IP Library Granted Patent US 11,623,490
Granted Patent B2
US 11,623,490 · App. 16/891,829 · Granted Apr 11, 2023

Vibration attenuation assembly

Inventors: José Bernardo Hernández Sánchez (Metepec, MX); Jesús Gerardo Brito (Toluca, MX)
Assignee: NISSAN NORTH AMERICA, INC.
B60G15/067B60G2202/312B60G2204/128B60G2204/45B60G2400/91
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Quick Facts
Patent No.
US 11,623,490
App. No.
16/891,829
Granted
Apr 11, 2023
Kind
B2
Abstract

A vibration attenuation assembly that includes a strut weight configured to attenuate resonant frequency of a vehicle strut assembly. The strut weight has an upper surface and a lower surface. The strut weight has a rod receiving opening that extends from a central area of the upper surface to the lower surface. The upper surface has a conical shape.

Claims (38)

1. A vibration attenuation assembly, comprising:

a vehicle body structure that includes a strut attachment structure with an upper surface and a lower surface, with a single opening extending from the lower surface to the upper surface;

a strut assembly substantially installed below the lower surface of the strut attachment structure, the strut assembly having a single rod with an upper end that extends through the single opening in the strut attachment structure to a predetermined location above the upper surface of the strut attachment structure, the strut assembly including an insulator stopper;

a strut weight overlaying a portion of the upper surface of the strut attachment structure and having a rod receiving opening with a section of the upper end of the rod extending therethrough, the insulator stopper being installed between the upper surface of the strut attachment structure and a lower surface of the strut weight with a gap being defined between an upper surface of the insulator stopper and the lower surface of the strut weight, the gap being provided such that a portion of the insulator stopper flexes toward the lower surface of the strut weight reducing the gap in response to strut rebound movement; and

a strut attachment fastener installed to the upper end of the rod retaining the strut assembly to the strut attachment structure and retaining the strut weight to the rod.

2. The vibration attenuation assembly according to claim 1 , wherein

the strut attachment structure of the vehicle body structure defines a first resonant frequency and the strut assembly defines a second resonant frequency, the first resonant frequency being close to or the same as the second resonant frequency in the absence of the strut weight, and

the strut weight having a predetermined mass that changes and attenuates the second resonant frequency of the strut assembly in order to prevent propagation of mechanical vibrations between the strut attachment structure and the strut assembly.

3. The vibration attenuation assembly according to claim 1 , wherein

the strut attachment structure is at least partially defined by an upper area of a strut tower structure of the vehicle body structure.

4. The vibration attenuation assembly according to claim 1 , wherein

the strut weight has an upper surface and the lower surface with the rod receiving opening extending from a center of the lower surface of the strut weight to a center of the upper surface of the strut weight.

5. The vibration attenuation assembly according to claim 4 , wherein

the upper surface of the strut weight has a counterbore axially aligned with the rod receiving opening with the strut attachment fastener being at least partially disposed within the counterbore.

6. The vibration attenuation assembly according to claim 4 , wherein

the upper surface of the strut weight has a conical shape.

7. The vibration attenuation assembly according to claim 6 , wherein

the lower surface of the strut weight defines a concaved area.

8. The vibration attenuation assembly according to claim 1 , wherein

the insulator stopper is at least partially disposed within a concaved area of the lower surface of the strut weight.

9. A vibration attenuation assembly, comprising:

a vehicle body structure that includes a strut attachment structure with an upper surface and a lower surface, with a single opening extending from the lower surface to the upper surface;

a strut assembly substantially installed below the lower surface of the strut attachment structure, the strut assembly having a single rod with an upper end that extends through the single opening in the strut attachment structure to a predetermined location above the upper surface of the strut attachment structure;

a strut weight overlaying a portion of the upper surface of the strut attachment structure and having a rod receiving opening with a section of the upper end of the rod extending therethrough, the strut weight being configured to attenuate a resonant frequency of the strut assembly, the strut weight having an upper portion and a central portion, the upper portion having an upper surface and the central portion having a lower surface, a rod receiving opening extending from a central area of the upper surface of the strut weight to the lower surface of the strut weight, an outer radial portion of the upper surface of the strut weight having a conical shape, the central portion of the strut weight extending downward from the upper portion and having a cylindrical shape; and

a strut attachment fastener installed to the upper end of the rod retaining the strut assembly to the strut attachment structure and retaining the strut weight to the rod.

10. The vibration attenuation assembly according to claim 9 , wherein

the upper surface of the strut weight has a cylindrically shaped counterbore axially aligned with the rod receiving opening, the counterbore being dimensioned such that the strut attachment fastener fastened to the single rod is located in its entirety below a topmost surface of the upper surface of the strut weight.

11. The vibration attenuation assembly according to claim 10 , wherein

the strut assembly includes an insulator stopper that is installed between the upper surface of the strut attachment structure and the lower surface of the strut weight.

12. The vibration attenuation assembly according to claim 11 , wherein

a gap is defined between an upper surface of the insulator stopper and the lower surface of the strut weight, the gap being provided such that a portion of the insulator stopper flexes toward the lower surface of the strut weight reducing the gap in response to strut rebound movement.

13. The vibration attenuation assembly according to claim 9 , wherein

a mid-portion of the lower surface of the strut weight is located vertically below a topmost portion of the upper surface of the strut weight.

14. The vibration attenuation assembly according to claim 9 , wherein

the strut attachment structure of the vehicle body structure defines a first resonant frequency and the strut assembly defines a second resonant frequency, the first resonant frequency being close to or the same as the resonant frequency in the absence of the strut weight, and

the strut weight having a predetermined mass that changes and attenuates the second resonant frequency of the strut assembly in order to prevent mechanical vibrations from being generated between the strut attachment structure and the strut assembly.

15. The vibration attenuation assembly according to claim 9 , wherein

a topmost section of the upper surface of the strut weight and a lowermost section of a lowermost surface of the central portion defines a first distance and an outermost diameter of the strut weight defines a second distance that is greater than the first distance.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2023
From: NISSAN NORTH AMERICA, INC.
To: NISSAN MOTOR CO., LTD.
Reel/Frame 065083/0338 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2020
From: HERNÁNDEZ SÁNCHEZ, JOSÉ BERNARDO; BRITO, JESÚS GERARDO
To: NISSAN NORTH AMERICA, INC.
Reel/Frame 052828/0845 →
Continuity (1)
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