Shock absorber with integrated displacement sensor
View Patent ↗A shock absorber include a cylinder, a piston rod coupled to the cylinder, and a piston coupled to the piston rod. The piston rod is magnetically encoded so that it includes a plurality of magnetic phase shifts. The phase shifts allow the position of the piston rod relative to the cylinder to be determined so that it can function as a displacement sensor.
1. A shock absorber comprising:
a cylinder;
a piston rod coupled to said cylinder; and
a piston coupled to said piston rod;
wherein:
said piston rod comprises a first portion of a first magnetic phase and a second portion of a second magnetic phase; and
said piston rod comprises a mechanically deformed surface at said first portion, said mechanical deformation resulting in said first magnetic phase differing from said second magnetic phase at said second portion.
2. The shock absorber of claim 1 , wherein said first portion is formed by forming a first groove in said piston rod and filling said first groove with a material having a different magnetic phase than said piston rod.
3. The shock absorber of claim 1 , wherein said piston rod is a stainless steel rod.
4. The shock absorber of claim 1 , wherein said piston rod comprises a stainless steel tube fastened to a steel core.
5. The shock absorber of claim 1 , wherein said piston rod comprises an aluminum tube fastened to a steel core.
6. The shock absorber of claim 1 , further comprising circuitry to detect a magnetic transition between said first portion and said second portion to calculate a displacement of said piston rod in said cylinder.
7. The shock absorber of claim 1 , wherein said mechanically deformed surface comprises a hammered surface.
8. The shock absorber of claim 1 , wherein said mechanically deformed surface comprises a hammered and ground surface.
9. The shock absorber of claim 1 , wherein said mechanically deformed surface comprises a compressed surface.
10. A displacement sensor for a vehicle comprising:
a shock absorber cylinder;
a piston rod disposed within said cylinder;
a first magnetic phase portion disposed on said piston rod; and
a second magnetic phase portion disposed on said piston rod, wherein
said piston rod comprises a mechanically deformed surface at said first magnetic portion, said mechanical deformation resulting in said first magnetic phase portion having a first magnetic property which differs from a second magnetic property at said second magnetic phase portion.
11. The displacement sensor of claim 10 , wherein said first magnetic phase portion has a different magnetic phase than said second magnetic phase portion.
12. The displacement sensor of claim 10 , wherein said first magnetic phase portion has a different relative magnetic permeability than said second magnetic phase portion.
13. The displacement sensor of claim 10 , wherein said first magnetic phase portion is formed by forming a first groove in said piston rod and filling said first groove with a material having a different magnetic phase than said piston rod.
14. The displacement sensor of claim 10 , wherein said mechanically deformed surface comprises a hammered surface.
15. The displacement sensor of claim 10 , wherein said mechanically deformed surface comprises a hammered and ground surface.
16. The displacement sensor of claim 10 , wherein said mechanically deformed surface comprises a compressed surface.