IP Library › Granted Patent US 9,377,375
Granted Patent B2
US 9,377,375 · App. 13/472,880 · Granted Jun 28, 2016

Repetitive shock vibration testing system and method

Inventors: John Alderson (Holland, MI); Joseph D. Wetzel (Hudsonville, MI)
Assignee: Venturedyne, Ltd.
G01M7/022
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Quick Facts
Patent No.
US 9,377,375
App. No.
13/472,880
Granted
Jun 28, 2016
Kind
B2
Abstract

In operating a vibration testing system, a table is provided with a plurality of distinct regions, and each of the plurality of distinct regions is provided with at least one vibrator of the plurality of vibrators and at least one accelerometer of the plurality of accelerometers. Target vibration strengths are set for each region, and the vibrators are operated. Local vibration strength is measured at each distinct region with the corresponding accelerometer(s) of the plurality of accelerometers. A signal corresponding to each of the measured local vibration strengths is provided to a controller. An individual vibrator control signal is calculated for each distinct region based on the corresponding measured local vibration strength and the corresponding target vibration strength. The individual control signals are provided from the controller to control the vibrator(s) of each distinct region to achieve the target vibration strength at each of the distinct table regions.

Claims (52)

1. A method of operating a repetitive shock vibration testing system including a table configured to receive at least one product for testing, a plurality of vibrators coupled to the table and operable to impact the table with a range of impact strengths, and a plurality of accelerometers, the method comprising:

providing the table with a plurality of distinct regions;

providing each of the plurality of distinct regions with at least one vibrator of the plurality of vibrators and at least one accelerometer of the plurality of accelerometers;

securing the at least one product to the table;

setting a target vibration strength for each of the plurality of distinct regions;

operating the plurality of vibrators to repeatedly impact the table to induce repetitive shock on the table and the at least one product received by the table;

measuring local vibration strength at each of the plurality of distinct regions with the corresponding at least one accelerometer of the plurality of accelerometers;

providing a signal corresponding to each of the measured local vibration strengths to a controller;

calculating an individual control signal for the at least one vibrator of each distinct region based on the corresponding measured local vibration strength and the corresponding target vibration strength; and

providing the individual control signals from the controller to control the at least one vibrator of each distinct region to achieve the target vibration strength at each of the plurality of distinct regions of the table.

2. The method of claim 1 , further comprising repeating each of the following steps throughout operation of a repetitive shock test on the at least one product to maintain the target vibration strength at each of the plurality of distinct regions of the table:

measuring local vibration strength at each of the plurality of distinct regions with the corresponding at least one accelerometer of the plurality of accelerometers;

providing a signal corresponding to each of the measured local vibration strengths to the controller;

calculating an individual control signal for the at least one vibrator of each distinct region based on the corresponding measured local vibration strength and the corresponding target vibration strength; and

providing the individual control signals from the controller to control the at least one vibrator of each distinct region to achieve the target vibration strength at each of the plurality of distinct regions of the table.

3. The method of claim 1 , wherein each of the plurality of accelerometers measures local vibration strength directly from the table.

4. The method of claim 1 , wherein at least one of the plurality of accelerometers measures local vibration strength directly from the at least one product.

5. The method of claim 1 , wherein each of the plurality of accelerometers measures local vibration strength directly from the at least one product.

6. The method of claim 1 , wherein each of the plurality of distinct regions is provided with a single one of the plurality of vibrators.

7. The method of claim 1 , wherein the target vibration strength for at least two of the plurality of distinct regions of the table are different.

8. The method of claim 1 , wherein operating the plurality of vibrators to repeatedly impact the table to induce repetitive shock on the table and the at least one product received by the table includes delivering bursts of pressurized air through a plurality of electronically controlled valves, and wherein providing the individual control signals from the controller to control the at least one vibrator of each distinct region to achieve the target vibration strength at each of the plurality of distinct regions of the table includes providing the individual control signals to the corresponding plurality of electronically-controlled valves.

9. The method of claim 8 , further comprising controlling no more than one vibrator with each of the plurality of electronically-controlled valves.

10. The method of claim 8 , further comprising controlling multiple vibrators of a particular one of the plurality of distinct regions with a single one of the plurality of electronically-controlled valves.

11. The method of claim 1 , wherein the target vibration strength is uniform for all the plurality of distinct regions of the table.

12. The method of claim 11 , further comprising

providing an additional distinct region of the table with at least one additional vibrator and without any of the plurality of accelerometers;

calculating an individual control signal for the at least one additional vibrator based on the measured local vibration strengths at adjacent ones of the plurality of distinct regions and the uniform target vibration strength; and

providing the individual control signal from the controller to control the at least one additional vibrator.

