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Overview
GGG50 German standard soft seal gate valve is a concealed stem soft seal gate valve designed and manufactured strictly in accordance with German standards (DIN/EN). The valve body is made of GGG50 ductile iron material, which has excellent mechanical strength and impact resistance. The valve stem is located inside the valve body and only rotates without lifting or lowering during opening and closing, with a compact structure. The gate adopts a soft sealing structure covered with rubber as a whole, forming an elastic sealing pair with the valve seat to achieve zero leakage. The valve connection end complies with German flange standards (such as DIN EN 1092) and is suitable for water supply, heating, and industrial piping systems that follow the German standard system. Widely used in European and global municipal water supply networks, sewage treatment plants, HVAC systems, fire water supply pipelines, and industrial circulating water systems with German standards for medium and low pressure (PN10/16/25) pipelines, as a cut-off device for manually controlling fluid flow. Especially suitable for drinking water and water treatment systems with high requirements for sealing, corrosion resistance, and service life.

GGG50 DIN Standard Resilient-Seated Gate Valve Product Drawing
Characteristic
1.GGG50 ductile iron valve body, high strength
The valve body is made of GGG50 ductile iron (corresponding to EN-GJS-400-15), which has high strength, high elongation, and good impact resistance. Its mechanical properties are superior to gray cast iron and it is suitable for medium and high pressure pipelines.
2. Compliant with German standards and internationally recognized
The design, dimensions, and testing strictly follow German industrial standards (such as DIN 3352, DIN EN 1171), and flange connections comply with DIN EN 1092 standards, making them perfectly compatible with German standard piping systems. They are widely used in European and global projects that adopt German standard designs.
3. The overall package is sealed with soft glue, with zero leakage
The gate plate is coated with high-quality EPDM or NBR as a whole, and is combined with a metal skeleton through precision vulcanization technology to form an elastic sealing pair with the valve seat, achieving bidirectional bubble level sealing.
4. Compact structure of concealed pole, saving space
The valve stem is built-in and does not lift or lower, with a constant installation height, making it particularly suitable for installation in confined spaces such as valve wells and basements.
5. Full bore design with low flow resistance
Adopting a full bore flow channel, the medium has low flow resistance and pressure loss, making it suitable for high flow water supply and heating systems.
6. Corrosion resistance and long service life
The inner cavity of the valve body is coated with epoxy resin electrostatic spraying (in accordance with drinking water standards), and key components such as the valve stem and bolts are made of stainless steel or copper alloy, with excellent corrosion resistance and suitable for drinking water and sewage systems.
7. Easy to operate, reliable sealing
Optimize the transmission structure and reduce the operating torque. Rubber elastic seals can automatically compensate for wear and temperature changes, maintaining sealing performance for a long time.

GGG50 DIN Standard Resilient-Seated Gate Valve Structure Diagram
Parts Name and Material List
| 部件 (Component) | 材质 (Material) |
| Body阀体 | EN GJS-500-7 |
| Bonnet阀帽 | EN GJS-500-7 |
| Wedge楔块 | EN GJS-500-7 |
| Handwheel手轮 | EN GJL-250 |
| Stem阀杆 | Stainless steel (X20 CR13)不锈钢 |
| Gland packing填料密封 | Graphite |
| Seats阀座 | Stainless steel (X20 CR13)不锈钢 |
| Gasket body/bonnet垫片体盖 | Klingsil |
Performance Specification Sheet
| Température (°C) maxi 最高温度(℃) | 180 |
| Pression / Pressure / Druck (Bar) maxi压力最大值 | 16 |

Outline Drawing of GGG50 DIN Standard Resilient-Seated Gate Valve
Outline Dimension Table
| DN | PN | L | H2 | H3 | d1 PN10 | d1 PN16 | d2 PN10 | d2 PN16 | nxd3 PN10 | nxd3 PN16 | b PN16 | d5/ d6 | Poids – Weight - Gewicht重量 |
| mm | kg | ||||||||||||
| 40 | 16 | 136 | 305 | 345 | 150 | 150 | 110 | 110 | 4x18 | 4x18 | 16 | 160/16 | 12 |
| 50 | 16 | 142 | 318 | 378 | 165 | 165 | 125 | 125 | 4x18 | 4x18 | 18 | 160/16 | 15 |
| 65 | 16 | 154 | 330 | 395 | 185 | 185 | 145 | 145 | 4x18 | 4x18 | 18 | 160/16 | 19 |
| 80 | 16 | 160 | 340 | 425 | 200 | 200 | 160 | 160 | 8x18 | 8x18 | 20 | 160/16 | 25 |
| 100 | 16 | 172 | 437 | 543 | 220 | 220 | 180 | 180 | 8x18 | 8x18 | 20 | 200/20 | 33 |
| 125 | 16 | 186 | 544 | 679 | 250 | 250 | 210 | 210 | 8X18 | 8X18 | 22 | 250/24 | 45 |
| 150 | 16 | 200 | 613 | 778 | 285 | 285 | 240 | 240 | 8x22 | 8x22 | 22 | 250/24 | 53 |
| 200 | 16 | 228 | 765 | 980 | 340 | 340 | 295 | 295 | 8x22 | 12x22 | 24 | 250/26 | 70 |
| 250 | 16 | 255 | 890 | 1154 | 395 | 405 | 350 | 355 | 12x22 | 12x26 | 28 | 315/26 | 102 |
| 300 | 16 | 285 | 1060 | 1375 | 445 | 460 | 400 | 410 | 12x22 | 12x26 | 28 | 315/28 | 160 |
| 350 | 6 | 315 | 1200 | 1570 | 505 | 520 | 460 | 470 | 16x22 | 16x26 | 30 | 400/- | 203 |
| 400 | 6 | 340 | 1310 | 1730 | 565 | 580 | 515 | 525 | 16x26 | 16x30 | 32 | 400/- | 256 |
| 500 | 4 | 380 | 1620 | 2140 | 670 | 715 | 620 | 650 | 20x26 | 20x33 | 34 | 500/- | 393 |
| 600 | 4 | 425 | 1920 | 2540 | 780 | 840 | 725 | 770 | 20x30 | 20x36 | 46 | 500/- | 578 |

