppressor is applied to the hose and is constructed to have a resonant frequency slightly below the pulsation frequency where the pulsating hydraulic pressure is at a peak level, due to, but not limited to, the existence of a resonance in the hydraulic system.
1 . A vibration suppressor configured for use in a system having a hose under pulsating hydraulic pressure at a pulsation frequency, wherein the pulsating hydraulic pressure causes vibration of the hose at the pulsation frequency, the vibration suppressor comprising:
a suppressor mass;
a resilient member configured to extend radially between an exterior surface of the hose and the suppressor mass; and
wherein the suppressor mass and resilient member form a mechanical system having a resonant frequency slightly below the pulsation frequency.
2 . The vibration suppressor of claim 1 , wherein the suppressor mass comprises a metal sleeve.
3 . The vibration suppressor of claim 1 , wherein the resilient member comprises an elastomer.
4 . The vibration suppressor of claim 2 , wherein the resilient member comprises a first portion configured to deform radially between a first portion of the exterior surface of the hose and the suppressor mass, and a second portion, opposite the first portion, configured to deform radially between and contact the exterior surface of the hose and the suppressor mass.
5 . The vibration suppressor of claim 1 , wherein the pulsation frequency differs from a structural resonant frequency of the hose.
6 . The vibration suppressor of claim 1 , wherein the suppressor mass and the resilient member form a single-degree-of-freedom system to suppress vibration of the hose in a lateral direction.
7 . A method for use in a system having a hose under pulsating hydraulic pressure at a pulsation frequency, the method comprising:
applying the pulsating hydraulic pressure resulting in hose vibration at the pulsation frequency; and
applying a vibration suppressor about a periphery of the hose, wherein the vibration suppressor has a resonant frequency slightly below the pulsation frequency.
8 . The method of claim 7 , wherein the step of applying the vibration suppressor comprises applying a vibration suppressor having a suppressor mass and resilient member configured to form a mechanical system having the resonant frequency slightly below the pulsation frequency.
9 . The method of claim 7 , wherein the step of applying the pulsating pressure comprises applying the pulsating pressure resulting in a vibration of the hose at a pulsation frequency that is different from a structural resonant frequency of the hose.
10 . The method of claim 7 , wherein the step of applying the vibration suppressor comprises applying a vibration suppressor to form a single-degree-of-freedom system for suppressing lateral vibration of the hose.
11 . An engine comprising:
a high-pressure pump providing hydraulic fluid at a pulsation frequency;
a distribution rail;
a hose connected to provide hydraulic fluid from the high-pressure pump to the distribution rail, wherein the hose vibrates at the pulsation frequency in response to pulsating pressure induced between the high-pressure pump and the distribution rail; and
a vibration suppressor disposed about a periphery of the hose, wherein the vibration suppressor has a resonant frequency slightly below the pulsation frequency.
12 . The engine of claim 11 , wherein the vibration suppressor comprises:
a suppressor mass; and
a resilient member configured to extend radially between an exterior surface of the hose and the suppressor mass.
13 . The engine of claim 11 , wherein the pulsation frequency at which the hose vibrates is different from a structural resonant frequency of the hose.
14 . The engine of claim 11 , wherein the vibration suppressor is formed as a single-degree-of-freedom system.
15 . The engine of claim 11 , wherein the distribution rail comprises a plurality of outputs configured to provide hydraulic fluid to a plurality of injectors.