Flanged Pneumatic Ceramic Swing Double Disc Discharge Gate Valve for Ash System

Product Details
Customization: Available
Media: Fly Ash
Temperature: High Temperature
Gold Member Since 2024

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  • Flanged Pneumatic Ceramic Swing Double Disc Discharge Gate Valve for Ash System
  • Flanged Pneumatic Ceramic Swing Double Disc Discharge Gate Valve for Ash System
  • Flanged Pneumatic Ceramic Swing Double Disc Discharge Gate Valve for Ash System
  • Flanged Pneumatic Ceramic Swing Double Disc Discharge Gate Valve for Ash System
  • Flanged Pneumatic Ceramic Swing Double Disc Discharge Gate Valve for Ash System
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Basic Info.

Model NO.
FRXZ644TC
Material
Ceramic
Connection Form
Flange
Pressure
Ordinary Pressure
Actuator
Pneumatic
Seal Surface
Parallel Gate Valve
Thread Position of Valve Rod
Outside Gate Valve
Usage
Emptying, Drain
Standard
GB
Application
Industrial Usage, Fly Ash
Face to Face
L Can Be Customized According to Customer Requirem
Color
Colors Can Be Customized
Certificate of Origin
Signature and Seal Authorized by Chinese Customs
Air Source Connector
as Required on Site
Transport Package
Wooden Box
Specification
color, blue, gray, material color
Trademark
FREE-VALVE
Origin
China
HS Code
848180
Production Capacity
200pieces/Month

Product Description

FREE-VALVE Flanged Pneumatic Ceramic Swing Double Disc Discharge Gate Valves are designed for pressurized and vacuum systems including dense and dilute phase pneumatic conveying systems, discharge and vent applications in steel plant and coal power. The double ceramic sealing faces of the valves are well ground and polished, which is ensure a reliable sealing performance of the valve.

Features
1. The valves are sturdy and maintenance free enough to withstand the most severe conditions.
2.The sealing faces of the valve are made of toughened engineering ceramics with good abrasion resistance and prolonged service life.
3.Product with customized structural length and connection size is available.
4.The valve plate rotational motion of the valve disc can avoid the ash deposition on the sealing surface, so the valves have much longer service.
5.The rotation structure with shorter stroke makes and the whole of ceramic sealing faces of the valves, which are ensure a reliable sealing performance of the valve.
6.The ceramic gate is designed with double rotary disc ,two-side sealing can realized due to double disc structure of the Ceramic Rotary Double Disc Gate Valve.
7.The valve body is equipped with a blow hole to prevent the body cavity from accumulating fly ash.

Flanged Pneumatic Ceramic Swing Double Disc Discharge Gate Valve for Ash System
Technical Specification:
1 Size Range NPS2~NPS16,DN50~DN400
2 Nominal pressure NPS4~NPS12,DN100~DN300
3 Applicable Temperature 0~200ºC
4 Connection Type Flange
5 Disc Carbon steel+ceramic,stainlees steel+ceramic
6 Seat Ceramic
7 Pressure test GB/T13927, API598
8 Face to Face GB/T12221, API609
9 Operating Pneumatic double acting cylinder

Main outline and connection dimensions
DN PN L D D1 D2 n-∅d
DN50 PN10 200 160 125 99 4-∅18
DN65 PN10 220 180 145 118 4-∅18
DN80 PN10 230 200 160 132 8-∅18
DN100 PN10 250 220 180 156 8-∅18
DN125 PN10 265 250 210 186 8-∅18
DN150 PN10 280 285 240 210 8-∅22
DN200 PN10 310 340 295 266 8-∅22
DN250 PN10 400 395 350 320 12-∅22
DN300 PN10 450 440 400 370 12-∅22

Note:Face to Face dimension "L" can be customized according to customer requirements

Application: 
FREE-VALVE Flanged Pneumatic Ceramic Swing Double Disc Discharge Gate Valves are suitable for coal fired power plant, steel plant, cereals transport system, cement transport systems. In these applications, pneumatic conveying method is used to reduce manpower demand, and improve system efficiency and reliability, and is easy to realize automation.
Flanged Pneumatic Ceramic Swing Double Disc Discharge Gate Valve for Ash System
Flanged Pneumatic Ceramic Swing Double Disc Discharge Gate Valve for Ash System
Flanged Pneumatic Ceramic Swing Double Disc Discharge Gate Valve for Ash System
Flanged Pneumatic Ceramic Swing Double Disc Discharge Gate Valve for Ash System
 

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