IP Library Granted Patent US 7,298,237
Granted Patent B2
US 7,298,237 · App. 11/490,325 · Granted Nov 20, 2007

Magnetostrictive stress wave sensor

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Quick Facts
Patent No.
US 7,298,237
App. No.
11/490,325
Granted
Nov 20, 2007
Kind
B2
Abstract

A shock sensor has a housing with a Terfenol-D type sensing element positioned inside a sensing coil. A permanent biasing magnet is positioned in engagement with the Terfenol-D sensing element, and a spacer engages the Terfenol-D sensing element and extends from the housing. The housing has a beam with one or two mounting holes through which fasteners extend to mount the shock sensor to a structural member. The housing places the spacer in compression against the structural member. In an alternative embodiment a DC current can be supplied to the sensing coil to provide the biasing magnetic field. A high frequency filter separates the shock sensing signal from the applied DC biasing current.

Claims (17)

1. A shock wave sensor in an automobile comprising:

a housing, the housing having a portion providing a mounting surface for attachment to an automobile structural element;

a giant magnetostrictive sensing element mounted to the housing;

a coil mounted to the housing;

a DC power source connected to the coil to form a biasing magnet, the coil being positioned to provide a biasing magnetic field to the giant magnetostrictive sensing;

an electronic filter connected across the coil for sensing a change in magnetic field produced by a shock wave in the giant magnetostrictive sensing element;

a fastener extending between the housing and an automobile structural element to hold the mounting surface of the housing against the automobile structural element, wherein the giant magnetostrictive sensing element is directly, or through a spacer in engagement with and located between the giant magnetostrictive sensing element and the automobile structural element, loaded against the automobile structural element when the portion of the housing providing a mounting surface is held by the fastener against the automobile structural element; and

wherein the housing has a portion that extends between the mounting surface and the giant magnetostrictive sensing element, that resiliently biases the giant magnetostrictive sensing element or the spacer against the automobile structural element thereby compressively loading the giant magnetostrictive sensing element against the spacer or the automotive structural element directly to improve shock wave transmission to the giant magnetostrictive sensing element.

2. The shock wave sensor of claim 1 wherein the giant magnetostrictive sensing element is bonded to the spacer.

3. The shock wave sensor of claim 1 wherein the giant magnetostrictive sensing element is composed of Terfenol-D.

4. The shock wave sensor of claim 1 wherein the housing has two mounting surfaces, and wherein the giant magnetostrictive sensing element is located between the mounting surfaces, and wherein the housing has a portion between each mounting surface and the giant magnetostrictive sensing element that resiliently biases the giant magnetostrictive sensing element or the spacer against the automobile structural element.

5. The shock wave sensor of claim 1 further comprising a second biasing magnet between the spacing element and the giant magnetostrictive element.

6. The shock wave sensor of claim 1 wherein the spacer is a second biasing magnet.

7. The shock wave sensor of claim 1 wherein each of the magnetostrictive sensing elements, the biasing magnet and the spacer are cylindrical.

8. The shock wave sensor of claim 7 further comprises a cylindrical sleeve, having the cylindrical biasing magnet, the cylindrical giant magnetostrictive sensing element and the cylindrical spacing element loaded therein and wherein the spacing element protrudes from the sleeve and the sleeve is press fit or bonded within a cylindrical portion of the housing.

9. The shock wave sensor of claim 7 wherein the giant magnetostrictive sensing element, the biasing magnet and the spacer are press fit or bonded to the sleeve.

10. The shock wave sensor of claim 7 wherein the giant magnetostrictive sensing element has one of either the biasing magnet or the spacer bonded to the giant magnetostrictive sensing element at each end.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2014
From: KEY SAFETY SYSTEMS, INC.
To: LITTELFUSE, INC.
Reel/Frame 033115/0636 →
SECURITY INTEREST RELEASE Recorded Jun 6, 2013
From: UBS AG, STAMFORD BRANCH
To: KEY SAFETY SYSTEMS, INC.
Reel/Frame 030572/0527 →
ASSIGNMENT AND ASSUMPTION OF SECURITY INTEREST IN PATENTS Recorded Jan 4, 2013
From: CITICORP USA, INC.
To: UBS AG, STAMFORD BRANCH
Reel/Frame 029565/0125 →
SECURITY AGREEMENT Recorded May 16, 2007
From: KEY SAFETY SYSTEMS, INC; KSS HOLDINGS, INC; KSS ACQUISITION COMPANY; AEGIS KEY CORP; BREED AUTOMOTIVE TECHNOLOGY, INC; HAMLIN INCORPORATED; KEY ASIAN HOLDINGS, INC; KEY AUTOMOTIVE ACCESSORIES, INC; KEY AUTOMOTIVE OF FLORIDA, INC; KEY AUTOMOTIVE WEST, INC; KEY AUTOMOTIVE, LP; KEY CAYMAN GP LLC; KEY ELECTRONICS OF NEVADA, INC; HAMLIN ELECTRONICS LIMITED PARTNERSHIP; KEY INTERNATIONAL MANUFACTURING DEVELOPMENT CORPORATION; KEY SAFETY RESTRAINT SYSTEMS, INC; KEY SAFETY SYSTEMS FOREIGN HOLDCO, LLC; KEY SAFETY SYSTEMS OF TEXAS, INC
To: CITICORP USA, INC.
Reel/Frame 019297/0249 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2006
From: STUVE, STEVEN R.
To: KEY SAFETY SYSTEMS, INC.
Reel/Frame 018081/0775 →