Weld Symbol Reference Chart

This weld symbol reference chart helps designers, drafters, buyers, welders, and inspectors identify common weld types, locate the weld on the joint, and read the dimensions and supplementary notes on a fabrication drawing.

Common Weld Symbol Reference Chart

The table below is a quick lookup for common weld types. A symbol name identifies the weld type only; its complete meaning also depends on reference-line position, dimensions, joint geometry, and supplementary symbols.

Weld typeSchematic symbol descriptionTypical joint or applicationInformation commonly added
Fillet Right-triangle symbol T-joints, lap joints, and corner joints Leg size or throat basis, weld length, pitch, contour, and side
Square groove Two parallel edges or lines Butt joints where little or no edge preparation is needed Root opening, groove weld size, length, backing, and penetration requirement
V-groove V-shaped groove symbol Butt joints with access from one side or both sides Groove angle, root opening, depth, effective throat, backing, and CJP/PJP requirement
Bevel groove One square edge and one angled edge Joints where one member receives the bevel preparation Bevel angle, root opening, depth, effective throat, and prepared-member indication
U-groove U-shaped groove symbol Thicker sections where a rounded preparation can reduce weld volume Groove radius, angle, root opening, depth, and penetration requirement
J-groove J-shaped groove symbol Thick or restricted-access joints where one member receives a J preparation J radius, groove angle, root opening, depth, and prepared-member indication
Flare-V groove Two curved surfaces forming a V Joining formed, rolled, or curved members Effective throat, root opening, length, and side
Flare-bevel groove One curved surface and one square edge Joining a formed member to a flat or square-edged member Effective throat, root opening, length, and side
Plug Circular hole filled with weld metal Overlapping members where a circular opening provides access Hole diameter, depth or plug size, number, spacing, and side
Slot Elongated hole filled with weld metal Overlapping members where a slot provides a longer welded area Slot width, length, depth, number, spacing, and side
Spot Circular resistance or arc-weld symbol Sheet-metal lap joints and resistance-welded parts Weld size or strength as permitted, number, spacing, and side
Seam Seam-weld symbol, commonly shown as a circle with parallel bars Continuous or intermittent welded seams in sheet metal Seam size or strength as permitted, length, pitch, and side
Edge Edge-weld symbol Members joined along adjacent or flanged edges Weld size, length, pitch, contour, and side
Stud Stud-weld symbol Studs attached to a plate or other surface Stud diameter or size, number, spacing, and location
Surfacing Surfacing or buildup symbol Deposited weld metal used for buildup, cladding, or hardfacing Deposited thickness, extent, orientation, and material or process note
These descriptions are suitable for a search reference, not for replacing the official symbol on a controlled drawing. Groove symbols can change meaning when the arrow, a broken arrow, a backing symbol, or a second reference line is added.

How to Read the Core Elements

A complete welding symbol can contain several elements. Read them in a consistent order:

  1. Identify the weld symbol itself: fillet, groove, plug, slot, spot, seam, edge, stud, or surfacing.
  2. Determine which side of the joint is specified by the applicable standard.
  3. Read dimensions and extent information around the weld symbol.
  4. Check for supplementary symbols such as all-around, field weld, contour, backing, spacer, or melt-through.
  5. Read the tail, drawing notes, WPS reference, inspection requirement, and title-block standard.

Reference line and arrow

The reference line is the anchor for the welding symbol. The arrow connects that line to the joint, feature, or area being specified. The arrow does not by itself tell the reader to weld every surface it touches; the symbol and the governing standard determine the specified location.

Under the common AWS A2.4:2020 convention:

  • A weld symbol below the reference line indicates the arrow side of the joint.
  • A weld symbol above the reference line indicates the other side of the joint.
  • Matching symbols above and below the reference line indicate welding on both sides.
  • A broken or bent arrow can identify the member that receives a preparation in certain groove-weld cases.

The arrow-side rule above is an AWS convention. Do not copy it onto an ISO drawing without checking which ISO 2553 system the drawing uses.

Dimensions around the weld symbol

Dimension placement is part of the notation. Typical information includes:
Dimension or noteWhat it can controlDrawing check
Size to the left of the symbol Fillet leg size, throat, groove depth, or another weld-size value depending on the standard and weld type Confirm whether the value is a leg size, throat, effective throat, or groove depth
Length to the right of the symbol Continuous weld length or each segment length for an intermittent weld Confirm the measurement direction and whether the dimension is nominal or finished
Pitch after an intermittent-weld length Center-to-center spacing of repeated weld segments in conventions that use a length-pitch format Confirm whether the project uses AWS-style or ISO-style intermittent notation
Number before or near a symbol Number of welds, studs, spots, or segments where the governing standard uses that position Confirm whether the number applies to one side, both sides, or a pattern
Tail note Process, WPS, filler metal, inspection, backgouging, or other special instruction Trace abbreviations to the project legend or referenced specification
Do not treat a dimension as self-explanatory when the drawing does not identify its basis. For example, a fillet value can represent a leg dimension in one convention and a throat dimension in another.

