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used for architecture</a></p></header><div class="excerpt"><p>Autocad vs Revit- Difference between Autocad and Revit used for architecture
Autodesk AutoCAD and Autodesk Revit are the two leading applications of architecture industry in the world. AutoCAD is a...</p><div class="button-container"><a rel="nofollow" class="button reverse" href="//www.gunkrazy.com/autocad-vs-revit-difference-autocad-revit-used-architecture/" aria-label="View Post: Autocad vs Revit- Difference between Autocad and Revit used for architecture">View Post</a></div></div></div></article> <script type="application/ld+json">{"@context":"http:\/\/schema.org\/","@type":"BlogPosting","name":"Autocad vs Revit- Difference between Autocad and Revit used for architecture","url":"\/\/www.gunkrazy.com\/autocad-vs-revit-difference-autocad-revit-used-architecture\/","articleBody":"Autocad vs Revit- Difference between Autocad and Revit used for architecture\r\nAutodesk AutoCAD and Autodesk Revit are the two leading applications of architecture industry in the world. AutoCAD is a world class tool for drafting of interior and exterior of buildings while Revit is a smart solution for creating accurate plans for building information modeling (BIM) for large projects.\r\n\r\nBoth AutoCAD and Revit are widely used CAD software to create 2D drawings such as floor plans, levels, details, etc.; 3D models and objects; construction documents and rendered images. Autocad vs Revit\r\n\r\nWhile there are many differences between Revit and AutoCAD, both programmes are often used within the same organisation. The main difference is that AutoCAD is primarily a drafting tool to create basic geometry that represents real life, while Revit is used to create geometry that is equipped with real-life information, hence the term building information modelling, or BIM.\r\n\r\nAUTOCAD VS REVIT\r\n\r\nGet Revit and AutoCAD together in the Architecture, Engineering and Construction Collection.\r\nAutocad vs Revit- Difference between Autocad and Revit used for architecture\r\n\n\n\n\n\tAutodesk AutocadAutodesk Revit\n\n\n\n\n\tWidely used commercial software for 2D and 3D CAD Revit is a BIM tool. That is building information modeling. So here are some features you don't find in a CAD tool like autocad. \n\n\n\tAvailable for Windows and MacAvailable for Windows\n\n\n\tProfessional drafting and documentation toolsIntelligent 3D-model-based design tools\n\n\n\n\n\tAutoCAD is employed across a large range of industries, by architects, project managers, engineers, designers, and different professionals.Revit software is mainly designed for, structural engineers, architects, designers, MEP engineers, and contractors.\n\n\n\tWhen compared with Revit, AutoCAD is more flexible as you\u2019ve all the surface, mesh and solid commands of AutoCAD.Revit is stricter; you\u2019ve to do things correctly construction wise as you are building not just a 3D model but also a model that enables you to do coordination of the job and a lot more.\n\n\n\tAutoCAD is considered best for 2D drawing i.e. where only precise line work is needed, such as elevation detail drawings.Revit is considered best for modeling, generating cost schedules, collaboration and change management.","headline":"Autocad vs Revit- Difference between Autocad and Revit used for architecture","author":{"@type":"Person","name":"Sachin Thorat","url":"\/\/www.gunkrazy.com\/"},"datePublished":"2017-12-23","mainEntityOfPage":"False","dateModified":"February 23, 2020","image":{"@type":"ImageObject","url":"\/\/www.gunkrazy.com\/wp-content\/uploads\/2017\/12\/AUTOCAD-VS-REVIT-300x177.jpg","height":177,"width":300},"publisher":{"@context":"http:\/\/schema.org\/","@type":"Organization","name":"Learn Mechanical Engineering","logo":{"@type":"ImageObject","url":"\/\/www.gunkrazy.com\/wp-content\/uploads\/2020\/01\/learn-mech-logo-1-300x300.png","height":600,"width":60}}}</script> <article class="article-card horizontal "> <a href="//www.gunkrazy.com/autocad-vs-solidworks-difference-autocad-solidworks/" rel="nofollow"><div class="image-container" style="background-image: url('//www.gunkrazy.com/wp-content/uploads/2017/12/AutoCad-Solidworks-Difference-between-Autocad-300x91.jpg')"></div><span class="sr-only">link to AutoCad Vs Solidworks- Difference between Autocad and Solidworks</span></a><div class="copy-container"><header><p><a style="color: #ff392e!important" href="//www.gunkrazy.com/autocad-vs-solidworks-difference-autocad-solidworks/">AutoCad Vs Solidworks- Difference between Autocad and Solidworks</a></p></header><div class="excerpt"><p>AutoCad Vs Solidworks- Difference between Autocad and Solidworks
