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M a x i m u m P r e s s u r e. High Pressure Technology • Testing Equipment Hydraulics • Pneumatics » Air driven high pressure gas boosters up to 2,400 bar (36,000 ps
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» Content Content Maximator worldwide - At your side, everywhere Gas booster Type DLE Concept, Gas booster in detail, function and operation Product range overview Type coding General information for gas booster operation Fields of application » DLE - single stage, single acting, 1 air drive section » DLE - single stage, single acting, 2 air drive sections » DLE - single stage, double acting, 1 air drive section » DLE - single stage, double acting, 2 air drive sections » DLE - two stage, 1 air drive section » DLE - two stage, 2 air drive sections » DLE - two stage, 3 air drive sections »...
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MAXIMATOR BeNeLux MAXIMATOR France MAXIMATOR iDerica MAXIMATOR Hydrogen ■OTesTneT MAXIMATOR MAXIMATOR Swiss MAXIMATOR Austria MAXIMATOR Italy Asia MAXIMATOR Turkey North America MAXIMATOR Korea MAXIMATOR Hydrogen MAXIMATOR Japan MAXIMATOR Shanghai • MAXIMATOR Customer Center MAXIMATOR India Australia — MAXIMATOR Australia As an internationally leading company specialising in high-pressure technology, Maximator develops high-performance air driven gas boosters for a variety of uses and applications. For decades we have supported well-known companies in the automotive and supply industry, as...
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Gas booster » Type DLE High pressure gas boosters – the Maximator concept The Maximator high pressure gas boosters are suitable for the oil free compression of gases and air. Industrial gases like argon, helium, nitrogen and hydrogen can be compressed to operating pressures of 2400 bar (36000 psi) and oxygen up to 350 bar (5075 psi), depending on the application. Air driven gas boosters are an efficient alternative instead of electrically driven products and can be used in explosion-proof areas (according to 2014/34/EU). The Gas boosters in detail Features at a glance » Pressure regulation...
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» Product range overview The series and its functions Maximator gas boosters offer the right solution for every application. As a result of the wide range of models it is possible to select the optimum booster for each application. Single stage or two stage boosters, single acting, double acting, quadruple acting or a combination of these models can be used to achieve different operating pressures and flow capacities. They are suitable for different or stepped flow rates as well as for different maximum allowable operating pressures. In addition to gas boosters with a ø160 mm drive (DLE...
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» Type coding X DLE XX - XX - X - X - XX - X DLE 75 -1- 2 - GG - C Size of air drive section: » no information = 160 mm drive size » 8 = 200 mm drive size Model with pressure ratio: » DLE = gas booster » 75 = pressure ratio (1:75) Acting type: DLE 75-1-2-GG-C Single stage, single acting gas booster with two air drive sections, with BSP connections, for carbon dioxide » no information = multiple acting Number of air drive sections: » no information = 1 Air drive section* » 2 = 2 Air drive sections (doubles the pressure ratio) » 3 = 3 Air drive sections (triples the pressure ratio) High...
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» General information Gas booster installation Maximator gas boosters can always be operated in any position, although the horizontal position is most effective in preserving the seals. For fault free operation, the devices should be equipped with fittings and tubing which are suitable for the desired pressure range. The connection sizes should never be reduced. In order to ensure optimal durability for the seal and guide elements, the drive air should meet the specifications of quality grades from 3 to 4 (solids/ water / oil): The connections of Maximator gas booster are available as BSPP...
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» General information Maximator gas boosters use the expanded, cold exhaust air (which is typically less than +5 °C) from the compressed air drive and direct it around the high-pressure cylinder(s) of the gas booster. This effectively dissipates the compression heat from the device. In most applications, the integrated cooling is sufficient to protect the gas booster and the downstream processes. Process fluids For applications where high compression ratios are required and this results in an unacceptably high compression temperature, it is advisable to design the compression process in...
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» General information This means that even highly reactive gases can be compressed without risk. Further information on the recommended volume flow for purging the devices can be found in the installation and operating instructions. Stroke frequencies Compared with electric compressors, air driven gas boosters do not convert a rotational movement into a translational movement to drive the high-pressure piston. By alternately applying compressed air to each side of drive piston, Maximator gas boosters perform oscillating, translational movements - both in the air drive and high-pressure...
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» Fields of applications Fields of applications for high pressure gas boosters Gas compression with constant gas inlet pressure Gas compression with variable gas inlet pressure Maximator gas boosters are ideally suited for the compression of gases from low-pressure gas supply systems or gas generators. Thus, the gas supply can be increased to the required working pressure for different applications: A typical application for Maximator gas boosters is to increase the pressure of gases from gas cylinders or gas cylinder bundles. Depending on the application, more gas can be made available for...
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» Fields of applications Gas compression for laboratory and production applications Gas compression for high pressure testing applications Maximator gas boosters are ideally suited for compressing gases up to pressures of 2400 bar in production and research applications. Increasing quality requirements mean that components that are under pressure must also be tested with gas - and in many cases also with the respective process gas. In these cases in particular, the high flexibility of Maximator gas boosters and the safe operation of the devices are major advantages for users. » Filling of...
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