久久久精品免费视频_Forces Acting on a Gasketed Joint Forces Acting on a Gasketed Joint

国产精品久久久亚洲,日本一区二区不卡在线,国产精品视频一区二区三区,免费A级毛片18禁网站

DONDE SEAL

CHINA

Professional Of Mechanical Packing & Industrial Gasket

  Home About Us Products Technology Equipment Contact Us English Version 中文版  

How to install the gland packing?

How to cut gasket material?

How to choose spiral wound gasket?

Take a stand with your packing gland

How to install grafoil crinkle gasket tape?

Choose the right gasket

Why there is packing failure?

Spiral wound gasket production process

Graphite cut gasket

Installation and Maintenance Tips

Why Gaskets Are Used?

Installation instructions for gaskets

Effecting a Seal

Gasket Seating

Forces Acting on a Gasketed Joint

Sample Gasket Application Problem
Troubleshooting Leaking Joints
Gasket material
Mica Gasket material
Non-Asbestos Gasket Material
Methods or techniques of sheet metal working
   
   
   
   

Forces Acting on a Gasketed Joint

The Internal Pressure: These are the forces continually trying to unseal a gasketed joint by exerting pressure against the gasket (blowout pressure) and against the flanges holding the gasket in place (hydrostatic end force). See Figure 1
The Flange Load: The total force compressing the gasket to create a seal, i.e., the effective pressure resulting from the bolt loading.

Temperature: Temperature creates thermo-mechanical effects, expanding or contracting the metals, affecting the gasket material by promoting "creep relaxation" which is a permanent strain or relaxation quality of many soft materials under stress.The effect of certain confined fluids may become increasingly degrading as temperature rises and attack upon organic gasket materials is substantially greater than at the ambient temperatures (about 75°F). As a rule, the higher the temperature, the more critical becomes the selection of the proper gasket.

Medium: The liquid or gas against which the gasket is to seal.

General Conditions: The type of flange, the flange surfaces, the type of bolt material, the spacing and tightness of the bolts, etc.

Each of these factors require consideration before an effective gasket material is finally chosen. However, the proper gasket may often be rejected because failure occurred due to a poorly cleaned flange face, or improper bolting-up practice. These details require careful attention, but if complied with will help eliminate gasket blow-out or failure.

There are three principal forces acting on any gasketed joint. They are: Bolt load and/or other means of applying the initial compressive load that flows the gasket material into surface imperfections to form a seal. The hydrostatic end force, that tends to separate flanges when the system is pressurized. Internal pressure acting on the portion of the gasket exposed to internal pressure, tending to blow the gasket out of the joint and/or to bypass the gasket under operating conditions. There are other shock forces that may be created due to sudden changes in temperature and pressure. Creep relaxation is another factor that may come into the picture.

Figure 1 indicated the three primary forces acting upon a gasketed joint which we will consider for this discussion. The initial compression force applied to a gasket seating surfaces regardless of operating condition. Initial compression force must be great enough to compensate for the total hydrostatic end force that would be present during operating conditions. It must be sufficient to maintain a residual load on the gasket/flange interface. From a practical standpoint, residual gasket load must be "X" time internal pressure if a tight joint is to be maintained. This unknown quantity "X" is what is known as the "," factor in the ASME unfired pressure vessel code and will vary depending upon the type of gasket being used. Actually the "m" value is the ratio of residual unit stress (bolt load minus hydrostatic end force) on gasket (psi) to internal pressure of the system. The larger the number used for "m," the more conservative the flange design would be, and the more assurance the designer has of obtaining a tight joint. >>The End

浙ICP備09001215   Copyright:CIXI ZONDE SEALING & GASKET CO.,LTD.
Address:Ximenwai Industrial District,Longshan Town,Cixi,Ningbo City,China.
Tel:+86-574-63787875, 63787080 Fax:+86-574-63787241 
E-mail: mgr@chinaseal.cn; wangbo@chinaseal.cn
丁香五月综合在线| 国产精品久久久久久岛国| 亚洲熟女综合色一区二区三区| 亚洲人成小说网站色在线| 国内最真实的XXXX人伦| 婷婷五月激情一区二区 | 真人做受120分钟免费看| 精品欧美久久久久久| 17c国产激情二区| 女性高爱潮AAAA级视频免费| 国语自产偷拍精品视屏| 亚洲AV中文AⅤ无码AV日韩| 流白浆国产| 亚洲高清一区ftp| 殴洲无码精品| 国产内射| 在线欧美中文字幕农村电影| 一边摸一边抽搐一进一出视频| 国产99r| 久热欧美| 日本天天色| 成人免费视频在线观看| 亚洲天堂日韩欧美| 欧美一区日韩一区| 黄色电影久久久久| 婷婷激情四色| 亚洲91成人精品视频| 视频网站观看你懂的| 国产精品爽爽V在线观看无码| 西西人体www大胆高清视频| 天气| 亚洲色图五月天| 久久精品国产精品青草| 日本午夜| 久久性动态| 国产天美传媒性色AV出轨| 中文字幕人妻一区二区河南实里| 男后进入动态图日本| 亚洲AⅤ男人的天堂在线观看| 亚洲日本一线产区二线区| 婷婷五月综合人人网|