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Thermal test methods

JEDS-51.2, Integrated Circuits Thermal Test Method Environment Conditions-Natural Convection (Still Air), Section 1.1. [Pg.374]

JEDEC JESD 51-8 Integrated Circuit Thermal Test Method Environmental Conditions Junction-to-Board... [Pg.1607]

Antioxidants have been shown to improve oxidative stabiHty substantially (36,37). The use of mbber-bound stabilizers to permit concentration of the additive in the mbber phase has been reported (38—40). The partitioning behavior of various conventional stabilizers between the mbber and thermoplastic phases in model ABS systems has been described and shown to correlate with solubiHty parameter values (41). Pigments can adversely affect oxidative stabiHty (32). Test methods for assessing thermal oxidative stabiHty include oxygen absorption (31,32,42), thermal analysis (43,44), oven aging (34,45,46), and chemiluminescence (47,48). [Pg.203]

HSTM D696, Test Method for Coefficient of Einear Thermal Expansion of Plastics, VoL 8.01, ASTM, Philadelphia, Pa., 1991. [Pg.160]

Data for thermal movement of various bitumens and felts and for composite membranes have been given (1). These describe the development of a thermal shock factor based on strength factors and the linear thermal expansion coefficient. Tensile and flexural fatigue tests on roofing membranes were taken at 21 and 18°C, and performance criteria were recommended. A study of four types of fluid-appHed roofing membranes under cycHc conditions showed that they could not withstand movements of <1.0 mm over joiats. The limitations of present test methods for new roofing materials, such as prefabricated polymeric and elastomeric sheets and Hquid-appHed membranes, have also been described (1). For evaluation, both laboratory and field work are needed. [Pg.216]

In addition to chemical analysis a number of physical and mechanical properties are employed to determine cemented carbide quaUty. Standard test methods employed by the iadustry for abrasive wear resistance, apparent grain size, apparent porosity, coercive force, compressive strength, density, fracture toughness, hardness, linear thermal expansion, magnetic permeabiUty, microstmcture, Poisson s ratio, transverse mpture strength, and Young s modulus are set forth by ASTM/ANSI and the ISO. [Pg.444]

Test Method for Thermal Diffusivity of Carbon and Graphite by a Thermal Pulse Method... [Pg.575]

Specifications and Test Methods. The American Society of Electroplated Plastics pubHshes a comprehensive book covering most technical aspects of testing and control (24). A number of ASTM standards have been issued that cover thickness, adhesion, and thermal-cycling resistance of the total plated film. Some specifically for plated plastics include ... [Pg.110]

For physical, thermal, electrical, and mechanical properties, ASTM test methods are employed (28). Flammability ratings are often based on Underwriters Laboratories (UL) standards (29). UL flammabiUty ratings given ia this article are aot iateaded to reflect the hazards preseated by the resias uader use coaditioas. Typical properties are givea ia Table 3. More details and additional properties are given ia Refereaces 5 and 31—33. [Pg.263]

Thermal sensitivity is the potential for a material to explode under a thermal stimulus. Test methods are outlined in CCPS G-13. [Pg.24]

As shown in the previous section the mechanical and thermal properties of polypropylene are dependent on the isotacticity, the molecular weight and on other structure features. The properties of five commercial materials (all made by the same manufacturer and subjected to the same test methods) which are of approximately the same isotactic content but which differ in molecular weight and in being either homopolymers or block copolymers are compared in Table 11.1. [Pg.254]

Figure 12-7. Simplified scenario of a thermal runaway. (Source T. Hoppe and B. Grob, Heat flow calorimetry as a testing method for preventing runaway reactions," Int. Symp. on Runaway Reactions, OCRS, AlChE, March 7-9, 1989.)... Figure 12-7. Simplified scenario of a thermal runaway. (Source T. Hoppe and B. Grob, Heat flow calorimetry as a testing method for preventing runaway reactions," Int. Symp. on Runaway Reactions, OCRS, AlChE, March 7-9, 1989.)...
Under micro-discontinuous chromium coatings, copper undercoats improve corrosion resistance. On non-conductors, especially on plastic substrates, copper is often applied before nickel-chromium plating over the initial electroless copper or nickel deposit in order to improve ductility and adhesion, e.g. as tested by the standard thermal-cycling test methods ... [Pg.517]

Nylon-6-clay nanocomposites were also prepared by melt intercalation process [49]. Mechanical and thermal testing revealed that the properties of Nylon-6-clay nanocomposites are superior to Nylon. The tensile strength, flexural strength, and notched Izod impact strength are similar for both melt intercalation and in sim polymerization methods. However, the heat distortion temperature is low (112°C) for melt intercalated Nylon-6-nanocomposite, compared to 152°C for nanocomposite prepared via in situ polymerization [33]. [Pg.667]

In addition to these standardised test methods set by regulation (in particular the transport regulations of dangerous substances), there are laboratory methods that can provide more details regarding substance behaviour. In particular, there is differential thermal analysis (DTA), thermal gravimetric analysis, calorimetry and thermomanometry, which will not be described here. [Pg.96]

Spectrophotometry Chromatographic methods Thermal analysis techniques Gas transmission analysis Physical test methods Miscellaneous techniques... [Pg.598]

Producing Thermal Decomposition Products from Materials in an Air Stream and Their Toxicological Testing Part 1. Test Method 53436. Deutsches Institut fur Normung, Berlin, 1981. [Pg.46]

Test Method Section of Chapter 2 Typical Sample Mass (g) Typical Sensitivity (W/kg) Thermal Inertia Phi-factor Principal Applicationa Data Acquired A=Advantage D=Disadvantageb... [Pg.20]

Example 1 Typical Outputs of Thermal Stability Test Methods As discussed in detail later in Section 2.3, various techniques with different working principles are available to identify the thermal reactivity hazards of individual substances and reaction mixtures. Some examples are presented here. [Pg.21]

From the autoclave testing, it is concluded that in case of a runaway, the substance produces a significant quantity of gases. The end stage of the runaway will certainly result in a thermal explosion. The venting evaluation should be conducted by the test methods and calculation procedures described in Chapter 3. [Pg.27]

Fenlon, W. J., "A Comparision of ARC and Other Thermal Stability Test Methods," Pkant/Operations Progress, 3, No. 4,197 (1984). [Pg.187]

Cronin, J. L., and P. F. Nolan, "The Comparative Sensitivity of Test Methods for Determining Initial Exotherm Temperatures in Thermal Decompositions of Single Substances," J. Haz. Mat., 14 (1987). [Pg.187]

UN Recommendations on the Transport of Dangerous Goods, Part II, Test Methods for Determining the Self-Accelerating Decomposition Temperature (SADT) of Organic Peroxides and Other Thermally Unstable Substances," ST/SG/AC. 10/11/Rev. 1, United Nations, New York, NY (1990). [Pg.189]

ASTM E-698, "Test Method for Arrhenius Kinetic Constants for Thermally Unstable Materials," revised 1988, American Society for Testing and Materials, Philadelphia, PA. [Pg.192]


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See also in sourсe #XX -- [ Pg.141 ]




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