SAE ARP 1610A-1985 Physical-Chemical Characterization Techniques Epoxy Adhesive and Prepreg Resin Systems《理化表征技术 环氧化物粘合剂和预浸树脂系统》.pdf
《SAE ARP 1610A-1985 Physical-Chemical Characterization Techniques Epoxy Adhesive and Prepreg Resin Systems《理化表征技术 环氧化物粘合剂和预浸树脂系统》.pdf》由会员分享,可在线阅读,更多相关《SAE ARP 1610A-1985 Physical-Chemical Characterization Techniques Epoxy Adhesive and Prepreg Resin Systems《理化表征技术 环氧化物粘合剂和预浸树脂系统》.pdf(31页珍藏版)》请在麦多课文档分享上搜索。
1、AEROSPACERECOMMENDED PRACTICEARP1610 REV. A Issued 1981-10Revised 1985-04Reaffirmed 2014-08Superseding ARP1610Physical-Chemical Characterization Techniques,Epoxy Adhesive and Prepreg Resin SystemsRATIONALEARP1610A has been reaffirmed to comply with the SAE five-year review policy.1. SCOPE;1.1 This r
2、ecommended practice describes the physical and chemicalcharacterization techniques for identification of epoxy adhesive and prepregresin systems in order to verify the chemical formulation, resin B-staging(See 8.1), cure reaction rates, adhesive moisture content, and resincomponent mix ratios, as ne
3、cessary to achieve manufacturing and qualityproducibility and engineering performance.1.2 Application: While these techniques have been developed and validated forepoxy adhesive and prepreg resin systems, they are expected to be applicableto other thermoset materials, such as phenolics, polyimides,
4、or polyesters.It is the responsibility of the user of the materials to establish limits onthe acceptable variations of compositional parameters from the standard orbaseline values of the original formulations qualified for use. Whenestablished, these variations should be included in applicable mater
5、ialspecifications.1.3 Limitations; These techniques have been developed to detect chemicalformulation variations in epoxy systems. Chemical formulation variationshave not been quantitatively related to changes in mechanical properties,long-term durabilities, or moisture sensitivities of the material
6、. Thesetechniques should not be considered all-inclusive. The equipment usedherein is generally applicable to the quantitative and qualitative analysisof epoxy resins; however, specific materials, other than those discussedherein, may require modified techniques.1.4 Justification: The procedures des
7、cribed herein are the result of extensiveevaluations of structural epoxy adhesive and resin formulations applicableto aerospace applications.SAE Technical Standards Board Rules provide that: “This report is published by SAE to advance the state of technical and engineering sciences. The use of this
8、report isentirely voluntary, and its applicability and suitability for any particular use, including any patent infringement arising therefrom, is the sole responsibility of the user.“SAE reviews each technical report at least every five years at which time it may be revised, reaffirmed, stabilized,
9、 or cancelled. SAE invites your written comments andsuggestions.Copyright 2014 SAE InternationalAll rights reserved. No part of this publication may be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical,photocopying, recording, or otherwise,
10、without the prior written permission of SAE.TO PLACE A DOCUMENT ORDER: Tel: 877-606-7323 (inside USA and Canada) SAE values your input. To provide feedbackTel: +1 724-776970 (outside USA) on this Technical Report, please visitFax: 724-776-0790http:/www.sae.org/technical/standards/ARP1610AEmail: Cust
11、omerServicesae.org |_SAE WEB ADDRESS: http:/www.sae.orgSAE INTERNATIONAL ARP1610A Page 2 of 312. DESCRIPTION OF THE METHOD:2.1 Objective: The use of structural adhesives and epoxy composite materialsrequires that the composition of these materials be reproducible withinprescribed limits established
12、by the user of the materials throughapplicable procurement specifications. This document describes physical andchemical techniques to identify the constituents in the formulations and toaid in detection of qualitative and quantitative changes or variations ofthe constituents.2.2 Summary: This docume
13、nt outlines a standard method to chemically andphysically analyze and control epoxy adhesive and composite matrixformulations.2.3 Processing Steps: In order to achieve the high reliability and consistencynecessary in structural applications using epoxy adhesives and compositematerials, the following
14、 primary steps must be followed:Chemically characterize selected epoxy formulations,Establish minimum and maximum formulation standards,Provide quality control methods for purchased formulations,Develop manufacturing cure cycles and controls.3. ANALYTICAL METHODS:3.1 Chemical Analysis and Quality Co
15、ntrol Methods: Quality control foraerospace structural applications requires that epoxy adhesive or prepregmaterials selected for a specific design be controlled. This control canonly be achieved by knowing the chemical composition of the particularadhesive or composite matrix formulation. The use o
16、f the methods describedherein, spectroscopy, elemental and wet chemical analysis, chromatography,differential scanning calorimetry and dynamic dielectric analysis, serve notonly to identify and confirm the chemical constituents of a formulation butalso to establish the basis for ensuring that the pu
17、rchased products arechemically identical and have been processed to the proper degree ofB-staging. A schematic on how the analytical techniques can be used toidentify the formulations is given in Fig. 1. The techniques required touse these methods to characterize and ensure the consistency and quali
18、ty ofmaterial are described in the individual methods. Selection of whichprocedures are required for quality assurance testing is based on thecomponents of a given formulation.3.2 Spectroscopy: Spectroscopy is a valuable tool for the identification ofspecific components of a prepreg or adhesive resi
19、n. It is used primarily inthe qualitative identification of formulative components. It can be used inspecial cases for quantitative estimation of formulation constituents asdemonstrated herein. The primary areas of spectroscopy useful for epoxymaterials are infrared, ultraviolet, and emission spectr
20、oscopy.SAE INTERNATIONAL ARP1610A Page 3 of 313.2.1 Infrared Spectroscopy: Infrared absorption spectroscopy (IR) is extremelyuseful for ascertaining the absence or presence of a variety oforganofunctional groups.3.2.1.1 General Infrared Spectroscopy Methods:(1) Extract the prepreg or adhesive resin
21、in acetone, tetrahydrofuran(THF), or chloroform.(2) Filter the solution, saving the filtrate.(3) Apply the filtrate to an infrared plate (KBr or NaCl) and allowsolvent to evaporate.(4) Place the plate in the spectrometer.(5) Run the spectrum from 4000 cm“- t o 400 cm-*- using a slow scanand transmis
22、sion mode.(6) Compare epoxy spectra to known epoxy reference standards.3.2.1.2“ Quantitative Estimation of the Sulfone Group, Diaminodiphenyl Sulfone(DPS) by Infrared Spectroscopy:Step 1. Weigh (to the nearest 0.1 mg) 30, 40, 50, 60, 75, and 200-mg(if the IR absorbs in this range) samples of DDS plu
23、s resincomponent into 50-mL volumetric flasks. Dilute to volume withacetonitrile.Step 2. Place two 1.0 mm KBr precision path length, matched liquidcells filled with acetonitrile in both the sample andreference beams of the spectrophotometer. Scan the regionfrom 1200 to 1100 cm“-1- to ensure a clean
24、baseline free ofextraneous absorptions.Step 3. Replace the acetonitrile in the sample cell with a standardsample solution. Flush 2-3 times with the solution to beanalyzed. Record the spectrum from 1200 to 1100 cm“- f o reach standard solution.Step 4. Construct a calibration curve on linear graph pap
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