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Parker’s Triple-Lok 37° flare tube fittings have been used in industry since Mr. Parker pioneered the product in the 1930s. The 37° flare fitting is the most popular industrial tube/hose fitting connection in the world.
Today, Parker offers a broad range of Triple-Lok fittings meeting SAE J514, ISO 8434-2 and military standards and specifications.
The Triple-Lok design is quite simple. The tube fitting consists of three pieces: the body, the nut and the sleeve. The tube end is flared at a mating 37° angle and sandwiched between the fitting nose (seat) and the sleeve creating an effective seal between the fitting nose and tube flare or hose.
Parker’s Triple-Lok fittings are manufactured in steel, 316 stainless steel and brass for optimum fluid compatibility and corrosion resistance. Furthermore, available sizes range from 1/8" tube O.D. to 2" tube O.D. in several configurations. Adaptability to global ports is another key benefit of Triple-Lok. (Standard ports include: SAE, straight thread ISO-6149, NPT, BSPT, BSPP and DIN.)
The Triple-Lok tube fitting is also readily available for metric tubing and hose adapter applications. Simply by changing the industry standard sleeve, the same Triple-Lok body can be adapted to metric tubing in sizes ranging from 6 mm tube O.D. to 38 mm tube O.D. Likewise, by using only the body without the nut and sleeve, the Triple-Lok fitting is used as an industry standard hose adapter.
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We provide a large range of cutting-ring technology, including single-edged cutting rings as well as proven double-edged rings and even modern, soft-sealed cutting rings.
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37° flare JIC fittings, made of stainless steel, for high pressure networks up to 350 bars. BSPP and NPT adaptors, unions, elbows, tees.
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The RNG Series meter is an insertion-style gas flow meter designed to offer high accuracy measurements over an extremely large flow range. The meter has no moving parts and is virtually maintenance-free once installed. The RNG series is suitable for most gas types, including compressed air, natural gas and wet or "biogas" applications. All meters in this series are loop-powered devices with standard HART® communications for ease of field programming and system integration. Through the use of an internal RTD and an external pressure sensor (optional), the flow meter software will compensate for changes in pressure and temperature, to achieve an accurate mass flow measurement.
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The GF03 Flare and Variable gas flow meter utilizes FCI's exclusive patented thermal resistance analyzer correction design that combines flow and gas composition sensors in a proprietary gas calibration technique. This innovative engineering breakthrough in thermal dispersion technology provides superior accuracy and repeatability in changing gas compositions.
The GF03 single insertion flow element design offers simplified installation and more reliability at a lower cost total cost than any other mixed gas application solution. FCI's unique design eliminates the need for additional temperature and pressure devices that increase the initial purchase price and maintenance costs typical of ultrasonic technology.
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Improves Efficiency- Now with extended Range
The GF868 flare gas flowmeter improves the efficiency of petrochemical plants, refineries and offshore platforms. It uses a proprietary algorithm to determine instantaneously the molecular weight and mass flow rate of the flare gas. The meter is used to conserve energy and reduce product loss by identifying sources of leaks into the flare systems. It also helps improve compliance with pollution-control regulations and reduces energy usage by accurately controlling the amount of steam fed to the flare tip.
- Velocity range: 0.1 to 394 ft/sec (0.03 to 120 m/s)
- Bi-directional velocity range: 0.1 to 328 ft/s (0.03 to 100 m/s)
- Velocity, mass and volumetric flow
- Instantaneous gas molecular weight
- Measurement independent of composition
- No moving parts; nothing to clog or wear out
- No regular maintenance required
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STAINLESS STEEL HIGH PRESSURE 37°
TUBE FITTINGS 1/8'' TO 2''
TUBE HANDLING
Scratches on the tube might cause leaks. It is, therefore, important
to handle the tube carefully to reduce the risk of leaks.
1. Tubes must not be dragged on the floor.
2. Tubes must not be dragged out of a tubing rack, especially in
cases of large OD tubes.
TUBE CUTTING
Two different methods can be used to cut tubes:
1. Tube cutter
2. Hacksaw
Tube cutter
To attain a leakfree connection, the tubing must be cut squarely.
A good quality tube cutter with the appropriate blade for the tubing
material is recommended.
Do not try to reduce the time of cutting by taking deep cuts with
each turn of the cutter.
The end of the tube must be deburred to avoid damage to the
fitting and to ensure that the tube reaches the bottom of the fitting.
Hacksaw cutting
In order to cut the tube with a hacksaw and to attain square ends,
the tube must be cut with guide blocks. This method of cutting
requires deburring of the tube ends.
WARNING
Do not hold the tube in a vise in the place where it will be inserted
into the fitting. The vise will leave a mark on the tube that may
cause leaks and might cause ovality
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