高分子复合材料制品用熔体粘合剂

IF 0.4 Q4 METALLURGY & METALLURGICAL ENGINEERING
V. E. Rogov, L. A. Bokhoeva
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引用次数: 0

摘要

提出了一种低成本、节能、环保的复合材料制造技术。用聚合物复合材料(pcm)制造零件和结构元件的无高压灭菌技术被称为使用熔融粘合剂的树脂膜注入(RFI)技术。从pcm成型RFI产品的低成本(必要的设备包括烤箱,真空泵,成型产品的配件,辅助设备和材料)使制造各种形状的产品成为可能。RFI方法提供了零件材料中所需的填料与粘结剂重量比,并允许人们形成具有必要刚性特性的零件。RFI技术消除了昂贵的预浸料生产程序和在高压灭菌器中成形产品的热过程,从而将零件成本降低了20-25%。由于采用熔融技术,制造胶合结构的周期缩短了2-3倍;制造蜂窝结构的时间缩短了40-50%(由于与传统粘合剂相比减少了技术操作);设备,由1.5-2倍;结构重量(特别是采用蜂窝填料的结构)降低30-50%;而向大气中排放有害物质的量,则是原来的10-15倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Melt Binders for Articles Made of Polymer Composite Materials

A low-cost, energy-efficient, environmentally friendly technology for manufacturing products from composite materials is presented. The autoclave-free technology for manufacturing parts and structural elements from polymer composite materials (PCMs) is known as the resin film infusion (RFI) technology using molten binders. The low costs of molding RFI products from PCMs (necessary equipment consists of ovens, vacuum pumps, accessories for molded products, auxiliary equipment and materials) make it possible to manufacture products of various shapes. The RFI method provides the required filler-to-binder weight ratio in the material of the part and allows one to form parts with the necessary rigid characteristics. The RFI technology eliminates the expensive prepreg production procedure and the thermal process of forming products in an autoclave, which reduces the cost of the part by 20–25%. As a result of the molten technology, the cycle of manufacturing glued structures decreases by 2–3 times; the time of manufacturing honeycomb structures, by 40–50% (due to a reduction in technological operations compared to conventional adhesives); the equipment, by 1.5–2 times; the structure weight (especially structures with honeycomb filler), by 30–50%; and the amount of harmful emissions into the atmosphere, by 10–15 times.

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来源期刊
Russian Metallurgy (Metally)
Russian Metallurgy (Metally) METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
0.70
自引率
25.00%
发文量
140
期刊介绍: Russian Metallurgy (Metally)  publishes results of original experimental and theoretical research in the form of reviews and regular articles devoted to topical problems of metallurgy, physical metallurgy, and treatment of ferrous, nonferrous, rare, and other metals and alloys, intermetallic compounds, and metallic composite materials. The journal focuses on physicochemical properties of metallurgical materials (ores, slags, matters, and melts of metals and alloys); physicochemical processes (thermodynamics and kinetics of pyrometallurgical, hydrometallurgical, electrochemical, and other processes); theoretical metallurgy; metal forming; thermoplastic and thermochemical treatment; computation and experimental determination of phase diagrams and thermokinetic diagrams; mechanisms and kinetics of phase transitions in metallic materials; relations between the chemical composition, phase and structural states of materials and their physicochemical and service properties; interaction between metallic materials and external media; and effects of radiation on these materials.
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