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Method for preparing structural material of floors and coaches of high-speed trains

A technology for structural materials and high-speed trains, applied in manufacturing tools, welding equipment, metal processing equipment, etc., can solve problems such as low energy absorption capacity and efficiency, reduced moment of inertia of sandwich panels, and core instability. Achieve the effects of improving safety and reliability, improving dynamic response state, and reducing noise inside the car body

Active Publication Date: 2011-09-07
UNIV OF SCI & TECH BEIJING
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The sandwich panel material with low-density material as the core layer and solid panels as the upper and lower panels is a common floor and car body structure material for high-speed trains. The aluminum honeycomb sandwich structure material and lattice grid sandwich structure are mainly used. Materials, the aluminum honeycomb sandwich structure material is made of aluminum honeycomb as the core material and the aluminum alloy upper and lower panels, and the dot grid sandwich structure is glued or welded with the grid or profiled plate as the core and the panel The above two types of sandwich structure materials have many technical defects, mainly in the following aspects: 1) Anisotropic physical characteristics, honeycomb sandwich structure and lattice grid sandwich The noise insulation performance of the structure in the direction perpendicular to the floor is much lower than that in the horizontal direction; during service, it shows better stiffness and strength when it is subjected to a force perpendicular to the floor direction, but when it is subjected to a shear force consistent with the horizontal direction of the plate When the force is applied, the core body is prone to instability, causing the sandwich panel to deform due to the reduction of the moment of inertia; 2) The traditional aluminum honeycomb sandwich structure and paper honeycomb sandwich structure, polyurethane and other organic foam sandwich and metal The energy-absorbing capacity and energy-absorbing efficiency of the coated wood material and the lattice grid sandwich core are relatively low. Once a traffic accident occurs, the kinetic energy of the high-speed train cannot be effectively absorbed and buffered, and the degree of damage is relatively serious; 3) Aluminum honeycomb sandwich core Due to the poor nail-holding force of the dot matrix grid sandwich, when the former is used as a high-speed train floor and car body structure material, it is necessary to line the solid aluminum profile inside the structure and pre-embed the corresponding connectors on the car floor crossbeam, which significantly increases the overall floor structure. 4) The organic adhesive between the core layer and the panel of the traditional sandwich structure material is aged and brittle due to heat, ultraviolet radiation, atmospheric oxidation, etc. Replacement; when heated, floors such as honeycomb sandwich core and foam plastic sandwich core cannot withstand higher temperatures. Under high temperature, organic adhesives and sandwich cores themselves will even burn and release toxic gases. The solid aluminum lining inside the floor Profiles will undergo severe oxidation at higher temperatures, which pose hidden dangers to train safety, increase recycling costs, and cannot achieve complete recycling; 5) Aluminum honeycomb sandwich core, paper honeycomb sandwich core, foam plastic sandwich core and metal-clad wood Material and other floor panels are physically insulated from the core material, not resistant to water immersion and oil immersion, and have poor chemical corrosion resistance; 6) The manufacturing cost of lattice grid sandwich structure materials is relatively high, especially when the core layer and the panel are used. When connecting by welding, it needs to be equipped with large and expensive heating and heat preservation equipment; 7) The honeycomb sandwich structure material cannot achieve metallurgical connection with the car body structure, which affects the airtightness of the car body structure. The core is permeable, and once the panel is damaged, it will also affect the airtightness of the overall structure; 8) The core structure material of the profiled plate has a large proportion, and the damping and vibration reduction effect is not obvious

Method used

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  • Method for preparing structural material of floors and coaches of high-speed trains
  • Method for preparing structural material of floors and coaches of high-speed trains
  • Method for preparing structural material of floors and coaches of high-speed trains

Examples

Experimental program
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Effect test

Embodiment 1

[0041] Select a closed-cell aluminum foam with a porosity of 88% and uniform distribution of pores, and cut it into a plate with a thickness of 15mm, a length and a width of 610mm and 410mm according to the requirements, and put it into a solder melt at a temperature of 450°C after cleaning and drying. At the bottom of the molten pool, press and drag the foamed aluminum plate to move repeatedly for about 2 minutes. During this process, ensure that the bottom of the foamed aluminum is in contact with the bottom of the molten pool and mechanical friction occurs, and the solder melt is spread in a horizontally placed length and width respectively. 610mm and 410mm, aluminum panels with a thickness of 2mm, then directly stack the foamed aluminum on the aluminum panel, take it out from the solder melt after fixing, place it on the vibration table, and apply a pressure of 0.5MPa at the same time to make the upper aluminum panel Keep in close contact with the core material, start the v...

