Parker Proportionales Drosselventil mit Absperrventil – Produktserie TEA
Parker TEA040EW09B2NXWJ

Parker Proportionales Drosselventil mit Absperrventil – Produktserie TEA

Proportionale Drosselventile TEA für Spritzguss- und Druckgussanwendungen mit Durchflussraten von bis zu 9500 l/min und kurzen Ansprechzeiten. Das in den Vorsteuerkreis integrierte Wegeventil sorgt für die Sicherheitsfunktion.

€7,095.98 excl. VAT

order item Delivery approx. 9 working days

At a glance

Tariff number
84812010
Country of origin
DE
Weight
12.4 kg

Technical Data

AnschlussNG40
FunctionFlow direction from B to A
Seal materialNBR
Eingangsspannung16 VDC
Option Magnetventil24 V / 1.25 A
Product seriesDrosselventil
BedienungsartZentrierbund
Actuation typeProportional
Montageart2-Wege-Einbauventil

Product Description

Parker's proportional throttle valves in cartridge design with shut-off valve series TEA combine high flow and fast response times and thus provide high efficiency. These accumulator discharge valves are preferably used in hydraulic systems where high flow rates are discharged from hydraulic accumulators over a short operating period (in the range of milliseconds).

Typical applications are injection molding and die cast machines as well as hydraulic presses. Basically the function of an accumulator discharge valve corresponds to the function of a TDA throttle valve. In addition a directional valve is integrated in the pilot circuit to meet the relevant safety regulations.

Markets:
• Industrial
• Molding

Features/Benefits:
• Cavity and mounting pattern according to ISO 7368 - for quick, easy integration
• Maximum operating pressure up to 350 bar - suitable for demanding hydraulic applications
• High flow rates up to 9500 l/min - enables efficient operation
• Various sizes, NG25 - NG100 - allows extremely variable use
• Short delivery time for most sizes - no warehousing necessary

Applications:
• General presses
• Injection molding
• Die cast

Safety function:
The directional valve provides the safety function. When the solenoid is deenergized and the spring is in end position, pilot pressure from X presses the control piston into lower end position and the main poppet is closed. As a result the flow from B to A or from the reservoir system to the machine is blocked.

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