The design industry uses the AutoCAD and SolidWorks software packages extensively. Many designers know how to use both programs and...</p><div class="button-container"><a rel="nofollow" class="button reverse" href="//www.gunkrazy.com/autocad-vs-solidworks-difference-autocad-solidworks/" aria-label="View Post: AutoCad Vs Solidworks- Difference between Autocad and Solidworks">View Post</a></div></div></div></article> <script type="application/ld+json">{"@context":"http:\/\/schema.org\/","@type":"BlogPosting","name":"AutoCad Vs Solidworks- Difference between Autocad and Solidworks","url":"\/\/www.gunkrazy.com\/autocad-vs-solidworks-difference-autocad-solidworks\/","articleBody":"AutoCad Vs Solidworks- Difference between Autocad and Solidworks\r\nThe design industry uses the AutoCAD and SolidWorks software packages extensively. Many designers know how to use both programs and the applications are often used together on different elements of the same project. However, each package has its own strengths and is geared toward different aspects of design, with feature sets that reflect this distinction.\r\n\r\nAutoCad vs Solidworks\r\nAbout SolidWorks\r\nSolidWorks is a three-dimensinal modeling tool, which is used for creating accurate 3-D representations of objects. It is what is known as a parametric modeler, referring to the dimensions of created objects as parameters. You can create elationships between the various parameters of an object, which will automatically update when one of them is altered. This simulates the effect that changing one value would have on the object as a whole.\r\nAbout AutoCAD\r\nAutoCAD is one of the original PC-based design applications, used for creating the plans used by computer-controlled machining rigs. It's primarily focused on creating two-dimensional design blueprints, though later versions have added some 3-D support. The feature set of CAD has grown in line with commercially available computing power. It could initially use only simple lines, arcs and polygons, but as the power of home PCs has increased to handle more data, the feature-set of AutoCAD has expanded to match this capacity.\r\nAutoCad Vs Solidworks- Difference between Autocad and Solidworks\r\n\n\n\n\n\tAutocadSolidworks\n\n\n\n\n\tAutoCAD is a commercial computer-aided design (CAD) and drafting software application. Developed and marketed by Autodesk.SolidWorks is a solid modeling computer aided design (CAD) and computer aided engineering (CAE) computer program that runs on Microsoft Windows. SolidWorks is published by Dassault Syst\u00e8mes\n\n\n\t3D modeling functionality included, but less advanced than its 2D toolsParametric feature-based modeling means 3D design is intuitive\n\n\n\t AutoCAD is compatible with Mac and Windows computers.Works well with Windows computers only.\n\n\n\tPricing-AutoCAD costs $1,680.00, which puts it $685.00 more per year than average CAD software.Pricing-With a licensing fee of $1295 per year, this subscription is more cost effective than AutoCAD.\n\n\n\tFree AutoCAD licensing for studentsNo free student licenses\n\n\n\tGreat for architectural design and MEPLess useful in the building design sector\n\n\n\tNo simulation tools included\tRange of simulation packages\n\n\n\tAutoCAD works best with electrical, mechanical and plumbing project designs.SolidWorks works great for non-architectural drawings.","headline":"AutoCad Vs Solidworks- Difference between Autocad and Solidworks","author":{"@type":"Person","name":"Sachin Thorat","url":"\/\/www.gunkrazy.com\/"},"datePublished":"2017-12-23","mainEntityOfPage":"False","dateModified":"February 23, 2020","image":{"@type":"ImageObject","url":"\/\/www.gunkrazy.com\/wp-content\/uploads\/2017\/12\/AutoCad-Solidworks-Difference-between-Autocad-300x91.jpg","height":91,"width":300},"publisher":{"@context":"http:\/\/schema.org\/","@type":"Organization","name":"Learn Mechanical