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Numerical control inclined mortise double-end machine and realizing method thereof

A double-end machine, inclined tenon technology, used in tenon making device, making tongue or tenon groove and other directions, can solve the problems of high splicing accuracy and length requirements, and achieve the effect of high precision, high speed and good safety.

Inactive Publication Date: 2018-09-07
DONGYANG XINHE ELECTRONICS MACHINERY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the splicing accuracy and length of traditional furniture face frame angles are high, and such workpieces are a large amount of furniture.

Method used

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  • Numerical control inclined mortise double-end machine and realizing method thereof
  • Numerical control inclined mortise double-end machine and realizing method thereof
  • Numerical control inclined mortise double-end machine and realizing method thereof

Examples

Experimental program
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Effect test

Embodiment 1

[0035] Such as Figure 1~3 As shown, a numerically controlled oblique tenon double-end machine includes a linear guide rail, a left oblique tenon device and a right oblique tenon device are arranged on the linear guide rail, a left feeding device is provided inside the left oblique tenon device, and a right Feeding device; the left end of the linear guide rail is provided with a left adjusting wheel, and the left adjusting wheel is connected to the left inclined tenon device through a screw rod; the right end of the linear guide rail is provided with a right adjusting wheel, and the right adjusting wheel is connected to the right inclined tenon device through a screw rod; Inclined tenon device, right inclined tenon device, left feeding device and right feeding device. The controller in this embodiment adopts a PLC controller with a built-in program, and adopts a controller produced by Siemens.

[0036] Both the left inclined tenon device and the right inclined tenon device in...

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PUM

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Abstract

The invention discloses a numerical control inclined mortise double-end machine. The numerical control inclined mortise double-end machine comprises a linear guide rail. A left inclined mortise deviceand a right inclined mortise device are arranged on the linear guide rail. A left feeding device is arranged on the inner side of the left inclined mortise device. A right feeding device is arrangedon the inner side of the right inclined mortise device. A left adjusting wheel is arranged at the left end of the linear guide rail, and the left adjusting wheel is connected with the left inclined mortise device through a screw rod. A right adjusting wheel is arranged at the right end of the linear guide rail, and the right adjusting wheel is connected with the right inclined mortise device through a screw rod. A controller is separately connected with the left inclined mortise device, the right inclined mortise device, the left feeding device and the right feeding device. The invention further discloses a realizing method for numerical control inclined mortise double-end machine. The numerical control inclined mortise double-end machine has the characteristics of simple structure, low cost, convenient use, high speed, good quality, high precision and good safety.

Description

technical field [0001] The invention relates to wood processing machinery technology, in particular to a numerically controlled oblique tenon double-end machine and its realization method. Background technique [0002] Existing equipment uses bench drills and sawing machines to make single tenon (mortise) and tenon (mortise) when making mortise and tenon structures. If the tenon and tenon on the workpiece require multiple different structures, they need to be replaced. Different types of drills or equipment can be completed. [0003] When operating the equipment, the hand needs to be close to the drill bit or the blade to push the workpiece, which can easily cause safety accidents, and broken fingers and blood are common. [0004] In the furniture industry, the surface frame structure has a double-ended beveled mortise and tenon structure, and the beveled mortise and tenon joints are processed at both ends of a workpiece. The existing models on the market can only process ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B27F1/08
CPCB27F1/08
Inventor 杜旭宾陈晓敏贾宝珍
Owner DONGYANG XINHE ELECTRONICS MACHINERY