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Machining laboratory equipment

Laboratory dyeing technique should simulate actual production conditions as closely as possible. It also should allow for a multiplicity of tests in a short period of time. Laboratory equipment permits dyeing of small (5 g) to larger (1 kg) textile samples. Most lab dyeing machines work batchwise, but installations for continuous operation are also available [29],... [Pg.349]

On scaling-up the equipment, the surface-to-volume ratio decreases, which limits the heat removal in production machines. Moreover, in production-size machines thermal inhomogeneities may occur that do not exist in laboratory equipment This requires a careful design of the experiments on laboratory scale in order to assure a reliable scale-up procedure. [Pg.394]

Scale-up of these procedures is readily achieved using conventional laboratory equipment. A number of laboratory centrifuges are available for use up to the 6-L scale, and the Jouan 5.22 machine has a 9.6-L capacity. [Pg.420]

In 1942, the Ministry of Armament decided to move the Kirchmbser plant to Kramatorsk, a town in the Ukraine, and to use the site for munitions again. When informed of this decision, the president of the Reichsbahn said that without the Kirchmdser works, the Reichsbahn would have a broken neck. This underlines the extraordinary importance that Kirchmoser had acquired during the 1920s and 1930s. The site was finally taken over by the Flick Corporation. The machines and equipment of the railway works never reached the Ukraine. Instead, in late April 1945, the Soviet Army occupied Kirchmoser, and established a tank production line on the former site of the fireworks laboratory. This production line occupied about one-third of the whole area, and was in use until 1993, when the Russian Army finally withdrew. [Pg.57]

The instabilities have different origins they may be of thermal, hydrodynamic, or chemical nature. Because some of them are dependent on the scale of the equipment, experiment design is important when a reactive extrusion process has to be developed on laboratory equipment and successively scaled up to larger size machines. [Pg.213]

Of particular interest are the results of the industrial-scale manufacturing and processing of MFCs from PET and low density PE (LDPE) because, in all the aforementioned experiments, the essential step of the MFC preparation, the cold drawing, resulted in the creation of a fibrillar morphology of all blend components and was carried out in a discontinuous way, using laboratory equipment (a machine for mechanical testing). In order to... [Pg.372]

CNC milling machines (Figure 4.11) are really useful for the development of electronic printed circuit boards, and for the development of laboratory equipment. Different complementary programs have to be used depending on what is willed to build, e.g. VCarve for laboratory equipment and Eagle for electronic printed circuit boards. [Pg.115]

Figure 13 depicts schematically the filament winding system developed to produce GF/PP pipes and plates from towpregs and PCTs. This system was mounted on a laboratory CNC 6-axes conventional PULTREX filament winding machine. The equipment consists of a preheating furnace, a hot-air heater, and a pneumatically controlled consolidation roll. [Pg.203]

Dehumidity Precision machines, measurement of machines, automatic controller, machines with air pressure Ozone generator Analytic equipment, laboratory equipment... [Pg.589]

Applications Automobiles, household and laboratory equipment, washing machines, dishwashers, pump housings, plug... [Pg.442]

Manufacturers of various types of mills maintain laboratories in which grindability tests are made to determine the suitability of their machines. When grindability comparisons are made on sm equipment of the manufacturers own class, there is a basis for scale-up to commercial equipment. This is better than relying on a grindabihty index obtained in a ball mih to estimate the size and capacity of different types such as hammer or jet mihs. [Pg.1829]

EMETICS Because treatment of poison ingestion is an emergency, the nurse immediately obtains equipment for treatment. The nurse obtains the drag, an emesis basin, towels, specimen containers for sending contents of the stomach to the laboratory for analysis, and a suction machine and places them near the patient. The nurse obtains the patient s blood pressure, pulse, and respiratory rate and performs a brief physical examination to determine what other damages or injuries, if any, may have occurred. [Pg.480]

There has been a push for direct data collection (DDC) as an alternative to remote data capture (RDC). In this approach most of the required clinical data are acquired directly from existing patient record systems such as MRI machines, ECG, EEG, TTM, laboratories, and other measurement equipment. This approach eliminates the need for paper transcription and reentry to another system. It promises error-free and resource-efficient data capture, which allows early locking of the database and therefore potentially earlier product launch [30]. [Pg.612]

Large glass-working laboratories may be equipped with a glasscutting machine. This usually consists of a high-speed, power-driven, fine abrasive wheel, or, better, a steel wheel in whose perimeter are embedded fine diamond particles. A lubricant—water, or water and cutting oil emulsion—is played on to the faces of the wheel from jets on either side. The glass to be cut is held on a movable steel table mounted on rollers. [Pg.27]


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See also in sourсe #XX -- [ Pg.119 , Pg.120 , Pg.121 , Pg.122 , Pg.123 ]




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