Exe Pneumatic Solenoid Valve Machanical Valve Msv86522-Lb

Model NO.: MSV86522-LB
Power Supply: AC/DC Solenoid Valve
Usage: Flow Control
Standard: DIN
Application: Industrial Usage, Water Industrial Usage, Household Usage
Certificate: ISO9001:2008, CE, RoHS
Thread Standard: NPT, BSPT, Bsp
Export Markets: Global
Voltage: AC110V 220V DC12V 24V
Fluid: Air, Water, Gas, Oil
Function: Change The Flow Direction
Joint Pipe Bore: 1/4, 1/8
Way: Two-Position Five-Way
Lead Time: 15-20 Days
Guarantee: One Year
Trademark: EXE, OEM
Specification: CE, Rohs
Origin: Ningbo
HS Code: 8481804090

Ningbo Excellence Automatic Industrial Co., Ltd is a leading pneumatic products manufacturer in China. And our products covers solenoid valve, air source treatment unit, control element and executive element etc, which are widely used in industries such as machinery, textile, food, enviromental protection. Our company posesses all the production capability and capacity to produce from raw material up to the finished product under requirement of ISO9001: 2008 and CE. 
This production capability, coupled with R&D incorporating new technologies and know-how, enables us to serve long lasting, reliable products which can expand to a wide range of diversity. 
Our goal is supplying the best qualtiy and service through advanced technology to customers. 
Welcome to Ningbo Excellence Automatic Industrial Co., Ltd!

Model MSV86321 MSV86522 MSV98322
Working Medium Micron Filtered Air
The Position Counting Two-position Three-way Tow-position Four-way Two-position Five-way
Joint Pipe Bore G1/8 G1/4 G1/4
Operating Temperature 0~60 degree centigrade
Effective Sectional Area 12mm 2 (CV=0.67)    16mm 2 (CV=0.89) 16mm 2 (CV=0.89)
Working Pressure 0~0.8Mpa


 

ELECTRIC DRIVE CUTTING TORCH CARRIAGE

An improvement over mechanical guides is an electric motor-driven cutting torch carriage. The speed of the motor can be varied allowing the welder to cut to dimensions and to cut at a specific speed. A typical motor driven carriage has four wheels: one driven by a reduction gear, two on swivels (castor style), and one freewheeling. The torch is mounted on the side of the carriage and is adjusted up and down by a gear and rack. The rack is a part of the special torch. The torch also can be tilted for bevel cuts. This machine comes with a straight two-groove track and has a radial bar for use in cutting circles and arcs. A motor-driven cutting torch cutting a circle is shown in figure 4-25. The carriage is equipped with an off-and-on switch, a reversing switch, a clutch, and a speed-adjusting dial that is calibrated in feet per minute.



Figure 4-25.-Electric motor-driven carriage being used to cut a circle in steel plate.

Figure 4-26 shows an electric drive carriage on a straight track being used for plate beveling. The operator must ensure that the electric cord and gas hoses do not become entangled on anything during the cutting operation. The best way to check for hose, electric cord, and torch clearance is to freewheel the carriage the full length of the track by hand.



Figure 4-26.-Electric motor-driven carriage being used on straight track to cut a beveled edge on steel plate.

You will find that the torch carriage is a valuable asset during deployment. This is especially true if your shop is called upon to produce a number of identical parts in quantity. Such an assignment might involve the fabrication of a large supply of handhole covers for runway fixtures, or another assignment might be the production of a large quantity of thick base plates for vertical columns. When using the torch carriage, you should lay the track in a straight line along a line parallel to the edge of the plate you are going to cut. Next, you light the torch and adjust the flame for the metal you are cutting. Move the carriage so the torch flame preheats the edge of the plate and then open the cutting oxygen valve and turn on the carriage motor. The machine begins moving along the track and continues to cut automatically until the end of the cut is reached. When the cut is complete, you should do the following: promptly turn off the cutting oxygen, turn off the current, and extinguish the flame--in that order. The cutting speed depends upon the thickness of the steel being cut

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