20417000 Pièces de rechange pour jet d’eau de tête d’étanchéité

Catégorie:

Description

Waterjet Replacement parts: sealing head

Item number: 20417000

Details: Installed in the water jet intensifier, there are two sealing heads installed in both sides of intensifier

Related waterjet replacement parts:
Numéro d’articleDescription
10107894Inlet poppet valve
05116777Glande
05112768Siège
05116561Discharge poppet valve
10118552Poppet retainer
05147863Compression spring
49884562Compression spring
05116751Poppet pin
Other waterjet replacement parts:
Numéro d’articleDescription
05059712HP Cylinder
20417081Assemblage de la tête de scellage
20422243HP Seal Assembly
10110393Assemblage de joints
80086622Hydraulic Cartridge Seal Assembly
05007786Bride de retenue de bague
05127584Commutateur de proximité
FAQ of waterjet cutting machine & waterjet replacement parts:

What is the cutting gap for water jet?

The cutting gap of the water jet refers to the distance between the waterjet replacement parts the cutting nozzle that sprays water and the surface of the material to be cut. This gap is important because it determines the width of the kerf that the water jet makes. The cutting gap of a waterjet may vary depending on a number of factors, including the thickness and hardness of the material being cut, the pressure and flow of water, and the size of the waterjet replacement parts the cutting nozzle. Generally, waterjet cutting gaps range from about 0.1 mm to 1.5 mm, but can be adjusted to meet the specific needs of the cutting application. It is worth noting that some waterjet cutting systems use abrasive particles in the water stream to increase cutting power, and in these systems the cutting gap may be slightly larger to accommodate the abrasive particles. The cut gap for waterjet cutting, also known as hole diameter or hole size, typically ranges from 0.003″ to 0.020″ (0.076mm to 0.508mm). The cutting gap is the distance between the waterjet replacement parts cutting nozzle and the material being cut, which determines the thickness of the kerf (the width of the cut). A smaller cutting gap produces a finer, more precise cut, while a larger cutting gap produces a coarser cut with a wider kerf. The cutting gap is usually selected based on the material being cut and the desired cut quality. Harder and thicker materials may require larger cutting gaps to maintain cutting speeds, while softer and thinner materials may require smaller cutting gaps to maintain greater cutting speeds.

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