IP Library Granted Patent US 12,584,734
Granted Patent B2
US 12,584,734 · App. 18/226,968 · Granted Mar 24, 2026

Automatic measuring device and control method of the same

Inventors: Keita Ogawa (Kanagawa, JP); Shuji Hayashida (Kanagawa, JP); Masashi Yamaji (Hiroshima, JP)
Assignee: MITUTOYO CORPORATION
G01B21/047G01B3/008G01B3/18
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Quick Facts
Patent No.
US 12,584,734
App. No.
18/226,968
Granted
Mar 24, 2026
Kind
B2
Abstract

An automatic measuring device includes a micrometer including a spindle that moves forward and backward to be brought into contact with or away from a workpiece and a displacement detector unit that detects displacement of the spindle, and an automatic operation unit that automates the forward and backward movement of the spindle by power. The automatic operation unit performs a first forward-movement step of moving the spindle forward to bring the spindle into contact with the workpiece, and a contact determination step of determining the contact between the spindle and the workpiece in the first forward-movement step. In the contact determination step, the spindle is determined to be in contact with the workpiece when a change in a position of the spindle detected by the displacement detector unit in the first forward-movement step becomes equal to or less than a predetermined contact determination threshold.

Claims (30)

1 . A control method of an automatic measuring device comprising:

a measuring machine including a movable element provided to be displaceable with respect to a fixed element and configured to move forward and backward to be brought into contact with or away from a workpiece to measure a dimension of the workpiece, and a displacement detector unit, including at least an encoder, or a camera to read an analog-type scale, configured to detect displacement of the movable element; and

an automatic operation unit configured to automate the forward and backward movement of the movable element by power, the automatic measuring device being configured to automatically measure the workpiece using the measuring machine, the control method comprising:

a first forward-movement step of moving, by the automatic operation unit, the movable element forward to bring the movable element into contact with the workpiece; and

a contact determination step of determining the contact between the movable element and the workpiece in the first forward-movement step

by determining at least that a change in a position of the movable element, detected by the encoder, or the camera reading the analog-type scale, in the displacement detector unit in the first forward-movement step, becomes equal to or less than a predetermined contact determination threshold.

2 . The control method of the automatic measuring device according to claim 1 , the control method further comprising:

a first backward-movement step of moving, by the automatic operation unit, the movable element backward by a predetermined amount when the movable element is determined to be in contact with the workpiece in the contact determination step; and

a re-forward-movement step of moving, by the automatic operation unit, the movable element forward again to generate a predetermined measurement pressure between the workpiece and the movable element.

3 . The control method of the automatic measuring device according to claim 1 , wherein

the automatic measuring device further comprises a constant pressure mechanism in a path through which the power is transmitted from the automatic operation unit to the movable element to prevent a force equal to or greater than a predetermined load from being applied from the movable element to the workpiece when a preset load is applied to the movable element, and

the movable element is determined to be in contact with the workpiece in the contact determination step when the forward movement of the movable element is stopped by activation of the constant pressure mechanism in the first forward-movement step and the change in the position of the movable element detected by the displacement detector unit becomes equal to or less than the contact determination threshold.

4 . The control method of the automatic measuring device according to claim 1 , wherein

the movable element and the workpiece are determined to be in contact in the contact determination step when the change in the position of the movable element detected by the displacement detector unit in the first forward-movement step becoming equal to or less than the contact determination threshold is confirmed a plurality of consecutive times.

5 . The control method of the automatic measuring device according to claim 1 , wherein

a first target point is set with a slight margin over a workpiece dimension based on information about the workpiece, and

the first forward-movement step includes:

a first high-speed forward-movement step of moving the movable element at a relatively high speed to the first target point; and

a first low-speed forward-movement step of moving the movable element at a speed lower than the speed in the first high-speed forward-movement step after the movable element reaches the first target point.

6 . The control method of the automatic measuring device according to claim 1 , wherein

the automatic measuring device further comprises a holding unit configured to hold at least one of the workpiece and the measuring machine to bring a contact surface of the workpiece and a contact surface of the movable element into close contact by changing a relative position and posture between the workpiece and the movable element with a pressure equal to or less than a predetermined measurement pressure preset in the measuring machine when the workpiece and the movable element are brought into contact with each other, and

the holding unit is configured to allow the workpiece and the measuring machine to change the relative posture in the first forward-movement step, using a direction intersecting a measuring axis of the measuring machine as a rotation axis.

7 . An automatic measuring device comprising:

a measuring machine including a movable element provided to be displaceable with respect to a fixed element and configured to move forward and backward to be brought into contact with or away from a workpiece, and a displacement detector unit, including at least an encoder, or a camera to read an analog-type scale, configured to detect displacement of the movable element; and

an automatic operation unit configured to automate the forward and backward movement of the movable element by power, the automatic measuring device being configured to automatically measure the workpiece using the measuring machine, wherein

the automatic operation unit is configured to perform:

a first forward-movement step of moving the movable element forward to bring the movable element into contact with the workpiece;

a contact determination step of determining the contact between the movable element and the workpiece in the first forward-movement step by determining at least that a change in a position of the movable element, detected by the encoder, or the camera reading the analog-type scale, in the displacement detector unit in the first forward-movement step, becomes equal to or less than a predetermined contact determination threshold;

a first backward-movement step of moving the movable element backward by a predetermined amount when the movable element is determined to be in contact with the workpiece in the contact determination step; and

a re-forward-movement step of moving the movable element forward again to generate a predetermined measurement pressure between the workpiece and the movable element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 27, 2023
From: OGAWA, KEITA; HAYASHIDA, SHUJI; YAMAJI, MASASHI
To: MITUTOYO CORPORATION
Reel/Frame 064404/0260 →
Priority Claims (1)
JP 2022-122096 · Jul 29, 2022 · national
Continuity (1)
Related Publication 20240035816A1 · Feb 1, 2024
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