Engineering","logo":{"@type":"ImageObject","url":"\/\/www.gunkrazy.com\/wp-content\/uploads\/2020\/01\/learn-mech-logo-1-300x300.png","height":600,"width":60}}}</script> <article class="article-card horizontal "> <a href="//www.gunkrazy.com/creo-vs-solidworks-difference-creo-solidworks/" rel="nofollow"><div class="image-container" style="background-image: url('//www.gunkrazy.com/wp-content/uploads/2017/12/creo-vs-solidworks-300x241.jpg')"></div><span class="sr-only">link to Creo vs SolidWorks- Difference Between Creo and Solidworks</span></a><div class="copy-container"><header><p><a style="color: #ff392e!important" href="//www.gunkrazy.com/creo-vs-solidworks-difference-creo-solidworks/">Creo vs SolidWorks- Difference Between Creo and Solidworks</a></p></header><div class="excerpt"><p>Creo vs SolidWorks- Difference Between Creo and Solidworks
Creo and SolidWorks are two of the most popular 3D modeling applications used in the industry today. Both have very similar tools and use...</p><div class="button-container"><a rel="nofollow" class="button reverse" href="//www.gunkrazy.com/creo-vs-solidworks-difference-creo-solidworks/" aria-label="View Post: Creo vs SolidWorks- Difference Between Creo and Solidworks">View Post</a></div></div></div></article> <script type="application/ld+json">{"@context":"http:\/\/schema.org\/","@type":"BlogPosting","name":"Creo vs SolidWorks- Difference Between Creo and Solidworks","url":"\/\/www.gunkrazy.com\/creo-vs-solidworks-difference-creo-solidworks\/","articleBody":"Creo vs SolidWorks- Difference Between Creo and Solidworks\r\nCreo and SolidWorks are two of the most popular 3D modeling applications used in the industry today. Both have very similar tools and use the same tools in slightly different ways to create 3D models.\r\n\r\nCreo is part of a broader product development system developed by PTC. It connects to PTC\u2019s other solutions that aid product development, including Windchill for Product Lifecycle Management (PLM), Mathcad for engineering calculations and Arbortext for enterprise publishing software.\r\n\r\nSolidWorks is a solid modeling computer-aided design (CAD) and computer-aided engineering (CAE) computer program that runs on Microsoft Windows. SolidWorks is published by Dassault Syst\u00e8mes.\r\n\r\nSolidWorks is a solid modeler, and utilizes a parametric feature-based approach which was initially develop by PTC (Creo\/Pro-Engineer) to create models and assemblies. The software is written on Parasolid-kernel.\r\n\r\nParameters refer to constraints whose values determine the shape or geometry of the model or assembly. Parameters can be either numeric parameters, such as line lengths or circle diameters, or geometric parameters, such as tangent, parallel, concentric, horizontal or vertical, etc. Numeric parameters can be associated with each other through the use of relations, which allows them to capture design intent.\r\n\r\nDesign intent is how the creator of the part wants it to respond to changes and updates. For example, you would want the hole at the top of a beverage can to stay at the top surface, regardless of the height or size of the can. SolidWorks allows the user to specify that the hole is a feature on the top surface, and will then honor their design intent no matter what height they later assign to the can.\r\n\r\ncreo vs solidworks\r\n\r\nDifference Between Solidworks And Creo:\u00a0\r\n\r\n\n\n\n\n\tCreoSolidWorks\n\n\n\n\n\tCreo is simply a more robust and capable package than SolidWorks. SolidWorks is a mid-tier product. Creo is top-of-the-line.\n\n\n\tCreo is faster and much more stable with larger assembliesSolidworks is Used for Small and simple assemblies.\n\n\n\tCreo 3.0 can directly open data from most common CAD systems including Autodesk, CATIA, Siemens NX, SolidEdge, and SolidWorks. There\u2019s no need to convert or translate these files. Solidworks support iges ,step, stl, parasolid files. Solidworks do not support creo,catia Parts \n\n\n\tCreo is little complicated to useSolidworks UI is simple and easy to use.\n\n\n\tcreo is highly CostlySolidWorks used to be as much as 80% cheaper than creo.\n\n\n\tCreo- very lengthy process for any commond, even making references plane there is not a plenty of option as compare to solid works.Command Operation is simple and easy.