IP Library Granted Patent US 12663334
Granted Patent B2
US 12663334 · App. 18/495,166 · Granted Jun 23, 2026

Rocker panel restraint clamp kit, aerodynamic test assembly including same, methods of using same, and method of securing different vehicles during aerodynamic testing

Inventors: Brian Matthew Warner (Marysville, OH); James Michael Przeklasa (Marysville, OH); Matthew L. Metka (Plain City, OH)
Assignee: HONDA MOTOR CO., LTD.
G01M9/04G01M17/007
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Quick Facts
Patent No.
US 12663334
App. No.
18/495,166
Granted
Jun 23, 2026
Kind
B2
Abstract

A clamp kit and method for removably connecting a vehicle to a load cell in a wind tunnel can include a clamp module, at least one extension and a third fastener. The clamp module can include first and second jaws, a drive member, and a clamp fastener. The clamp fastener can be connected to the second jaw. The at least one extension can include first and second fasteners. The clamp module can be connected to a post member to form a first configuration clamp when the third fastener is directly connected to both of the clamp fastener and a fastener of the post member, and the clamp module and the extension can be connected to the post member to form a second configuration clamp when the first fastener is directly connected to the clamp fastener and the second fastener is directly connected to the fastener of the post member.

Claims (73)

1 . A rocker panel restraint clamp kit for removably connecting a vehicle to a load cell in a wind tunnel, comprising:

a clamp module including a first jaw, a second jaw, a drive member, and a clamp fastener, the drive member is connected to the first jaw and the second jaw and configured to displace the first jaw toward and away from the second jaw, the clamp fastener is connected to the second jaw;

at least one extension including a first fastener and a second fastener; and

a third fastener, wherein

the clamp module is configured to form a first configuration clamp when the third fastener is directly connected to both of the clamp fastener and a fastener of a post member, and

the clamp module and the extension are configured to form a second configuration clamp when the first fastener is directly connected to the clamp fastener and the second fastener is directly connected to the fastener of the post member.

2 . The rocker panel restraint clamp kit according to claim 1 , wherein the clamp module further includes a module base and a mounting member connected to the module base, the mounting member includes the first fastener.

3 . The rocker panel restraint clamp kit according to claim 1 , wherein

the at least one extension includes a first extension having a first length and a second extension having a second length that is different than the first length,

the second extension includes a fourth fastener and a fifth fastener, and

the clamp module and the second extension are configured to form a third configuration clamp when the fourth fastener is directly connected to the clamp fastener and the fifth fastener is directly connected to the fastener of the post member.

4 . The rocker panel restraint clamp kit according to claim 1 , wherein

the clamp fastener is a threaded bore, and

the first fastener, the second fastener and the third fastener are threaded studs.

5 . The rocker panel restraint clamp kit according to claim 1 , wherein at least one of the first fastener and the second fastener is a threaded stud.

6 . The rocker panel restraint clamp kit according to claim 1 , wherein the first jaw is a fixed jaw and includes a jaw base, the second jaw is a sliding jaw and is slidable along the jaw base.

7 . The rocker panel restraint clamp kit according to claim 6 , wherein the clamp module further includes,

a module base connected to the jaw base, and

a mounting member pivotally connected to the jaw base, the mounting member includes the clamp fastener.

8 . An aerodynamic test assembly for the vehicle in the wind tunnel, comprising:

the rocker panel restrain clamp kit according to claim 1 ;

a load cell configured to provide sensor data during a test session of the vehicle; and

a restraint post configured to connect the post member to the load cell.

9 . The aerodynamic test assembly according to claim 8 , wherein the first jaw and the second jaw are at a first rocker panel height when the clamp module is connected to the post member to form the first configuration clamp.

10 . The aerodynamic test assembly according to claim 9 , wherein the first jaw and the second jaw are at a second rocker panel height when the clamp module, and the extension are connected to the post member to form the second configuration clamp, the second rocker panel height is greater than the first rocker panel height.

