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JIS Standard Rising Stem Metal-Seated Gate Valve

JIS Standard Rising Stem Metal-Seated Gate Valve

  • Model:Z41T-5K/Z41T-10K/Z41T-20K/Z41H-5K/Z41H-10K/Z41H-20K
  • Specification: DN50-DN500
  • Temperature:-20~+150℃-425~550℃
  • Medium:Water, oil products, steam, gas and corrosive media.
  • Pressure:5K–20K
  • Connection method: Flange
  • Driving method:Manual, Bevel Gear Drive, Electric
  • Material:Ductile iron, cast steel, stainless steel
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JIS Standard Rising Stem Metal-Seated Gate ValveOverview

JIS rising stem Japanese standard hard seal gate valve is a rising stem wedge gate valve designed and manufactured strictly in accordance with Japanese Industrial Standards (JIS). The valve stem rises and falls together with the gate, and the valve opening can be intuitively judged by observing the height of the valve stem extension. The sealing surface adopts a metal to metal hard sealing structure (such as alloy steel welding) to form a reliable hard sealing pair. The connection end complies with Japanese standard flange standards (such as JIS B 2238, JIS B 2210) and is suitable for pipeline systems in Japan and Asia that follow the Japanese standard system. This valve is designed specifically for medium and high pressure, high temperature, and wear-resistant working conditions, and is an ideal choice for Japanese funded enterprises, export equipment to Japan, and engineering projects that adopt Japanese standard design. Widely used in petrochemical, municipal water supply, sewage treatment, power, shipbuilding, and general industrial pipeline systems in Japan and Asian countries (such as South Korea and Southeast Asia) that adopt Japanese standard design. Especially suitable for Japanese owned enterprises' factories in China, export equipment to Japan, and engineering projects constructed according to JIS standards. Commonly used for transporting water, steam, oil, gas, and weakly corrosive media in medium and high pressure pipelines, as a key cutting device that requires intuitive display of opening, easy monitoring, and maintenance.

JIS Standard Rising Stem Metal-Seated Gate Valve Product Drawing

JIS Standard Rising Stem Metal-Seated Gate ValveCharacteristic

1. Complies with JIS Japanese standard specifications

The design, dimensions, testing, and acceptance strictly follow Japanese industrial standards (such as JIS B 2031, JIS B 2002, JIS B 2210), and the pressure rating, structural length, and flange size fully comply with Japanese standard requirements, ensuring perfect compatibility with Japanese standard piping systems.

2. Clear stem structure, intuitive valve position

The valve stem rises and falls with the gate, and the operator can accurately judge the valve opening by observing the height of the valve stem extension, which is convenient for system process control and safety management, and meets the requirements of Japanese standards for operational visibility.

3. Metal hard seal (hard seal)

The sealing surface of the valve disc and seat is made of alloy steel (such as 13Cr, SCS13 hardened treatment) with high hardness, wear resistance, erosion resistance, and high temperature resistance. It is suitable for steam, hot water, oil, and particulate media, and has a long service life.

4. Japanese standard flange connection

Flanges with connection ends that comply with JIS B 2238 or JIS B 2210 standards (such as 5K, 10K, 16K, 20K pressure ratings), with sealing surfaces in the form of flat or protruding surfaces, seamlessly interface with Japanese standard piping systems.

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 conveying systems and meeting the hydraulic performance requirements of Japanese standards.

6. Multiple materials to choose from

The valve body material can be selected from gray cast iron (FC), ductile iron (FCD), cast steel (SCPH), stainless steel (SCS13/SCS14), etc., to meet the requirements of different media and working conditions, with a wide range of applicable temperatures.

JIS Standard Rising Stem Metal-Seated Gate Valvestructure principle

Part Name Material

体盖瓣 Body Cover Disc阀杆 Stem密封面 Sealing Face垫片(环) Sealing Shim填料 Packing工作温度℃ Working Temperature适用介质Suitable Medium
WCB2Cr1313Cr STL 木体材料 With Body Material 尼龙 Nylon增强柔性石墨 13Cr/柔性石墨Enhanced Flexible Graphite 1Cr13/Flexible Graphite SFB-2 08软钢 08 Soft Steal F304 F316 F304L F316L柔性石墨 增强柔性石墨 Flexible Graphite Enhanced Flexible Graphite SFB/260 SFP/260 PTFE≤425水 蒸汽 油品 Water Steam Petroleum Products
WC138CrMoAl 25Cr2MoV≤425
WC6≤540
WC9≤570
C5 C12≤540
CF8F304≤200硝酸 醋酸 尿素 Nitric acid Acetic acid


