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Testing equipment for

Test equipment for the study of erosion-corrosion by liquids with sand content, as met in formation waters in oil and gas production, has been described by Kohley and Heitz ... [Pg.1051]

An overview of typical calorimetric techniques indicating sensitivities, principal application areas, and the usual data acquired is shown on Table 2.1. A brief summary of advantages and disadvantages of the various tests is also given. The column "principal applications" indicates only the major applications of the respective techniques. In any of the tests listed, it is possible to obtain additional data or to use the test equipment for completely different hazard evaluations once the techniques are fully understood and the tests are run by fully qualified technical personnel. Testing techniques are discussed later in Section 2.3 on Practical Testing. [Pg.19]

The greatest change in test laboratories in recent times, and rubber is no exception, is the improvements made to apparatus by the introduction of more advanced instrumentation and automation, in particular the application of computers both to control tests and to handle the data produced. These developments can and do influence the test techniques which are used and this is discussed in Chapter 2 Section 6. Also, whenever appropriate, comment is made on the form of apparatus now available for any particular test and there is a guide to test equipment for rubbers and plastics in a test equipment suppliers directory4. [Pg.6]

Figure 9.2 illustrates the sample sizes and basic test equipment for the compression set test. [Pg.171]

Table 3.12 The noise level at point which is distant 3m from test equipment for drop ball test(S dB( A fast)). Table 3.12 The noise level at point which is distant 3m from test equipment for drop ball test(S dB( A fast)).
Figure 7 Test equipment for studying monolithic hydrogenations. (From Ref. 33.)... Figure 7 Test equipment for studying monolithic hydrogenations. (From Ref. 33.)...
Proper functioning and performance of equipment play a major role in obtaining consistency, reliability and accuracy of analytical data. Therefore equipment should be properly selected, designed, installed, and operated, and the correct function and performance should be verified before and during operation. This holds for equipment hardware, computer hardware, hardware interfaces, and software and computer systems. Qualification of equipment hardware is well established and has been described by several authors [1-4], and typically users in analytical laboratories are quite familiar with testing equipment for hardware specifications. [Pg.24]

Provision of testing equipment for basic advanced studies. [Pg.168]

Note Incidentally, Schaffner also makes some of the most widely used, standard test equipment for immunity surge-testing. [Pg.370]

Test equipment for this series of tests is shown in Figure 3. A 55 gallon drum was modified by the addition of a steel plate halfway down the drum. The plate was pierced by a valve and by a tap to allow pumping of liquids out of the reservoir. The steel plate was sealed with a silicone sealant around the perimeter of the plate. Contaminated soil and reagents were added to the drum by weight. The drum was then covered and a vent line attached between the drum and a carbon filter. A heat tape was wrapped around the drum, and the entire drum was insuiated with fiberglass. [Pg.295]

Tensile tests at 75 °F were made on standard tensile testing equipment. For tests at —320°F, specially constructed cryostats for the liquid-nitrogen coolant were used. All specimens were completely submerged in liquid nitrogen for a minimum of five minutes... [Pg.113]

Applied Testing Systems, Inc. has been supplying quality test equipment for the industry for more than 40 years. Call one of our sales engineers today to set up your custom model or to request a catalog. [Pg.11]

Fig. 4.67 Test equipment for uniaxial tension/compression fatigue loading. Fig. 4.67 Test equipment for uniaxial tension/compression fatigue loading.
Fig. 5.2 Fracture mechanics testing equipment for the instrumented Charpy impact test. Fig. 5.2 Fracture mechanics testing equipment for the instrumented Charpy impact test.
It must be noted that there are important dynamic effects in impact testing that can complicate the specimen response interacting with the testing equipment. For example, as the ratio ki/kj of the contact stiffness k between the striker and the specimen and that of the sample kj increases, there results an oscillatory response... [Pg.430]