11 . A method of using the aerodynamic test assembly according to claim 8 , comprising:

providing a first vehicle having a first rocker panel height;

clamping the one of the first configuration clamp and the second configuration clamp to a rocker panel flange of the first vehicle;

removing the one of the first configuration clamp and the second configuration clamp from the rocker panel flange;

providing a second vehicle having a second rocker panel height that is different from the first rocker panel height;

disassembling the one of the first configuration clamp first configuration clamp and the second configuration clamp and creating a different one of the first configuration clamp and the second configuration clamp; and

clamping the different one of the first configuration clamp and the second configuration clamp to a rocker panel flange of the second vehicle.

12 . A rocker panel restraint clamp kit for removably securing a vehicle to a test bed of a wind tunnel, comprising:

a first clamp including,

a first base having a first length along a longitudinal axis of the first clamp;

a first fixed jaw connected to the first base;

a first movable jaw movably mounted onto the first fixed jaw; and

a first drive member connected to the first fixed jaw and the first movable jaw and configured to displace the first movable jaw toward and away from the first fixed jaw; and

a second clamp including,

a second base having a second length along a longitudinal axis of the second clamp that is greater than the first length;

a second fixed jaw connected to the second base;

a second movable jaw movably mounted onto the second fixed jaw; and

a second drive member connected to the second fixed jaw and the second movable jaw and configured to displace the second movable jaw toward and away from the second fixed jaw;

a first mounting member pivotally connected to the first base; and

a module fastener, wherein

the first mounting member includes a clamp fastener,

the first base and the first mounting member are configured to form a first configuration of the first clamp when the module fastener is directly connected to both of the clamp fastener and a fastener of a first post member.

13 . The rocker panel restraint clamp kit for use with a clamp body of claim 12 , wherein the second clamp further includes a second mounting member pivotally connected to the second base.

14 . The rocker panel restraint clamp kit according to claim 12 , further comprising:

an extension including a first fastener and a second fastener, the first fastener is configured to connect the extension to the first base, and the second fastener is configured to connect the extension to a first post member, wherein

the first base, the first mounting member, and the extension are configured to form a second configuration of the first clamp when the first fastener is directly connected to the clamp fastener and the second fastener is directly connected to a fastener of the first post member.

15 . An aerodynamic test assembly for a vehicle in a wind tunnel, comprising:

the rocker panel restrain clamp kit according to claim 12 ;

a load cell configured to provide sensor data during a test session of the vehicle; and

a restraint post connected to the load cell and one of the first clamp and the second clamp, and the first clamp is in one of the first configuration and the second configuration when the restraint post is connected the first clamp.

16 . The rocker panel restraint clamp kit according to claim 12 , wherein

first fixed jaw is pivotally connected to the first base, and

the second fixed jaw is pivotally connected to the second base.

17 . A method of securing different vehicles during aerodynamic testing using an adjustable rocker panel restraint clamp connected to a load cell, the method comprising:

providing a first vehicle having a first rocker panel height;

creating a first configuration of the adjustable rocker panel restraint clamp by connecting a first post member directly to a clamp module of the adjustable rocker panel restraint clamp such that the adjustable rocker panel restraint clamp has a first clamp height that falls within a predetermined range of clamp heights relative to a test bed surface;

clamping the first configuration of the adjustable rocker panel restraint clamp to a rocker panel flange of the first vehicle;

removing the first configuration of the adjustable rocker panel restraint clamp from the first vehicle;

providing a second vehicle having a second ground clearance height that is greater than the first ground clearance height;

disassembling the first post member from the clamp module;

creating a second configuration of the adjustable rocker panel restraint clamp by connecting a first extension to the clamp module and connecting the first post member to the first extension such that the adjustable rocker panel restraint clamp has a second clamp height that falls within the predetermined range of clamp heights relative to the test bed surface; and

clamping the second configuration of the adjustable rocker panel restraint clamp to a rocker panel flange of the second vehicle.

18 . The method of claim 17 , further comprising:

removing the second configuration of the adjustable rocker panel restraint clamp from the second vehicle;

providing a third vehicle having a third rocker panel height that is greater than the second rocker panel height;

disassembling the first extension from each of the clamp module and the first post member;

creating a third configuration of the adjustable rocker panel restraint clamp by connecting a second extension to each of the clamp module and the first post member such that the adjustable rocker panel restraint clamp has a third clamp height that falls within the predetermined range of clamp heights relative to the test bed surface; and

clamping the third configuration of the adjustable rocker panel restraint clamp to a rocker panel flange of the third vehicle.