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YZ11X Stainless Steel Branch Pipe Pressure Reducing Valve

  • Model:YZ11X-10P/YZ11X-16P
  • Specification:DN15-DN50
  • Temperature:≤80℃
  • Medium:Water and liquids with properties similar to water
  • Pressure:PN10,PN16
  • Connection method:NPT
  • Driving method:spring
  • Material:Stainless steel
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  • Product Overview
  • Performance Data
  • Size Weight

YZ11X Stainless Steel Branch Pipe Pressure Reducing Valve Overview

The YZ11X stainless steel branch pipe pressure reducing valve is a compact direct-acting pressure reducing device specifically designed for pipeline branch systems. Adopting a spring-diaphragm mechanical linkage structure, it achieves automatic pressure stabilization through the dynamic balance between medium pressure and spring force. The valve can stably reduce the high and unstable pressure of the main pipeline to the set working pressure required by branch pipes or terminal equipment, effectively preventing water hammer, overpressure and pressure fluctuations from damaging the branch system. Its integral stainless steel structure balances corrosion resistance and structural strength, making it an ideal choice for precise regional pressure control in building water supply, HVAC systems, industrial equipment branch pipelines and clean fluid systems. The valve features internal thread or crimping connections with a sophisticated and compact structure, suitable for installation in space-constrained pipeline branches, equipment inlets and instrument front ends—especially for application scenarios with high requirements for hygiene level and corrosion resistance.

YZ11X Stainless Steel Branch Pipe Pressure Reducing Valve Product Image

YZ11X Stainless Steel Branch Pipe Pressure Reducing Valve Features

1. Compact Design for Branch Pipes

The valve body adopts a streamlined integral forging structure, featuring small size and light weight. It can be directly installed at pipeline branches or equipment inlets without additional support. With flexible installation directions, it is suitable for both horizontal and vertical pipelines, greatly saving installation space and simplifying pipeline layout.

2. All-Stainless Steel Corrosion-Resistant Structure

The valve body, bonnet and key internal components are made of 304/316 stainless steel. The surface is precision-polished or passivated, offering excellent corrosion resistance and erosion resistance. It is fully applicable to hygienic working conditions such as drinking water, high-purity media, weakly corrosive chemical fluids and high-temperature hot water.

3. Direct-Acting Sensitive Pressure Stabilization

Equipped with a pressure sensing system composed of a high-elasticity stainless steel diaphragm and a precision adjusting spring, it responds sensitively to downstream pressure changes and can instantly drive the valve core for compensation adjustment. No external control source is required, and it can maintain stable outlet pressure when flow changes, with a control accuracy of ±10%.

4. Built-In Filtration and Anti-Clogging Design

The water inlet end of the valve body integrates a high-mesh stainless steel filter screen (usually 80-100 meshes), which effectively intercepts pipeline impurities and prevents particles from jamming the valve core or wearing the sealing surface. The straight flow channel design has no retention dead ends, reducing the risk of impurity accumulation and extending the valve service life.

5. Easy Adjustment and Maintenance

A top-mounted adjusting knob with a dust cover allows intuitive setting of the outlet pressure value (usually adjustment range 0.05-0.8MPa) by rotating with tools. Adopting modular sealing components, replacement of diaphragms or seals can be completed without disassembling the valve body, significantly reducing operation and maintenance costs.

YZ11X Stainless Steel Branch Pipe Pressure Reducing Valve Structure Diagram

Parts Name Material List

NO.NameMaterial
1bodystainless steel
2discstainless steel
3O ringNBR
4seal ringNBR
5diaphragmFabric-Reinforced Nitrile Rubber
6regulating spring60Si2Mn
7regulating bolt2Cr13

Performance Specification
Nominal Pressure1.0/1.6MPa
Shell Test1.5/2.4
Seal Test1.1/1.76
Suitable Temp.≤80


Dimensions Standard Requirements

1. The structural length of the valve shall conform to the standard GB/T12221.

2. The connecting flange shall conform to the standard GB/T 9113.

YZ11X Stainless Steel Branch Pipe Pressure Reducing Valve View Drawing

YZ11X Stainless Steel Branch Pipe Pressure Reducing Valve Dimensions Table

公称通径DN(mm)尺寸 (mm)
mminABCG
151/230838772
203/430838772
251341008880
3211/44011510280
4011/256130122100
50256130122100


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    Model:

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    Specification:

    DN15-DN50

    Pressure:

    PN10,PN16

    Material:

    aluminum bronze
  • YB13 Internal Thread Proportional Pressure Reducing Valve

    Model:

    YB13-6P/YB13-10P/YB13-16P/YB13-25P

    Specification:

    DN50-500

    Pressure:

    PN6,PN10,PN16,PN25

    Material:

