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Method and device for splicing multi-face units into integral material

A technology of integral material and surface unit, applied in the direction of material gluing, connecting components, welding equipment, etc., can solve the problems of difficult operation, high manufacturing cost, and difficult realization, etc., and achieve the effect of high processing efficiency and easy realization

Active Publication Date: 2015-05-20
SHENZHEN INST OF ADVANCED TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, this document does not provide a specific method for splicing these units and the device for realizing the method
In the prior art, although there have been methods and devices for assembling several unit bodies to form a whole material, these methods are not easy to implement in practice, and the cost of implementation is high, the scrap rate is high, and the corresponding devices and devices also have operational advantages. Not easy and expensive to manufacture
[0004] In a nutshell, in the prior art, there is actually a lack of a method and device that can efficiently and orderly splice multi-faceted unit bodies into a monolithic material.

Method used

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  • Method and device for splicing multi-face units into integral material
  • Method and device for splicing multi-face units into integral material
  • Method and device for splicing multi-face units into integral material

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Embodiment approach

[0057] The activities of the pushing plate 23 and the pressing member 24 can be operated manually or automatically. The present invention provides an implementation mode that is operated in an automated manner: the above-mentioned device 2 for splicing the multi-face unit body 1111 into an integral material also includes a first pressurizing device 27 for providing a pressure source for the pressing plate 23 and a device for The second pressurizing device 28 that provides a pressure source for the pressing member 24, the first pressurizing device 27 and the second pressurizing device 28 are both arranged on the base 21, and the pushing plate 23 It is connected with the first pressurizing device 27 , and the pressing member 24 is connected with the second pressurizing device 28 .

[0058] The first pressurizing device 27 and the second pressurizing device 28 may be cylinders or motors, or other internal or external devices capable of providing pressure sources. The first press...

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PUM

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Abstract

The invention belongs to the technical field of material forming, and provides a method for splicing multi-face units into an integral material. The method includes the following steps: arranging the multiple multi-face units in a connected mode along straight lines to form strip-shaped unit sets; arranging the multiple strip-shaped unit sets in a connected mode along a plane to form the plate-type integral material. If a plurality of plate type integral materials are stacked in a connected mode in the normal direction, a block type integral material can be formed. By means of the method, the multiple multi-face units can be effectively and orderly spliced into the integral material. The invention further provides a device for splicing the multi-face units into the integral material. The device is used for implementing the method and comprises a base, a standard plate, a pushing and pressing plate, a pressing part and a baffle. A processing groove used for containing the multi-face units is defined on the base by the standard plate, the pushing and pressing plate, the baffle and the pressing part. The device is based on the method, the large number of multi-face units can be efficiently and orderly spliced into the integral material, implementation is easy, and the rejection rate is low.

Description

technical field [0001] The invention belongs to the technical field of material forming, and in particular relates to a method and a device for splicing multi-face unit bodies into an integral material. Background technique [0002] A porous material is a material with a grid structure inside, and the grid structure is composed of several interconnected or closed pores. This material has the characteristics of both a continuous metal phase and a dispersed air phase. It has many excellent properties and is widely used. It is one of the hot spots in the field of materials science in recent years. According to the arrangement of pores, porous materials can be divided into regular porous materials and irregular porous materials, and irregular porous materials are usually called porous foams. [0003] Regular porous materials are usually manufactured as follows: firstly, the matrix unit (called unit body or unit cell body) that constitutes the grid structure is produced and manu...

Claims

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Application Information

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IPC IPC(8): B23K1/00B23K3/00F16B11/00
CPCB23K1/0008B23K3/00F16B11/006
Inventor 左启阳何凯李赳华党晓兵杜如虚
Owner SHENZHEN INST OF ADVANCED TECH
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