IP Library Granted Patent US 11,590,631
Granted Patent B2
US 11,590,631 · App. 16/540,798 · Granted Feb 28, 2023

Wet abrasive blast machine with remote control rinse cycle

Inventor: Jerry L. Fenley, Jr. (Gonzales, LA)
B24C7/0015B24C7/0038B24C3/06
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Quick Facts
Patent No.
US 11,590,631
App. No.
16/540,798
Granted
Feb 28, 2023
Kind
B2
Abstract

An improved wet abrasive blast machine with remote control rinse cycle enables a pilot operating the apparatus to control remote switching between blast and rinse cycles directly, for example from a nozzle of a blast hose or from a panel. A first and second hydraulic circuit and a pneumatic circuit are controllable via communication with a control circuit which is operable remotely to direct a configurable pilot signal between various valve states. In a preferred embodiment, the control circuit is powered pneumatically via a branch circuit fed from the pneumatic circuit. Switching between to configurations is effected by directing an air pilot signal between airflows interior to a series of valves. In an alternate embodiment switching airflows between configurations is effected electrically.

Claims (25)

1. An improved wet abrasive blast machine with remote control rinse cycle enabling remote control of blasting operations between a rinse cycle and a blast cycle, said improved wet abrasive blast machine comprising:

a first hydraulic circuit communicating waterflow to a blast pot, a slurry hose, and a blast hose;

a second hydraulic circuit communicating waterflow to the blast hose to bypassing the blast pot and the slurry hose;

a pneumatic circuit communicating outflow of air through the blast hose; and

a control circuit comprising an air pilot signal directable to enable remote switching between the first and second hydraulic circuits and to cease operations of said first and second hydraulic circuits and operation of the pneumatic circuit without deactivating action of at least one pump pressurizing said first and second hydraulic circuits nor action of a compressor feeding air to the pneumatic circuit;

wherein immediate cycling between a rinse cycle and a blast cycle is controllable remotely, and by a pilot operating said blast hose, to rapidly switch between blasting and rinsing operations when actively engaged in surface cleaning.

2. The improved wet abrasive blast machine with remote control rinse cycle of claim 1 wherein the air pilot signal is fed from airflow introduced into the pneumatic circuit upstream of a main blast air inlet valve.

3. The improved wet abrasive blast machine with remote control rinse cycle of claim 2 wherein the pilot air signal is configurable as airflow to pressurize and depressurize each of a plurality of actuators, said plurality of actuators comprising:

an actuator disposed actuating the main blast air inlet valve configured in operational communication within the pneumatic circuit, said actuator opening the main blast air inlet valve when pressurized by incident airflow;

an actuator disposed actuating a pinch valve upon the slurry hose configured in operational communication within the first hydraulic is circuit, said actuator closing the pinch valve when pressurized by incident airflow;

an actuator actuating a pinch air block valve configured in operational communication within the control circuit, said actuator opening said pinch air block valve when pressurized by incident airflow; and

an actuator actuating a rinse solenoid valve configured in operational communication with the second hydraulic circuit, said actuator opening said rinse solenoid valve when pressurized by incident airflow.

4. The improved wet abrasive blast machine with remote control rinse cycle of claim 3 wherein the air pilot signal is further configurable to control switching between:

at least one normally-open port and at least one normally-closed port interior to a main control valve-relay configured in operational communication in the control circuit; and

at least one normally-open and at least one normally-closed port interior to a rinse control valve-relay configured in operational communication within the control circuit.

5. The improved wet abrasive blast machine with remote control rinse cycle of claim 4 wherein airflow directed through the normally-open port in the main control is valve-relay feeds a branch circuit to pressurize the actuator controlling the pinch valve and thereby cease throughflow of slurry to the blast hose.

6. The improved wet abrasive blast machine with remote control rinse cycle of claim 5 wherein airflow directed through the normally-open port in the rinse control valve-relay feeds a branch circuit that pressurizes the actuator actuating the pinch air block valve, whereby the pinch air block valve is opened.

7. The improved wet abrasive blast machine with remote control rinse cycle of claim 6 wherein airflow through the pinch air block valve is merged into the branch circuit pressurizing the actuator controlling the pinch valve when airflow is concurrent through the normally-open port in the main control valve-relay.

