IP Library Granted Patent US 10,675,733
Granted Patent B2
US 10,675,733 · App. 15/415,649 · Granted Jun 9, 2020

Method and apparatus for monitoring particle laden pneumatic abrasive flow in an abrasive fluid jet cutting system

Inventors: Shijin Zhang (Chongqing, CN); Scott Veenhuizen (Covington, WA); Axel H. Henning (Black Diamond, WA)
Assignee: OMAX Corporation
B24C7/0061B24C1/045B24C7/0046B65G53/66G01F1/34G01F1/74G01F15/003G01F22/00G01L13/00
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Quick Facts
Patent No.
US 10,675,733
App. No.
15/415,649
Granted
Jun 9, 2020
Kind
B2
Abstract

An abrasive jet cutting system may include a differential pressure measurement apparatus configured to measure a differential pressure between points in an abrasive supply system. The differential pressure may be used to determine one or more conditions of the jet and the abrasive delivery. The measured differential pressure may be used in a feedback control system, feed forward control system, and/or an alarm or safety system.

Claims (30)

1. A method of monitoring an abrasive entrainment fluid jet, comprising:

deriving a significant value by compiling a relationship between a measured air pressure drop in a pneumatic abrasive particle delivery subsystem and at least one physical property or parameter of an abrasive cutting system, wherein the pneumatic abrasive particle delivery subsystem comprises an abrasive particle inlet and an abrasive particle outlet, and wherein the measured air pressure drop is measured by subtracting a first air pressure measured at a first position downstream of the abrasive particle inlet from a second air pressure measured at a second position between the first position and the abrasive particle inlet; and

monitoring the significant value while operating the abrasive cutting system;

wherein the first position is upstream of a high pressure fluid jet.

2. The method of monitoring an abrasive entrainment fluid jet of claim 1 , wherein deriving the significant value includes compiling a relationship between the measured air pressure drop and an abrasive cutting system water pressure.

3. The method of monitoring an abrasive entrainment fluid jet of claim 1 , wherein deriving the significant value includes compiling a relationship between the measured air pressure drop and an abrasive cutting system orifice diameter or mixing tube diameter.

4. The method of monitoring an abrasive entrainment fluid jet of claim 1 , wherein monitoring the significant value while operating the abrasive cutting system further comprises:

comparing the significant value with one or more pre-determined constant values to determine the condition of air flow in the abrasive particle delivery subsystem.

5. The method of monitoring an abrasive entrainment fluid jet of claim 4 , further comprising:

determining the one or more constant values by measuring the significant value at fixed conditions while the abrasive cutting system is operating properly.

6. The method of monitoring an abrasive entrainment fluid jet of claim 4 , wherein the constant value is calculated from physical properties and parameters of the abrasive cutting system.

7. The method of monitoring an abrasive entrainment fluid jet of claim 4 , wherein the constant value is determined by a combination of calculation from physical properties and parameters of the abrasive cutting system and by measuring the significant value at fixed conditions while the abrasive cutting system is operating properly.

8. The method of monitoring an abrasive entrainment fluid jet of claim 4 , wherein monitoring the significant value while operating the abrasive cutting system further comprises:

comparing the significant value with the one or more constant values to determine the condition and changes of the water jet.

9. The method of monitoring an abrasive entrainment fluid jet of claim 4 , wherein monitoring the significant value while operating the abrasive cutting system further comprises:

comparing the significant value with the one or more constant values to determine the condition and changes in abrasive flow.

10. The method of monitoring an abrasive entrainment fluid jet of claim 4 , wherein monitoring the significant value while operating the abrasive cutting system further comprises:

comparing the significant value with the one or more constant values to determine an amount of abrasive particles.

11. The method of monitoring an abrasive entrainment fluid jet of claim 1 , further comprising:

displaying at least one of the monitored significant value or a reference value.

12. The method of monitoring an abrasive entrainment fluid jet of claim 1 , further comprising:

generating a statistical value corresponding to variations in the monitored significant value.

13. The method of monitoring an abrasive entrainment fluid jet of claim 1 , further comprising:

analyzing the performance of the abrasive cutting system by comparing monitored significant values or a statistical value corresponding to variations in the monitored significant value against other significant values.

14. The method of monitoring an abrasive entrainment fluid jet of claim 13 , wherein the analysis is performed by an abrasive fluid jet controller.

15. The method of monitoring an abrasive entrainment fluid jet of claim 13 , wherein the analysis is performed by a computer operatively coupled to the abrasive fluid jet controller via a data interface.

16. The method of monitoring an abrasive entrainment fluid jet of claim 1 , further comprising:

actuating an alarm output, including displaying or transmitting a notification, in response to the monitored significant value changing by an amount corresponding to an alarm.

17. The method of monitoring an abrasive entrainment fluid jet of claim 1 , further comprising:

pausing the abrasive fluid jet cutter at a next convenient point or immediately stopping the abrasive fluid jet cutter in response to the monitored significant value changing by a corresponding amount.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 23, 2025
From: OMAX CORPORATION
To: HYPERTHERM, INC.
Reel/Frame 071018/0319 →
SECURITY INTEREST Recorded Jun 6, 2019
From: OMAX CORPORATION; HYPERTHERM, INC.
To: BANK OF AMERICA, N.A.
Reel/Frame 049404/0698 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2018
From: ZHANG, SHIJIN; HENNING, AXEL; VEENHUIZEN, SCOTT
To: OMAX CORPORATION
Reel/Frame 045510/0987 →
Cited By (4)
US 12,214,471 US 12,350,790 US 12,403,621 US 12,605,803