Manufactur standard HVSS-G Nipple for The Swiss Manufacturer

Short Description:

Features Nickle-Plated brass body and PBT body. stainless steel tube gripping claws, collars and release sleeves(collets) offer a quick hold and release mechanism to provide a low disconnection force for easy removal of the tubing. Oval and round shape of release sleeve are available. Three colors on the release sleeve, blue, black and gray. Specifications Fluid Admitted Air, Vacuum, Water (no freezing) Working Pressure 0—1.0MPa | 0—150psi Proof Pressure 3.0Mpa | 435psi Negativ...


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Manufactur standard HVSS-G Nipple for The Swiss Manufacturer Detail:

Features

Nickle-Plated brass body and PBT body.

stainless steel tube gripping claws, collars and release sleeves(collets) offer a quick hold and release mechanism to provide a low disconnection force for easy removal of the tubing.

Oval and round shape of release sleeve are available.

Three colors on the release sleeve, blue, black and gray.

Specifications

Fluid Admitted

Air, Vacuum, Water (no freezing)

Working Pressure

0—1.0MPa | 0—150psi

Proof Pressure

3.0Mpa | 435psi

Negative Pressure

-100Kpa | -29.5 In Hg

Working Temperature

0—60°C | 32~140°F

Applicable Tube

PU / PA / PE / PVC

_20170604114603

three-way-hand-valves-working two-way-hand-valves-working

Metric Tube ØD
4mm 5mm 6mm 7mm 8mm 9mm 10mm 12mm 14mm 15mm 16mm
Inch Tube ØD
1/8″ 5/32″ 3/16″ 1/4″ 5/16″ 3/8″ 1/2″
Thread Standard and Type
R, PT, BSPT — 55° Taper Pipe Thread Metric Thread
R1/8 R1/4 R3/8 R1/2 M5x0.8

M6x1

M8x1 M10x1 M12x1.25 M14x1.5 M16x1.5 M20x1.5

UNF

NPT – 60°American Standard Taper Pipe Thread

BSPP, G – 55° Parallel Pipe Thread

10-32 UNF

1/8 NPT

1/4 NPT

3/8 NPT

1/2 NPT

G1/8

G1/4

G3/8

G1/2

Thread (BSPP)

Thread (BSPP)

HVSS G01-G01

HVSS G01-G01

HVSS G02-G01

HVSS G02-G01

HVSS G02-G02

HVSS G02-G02

HVSS G03-G02

HVSS G03-G02

HVSS G03-G03

HVSS G03-G03

HVSS G04-G03

HVSS G04-G03

HVSS G04-G04

HVSS G04-G04


Product detail pictures:

Manufactur standard HVSS-G Nipple for The Swiss Manufacturer detail pictures


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    What is Eddy Current

    Eddy currents are currents induced in conductors to oppose the change in flux that generated them.[citation needed] It is caused when a conductor is exposed to a changing magnetic field due to relative motion of the field source and conductor; or due to variations of the field with time. This can cause a circulating flow of electrons, or a current, within the body of the conductor. These circulating eddies of current create induced magnetic fields that oppose the change of the original magnetic field due to Lenz’s law, causing repulsive or drag forces between the conductor and the magnet. The stronger the applied magnetic field, or the greater the electrical conductivity of the conductor, or the faster the field that the conductor is exposed to changes, then the greater the currents that are developed and the greater the opposing field.

    The term eddy current comes from analogous currents seen in water when dragging an oar breadthwise: localised areas of turbulence known as eddies give rise to persistent vortices.

    Eddy currents, like all electric currents, generate heat as well as electromagnetic forces. The heat can be harnessed for induction heating. The electromagnetic forces can be used for levitation, creating movement, or to give a strong braking effect. Eddy currents can often be minimised with thin plates, by lamination of conductors or other details of conductor shape.

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