AWS A2.4:2020 vs. ISO 2553:2019

Both standards provide a structured way to communicate weld geometry, manufacture, quality, and testing information. The most important drafting decision is which side-of-joint system applies.

Drawing featureAWS A2.4:2020ISO 2553:2019
Reference-line systems Uses the AWS reference-line convention for locating weld symbols above, below, or on both sides of the line Defines two systems: a dual-reference-line system and a single-reference-line system
Arrow-side interpretation Below the reference line is the arrow side; above is the other side, subject to the standard’s detailed cases Interpretation depends on the selected ISO system; the drawing should identify or make the system unambiguous
Fillet size basis Commonly expressed as leg size Can be expressed using throat thickness a or leg length z; verify the drawing legend
Symbol orientation Follow AWS A2.4 figures and the drawing standard, especially for groove preparations Follow the selected ISO 2553 system and symbol figures; do not infer orientation from AWS practice
Dimensions and units The standard does not impose a single unit system; the drawing title block or notes control Use the units and dimensioning rules stated by the drawing and project documentation
Process and special requirements Use the tail, notes, WPS, and referenced specifications as applicable Use the tail, notes, WPS, and referenced specifications as applicable

ISO 2553’s two-system structure is particularly important on international work. A drawing can look familiar while assigning side significance differently from an AWS drawing. If a drawing imports geometry from another CAD system, preserve the standard designation and legend during translation.

Fillet size: a versus z

When an ISO drawing uses a for an equal-leg fillet, a denotes the theoretical throat thickness. When it uses z, z denotes the leg length. For an ideal equal-leg fillet:

  1. a = 0.707 × z
  2. z = a ÷ 0.707

Where:

  • a = theoretical throat thickness
  • z = equal leg length

Example: a6 corresponds to z = 6 ÷ 0.707 = 8.49 mm, or approximately 8.5 mm before drawing rounding. This relationship is only an equal-leg geometric conversion; it is not a substitute for the design calculation, applicable code, or project weld-size requirement. For metric and inch equivalents, keep the drawing’s controlling unit and round the converted value only for reader convenience.

Supplementary Weld Symbols and Notes

Supplementary symbols add information that the basic weld symbol cannot convey by itself.

Supplementary itemSchematic descriptionMeaning or useRelease caution
Weld all around Small circle at the arrow/reference-line junction in conventions that use it Weld continues around the specified joint perimeter Define the perimeter; a circle does not automatically mean every nearby edge is welded
Field weld Flag or pennant at the arrow/reference-line junction where the standard uses it Weld is made at the installation or field location Confirm access, position, weather protection, inspection, and responsibility for fit-up
Contour Flush, convex, or concave contour mark Specifies the desired weld-face profile State the finishing method when the profile or cosmetic result matters
Finish method Letter associated with a contour mark, where applicable Identifies grinding, machining, chipping, or another finish method Check the governing standard’s finish-letter meaning rather than reusing a local abbreviation
Backing Backing-bar or backing indication A separate material supports the root during welding Identify backing material, removal requirement, and whether it remains in the assembly
Spacer Spacer indication A separate insert or spacer is present at the root Confirm material compatibility, thickness, and whether the spacer is permanent
Melt-through Root-side penetration or reinforcement indication Visible root reinforcement or penetration is required on the opposite side Coordinate with access, root opening, process, and inspection requirements
Tail Forked or open tail at the end of the reference line Process, WPS, filler metal, NDT, or special notes Do not leave critical process or inspection information in an unexplained abbreviation
Not every supplementary mark has the same graphical treatment in AWS and ISO drawings. The drawing’s standard, legend, and referenced specification control when a symbol’s appearance or position differs.

Design Checks Before Releasing a Drawing

  • Name the governing welding-symbol standard in the title block, general notes, or project specification.
  • Identify the base-metal grade, temper where relevant, thickness, joint type, and accessible welding sides.
  • Confirm the weld-size basis: AWS leg size, ISO throat a, ISO leg z, groove depth, or effective throat.
  • Show the measurement origin for critical dimensions: edge, centerline, tangent, weld end, or joint datum.
  • Define continuous versus intermittent welds, segment length, pitch, quantity, and whether the pattern is chain or staggered.
  • Use an all-around indication only when the complete joint perimeter is intended and accessible.
  • Distinguish shop and field welding where location affects fit-up, distortion, access, or inspection.
  • Reference the welding process, WPS, filler metal, preheat/interpass limits, post-weld treatment, and inspection method when required by the design or specification.
  • Check clearance to bends, hardware, coatings, machined surfaces, seal faces, and mating parts. ShincoFab’s sheet metal bending services and sheet metal finishing services can help review these interactions before production.
  • Define post-weld dimensions and inspection condition when distortion or finish can change the part’s functional fit. Use a related sheet metal tolerance chart as an early reference, then call out critical drawing requirements explicitly.