\n\n\n\tCREO you have to deal a lot of work to do part modelling. But yeah for all the difficult or large and complex you should use CREO.Part Modelling is too quite easy and less complex on Solidworks.\n\n\n\tFor Assembly and Drafting CREO is much better than Solidworks. You can provide proper constraints on CREO.Solidworks is average and uses simple Assembly tools.","headline":"Creo vs SolidWorks- Difference Between Creo and Solidworks","author":{"@type":"Person","name":"Sachin Thorat","url":"\/\/www.gunkrazy.com\/"},"datePublished":"2017-12-22","mainEntityOfPage":"False","dateModified":"February 23, 2020","image":{"@type":"ImageObject","url":"\/\/www.gunkrazy.com\/wp-content\/uploads\/2017\/12\/creo-vs-solidworks-300x241.jpg","height":241,"width":300},"publisher":{"@context":"http:\/\/schema.org\/","@type":"Organization","name":"Learn Mechanical Engineering","logo":{"@type":"ImageObject","url":"\/\/www.gunkrazy.com\/wp-content\/uploads\/2020\/01\/learn-mech-logo-1-300x300.png","height":600,"width":60}}}</script> <article class="article-card horizontal no-thumb"><div class="copy-container"><header><p><a style="color: #ff392e!important" href="//www.gunkrazy.com/brazing-vs-welding-difference-brazing-welding/">Brazing vs Welding- Difference Between Brazing and Welding</a></p></header><div class="excerpt"><p>Brazing vs Welding- Difference Between Brazing and Welding
What is brazing ?  Brazing is a joining process, which produces coalescence of materials by heating to a suitable temperature and by...</p><div class="button-container"><a rel="nofollow" class="button reverse" href="//www.gunkrazy.com/brazing-vs-welding-difference-brazing-welding/" aria-label="View Post: Brazing vs Welding- Difference Between Brazing and Welding">View Post</a></div></div></div></article> <script type="application/ld+json">{"@context":"http:\/\/schema.org\/","@type":"BlogPosting","name":"Brazing vs Welding- Difference Between Brazing and Welding","url":"\/\/www.gunkrazy.com\/brazing-vs-welding-difference-brazing-welding\/","articleBody":"Brazing vs Welding- Difference Between Brazing and Welding\r\nWhat is brazing ?\r\n\r\nBrazing is a joining process, which produces coalescence of materials by heating to a suitable temperature and by using a filler metal (often referred to as braze) having a liquidus temperature above 450 degree C and below the solidus temperature of the base material. The filler metal is drawn into the gap between the closely fitted surfaces of the joint by capillary action. To achieve a perfect joint, the filler and the parent materials should be metallurgically compatible and the design of the joint should incorporate a minimum gap into which the braze filler metal will be drawn. The joints must be properly cleaned and protected by the flux or protective atmosphere during the heating process to prevent excessive oxidation. There are many ways of brazing, and they all differ in the method of applying heat to the braze assembly, in particular, the joint area. These include torch brazing, furnace brazing, induction brazing, dip brazing, and resistance brazing.\r\n\r\nWhat is Welding :\u00a0\r\n\r\nWelding is the most prominent process for joining large components into complex assemblies or structures. A necessary condition for welding is that the two or more surfaces to be joined must be brought into intimate contact. When fusion takes place, the joint is achieved by melting of two or more workpiece materials in a localized region. In contrast, the solid-state joining processes rely on plastic deformation of the surface asperities along the contact surface representing the original weld interface or the impending weld joint.\r\n\r\nThe success of a welding process not only depends on the selection of appropriate welding conditions or process parameters, but also on the joint configuration and welding position. The loads applied on a welded structure in the actual application are transferred from one member to another through the weld joints.\r\n\r\nTabular Difference Between Welding , Brazing\u00a0\r\n\r\nDifference Between Brazing and Welding\r\n\r\n\n\n\n\n\tBrazing Welding \n\n\n\n\n\tBrazing are weaker than welding joints but stronger than soldering joints. This can be used to bear the load up to some extent.Welding joints are strongest joints used to bear the load. Strength of the welded portion of joint is usually more than the strength of base metal.