Calibrating device and calibrating method for contact online detection system of lathe

A detection system and calibration device technology, which is applied in general control systems, control/adjustment systems, measurement/indicating equipment, etc., can solve problems such as inability to calculate installation errors, save materials, avoid interference, and reduce occupied space Effect

Active Publication Date: 2018-04-13
HEBEI UNIV OF TECH
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  • Abstract
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  • Claims
  • Application Information

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Problems solved by technology

However, this method can only calculate the radial component of the installation error in the direction of the lathe’s missing movement degree of freedom, and cannot calculate all the installation errors in the direction of the movement degree of freedom, nor can it calibrate the pre-travel error of the probe

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  • Calibrating device and calibrating method for contact online detection system of lathe
  • Calibrating device and calibrating method for contact online detection system of lathe
  • Calibrating device and calibrating method for contact online detection system of lathe

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Embodiment Construction

[0031] Specific examples of the present invention are given below. The specific embodiments are only used to further describe the present invention in detail, and do not limit the protection scope of the claims of the present application.

[0032] The present invention provides a calibration device (calibration device for short) used in a contact-type online detection system of a lathe, which is characterized in that the calibration device is integrally processed from one piece of material, including a clamping shaft 1 and an L-shaped device main body 2; The clamping shaft 1 is a cylinder, one end of which is used for lathe chuck clamping, fixed on the three-jaw chuck of the lathe, and the other end is connected with the top end of the long side 21 of the L-shaped device main body, and the center of the clamping shaft 1 The axis is collinear with the center line of the long side 21 of the L-shaped device main body; the bottom end of the L-shaped device main body 2 has a stepped ...

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Abstract

The invention discloses a calibrating device and a calibrating method for a contact online detection system of a lathe. The calibrating device comprises a clamping shaft and an L-shaped device main body; the clamping shaft is a cylinder, one end of the clamping shaft is used for clamping a lathe chuck while the other end is connected to the top end of a long side of the L-shaped device main body,and the axle wire of the clamping shaft and the center line of the long side of the L-shaped device main body are collinear; a step hole and a first hole are formed in the bottom end of the L-shaped device main body; the axle wire of the first hole, the axle wire of the clamping shaft and the center line of the long side of the L-shaped device main body are collinear and are superposed with the rotating center of the main shaft of the lathe; the step hole is formed by a through hole in the upper side and a second hole in the lower side; the axle wire of the through hole and the axle wire of the second hole are collinear and are parallel to the rotating center of the main shaft of the lathe; the connecting line of hole centers of the first hole and the through hole is parallel to the transverse feeding direction of the lathe; the axle wire of the through hole is parallel to the axle wire of the first hole; and the first hole and the through hole are same in radius.

Description

technical field [0001] The invention relates to the technical field of numerical control equipment, in particular to a calibration device and a calibration method for a contact-type on-line detection system of a lathe. Background technique [0002] In order to improve the positioning accuracy and processing efficiency of the positioning reference before the process, the online detection technology of the trigger probe has been widely used in the CNC machining process. [0003] However, the principle of the trigger probe is to rely on the trigger force generated by the contact between the measuring ball and the workpiece to overcome the preload of the internal spring, thereby breaking the closed circuit inside the probe and finally sending out a trigger signal. In this way, after the measuring ball touches the workpiece to be measured, it needs a small displacement to stop. This displacement is called pre-travel error. Therefore, it is necessary to calibrate the probe before...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B23Q17/00G05B19/401
CPCG05B19/401B23Q17/00G05B2219/37008
Inventor 刘丽冰陈康政李欣蕊陈英姝杨泽青黄凤荣张艳蕊李莉张宇王晓倩张俊峰许杨王彤范敏李增强张炳寅国艳慧冯凯王宁刘建军王梦雅李超吕硕颖
Owner HEBEI UNIV OF TECH
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