Why Weld Symbol Errors Cause Fabrication Problems

Weld symbols compress a large amount of design intent into a small drawing area. A small interpretation error can change the weld side, weld volume, preparation, access plan, inspection method, or finishing sequence.
Drawing ambiguityLikely fabrication consequenceBetter drawing action
AWS and ISO conventions are mixed Weld is placed on the wrong side or the groove preparation is reversed Identify one governing system and add a project-specific legend when documents are exchanged internationally
Fillet size basis is unstated Weld may be materially smaller or larger than intended Use the applicable leg or throat notation and state the standard
Length or pitch is missing A continuous weld may be made where an intermittent weld was intended, or vice versa Show length, pitch, quantity, and pattern explicitly
All-around mark is used without a defined perimeter Unwanted welds, blocked drainage, excess distortion, or inaccessible welds Mark the exact joint perimeter and review access
Finish or contour is vague Grinding, machining, or as-welded profiles do not match the mating or cosmetic requirement Specify contour, finish method, and inspection condition
Process or inspection is left to assumption Consumable, access, distortion, or acceptance criteria may not match the design intent Reference the WPS, applicable code, NDT method, and acceptance criteria

Tighter or more detailed weld specifications can affect setup time, weld volume, distortion control, inspection, and cost. A drawing-specific review is more reliable than applying a generic symbol chart to every material and joint.

What to Do When a Weld Symbol Is Ambiguous

OptionWhen it helpsTrade-off
Add the governing standard and symbol legend A package contains AWS and ISO-originated drawings or multiple CAD templates Adds drawing space and document-control work, but reduces interpretation risk
Replace a shorthand symbol with a dimensioned detail Joint preparation, root opening, backing, or finishing is safety- or fit-critical Makes the drawing longer, but transfers less design responsibility to the fabricator
Reference a qualified WPS or project specification Process, filler metal, preheat, interpass, or inspection requirements are controlled elsewhere Requires the referenced document to be available and revision-controlled
Request a supplier DFM review before release Access, distortion, bend clearance, coating sequence, or inspection access is uncertain May add an early review cycle, but can prevent rework after welding
Use a prototype or first-article inspection plan The assembly has tight fit, cosmetic, or post-weld dimensional requirements Adds inspection effort and may extend the initial schedule

For fabricated sheet-metal assemblies, ShincoFab’s metal welding service can review the joint design together with material, thickness, access, finish, and inspection requirements. The final weld configuration still depends on the drawing, qualified procedure, applicable code, joint fit-up, and production setup.

Download the Weld Symbol
Reference Chart

Frequently Asked Questions

Review the questions below for quick answers on reading common weld symbols, navigating AWS vs. ISO conventions, and deciphering specific drafting marks. These insights help clarify drawing ambiguities for accurate fabrication.

What is the difference between a weld symbol and a welding symbol?

A weld symbol identifies the weld type, such as a fillet or V-groove. A complete welding symbol combines that basic symbol with the reference line, arrow, dimensions, supplementary marks, contour or finish information, and tail notes that communicate the full drawing instruction.

The triangle is the fillet weld symbol. Its complete meaning depends on its position relative to the reference line, the governing drawing standard, the size notation, the length or pitch, and any supplementary symbols.

In the common AWS A2.4:2020 convention, a symbol below the reference line specifies the arrow side and a symbol above the line specifies the other side. ISO 2553:2019 supports more than one reference-line system, so an ISO drawing must be read using its identified system rather than assumed to follow the AWS placement rule.

Where the governing standard uses that mark, the circle indicates a weld all around the specified joint perimeter. It does not automatically mean that every edge, nearby seam, or hidden interface on the part receives a weld.

AWS A2.4:2020 uses the AWS reference-line convention for arrow-side and other-side placement. ISO 2553:2019 defines both a dual-reference-line system and a single-reference-line system. ISO drawings may also express equal-leg fillet size using a for throat or z for leg length. Confirm the standard and legend before translating a drawing for fabrication.
For an equal-leg fillet in the ISO notation, a6 indicates a theoretical throat thickness of 6 mm. The ideal equal-leg geometric equivalent is approximately z8.5, because z = 6 ÷ 0.707. Confirm that the drawing uses a notation and that the design code accepts the intended weld size.

Not by itself. The symbol identifies the weld type and associated drawing information. The process, filler metal, WPS, inspection method, preheat, interpass limits, and post-weld requirements may appear in the tail, general notes, referenced specifications, or a controlled WPS.

No. A chart is a reading aid and early DFM reference. Final weld size and joint design depend on loading, base metal, thickness, joint geometry, access, welding position, qualified procedure, applicable code, inspection, and production setup.

Need Help With Weld Symbol Interpretation?

Send ShincoFab the drawing or CAD file, governing standard, material and thickness, weld process or WPS, quantity, finish, critical post-weld dimensions, inspection requirements, and application loads.

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