\n\n\n\tBrazing joints are stronger than soldering but weaker than welding.It forms strongest mechanical joint which can withstand with high working stress.\n\n\n\tLess skill require to join metal.High skilled labour required\n\n\n\tTemperature required\nis 3800 degree Centigrade in Welding joints.Temperature may go\nto 600 degree Centigrade in Brazing joints.\n\n\n\tNo change in mechanical properties.The properties of base metal may change.\n\n\n\tWork pieces are heated but below their melting point.Work piece to be joined need to be heated till their melting point.\n\n\n\tHeat treatment is generally required to eliminate undesirable effects of welding.No heat treatment is required after brazing.","headline":"Brazing vs Welding- Difference Between Brazing and Welding","author":{"@type":"Person","name":"Sachin Thorat","url":"\/\/www.gunkrazy.com\/"},"datePublished":"2017-12-21","mainEntityOfPage":"False","dateModified":"February 23, 2020","image":{"@type":"ImageObject","url":"","height":0,"width":0},"publisher":{"@context":"http:\/\/schema.org\/","@type":"Organization","name":"Learn Mechanical Engineering","logo":{"@type":"ImageObject","url":"\/\/www.gunkrazy.com\/wp-content\/uploads\/2020\/01\/learn-mech-logo-1-300x300.png","height":600,"width":60}}}</script> <article class="article-card horizontal "> <a href="//www.gunkrazy.com/welding-defects-causes-welding-defects/" rel="nofollow"><div class="image-container" style="background-image: url('//www.gunkrazy.com/wp-content/uploads/2017/12/Weldingdefects-300x206.jpg')"></div><span class="sr-only">link to 7 Most Common Defects In Welding  and its causes</span></a><div class="copy-container"><header><p><a style="color: #ff392e!important" href="//www.gunkrazy.com/welding-defects-causes-welding-defects/">7 Most Common Defects In Welding  and its causes</a></p></header><div class="excerpt"><p>7 Most Common Defects In Welding  and its causes  Welding Defects
The defects in the weld can be defined as irregularities in the weld metal produced due to incorrect welding parameters or wrong...</p><div class="button-container"><a rel="nofollow" class="button reverse" href="//www.gunkrazy.com/welding-defects-causes-welding-defects/" aria-label="View Post: 7 Most Common Defects In Welding  and its causes">View Post</a></div></div></div></article> <script type="application/ld+json">{"@context":"http:\/\/schema.org\/","@type":"BlogPosting","name":"7 Most Common Defects In Welding  and its causes","url":"\/\/www.gunkrazy.com\/welding-defects-causes-welding-defects\/","articleBody":"7 Most Common Defects In Welding \u00a0and its causes\r\n\r\nWelding Defects\r\nThe defects in the weld can be defined as irregularities in the weld metal produced due to incorrect welding parameters or wrong welding procedures or wrong combination of filler metal and parent metal.\r\n\r\nWeld defect may be in the form of variations from the intended weld bead shape, size and desired quality. Defects may be on the surface or inside the weld metal. Certain defects such as cracks are never tolerated but other defects may be acceptable within permissible limits. Welding defects may result into the failure of components under service condition, leading to serious accidents and causing the loss of property and sometimes also life.\r\n\r\n\r\n\r\n\r\n\r\n\r\n\r\n\r\n\r\nWelding defects\r\n\r\n\r\nDifferent Types of Welding Defects\r\n1. Cracks\r\n2. Distortion\r\n3. Gas inclusion\r\n4. Inclusions\r\n5. Lack of fusion and incomplete penetration\r\n6. Lamellar tearing\r\n7. Undercut\r\n\r\n1. Cracks :\r\n\r\nCracks may be of micro or macro size and may appear in the weld metal or base metal or base metal and weld metal boundary. Different categories of cracks are longitudinal cracks, transverse cracks or radiating\/star cracks and cracks in the weld crater. Cracks occur when localized stresses exceed the ultimate tensile strength of material. These stresses are developed due to shrinkage during solidification of weld metal.\r\n\r\nCauses :\u00a0Cracks may be developed due to,\r\n\r\n\r\n \tpoor ductility of base metal,\r\n \thigh sulpher and carbon contents,\r\n \thigh arc travel speeds i.e. fast cooling rates,\r\n \ttoo concave or convex weld bead\r\n \thigh hydrogen contents in the weld metal.