    Cast Iron、Cast Steel、Stainless Steel
  • YZ13X NPT Pressure Reducing Valve with Pressure Gauge

    Model:

    YZ13X-10P/YZ13X-16P/YZ13X-10C/YZ13X-16C

    Specification:

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    Pressure:

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    Material:

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Does pressure reducing valve noise disturb people? Understand the three root causes and solutions in one article

Is the noise from the pressure reducing valve disturbing? Understand the 3 fundamental reasons and solutions in one article

The harsh noise generated by pressure reducing valves during operation is not only an environmental pollution problem, but also a precursor to equipment failure. This article will delve into the three fundamental causes of noise generated by pressure reducing valves - mechanical vibration noise, fluid dynamics noise, and aerodynamic noise, and provide professional solutions.

1、 Mechanical vibration noise: a test of design and process

Mechanical vibration noise is the most common type of noise in pressure reducing valves, mainly divided into two forms:

1. Low frequency vibration noise

Causes:

Medium jet and pressure pulsation

The outlet flow rate of the valve is too fast

Unreasonable pipeline layout

Insufficient rigidity of moving parts inside the valve

2. High frequency vibration noise (resonance phenomenon)

Causes:

The natural frequency of the valve coincides with the excitation frequency of the medium

Easy to occur within a specific decompression range

Sensitive to changes in working conditions, with significant noise fluctuations

Solution:

Optimize the clearance design between the liner and valve stem

Improve machining accuracy

Adjust the natural frequency of the valve

Enhance the rigidity of active components

Select appropriate damping materials

2、 Fluid Dynamics Noise: Challenges in Fluid Control

The turbulence and eddies generated when the fluid passes through the pressure reducing valve can cause significant noise problems.

1. Turbulent noise

Features: Low frequency, low noise level

Cause: Interaction between turbulent fluid and the inner surface of valves/pipelines

Impact: Usually does not constitute a serious noise problem

2. Cavitation noise (the most harmful)

Production mechanism:

During the depressurization process, the fluid flow velocity reaches the critical value

The liquid begins to vaporize, producing bubbles

Bubble explosion under pressure generates shock waves

Local instantaneous pressure can reach 196 MPa

Key data:

Initial value of Δ p: the critical pressure reduction value at which liquid begins to cavitation

Exceeding this value leads to a sharp increase in noise

Preventive measures:

Control the actual pressure reduction value below the critical value

Optimize the design of valve disc fluid direction

Adopting a multi-stage decompression structure

Choose anti cavitation materials

3、 Aerodynamic noise: characteristics of compressible fluids

When compressible fluids such as steam pass through pressure reducing areas, unique noise issues arise:

Production principle:

Conversion of fluid mechanical energy into sound energy

Interaction between high-speed airflow and valve structure

Sudden pressure changes cause gas expansion and sound emission

Control method:

Optimize the design of pressure reducing flow channels

Using mufflers or diffusers

Control the outlet flow rate

Reasonably set back pressure

Comprehensive solutions and selection suggestions

Preventive measures during the design phase

Parameter optimization: Accurately calculate operating parameters to ensure that the pressure reduction value is within the design range

Structural design: Adopting streamlined flow channels to reduce turbulence generation

Material selection: Select special alloys with high rigidity and cavitation resistance

Frequency analysis: avoid the natural frequency of the valve coinciding with the excitation frequency

Key points for installation and maintenance

Correct installation: Ensure the length of the front and rear straight pipe sections to avoid sharp bends

Regular testing: Establish a noise monitoring mechanism to detect problems early on

Timely maintenance: replace worn parts and maintain the best condition of the valve

Brand selection recommendation

High pressure differential operating condition: choose multi-stage pressure reducing valve

Liquid medium: focus on anti cavitation design

Gas/Steam: Focus on Aerodynamic Optimization

Sensitive environment: Choose a low-noise dedicated model

Professional Technical Summary

The essence of the noise problem of pressure reducing valves is the process of energy conversion and release. Fundamentally, all noise issues are closely related to the rationality of valve design, manufacturing process accuracy, and compatibility with operating conditions. Through scientific selection, correct installation, and standardized maintenance, it is entirely possible to control the noise of the pressure reducing valve within an acceptable range.

Immediate action suggestion: If you are troubled by pressure reducing valve noise, it is recommended to first record the noise characteristics (frequency, time period, change pattern), check whether the operating parameters deviate from the design values, and promptly contact professional technicians for diagnosis and treatment.

Keywords of this article: pressure reducing valve noise, mechanical vibration noise, cavitation noise, fluid dynamics noise, pressure reducing valve failure, valve noise reduction, industrial noise control, equipment maintenance

Extended reading: For more professional knowledge about industrial valve selection and maintenance, please follow our technical column to obtain the latest solutions and industry practice cases.