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Equipment centering method, system and device and electronic equipment

An equipment pair, equipment technology, applied in measuring devices, workpiece clamping devices, instruments, etc., can solve problems such as damage to key components, collisions, and difficulty in guaranteeing gearboxes, so as to improve accuracy and efficiency, save human resources and The effect of time resources

Inactive Publication Date: 2020-12-29
湖南行必达网联科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] During this alignment process, due to factors such as the hoisting position of the gearbox and the position of the center of gravity, it is difficult to ensure that the gearbox is horizontal in directions such as up, down, left, and right, so that when the engine and gearbox are aligned and assembled, the input shaft of the gearbox and the output shaft of the engine The holes are not on the same axis, requiring workers to fine-tune the position of the input shaft of the driving control gearbox, inserting it multiple times, causing the input shaft of the gearbox to collide with the shaft hole of the engine, affecting the accuracy and surface quality of the shaft and hole, damaging key components, and passing workers Alignment operation requires more human resources and time resources

Method used

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  • Equipment centering method, system and device and electronic equipment
  • Equipment centering method, system and device and electronic equipment
  • Equipment centering method, system and device and electronic equipment

Examples

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Embodiment 1

[0030] An embodiment of the present invention provides a device centering method, which is applied to a controller in a device centering system, and the device centering system further includes a first device, a second device, a first displacement sensor group and a second displacement sensor group sensor group, the first displacement sensor group and the second displacement sensor group are connected to the controller in communication, the shaft hole of the first device is provided with a first auxiliary shaft, and the shaft hole of the second device is A second auxiliary shaft is arranged in the hole, the first displacement sensor group is used to detect the first axis position data of the first auxiliary shaft, and the second displacement sensor group is used to detect the first axis position data of the second auxiliary shaft. Two-axis position data.

[0031]The first device and the second device may be two devices that need to be aligned. In this embodiment, the first dev...

Embodiment 2

[0047] The embodiment of the present invention also provides another device centering method; this method is implemented on the basis of the methods in the above embodiments; this method focuses on the specific implementation of the device centering method in which the first device is fixed and the second device can be moved.

[0048] Such as figure 2 A flow chart of another device centering method is shown, the device centering method includes the following steps:

[0049] Step S202, receiving the first axis position data sent by the first displacement sensor group and the second axis position data sent by the second displacement sensor group.

[0050] This embodiment mainly describes the situation where the first device is fixed and cannot be moved, but the second device can be moved, see image 3 A schematic diagram of an equipment centering system is shown, the engine is the first equipment, the gearbox is the second equipment, the first equipment and the second equipmen...

Embodiment 3

[0066] An embodiment of the present invention provides an equipment centering system, see Figure 4 A structural schematic diagram of an equipment centering system is shown, the centering system includes: a controller, a first device, a second device, a first auxiliary shaft, a second auxiliary shaft, a first displacement sensor group, and a second displacement sensor Group and control the motor; wherein, the first auxiliary shaft is arranged in the shaft hole of the first device, the second auxiliary shaft is arranged in the shaft hole of the second device, the first displacement sensor group and the second displacement sensor group are connected with the controller communication connection;

[0067] The controller is used for the above equipment centering method; the first displacement sensor group is used to detect the first axis position data of the first auxiliary shaft; the second displacement sensor group is used to detect the second axis position data of the second aux...

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PUM

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Abstract

The invention provides an equipment centering method, system and device and electronic equipment. The method comprises the following steps that 1, first axis position data sent by a first displacementsensor group and second axis position data sent by a second displacement sensor group are received; 2, displacement data of a first device and / or a second device is determined based on the first axisposition data and the second axis position data, wherein the displacement data represents a centering movement distance of the first device and / or the second device; 3, a control instruction is generated based on the displacement data; and 4, the control instruction is sent to a control motor to enable the control motor to adjust the position of the first device and / or the second device. According to the method, by the mode, automatic centering assembly of the first device and the second device can be achieved, manual fine adjustment is not needed in the centering process, manpower resourcesand time resources can be saved, the accuracy and efficiency of centering operation are improved, and equipment parts cannot be damaged.

Description

technical field [0001] The invention relates to the technical field of vehicle assembly, in particular to an equipment centering method, system, device and electronic equipment. Background technique [0002] At present, the engines and gearboxes used in commercial vehicles, especially heavy-duty trucks, are relatively large in size and weight. When assembling the engine and gearbox, the general situation is that the engine is fixed on the foundation platform, the gearbox is hoisted by the crane, and the driver is operated by the worker. , for centering, inserting and assembling the input shaft of the gearbox and the output shaft hole of the engine. [0003] During this alignment process, due to factors such as the hoisting position of the gearbox and the position of the center of gravity, it is difficult to ensure that the gearbox is horizontal in directions such as up, down, left, and right, so that when the engine and gearbox are aligned and assembled, the input shaft of t...

Claims

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Application Information

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IPC IPC(8): B25B11/02G01B21/00
CPCB25B11/02G01B21/00
Inventor 孙绪聪刘巍波庞克斌
Owner 湖南行必达网联科技有限公司
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