A development of ISI test equipment for Monju was almost completed in O-arai engineering center(OEC). Mock-up test rigs and ISI test equipments at OEC were disassembled and transferred to Monju from OEC. [Pg.155]

A specially designed test-equipment for having dynamical (in time) test-signals, more-or-less similar to the situation in real coin-validation devices, has been developed (Fig. 25). [Pg.61]

HEPA filters can be tested with different methods. A wide range of test equipment for on-site measurements include particle counters, pressure gauges, airflow meters, energy data loggers, corrosion monitors and gas analysis equipment. One of the tests is the measurement of penetration of dispersed oil particles (DOP) through the HEPA filters. DOP used to be the abbreviation of DiOctylPhtalate, which however has been replaced by safer products. [Pg.616]

Fig. 8.4. Schematic view of the test equipment for testing mechanical protection efficiency, also called modified load plate test or cylinder test. Load is applied hydraulically on the upper steel plate. The drawing has been adopted from (Brummermann 1997b)... Fig. 8.4. Schematic view of the test equipment for testing mechanical protection efficiency, also called modified load plate test or cylinder test. Load is applied hydraulically on the upper steel plate. The drawing has been adopted from (Brummermann 1997b)...
Fig. 8.7. View of the test equipment for long-term load plate tests. Load is applied over a lever arm, the steel container is covered with a glass cylinder, temperature is controlled and measured continuously. Settlement in the stmcture is recorded over a displacement gauge. This test equipment enables miming tests of > 10,000 h. Reaction of oxidative degradation, stress crack formation on the protective effect, influence of swelling chemicals or creep behaviour can be investigated... Fig. 8.7. View of the test equipment for long-term load plate tests. Load is applied over a lever arm, the steel container is covered with a glass cylinder, temperature is controlled and measured continuously. Settlement in the stmcture is recorded over a displacement gauge. This test equipment enables miming tests of > 10,000 h. Reaction of oxidative degradation, stress crack formation on the protective effect, influence of swelling chemicals or creep behaviour can be investigated...
GS 37 Flexible leads, plugs, sockets and other accessories GS 38 Electrical test equipment for use by electricians GS 39 Training of crane drivers and slingers... [Pg.724]

Persson, C. 1987. Test Equipment for Personal Computers. Electronic Servicing and Technology, Intertec Pubhshing, Overland Park, KS. [Pg.2254]

Health and Safety Executive, Health and Safety Guidance Note No. GS 38, Electrical test equipment for use by electricians, HSE Books, Sudbury (1995)... [Pg.765]

Because water management in PEM fuel cells involve a number of interrelated local variables, e.g. gas composition, temperatures, flow velocity, current density, and phenomena such as local occurrence of water flooding, test equipment for the measiuement of several local interrelated variables would be preferred, for simultaneous acquisition of data indicating on the state - or the change in state -of the cell. [Pg.414]

Fig. 6.1 Scheme of test equipment for evaluating air purification performance (JIS R 1701-1 2004)... [Pg.54]

Figure 4 Testing equipment for adhesives (DV-1 + Viscometer of Brookfield). Figure 4 Testing equipment for adhesives (DV-1 + Viscometer of Brookfield).
Figure 35 (a) Test panel and specimen for T-peel (from ASTM D 1876) (both substrates are flexible) (b) 180° peel test specimens (i) specimen design, (ii) testing equipment for flexible to rigid substrate bond. (From ASTM D 903.)... [Pg.74]


See other pages where Testing equipment for is mentioned: [Pg.954]    [Pg.149]    [Pg.418]    [Pg.1103]    [Pg.58]    [Pg.103]    [Pg.180]    [Pg.412]    [Pg.562]    [Pg.716]    [Pg.398]    [Pg.235]    [Pg.706]    [Pg.116]    [Pg.21]    [Pg.17]    [Pg.319]    [Pg.5]    [Pg.167]    [Pg.198]   
See also in sourсe #XX -- [ Pg.250 , Pg.255 ]




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