13. The method of claim 11 , further comprising

providing at least one additional vibrator on a boundary between adjacent ones of the plurality of distinct regions;

calculating an individual control signal for the at least one additional vibrator based on the measured local vibration strengths at the adjacent ones of the plurality of distinct regions and the uniform target vibration strength; and

providing the individual control signal from the controller to control the at least one additional vibrator.

14. A repetitive shock vibration testing system comprising:

a table configured to receive at least one product for testing, the table having a plurality of distinct regions;

a plurality of vibrators attached to the table and configured to impact the table with a range of impact strengths to induce repetitive shock on the table, wherein the plurality of vibrators are arranged with at least one vibrator in each distinct region;

a plurality of accelerometers, wherein each of the plurality of accelerometers is configured to measure local vibration strength at one of the plurality of distinct regions; and

a controller coupled to the plurality of vibrators and the plurality of accelerometers, the controller being programmed to receive a target vibration strength for each of the plurality of distinct regions of the table, to receive a signal corresponding to each of the measured local vibration strengths, to calculate a plurality of independent, region-specific vibrator control signals, each based on the corresponding measured local vibration strength and the corresponding target vibration strength, and to provide the plurality of vibrator control signals to control the plurality of vibrators to achieve the target vibration strength at each of the plurality of distinct regions of the table.

15. The repetitive shock vibration testing system of claim 14 , wherein each of the plurality of accelerometers is secured directly to the table.

16. The repetitive shock vibration testing system of claim 14 , further comprising a plurality of electronically controlled valves configured to deliver bursts of pressurized air to corresponding ones of the plurality of vibrators, wherein each of the plurality of electronically-controlled valves is coupled with the at least one vibrator of one of the distinct regions to control the output of the at least one vibrator, and wherein each of the plurality of electronically-controlled valves is configured to receive one of the plurality of vibrator control signals to manipulate the output of the at least one vibrator of the corresponding distinct region.

17. The repetitive shock vibration testing system of claim 14 , further comprising a user interface configured to receive the target vibration strength for each of the plurality of distinct regions and to communicate the target vibration strength for each of the plurality of distinct regions to the controller.

18. The repetitive shock vibration testing system of claim 14 , wherein a single one of the plurality of vibrators is positioned at each distinct region.

19. The repetitive shock vibration testing system of claim 14 , wherein at least one of the plurality of distinct regions has multiple vibrators of the plurality of vibrators positioned therein.

20. The repetitive shock vibration testing system of claim 14 , wherein the table includes an additional distinct region with at least one additional vibrator and without any of the plurality of accelerometers, and the controller is further configured to calculate an individual control signal for the at least one additional vibrator based on the measured local vibration strengths and the target vibration strengths of adjacent ones of the plurality of distinct regions and to provide the individual control signal from the controller to control the at least one additional vibrator.

21. The repetitive shock vibration testing system of claim 14 , further comprising at least one additional vibrator coupled to the table and positioned on a boundary between adjacent regions of the plurality of distinct regions.

22. The repetitive shock vibration testing system of claim 21 , wherein the controller is configured to control the at least one additional vibrator in relation to an average of local vibration strengths measured at the adjacent regions.

23. The repetitive shock vibration testing system of claim 14 , wherein the target vibration strength for at least two of the plurality of distinct regions of the table are different.

24. The method of claim 1 , wherein the table defines a surface to which the at least one product is secured and wherein the surface is subdivided into the plurality of distinct regions.

25. The repetitive shock vibration testing system of claim 14 , wherein the table defines a surface to which the at least one product for testing is received and wherein the surface is subdivided into the plurality of distinct regions.

26. The method of claim 1 , wherein the table moves with six degrees-of-freedom during operation of the plurality of vibrators.

27. The repetitive shock vibration testing system of claim 14 , wherein the table is mounted to provide movement in six degrees-of-freedom in response to impacts from the plurality of vibrators.

28. The method of claim 1 , wherein each of the plurality of vibrators provides impact in a direction non-orthogonal to the table.

29. The repetitive shock vibration testing system of claim 14 , wherein each of the plurality of vibrators is oriented non-orthogonally to the table.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2012
From: ALDERSON, JOHN; WETZEL, JOSEPH D.
To: VENTUREDYNE, LTD.
Reel/Frame 028217/0776 →
Continuity (1)
Related Publication 20130305828A1 · Nov 21, 2013