IP Library Granted Patent US 11,534,878
Granted Patent B2
US 11,534,878 · App. 17/429,330 · Granted Dec 27, 2022

Processing apparatus

Inventors: Takeshi Fuse (Isesaki, JP); Toshiharu Miyata (Isesaki, JP); Norio Tanaka (Isesaki, JP)
Assignee: NIHON SHORYOKU KIKAI CO., LTD.
B23Q15/12B23Q17/22
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Quick Facts
Patent No.
US 11,534,878
App. No.
17/429,330
Granted
Dec 27, 2022
Kind
B2
Abstract

A processing apparatus 1 includes: a workpiece-set-position recognition unit 114 that moves an arm distal-end portion to a specified position measurement point to measure a shape of a workpiece in a workpiece set state in which the workpiece is positioned by a workpiece positioning unit, and thereby recognizes a set position of the workpiece; a processing-point-information generation unit 115 that, based on the set position of the workpiece and processing-target-portion information 124 indicating a position of a target portion of the workpiece for specified processing, generates processing-point information 125 indicating a processing point which is a movement point of the arm distal-end portion to perform the specified processing on the workpiece using a processing tool in the workpiece set state; and a workpiece-processing control unit 116 that moves the arm distal-end portion to the processing point based on the processing-point information 125 to perform the specified processing on the workpiece using the processing tool.

Claims (17)

1. A processing apparatus comprising:

an articulated robot having an arm distal-end portion to which a processing tool and a shape measurement unit that is a sensor are attached,

a workpiece receiving unit which includes a guide and on which a workpiece is placed with movement of the workpiece restricted by the guide, and

a processor, wherein the processor:

moves the arm distal-end portion to a specified position measurement point to measure a shape of the workpiece in a workpiece set state in which the workpiece is positioned by the workpiece receiving unit, and thereby recognizes a set position of the workpiece;

measures the shape of the workpiece using the shape measurement unit to recognize a position of a portion to be processed of the workpiece in partial processing for processing a part of the workpiece and, based on the position of the portion to be processed, generates processing-target-portion information indicating a position of a target portion of the workpiece for the partial processing;

based on the set position of the workpiece recognized and the processing-target-portion information generated, generates processing-point information indicating a processing point which is a movement point of the arm distal-end portion to perform the partial processing on the workpiece using the processing tool in the workpiece set state; and

moves the arm distal-end portion to the processing point based on the processing-point information to perform the specified processing on the workpiece using the processing tool,

the shape measurement unit measures a distance between the shape measurement unit and a measurement target at a plurality of distance measurement points within a measurement area in a specified direction,

the processor calculates group data of length measurement values at a plurality of positions on the workpiece in the specified direction from distance measurement values at the plurality of distance measurement points, the distance measurement values being measured on the workpiece by the shape measurement unit, calculates a plurality of length measurement values on the workpiece in the specified direction within the measurement area, and recognizes the position of the portion to be processed of the workpiece by extracting an end point of the portion to be processed by smoothing the plurality of length measurement values by a moving average method, determining a search range for the position of the portion to be processed based on first-order derivative values of the smoothed length measurement values, and searching the search range for a peak point of second-order derivative values of the length measurement values subjected to the smoothing.

2. The processing apparatus according to claim 1 , wherein

the workpiece is a resin molded member,

the processing tool is a cutting tool having a cutting edge portion configured to be positioned at a root portion of a burr of the resin molded member and a profiling portion not having a cutting edge and configured to be positioned at a profiled surface portion of the resin molded member, and

the cutting tool is attached to the arm distal-end portion via a slide that is slidable in a predetermined direction and that presses the profiling portion against the profiled surface portion of the resin molded member at a specified pressure.

3. The processing apparatus according to claim 2 , wherein

the processor, when measuring the shape of the workpiece, recognizes a tilt of the profiled surface portion relative to a specified reference surface, and

controls, according to the tilt of the profiled surface portion, an orientation of the cutting tool at a time of performing deburring processing.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 7, 2021
From: FUSE, TAKESHI; MIYATA, TOSHIHARU; TANAKA, NORIO
To: NIHON SHORYOKU KIKAI CO., LTD.
Reel/Frame 057114/0279 →
Continuity (1)
Related Publication 20220203491A1 · Jun 30, 2022