\r\n\r\nwelding defects crack\r\n\r\n\r\n\r\n2. Distortion\/\u00a0Imperfect Shape\r\nWelding methods that involve the melting of metal at the site of the joint necessarily are prone to shrinkage as the heated metal cools. Shrinkage then introduces residual stresses and distortion. Distortion can pose a major problem, since the final product is not the desired shape.\r\n\r\n\r\nExcessive reinforcement is formed if high currents, low voltages, slow travel speeds and large size electrodes are used. Excessive root penetration and sag occur if excessive high currents and slow travel speeds are used for relatively thinner members.\r\n\r\nDistortion is caused because of shrinkage occurring due to large heat input during welding.\r\n\r\n\r\n\r\n3. Gas inclusion\r\n\r\nGas inclusions is a wide variety of defects that includes porosity, blow holes, and pipes (or wormholes). The underlying cause for gas inclusions is the entrapment of gas within the solidified weld. Gas formation can be from any of the following causes: high sulphur content in the workpiece or electrode, excessive moisture from the electrode or workpiece, too short of an arc, or wrong welding current or polarity.\r\n\r\n4. Inclusions\r\n\r\nThere are two types of inclusions: linear inclusions and rounded inclusions.\r\n\r\nLinear inclusions occur when there is slag or flux in the weld. Slag forms from the use of a flux, which is why this type of defect usually occurs in welding processes that use flux, such as shielded metal arc welding, flux-cored arc welding, and submerged arc welding, but it can also occur in gas metal arc welding.\r\n\r\nCauses: This defect usually occurs in welds that require multiple passes and there is poor overlap between the welds. The poor overlap does not allow the slag from the previous weld to melt out and rise to the top of the new weld bead.\r\n\r\n\r\n5. Lack of fusion and incomplete penetration\r\n\r\nLack of fusion is the failure to fuse together either the base metal and weld metal or subsequent beads in multipass welding because of failure to raise the temperature of base metal or previously deposited weld layer to melting point during welding. Lack of fusion can be avoided by properly cleaning of surfaces to be welded, selecting proper current, proper welding technique and correct size of electrode.\r\n\r\n\r\nwelding defects incomplete penetration\r\n\r\n\r\n\r\n\r\n6.\u00a0Lamellar tearing;\r\n\r\n \tLamellar tearing is a type of welding defect that occurs in rolled steel plates that have been welded together due to shrinkage forces perpendicular to the faces of the plates.\r\n \tLamellar tearing is caused mainly by sulfurous inclusions in the material. Other causes include an excess of hydrogen in the alloy. This defect can be mitigated by keeping the amount of sulfur in the steel alloy below 0.005%\r\n \tModifying the construction process to use casted or forged parts in place of welded parts can eliminate this problem, as Lamellar tearing only occurs in welded parts.\r\n\r\n7.UnderCutting :\r\n\r\nUndercutting is when the weld reduces the cross-sectional thickness of the base metal and which reduces the strength of the weld and workpieces. One reason for this type of defect is excessive current, causing the edges of the joint to melt and drain into the weld; this leaves a drain-like impression along the length of the weld. Another reason is if a poor technique is used that does not deposit enough filler metal along the edges of the weld. A third reason is using an incorrect filler metal, because it will create greater temperature gradients between the center of the weld and the edges\r\n\r\n\r\n&nbsp;\r\n\r\n&nbsp;\r\n\r\n\r\nundercut welding defect\r\nRead More Related to welding :\u00a0\r\nWelding process l Advantages and Disadvantages of welding Connections\r\n\r\nSelection Of Welding Processes and Application Of welding Process\r\n\r\nClassification Of Welding Processes and allied Processes\r\n\r\nIntroduction To Spot Welding -Working Principle of Projection welding","headline":"7 Most Common Defects In Welding  and its causes","author":{"@type":"Person","name":"Sachin Thorat","url":"\/\/www.gunkrazy.com\/"},"datePublished":"2017-12-15","mainEntityOfPage":"False","dateModified":"February 