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Merck

22050

Swagelok® Mutter, Ferrulen-Set vorn und hinten

Swagelok® 100-S, stainless steel, 1/16 in. Swagelok

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About This Item

UNSPSC-Code:
41115717
eCl@ss:
32035302

Materialien

stainless steel

Verpackung

pkg of 1 ea

Hersteller/Markenname

Swagelok® 100-S

Fitting

1/16 in. Swagelok

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Allgemeine Beschreibung

Swage type fittings are one of the most popular connectors which are available in metal and plastic forms; they are very useful for connecting similar or dissimilar materials, like metal to glass or metal to plastic. The general swage tubing coupler has four parts namely the body, into which the tube is placed, two ferrules that is front ferrule and back ferrule and lastly a packing nut. While assembling a compression tube fitting, the metal tubing should be inspected properly to ensure that the surface is smooth. Then slide on the nut with the open side facing the end of the tubing. Next, slide on the back ferrule with the wider part facing the nut. In the next step, slide on the front ferrule with the small end of the cone facing the end of the tubing. Then insert the tubing into the fitting and tighten up the nut/ferrule assembly onto the fitting.

Anwendung

Swagelok® nut, front and back ferrule set maybe used for sampler construction from a single capillary gas chromatographic column, for collection of semi-volatile organic compounds through a diffusion denuder.

Rechtliche Hinweise

Swagelok is a registered trademark of Swagelok Company

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Carrie E Barnum et al.
Human molecular genetics, 29(12), 2076-2097 (2020-05-19)
Mutations of the RNA granule component TDRD7 (OMIM: 611258) cause pediatric cataract. We applied an integrated approach to uncover the molecular pathology of cataract in Tdrd7-/- mice. Early postnatal Tdrd7-/- animals precipitously develop cataract suggesting a global-level breakdown/misregulation of key
Grob RL & Barry EF.
Modern Practice of Gas Chromatography, 522-523 (2004)
Diffusion denuder for the collection of semivolatile organic compounds.
Krieger MS and Hites RA.
Environmental Science & Technology, 26 (8), 1551-1555 (1992)
The Manipulation of Air-Sensitive Compounds.
Shriver DF.
Nature, 217-218 (1986)

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