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A high-efficiency fixed punching device for aluminum profiles

A punching device and technology for aluminum profiles, applied in feeding devices, boring/drilling, drilling/drilling equipment, etc., can solve problems such as low drilling efficiency, hidden dangers to worker safety, troublesome operation, etc., and achieve improved drilling Hole efficiency, improved safety, and easy-to-operate effects

Active Publication Date: 2018-02-27
广东星球铝业有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In order to facilitate fixed installation, during the production process of aluminum, the aluminum needs to be punched according to the needs of the installation. The existing aluminum punching device has a complicated structure and troublesome operation, and it is difficult to punch the aluminum quickly and efficiently. Now Some punching devices generally can only punch a single hole, so that the punching operation needs to be repeated multiple times, the punching efficiency is low and the punching quality is poor, the labor intensity of the workers is relatively high, and it is difficult to meet the production requirements Need, in addition, the drilling bit on the existing drilling device is in a long exposed state when it is not in use, which is easy to cause accidental touch and cause damage to the drill bit and also poses a great safety hazard to workers

Method used

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  • A high-efficiency fixed punching device for aluminum profiles
  • A high-efficiency fixed punching device for aluminum profiles
  • A high-efficiency fixed punching device for aluminum profiles

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0033] When double drills are required to drill holes at the same time, the aluminum material is first put between the clamps 52, and then the second motor 742 drives the first threaded rod 741 to rotate, so that the first threaded rod 741 drives the lock and push assembly 743 to gradually slide along the third Slot 74 slides downward, because the locking heads 7433 on the left and right sides extend out of the left and right sides of the lock push assembly 743 respectively and are fully inserted into the lock grooves 7311 in the push blocks 731 on the left and right sides to the greatest extent, so that the lock push assembly 743 moves toward the left and right sides. While sliding down, drive the sliding blocks 721 on the left and right sides to gradually slide downwards along the second sliding grooves 72 on the left and right sides respectively. The outer surface of the key rotating shaft 723 slides down gradually until Figure 4 The push blocks 731 shown on the left and r...

Embodiment 2

[0035] When the left drill bit needs to be drilled, first put the aluminum material between the clamps 52, and then power on the electromagnetic induction device 7436 in the locking cavity 7431 on the right, so that the electromagnetic induction device 7436 and the magnet in the right locking head 7433 7434 generates a suction force. At this time, the right locking head 7433 overcomes the pressing force of the pressing spring 7435 between the right electromagnetic induction device 7436 and the right magnet 7434 and moves toward the right side of the electromagnetic induction device, so that the right locking head 7433 is completely Break away from the locking groove 7311 in the right push block 731, and then drive the first threaded rod 741 to rotate through the second motor 742, so that the first threaded rod 741 drives the lock and push assembly 743 to gradually slide downward along the third slide groove 74, so that When the lock push assembly 743 slides downward, the slidin...

Embodiment 3

[0037] When the right drill bit needs to be drilled, the aluminum material is first put between the clamps 52, and then the electromagnetic induction device 7436 in the left locking cavity 7431 is powered on to make the electromagnetic induction device 7436 and the magnet in the left locking head 7433 7434 generates a suction force. At this time, the left locking head 7433 overcomes the pressing force of the pressing spring 7435 between the left electromagnetic induction device 7436 and the left magnet 7434 and moves toward the left side of the left electromagnetic induction device, so that the left locking head 7433 is completely Break away from the locking groove 7311 in the left push block 731, and then drive the first threaded rod 741 to rotate through the second motor 742, so that the first threaded rod 741 drives the lock and push assembly 743 to gradually slide downward along the third sliding groove 74, so that When the lock push assembly 743 slides downwards, it drives...

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PUM

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Abstract

The invention discloses an efficient fixing hole drilling device for an aluminum profile. The device comprises a base, and a supporting frame which is fixed to the rear side end surface of the base, wherein a hole drilling performing part of which the bottom part end surface is arranged symmetric with the top part end surface of the base is arranged at the front end of the supporting frame; a transmission chamber is arranged in the hole drilling performing part; a first sliding groove is formed in the hole drilling performing part section below the transmission chamber; second sliding grooves which extend upwards and downwards are formed in two side ends of the first sliding groove; two side ends of the first sliding groove communicate with the second sliding grooves; the bottom part extending ends of the second sliding grooves pass through the bottom part end surface of the hole drilling performing part; a rotating shaft which extends leftwards and rightwards is arranged in the transmission chamber; a third sliding groove is formed in the rear side end surface of the first sliding groove; a first threaded rod which extends upwards and downwards is arranged in the third sliding groove; a lock pushing assembly of which the front end extends into the third sliding groove is arranged in the first thread rod. The efficient fixing hole drilling device for the aluminum profile is simple in structure, and convenient to operate; a drill bit can be automatically controlled to extend in and out, so that the safety of the whole device can be improved; the hole drilling mode can be automatically controlled and selected, and thus the hole drilling efficiency can be increased.

Description

technical field [0001] The invention relates to the technical field of punching processing equipment, in particular to a high-efficiency fixed punching device for aluminum profiles. Background technique [0002] Aluminum profiles are often used in building structures and manufacturing installations. In order to facilitate fixed installation, during the production process of aluminum, the aluminum needs to be punched according to the needs of the installation. The existing aluminum punching device has a complicated structure and troublesome operation, and it is difficult to punch the aluminum quickly and efficiently. Now Some punching devices generally can only punch a single hole, so that the punching operation needs to be repeated multiple times, the punching efficiency is low and the punching quality is poor, the labor intensity of the workers is relatively high, and it is difficult to meet the production requirements Need, in addition, the perforating bit on the existing...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B23B39/16B23B39/14B23B47/18
CPCB23B39/14B23B39/16B23Q5/34
Inventor 高国柱
Owner 广东星球铝业有限公司
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