23, 2020","image":{"@type":"ImageObject","url":"\/\/www.gunkrazy.com\/wp-content\/uploads\/2017\/12\/Weldingdefects-300x206.jpg","height":206,"width":300},"publisher":{"@context":"http:\/\/schema.org\/","@type":"Organization","name":"Learn Mechanical Engineering","logo":{"@type":"ImageObject","url":"\/\/www.gunkrazy.com\/wp-content\/uploads\/2020\/01\/learn-mech-logo-1-300x300.png","height":600,"width":60}}}</script> <article class="article-card horizontal "> <a href="//www.gunkrazy.com/surface-finish-surface-finish-symbol/" rel="nofollow"><div class="image-container" style="background-image: url('//www.gunkrazy.com/wp-content/uploads/2017/12/element-of-surface-roughness-direction-of-lay-300x209.jpg')"></div><span class="sr-only">link to What is Surface Finish- Surface Finish Symbol</span></a><div class="copy-container"><header><p><a style="color: #ff392e!important" href="//www.gunkrazy.com/surface-finish-surface-finish-symbol/">What is Surface Finish- Surface Finish Symbol</a></p></header><div class="excerpt"><p>What is Surface Finish- Surface Finish Symbol
Introduction to Surface Roughness, Surface Finish:
Whatever may be the manufacturing process used, it is not possible to produce perfectly smooth...</p><div class="button-container"><a rel="nofollow" class="button reverse" href="//www.gunkrazy.com/surface-finish-surface-finish-symbol/" aria-label="View Post: What is Surface Finish- Surface Finish Symbol">View Post</a></div></div></div></article> <script type="application/ld+json">{"@context":"http:\/\/schema.org\/","@type":"BlogPosting","name":"What is Surface Finish- Surface Finish Symbol","url":"\/\/www.gunkrazy.com\/surface-finish-surface-finish-symbol\/","articleBody":"What is Surface Finish- Surface Finish Symbol\r\nIntroduction to Surface Roughness, Surface Finish:\r\nWhatever may be the manufacturing process used, it is not possible to produce perfectly smooth surface. The imperfections and irregularities are bound to occur. The manufactured surface always departs from the absolute perfection to some extent. The irregularities on the surface are in the form of succession of hills and valleys varying in height and spacing. These irregularities are usually termed as surface roughness, surface finish, surface texture or surface quality. These irregularities are responsible to a great extent for the appearance of a surface of a component and its suitability for an intended application.\r\nFactors Affecting Surface Roughness:-\r\nThe following factors affect the surface roughness:\r\n(1) Vibrations\r\n (2) Material of the workpiece\r\n (3) Type of machining.\r\n (4) Rigidity of the system consisting of machine tool, fixture cutting tool and work\r\n (5) Type, form, material and sharpness of cutting tool\r\n (6) Cutting conditions i.e., feed, speed and depth of cut\r\n (7) Type of coolant used\r\nReasons for Controlling Surface Texture:-\r\n(1) To improve the service life of the components\r\n(2) To improve the fatigue resistance\r\n(3) To reduce initial wear of parts\r\n(4) To have a close dimensional tolerance on the parts\r\n(5) To reduce frictional wear\r\n(6) To reduce corrosion by minimizing depth of irregularities\r\n(7) For good appearance\r\n\r\nElement Of Surface Texture:\u00a0\r\n\r\nThe various elements of surface texture can be defined and explained with the help of fig which shows a typical surface highly magnified.\r\n\r\nelement of surface roughness , direction of lay\r\n\r\nRoughness Height: This is rated as the arithmetical average deviation expressed in micro-meters normal to an imaginary centre line, running through the roughness profile.\r\nRoughness Width: Roughness width is the distance parallel , to the normal surface between successive peaks or ridges that constitutes the predominant pattern of the roughness.\r\n\r\nWaviness: Waviness consists of those surface irregularities which are of greater spacing than roughness and it occurs in the form of waves. These are also termed as moon geometrical errors and constitute irregularities of first and second order. These are caused `due to misalignment of centres, vibrations, machine or work deflections, warping etc.