8. The improved wet abrasive blast machine with remote control rinse cycle of claim 7 wherein airflow directed through the normally-closed port in the main control valve-relay feeds a branch circuit that pressurizes the actuator actuating the main blast air inlet valve and concurrently sends an air pilot signal to the normally-closed port of the rinse control valve-relay.

9. The improved wet abrasive blast machine with remote control rinse cycle of claim 8 wherein the control circuit further comprises a remote rinse control valve operable between an “off” position and an “on” position, whereby movement of the remote rinse control valve to the “on” position diverts airflow into a branch circuit to switch airflow within the rinse control valve-relay from the normally-open port to the normally-closed port whereby airflow is directable to pressurize the actuator actuating the rinse water solenoid valve and enable waterflow through the second hydraulic circuit.

10. The improved wet abrasive blast machine with remote control rinse cycle of claim 9 wherein airflow directed through the normally-closed port of the main control valve-relay and the normally-open port in the rinse control valve-relay concurrently actuates the pinch air block valve to open and wherein the pinch valve is released via exhaustion through a pinch valve exhaust, which pinch valve exhaust is otherwise closed when airflow through the main control valve-relay is configured through the main control valve-relay's normally-open port.

11. The improved wet abrasive blast machine with remote control rinse cycle of claim 10 wherein the pinch air block valve maintains pressure within the branch circuit controlling actuation of the pinch valve when said pinch air block valve is closed whereby the pinch valve is maintained closed.

12. The improved wet abrasive blast machine with remote control rinse cycle of claim 11 wherein manual action at a deadman remote control handle disposed upon a nozzle of the blast hose feeds a branch circuit that pressurizes the actuator controlling airflow through the normally-closed port of the main control valve-relay whereby manual control of the remote rinse control valve between the “on” and “off” positions therefore switches airflow through the rinse control valve-relay to control waterflow through the second hydraulic circuit and the first hydraulic circuit while maintaining operation of the pneumatic circuit.

13. The improved wet abrasive blast machine with remote control rinse cycle of claim 12 wherein release of the deadman remote control handle prevents airflow from the branch circuit pressurizing the actuator of the main control valve-relay wherein airflow reverts to the normally-open port therein, thereby ceasing pressurization of the actuator actuating the main blast air inlet valve and disabling the pneumatic circuit, whereby airflow pressurizes the actuator actuating the pinch valve to disable the first hydraulic circuit.

14. The improved wet abrasive blast machine with remote rinse cycle of claim 4 wherein switching airflow between the normally-open and normally-closed ports interior to both the main control valve-relay and the normally-open and normally-closed ports interior to the rinse control valve-relay is effectuated electrically instead of pneumatically.

Assignments (6)
NOTICE OF SUCCESSOR COLLATERAL AGENT Recorded Oct 14, 2025
From: GOLDMAN SACHS MIDDLE MARKET LENDING CORP. II
To: GOLDMAN SACHS PRIVATE CREDIT CORP.
Reel/Frame 073069/0670 →
PATENT SECURITY AGREEMENT Recorded May 1, 2024
From: USA DEBUSK LLC; NITRO LIFT TECHNOLOGIES, L.L.C.
To: GOLDMAN SACHS MIDDLE MARKET LENDING CORP. II
Reel/Frame 067288/0580 →
LICENSE Recorded Dec 12, 2022
From: JTB HOLDINGS, LLC
To: USA DEBUSK LLC
Reel/Frame 062060/0694 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 25, 2021
From: FENLEY, JERRY L., JR
To: CLEANER BLAST SYSTEMS, LLC
Reel/Frame 055724/0086 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 25, 2021
From: CLEANER BLAST SYSTEMS, LLC
To: JTB HOLDINGS, LLC
Reel/Frame 055724/0221 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2021
From: CLEANER BLAST SYSTEMS LLC; CLEANER BLAST, LLC
To: JTB HOLDINGS, LLC
Reel/Frame 055003/0410 →
Continuity (1)
Related Publication 20210046609A1 · Feb 18, 2021
Cited By (1)
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