IP Library Granted Patent US 12,673,337
Granted Patent B2
US 12,673,337 · App. 18/683,015 · Granted Jul 7, 2026

Measuring device for measuring a coating powder mass flow rate that can be generated by means of compressed gas in a powder line and conveying device for coating powder

Inventors: Kurt Seitz (Widnau, CH); Kevin Luzi (Hinterforst, CH); Michael Topp (Oberteuringen, DE); René Schmid (Hinterforst, CH)
Assignee: J. Wagner GmbH
B05B12/006B05B7/1472G01F1/76B05B15/55G01F1/34G01F1/74
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Quick Facts
Patent No.
US 12,673,337
App. No.
18/683,015
Filed
Feb 12, 2024
Granted
Jul 7, 2026
Kind
B2
Art Unit
2855
USPC
73/861
Abstract

A measuring apparatus for measuring a coating powder mass flow rate generable by compressed gas in a powder line includes a control and evaluation unit, which is configured and operable such that it can switch between an offset mode and an operating mode. In the offset mode, the control and evaluation unit ensures that a setting device applies compressed gas to the powder line and prevents the coating powder flow in the powder line, and that a pressure sensor then detects the pressure in the powder line. The control and evaluation unit interprets the detected pressure as an offset pressure value. In the operating mode, the control and evaluation unit ensures that the setting device enables the coating powder flow in the powder line, and then determines the coating powder mass flow rate flowing through the powder line on the basis of the pressure detected by the pressure sensor in the powder line, the offset pressure value and a correction value.

Claims (60)

1 . A measuring device for measuring a coating powder mass flow rate that can be generated by means of compressed gas in a powder line,

comprising a control and evaluation unit, which is formed and can be operated in such a way that it can change between an offset mode and an operating mode,

wherein the control and evaluation unit in the offset mode ensures

that a setting means applies compressed gas to the powder line and prevents the coating powder flow in the powder line,

a pressure sensor then detects the pressure in the powder line and

the control and evaluation unit interprets the detected pressure as offset pressure value, and

wherein the control and evaluation unit, in the operating mode, ensures

that the setting means releases the coating powder flow in the powder line, and

then determines the coating powder mass flow rate flowing through the powder line on the basis of the pressure detected by the pressure sensor in the powder line, the offset pressure value and a correction value.

2 . The measuring device according to claim 1 ,

wherein the setting means comprises a controllable compressed gas source.

3 . The measuring device according to claim 1 ,

wherein the setting means comprises a locking element.

4 . The measuring device according to claim 1 ,

wherein the control and evaluation unit is formed and can be operated in such a way that it repeatedly changes into the offset mode and determines the offset pressure value anew.

5 . The measuring device according to claim 1 ,

wherein the control and evaluation unit is formed and can be operated in such a way that it determines the coating powder mass flow rate anew.

6 . The measuring device according to claim 1 ,

wherein the control and evaluation unit is formed and can be operated in such a way that it can change into a calibrating mode, and in the calibrating mode ensures that

the setting means releases the coating powder flow in the powder line for a certain time period,

the pressure sensor then meanwhile detects the pressure in the powder line, and

the control and evaluation unit interprets the detected pressure as pressure value, and

the control and evaluation unit determines the correction value on the basis of the coating powder mass, which has flown through the powder line during this time period, and the two pressure values.

7 . The measuring device according to claim 6 ,

wherein the control and evaluation unit is formed and can be operated in such a way that it repeatedly changes into the calibrating mode and determines the correction value anew.

8 . The measuring device according to claim 6 ,

wherein the control and evaluation unit is formed and can be operated in such a way that it, when the correction value determined anew deviates from the previous correction value, adapts it and/or signals the deviation.

9 . The measuring device according to claim 1 ,

comprising a powder sensor, in order to detect whether coating powder flows through the powder line.

10 . The measuring device according to claim 9 ,

wherein the powder sensor is arranged in a spray applicator, which is connected to the powder line.

11 . The measuring device according to claim 10 ,

wherein the powder sensor is formed as influence sensor or as optical sensor.

12 . The measuring device according to claim 1 ,

wherein the control and evaluation unit is formed and can be operated in such a way that it calculates a smoothed pressure value from several pressure values detected by the pressure sensor.

13 . A conveying device for coating powder comprising a measuring device according to claim 1 ,

comprising a powder conveyor, which can be operated with compressed gas and which is connected to the powder line on the outlet side, and

wherein the coating powder flow in the powder line can be prevented by means of the setting means.

14 . The conveying device according to claim 13 ,

wherein the powder line is connected to a spray applicator on the outlet side.

15 . The conveying device according to claim 14 ,

wherein the compressed gas source has a compressed gas locking element.

16 . The conveying device according to claim 13 ,

wherein the compressed gas source has a volume flow controller, which is provided to keep the compressed gas volume flow supplied to the powder conveyor at a predeterminable, constant value.

17 . The conveying device according to claim 13 ,

wherein the powder conveyor has an injector.

18 . The conveying device according to claim 13 ,

in the case of which wherein the powder conveyor has a working container, which can be pressurized, comprising a powder inlet and a powder outlet,

wherein the powder outlet is connected to the locking element, and

wherein the powder line has an inlet for transport gas on the inlet side.

19 . The conveying device according to claim 13 ,

wherein the control and evaluation unit is formed and can be operated in such a way that it controls the compressed gas source so that a certain coating powder mass flow rate is reached.

20 . A method for measuring the coating powder mass flow rate by means of a measuring device according to claim 1 , which comprises the following steps:

the control and evaluation unit is brought into the offset mode,

compressed gas is applied to the powder line by means of the setting means and the coating powder flow in the powder line is prevented,

the pressure in the powder line is detected by means of the pressure sensor and is interpreted as offset pressure value,

the control and evaluation unit is brought into the operating mode,

the coating powder flow in the powder line is released with the help of the setting means,

the pressure in the powder line is detected by means of the pressure sensor, and

the control and evaluation unit determines the coating powder mass flow rate flowing through the powder line with the help of the detected pressure, the offset pressure value and the correction value.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2025
From: WAGNER INTERNATIONAL AG
To: J. WAGNER GMBH
Reel/Frame 072788/0377 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 25, 2024
From: SEITZ, KURT; LUZI, KEVIN; TOPP, MICHAEL; SCHMID, RENE
To: WAGNER INTERNATIONAL AG
Reel/Frame 066883/0744 →
Priority Claims (1)
EP 21193945 · Aug 31, 2021 · regional
Continuity (1)
Related Publication 20240351057A1 · Oct 24, 2024
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