Systems and methods for sensing and/or measuring flow rate of gases based upon mass flow conditions
Systems and methods for, e.g., heat treating, make use of flow rate measuring based upon sensing of mass gas flow conditions.
1 . A gas flow rate measuring device for use in association with a heat treating system including a heat treating furnace and supply apparatus to supply a gas atmosphere to the heat treating furnace, the device comprising a flow rate measuring assembly associated with the supply apparatus that derives a gas flow rate in the supply apparatus based, at least in part, upon measuring mass gas flow in the supply apparatus.
2 . A method of heat treating using the device defined in claim 1 .
3 . A device according to claim 1 used in conjunction with a visual flow indicating/measuring device.
4 . A device according to claim 1 used in conjunction with a non-electronic flow indicating/measuring device.
5 . A gas flow rate measuring device including a sampling path communicating with a main gas flow path, a mass flow sensor in the sampling path generating a non-linear mass flow output based upon sensed gas flow in the sampling path, and a processing component coupled to the mass flow sensor, the processing component including a conversion function that converts the non-linear mass flow output to a linearized voltage-flow rate output representative of gas flow rate in the main gas flow path.
6 . A device according to claim 5 used in conjunction with a visual flow indicating/measuring device representative of gas flow in the main gas flow path.
7 . A device according to claim 5 used in conjunction with a non-electronic flow indicating/measuring device representative of gas flow in the man gas flow path.
8 . A device according to claim 5 wherein the conversion function includes a linear correlation between non-linear mass flow outputs and gas flow rates.
9 . A device according to claim 8 wherein the processing component includes a comparison function that generates the linear correlation for the conversion function.
10 . A device according to claim 8 wherein the processing component includes a comparison function that generates the linear correlation for the conversion function based, at least in part, upon sensed actual gas flow conditions in the main gas flow path.
11 . A method of monitoring gas flow in a main gas flow path comprising sampling the gas flow with a mass flow sensor, generating a mass-flow sensor output based upon the sampling, and deriving a gas flow rate based, at least in part, upon the mass-flow sensor output.
12 . A method according to claim 11 wherein the mass-flow sensor output is not linear, and wherein the deriving converts of the non-linear mass-flow sensor output to a linearized voltage-flow rate output representative of gas flow rate in the main gas flow path.
13 . A processing device including an input for receiving a non-linear output from a mass flow sensor sampling gas flow in a flow path, a comparison function that converts the non-linear mass flow output to a linearized voltage-flow rate output representative of a gas flow rate in the flow path, and an output for the linearized voltage-flow rate output.
14 . A processing device according to claim 13 wherein the comparison function includes a linear correlation between non-linear mass flow outputs and gas flow rates.
15 . A processing device according to claim 14 further including a comparison function that generates the linear correlation for the conversion function.
16 . A processing device according to claim 14 further including a comparison function that generates the linear correlation for the conversion function based, at least in part, upon actual gas flow conditions in the flow path.