Embodiment 2

[0043] Select a closed-cell aluminum foam with a porosity of 90% and uniform distribution of pores, and cut it into a plate with a thickness of 20mm, a length and a width of 610mm and 1810mm according to the requirements, and put it into a solder melt at a temperature of 465°C after cleaning and drying. At the bottom of the molten pool, press and drag the foamed aluminum plate to move repeatedly for about 2 minutes. During this process, ensure that the bottom of the foamed aluminum is in contact with the bottom of the molten pool and mechanical friction occurs, and the solder melt is spread in a horizontally placed length and width respectively. 610mm and 1810mm, aluminum panels with a thickness of 2mm, and then the aluminum foam is directly stacked on the aluminum panels, fixed and taken out of the solder melt, placed on the vibrating table, and a pressure of 2.5MPa is applied at the same time to make the upper aluminum panel Keep in close contact with the core material, start...

Embodiment 3

[0045] Select a closed-cell aluminum foam with a porosity of 45% and uniform distribution of pores, and cut it into a plate with a thickness of 20mm, a length and a width of 610mm and 410mm according to the requirements, and put it into a solder melt at a temperature of 480°C after cleaning and drying. At the bottom of the molten pool, press and drag the foamed aluminum plate to move repeatedly for about 5 minutes. During this process, ensure that the bottom of the foamed aluminum is in contact with the bottom of the molten pool and mechanical friction occurs, and the solder melt is spread in a horizontally placed length and width respectively. 610mm and 410mm, aluminum panels with a thickness of 2mm, then directly stack the foamed aluminum on the aluminum panel, take it out from the solder melt after fixing, place it on the vibrating table, and apply a pressure of 5MPa at the same time, so that the upper aluminum panel and Keep the core material in close contact, start the vib...

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Abstract

The invention discloses a method for preparing a structural material of floors and coaches of high-speed trains. In the method, super light foamed aluminium or foamed aluminum alloy is used as a core layer and aluminum plates with different thicknesses, wherein the aluminum plates are used as upper and lower faceplates to be compounded with the core layer to form the sandwich panels. The method is characterized in that, through mechanically and forcedly paving and spreading the foamed aluminium core layer and the faceplates in a brazing filler metal melt and then carrying out fusion and vibration-assisted coagulation, attached surface oxidation films are removed, and the foamed aluminium core layer and the faceplates are prevented from being oxidized again during welding, and finally, a structural material for floors and coaches of high-speed trains which is compounded by carrying out large-area welding on the foamed aluminium core layer and the upper and lower faceplates. Compared with the material prepared by a traditional cementing method, the material prepared by the method disclosed by the invention has the advantages of high rigidity, long service life, noise isolation, energy absorption, vibration damping, inflaming retarding, corrosion resistance and electromagnetic shielding; meanwhile, the cold and heat processing such as re-welding, surface coating, scraping and thelike and the complete recycling of the material can be realized, and the prepared structural material can replace the structural material for floors and coaches of high-speed trains prepared from honeycomb aluminium sandwich structural slabs, honeycomb paper sandwich structural slabs, organic foamed plastic sandwich panels such as polyurenthane panels and the like, metal-coated wood boards, and other various composite materials.

Description

technical field [0001] The invention relates to a high-speed train floor and car body structure material, in particular to a preparation method of a composite board with ultra-light porous metal as a sandwich core. Background technique [0002] Aluminum foam is an aluminum-based metal material containing a large number of disordered and uniformly distributed pores. Due to its unique physical structure, it has many excellent properties. It has the structural characteristics of light weight (specific gravity ρ<1), high specific strength and specific stiffness. At the same time, it has multiple functions such as sound insulation, heat insulation, flame retardant, damping and vibration reduction, impact energy absorption and electromagnetic shielding, which realizes the lightweight and multifunctional structural materials, so it has a wide range of application prospects. Especially in the field of rail transit, aluminum foam sandwich structure as an ultra-light material has b...

Claims

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Application Information

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IPC IPC(8): B23K1/06B23K1/08B23K103/10
Inventor 王辉吕昭平褚旭明吴渊陈国良
Owner UNIV OF SCI & TECH BEIJING
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