JIS Standard Rising Stem Metal-Seated Gate Valvetechnology parameter

Performance Specifications Table

设计与制造 Design and Manufacture强度试验 Shell Test水密封试验 WaterSeal Test气密封试验 Air SealTest
MPaLbf/in2MPaLbf/in2MPaLbf/in2
1503.04302.23150.4-0.760-100
3007.711105.7815
60015.3222011.3630
90023.03330172445


JIS Standard Rising Stem Metal-Seated Gate Valvestandard size

JIS Standard Rising Stem Metal-Seated Gate Valve Outline Drawing

Dimension Chart

DN(mm)inLDD1D2bn-φdHD0W(kg)
502178155120100164-1940920024
6521/2190175140120184-1953525031
803203185150130188-1957025040
1004229210175155188-1959025055
1506267280240215228-2363030090
20082923302902652212-23960350145
250103304003553252415-251158400230
300123564504003702416-251378450330
350143814904454152616-251543500460
400164065605104752816-271738600600
450184326205655303020-271959600980
500204576756205853020-272214680960


Articles related to technology research and development
  • soft-sealed gate valve patented

       The utility model discloses a novel soft-seal gate valve, which includes a valve body, a valve cover, a valve rod, a valve chamber, and a rubber-coated gate plate. The valve rod penetrates through the valve cover and is connected to the rubber-coated gate plate. The valve chamber includes a medium channel for medium circulation and a connecting chamber that is connected to the medium channel and corresponds to the valve cover. The rubber-coated gate plate is adapted to the connecting chamber and used to cut off or connect the medium channel. The medium channel includes an inlet end and an outlet end. Guide rails are arranged on the inner wall of the connecting chamber on both sides opposite to the rubber-coated gate plate. Both sides of the rubber-coated gate plate are provided with metal sliders, and the metal sliders are provided with sliding grooves that are adapted to the guide rails. Compared to existing soft-seal gate valves, the utility model has good sealing performance, convenient disassembly and assembly, and a long service life for the rubber-coated gate plate.

    1. A novel soft-seal gate valve comprises a valve body, a valve cover, a valve rod, a valve chamber, and a rubber-coated gate plate. The valve rod penetrates through the valve cover and is connected to the rubber-coated gate plate. The valve chamber includes a medium passage for medium circulation and a connecting chamber connected to the medium passage and corresponding to the valve cover. The rubber-coated gate plate is fitted to the connecting chamber and used to cut off or connect the medium passage. The medium passage includes an inlet end and an outlet end. The utility model is characterized in that guide rails are arranged on both sides of the rubber-coated gate plate on the inner wall of the connecting chamber, metal sliding blocks are arranged on both side walls of the rubber-coated gate plate, sliding grooves adapted to the guide rails are opened on the metal sliding blocks, a sealing groove is opened on the top of the valve cover in the axial direction relative to the valve rod, a clamping block is arranged at the opening of the sealing groove, at least three clamping blocks are arranged circumferentially at intervals relative to the central axis of the sealing groove, a sealing seat fitted to and sleeved on the valve rod is arranged inside the sealing groove, a fixed block corresponding to the rotational fit of the clamping block is arranged on the outer circumferential wall at the bottom of the sealing seat, a pressing block abutting against the top surface of the valve cover is arranged on the top of the sealing seat, and a rubber sleeve is sleeved on the top of the valve cover.

    2. A novel soft-seal gate valve according to claim 1, characterized in that a limit opening is provided at the position on the pressure block corresponding to the gap between two adjacent clamping blocks, a limit groove is provided on the end face of the pressure block, a thrust stopper is provided on the sealing seat, and the thrust stopper comprises a fixed disc adapted to the limit groove and a thrust block provided on the outer circumferential wall of the fixed disc and adapted to the limit opening.

    3. A novel soft seal gate valve according to claim 2, characterized in that a limiting block is arranged on the outer circumferential wall of the sealing seat at a position between two adjacent fixing blocks, and a clamping groove adapted to the limiting block is provided on the thrust block.

    4. A novel soft seal gate valve according to claim 1, characterized in that a stepped groove is provided in the valve body at the inlet end, and a filter screen is arranged inside the stepped groove.

    5. A novel soft-seal gate valve according to claim 4, characterized in that the side of the filter screen facing the inlet end is provided with a flow dividing device, which comprises a fixing ring that fits with interference with the inner wall of the stepped groove, a connecting column located on the central axis of the fixing ring, and a flow dividing plate connected to the fixing ring and the connecting column. The side of the stepped groove located on the inlet end facing the fixing ring is provided with an inner groove, and an elastic snap ring is arranged in the inner groove.

    6. A novel soft seal gate valve according to claim 5, characterized in that the side wall of the diverter plate facing the inlet end has a triangular cross-section.

    7. A novel soft seal gate valve according to claim 5, characterized in that one end of the connecting column facing the inlet end is hemispherical