Model:
Z45X-10/Z45X-16/Z45X-10Q/Z45X-16QSpecification:
DN50-DN1000Pressure:
PN10-PN25Material:
stainless steel
Model:
KZ45X-10/KZ45X-16Q/KZ45X-25Q/KZ45X-16P/KZ45X-25P/KZ45X-16R/KZ45X-25RSpecification:
DN50-DN300Pressure:
PN10-PN25Material:
cast iron, ductile iron, stainless steel
Model:
Z43W-16C/Z43W-25C/Z43W-40C/Z43W-64C/Z43W-16P/Z43W-25P/Z43W-40P/Z43W-64P/Z43W-16R/Z43W-25R/Z43W-40R/Z43W-64RSpecification:
2" ~ 48",DN50-DN300Pressure:
PN10-PN64Material:
Cast steel, stainless steel
What are the structural characteristics of knife gate valves? A detailed explanation of their six major advantages and application areas
Description: This article provides a detailed analysis of the unique structure, six core characteristics, and working principle of knife gate valves. It explains how they achieve automatic control through accessories and are widely used in industries such as chemical, paper, and wastewater treatment. They are ideal sealing and throttling valves.
Text:
The knife gate valve, as a high-performance industrial valve, is widely used in various fields such as chemical industry, coal, sugar manufacturing, sewage, paper making, etc., due to its unique structure and excellent performance. It is particularly suitable for regulating, throttling, and cutting off media in pipelines. This article will provide an in-depth analysis of the structural composition and core characteristics of the knife gate valve.
I. Basic Structure and Working Principle of Knife Gate Valve The knife gate valve is primarily composed of left/right valve bodies, U-shaped sealing rings, gate plates, valve stems, brackets, and driving devices (such as cylinders). Its core opening and closing actions are typically driven by cylinders. With supporting accessories such as solenoid valves and proximity switches, it can easily achieve on-off control, signal feedback, or continuous automatic adjustment, demonstrating a high degree of automation integration.
II. Six Core Structural Features of Knife Gate Valves The excellent performance of knife gate valves stems from their carefully designed structure, which is mainly reflected in the following six aspects:
The wafer-style design is compact and lightweight. Utilizing an advanced wafer-style connection structure, it significantly reduces the volume and weight compared to traditional flange valves, saving installation space and reducing the load on the pipeline system.
The full-bore flow passage provides a completely open straight-through channel when the non-clogging valve is opened, allowing the medium to pass through unimpeded. This design effectively prevents the deposition and clogging of media such as slurry and particles within the valve body, making it particularly suitable for applications involving fibers or solid particles, such as in paper making and wastewater treatment.
U-shaped seal ring, excellent sealing performance. A specially designed elastic U-shaped seal ring is used as the main seal, which can adaptively compensate for wear, ensuring that the valve maintains good bidirectional sealing performance and low leakage rate even after long-term use.
The elastic valve seat facilitates the maintenance of the gate plate's external seal, which is achieved by an elastic sealing strip embedded in the valve body. This sealing strip can be adjusted or quickly replaced using screws and a pressure plate, making maintenance simple and greatly extending the service life of the valve while reducing maintenance costs.
Streamlined design ensures minimal flow resistance. Due to the straight and smooth channels, as well as the thin and sharp gate plate (shaped like a blade), the flow resistance experienced by the medium is negligible, contributing to a reduction in system energy consumption.
Modular structure, convenient for installation and maintenance. The overall structure is designed to be simple and highly modular, making installation, disassembly, and routine maintenance very convenient, significantly reducing downtime for maintenance.
III. Summary of Application Scenarios Due to its prominent features of anti-clogging, easy adjustment, good sealing, and low flow resistance, the knife gate valve has become an ideal choice for handling harsh working conditions such as viscous media, slurry, dust mixtures, and sewage. It plays an irreplaceable key role in pulp adjustment in the paper industry, material liquid transportation in the chemical industry, emission control in sewage treatment plants, and solid material pipelines in industries such as coal and sugar manufacturing.
In summary, the knife gate valve is a valve solution that highly combines practicality, reliability, and economy. Its innovative structural design directly addresses common pain points in industrial applications, making it an indispensable and important component in modern process industry pipeline systems.
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