Band saw blade sensor and control system
A band saw blade sensor and control system to sense and control saw blade deviation of a continuous, flexible metal saw blade driven around a pair of pulleys. A pair of spaced proximity inductive sensors is positioned adjacent to a side of the saw blade in order to detect blade deviation during operation. A controller mechanism receives input from each of the pair of inductive sensors in order to control and adjust band tension on the blade, and in order to control and adjust blade force on a work piece.
1. A band saw blade sensor and control system to sense and control saw blade deviation of a continuous, flexible metal saw blade driven around a pair of pulleys, which system comprises:
a pair of spaced proximity inductive sensors adjacent to a side of said saw blade to detect blade deviation; and
a controller mechanism to receive input regarding said blade from each of said pair of sensors, to control and adjust band tension on said blade in response to said blade deviation, and to control and adjust blade force on a work piece in response to said blade deviation, wherein said controller mechanism operates according to the formula
IF (ΔCW<0 AND CW<0, Then: IF (ΔBT This Loop >Max ΔPSI, −−SP F 1 ++BT))
or
IF (ΔCW>0 AND CW>0, Then: IF (ΔBT This Loop >Max ΔPSI, −−SP F 1 ++BT))
where BT is band tension, SPF is set point force, PSI is pounds per square inch, and CW is the data gathered from said proximity sensors.
2. A band saw blade sensor and control system as set forth in claim 1 wherein each of said pair of inductive sensors includes an induction loop having a magnetic field to sense position of said saw blade.
3. A band saw blade sensor and control system as set forth in claim 1 wherein said controller mechanism to adjust band tension on said blade adjusts position of said pair of said pulleys with respect to each other.
4. A band saw blade sensor and control system as set forth in claim 3 wherein said pulleys include a drive pulley driven by a motor and an idler puller positioned by a hydraulic cylinder.
5. A process to sense and control blade deviation of a continuous, flexible metal saw blade driven around a pair of pulleys, which process comprises:
sensing position of said continuous, flexible metal saw blade with a pair of spaced proximity inductive sensors adjacent to a side of said blade to detect blade deviation;
delivering said position information of said blade from said sensors to a controller;
varying a set point of blade force on a work piece in response to said blade deviation;
varying the band tension of said blade in response to said blade deviation, wherein said steps operate according to the formula
IF (ΔCW<0 AND CW<0, Then: IF (ΔBT This Loop >Max ΔPSI, −−SP F 1 ++BT))
or
IF (ΔCW>0 AND CW>0, Then: IF (ΔBT This Loop >Max ΔPSI, −−SP F 1 ++BT))
where BT is band tension, SPF is set point force, PSI is pounds per square inch, and CW is the data gathered from said proximity sensors.
6. A process to sense and control blade deviation of a continuous, flexible metal saw blade as set forth in claim 5 wherein each of said pair of inductive sensors includes an induction loop having a magnetic field.
7. A process to sense and control blade deviation of a continuous, flexible metal saw blade as set forth in claim 5 wherein said pair of pulleys include a drive pulley driven by a motor and an idler pulley positioned by a hydraulic cylinder.
8. A process to sense and control blade deviation of a continuous, flexible metal saw blade as set forth in claim 5 wherein said step of varying the band tension of said blade includes varying pressure in at least one hydraulic cylinder.