\r\n\r\nLay:\r\n\r\nIt is the direction of predominant surface pattern produced by tool marks or scratches. It is determined by the method of production used. Symbols used to indicate the direction of lay are given below:\r\n| | = Lay parallel to the boundary line of the nominal surface that is, lay parallel to the line representing surface to which the symbol is applied e.g., parallel shaping, end view of turning and O.D grinding.\r\n\u22a5= Lay perpendicular to the boundary line .of the nominal surface, that is lay perpendicular to the line representing surface to which the symbol is applied, e.g. , end view of shaping, longitudinal view of turning and O.D. grinding.\r\nX = Lay angular in both directions to the line representing the surface to which symbol is applied, e.g. traversed end mill, side wheel grinding.\r\nM= Lay multidirectional e.g. lapping super finishing, honing.\r\n\r\nC= Lay approximately circular relative to the centre of the surface to which the symbol is applied e.g., facing on a lathe.\r\nR= Lay approximately radial relative to the centre of the surface to which the symbol is applied, e.g., surface ground on a turntable, fly cut and indexed on end mill.\r\n\r\nSampling length: It is the length of the profile necessary for the evaluation of the irregularities to be taken into account. It is also known as cut-off length. It is measured in a direction parallelogram general direction of the profile. The sampling length should bear some relation to the type of profile.\r\nConventional Method for Designing Surface finish:\r\nAs per IS: 696 surface texture specified by indicating the following\r\n(a) Roughness value i.e., Ra value in mm\r\n(b) Machining allowance in mm.\r\n(c) Sampling length or instrument cut-off length in mm.\r\n(d) Machining production method, and\r\n(e) Direction of lay in the symbol form as = \u22a5, X, M, C, R\r\n\r\nMeaning of surface finish symbol\r\n\r\nISI Symbols for Indication of surface Finish\r\n\r\nThe surface roughness is represented in figure. If the matching method is milling, .sampling length is 2.5 mm, direction of lay is parallel to the surface, machining allowance is 3 mm and the representative will be as shown in figure,\r\n\r\nISI Symbols for Indication of surface Finish\r\n\r\n&nbsp;","headline":"What is Surface Finish- Surface Finish Symbol","author":{"@type":"Person","name":"Sachin Thorat","url":"\/\/www.gunkrazy.com\/"},"datePublished":"2017-12-14","mainEntityOfPage":"False","dateModified":"February 23, 2020","image":{"@type":"ImageObject","url":"\/\/www.gunkrazy.com\/wp-content\/uploads\/2017\/12\/element-of-surface-roughness-direction-of-lay-300x209.jpg","height":209,"width":300},"publisher":{"@context":"http:\/\/schema.org\/","@type":"Organization","name":"Learn Mechanical Engineering","logo":{"@type":"ImageObject","url":"\/\/www.gunkrazy.com\/wp-content\/uploads\/2020\/01\/learn-mech-logo-1-300x300.png","height":600,"width":60}}}</script> <nav class="pagination-wrapper" aria-label="article pagination"> <a class="prev page-numbers" href="?page_num=214">&laquo; PREV</a> <a class="page-numbers" href="?page_num=1"><span class="screen-reader-text">Page </span>1</a> <span class="page-numbers dots">&hellip;</span> <a class="page-numbers" href="?page_num=213"><span class="screen-reader-text">Page </span>213</a> <a class="page-numbers" href="?page_num=214"><span class="screen-reader-text">Page </span>214</a> <span aria-current="page" class="page-numbers current"><span class="screen-reader-text">Page </span>215</span> <a class="page-numbers" href="?page_num=216"><span class="screen-reader-text">Page </span>216</a> <a class="page-numbers" href="?page_num=217"><span class="screen-reader-text">Page </span>217</a> <span class="page-numbers dots">&hellip;</span> <a class="page-numbers" href="?page_num=338"><span class="screen-reader-text">Page </span>338</a> <a class="next page-numbers" href="?page_num=216">NEXT &raquo;</a></nav></section></main><aside id="secondary" class="widget-area"><div class="about-wrapper"><h2 class="widget-title" style="background: #d693c6; color: #ff392e">About Us</h2><div class="about-image" style="background-image: url('//www.gunkrazy.com/wp-content/uploads/2020/03/Sachin-Thorat-300x300-min.png')"></div><p class="about-copy">LearnMech.Com is a Mechanical Project-oriented platform run by Sachin Thorat who is a B-Tech Graduate in Mechanical Engineering. 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