Weld symbol

Projection weld symbol

A resistance weld located by an embossed dimple or raised boss rather than by the electrode. The circle sits on the side of the reference line carrying the projections.

1/42(6)
The symbol as it appears on the drawing
arrowarrow sideother side
The joint it produces, in cross-section

Reads as: Arrow side: spot weld, 1/4 size, 2 pitch, 6 welds.

How to read it

Projection welding is resistance welding where the location of each weld is decided by the part rather than by the electrode. One member carries a formed dimple, an extruded boss, or a machined ridge, and when current passes through the stack that raised feature concentrates it, so the nugget forms exactly there. A flat electrode can therefore make several welds at once.

The symbol borrows the resistance-weld circle. What tells you it is a projection weld rather than a plain spot is which side of the reference line the circle sits on: the side carrying the projections. That is a meaningful placement here in a way it is not for ordinary spot welding, because the projections physically belong to one of the two members.

The dimensions read as they do on a spot weld. A number to the left gives the required nugget diameter or the strength each weld must develop, a count in parentheses says how many, and a pitch gives spacing where the welds fall in an evenly spaced line. The projections themselves — their height, diameter, and shape — belong on the part drawing, not on the weld symbol.

Projection welding is chosen for production volume and for joining parts of unequal thickness or dissimilar geometry, such as a nut or stud onto a panel. Because the projection collapses as the weld forms, controlling force and current is what makes the process repeatable, and the drawing will usually reference a procedure for that rather than encoding it in the symbol.

Where each dimension goes

Nugget size or strength (left of the circle)
What each weld must achieve — a fused diameter at the interface or a load capacity per weld.
Count (in parentheses)
How many projection welds the callout covers, often made simultaneously in one electrode stroke.
Pitch (right of the circle)
Centre-to-centre spacing where the welds fall in an evenly spaced row.
Side of the reference line
Identifies which member carries the formed projections, which is the placement's real job here.
Projection geometry
Height, diameter, and shape of the raised feature, given on the part drawing rather than on the weld symbol.

Worked examples

Four projections in a row

3/161-1/2(4)

Make four projection welds with 3/16 nuggets on one-and-a-half inch centres.

The circle sits on the side of the line whose member carries the dimples, the 3/16 is the required fused diameter, and the count and pitch describe the row of welds.

Projection welds specified by strength

600 lb(3)

Attach the nut with three projection welds each holding 600 pounds.

Replacing the diameter with a load value controls the result rather than the nugget geometry, which suits fastener attachment where pull-off strength is the requirement.

Common mistakes

  • Reading the circle as an ordinary spot weld and forming the projections on the wrong member.
  • Looking for projection height and diameter on the weld symbol instead of on the part drawing.
  • Assuming the count means sequential welds when projection welding usually makes them all at once.
  • Ignoring that projection collapse makes electrode force as important as current for a sound weld.

Typical joints

Nut and stud attachment to panelsSheet-to-sheet lap joints in production assembliesBracket attachment on appliance housingsWire or rod to sheet connections

Related symbols

Practise reading welds, not just symbols

The drawing tells you what the weld should be. The gauge trainer is where you find out whether you can tell what it actually is.

Open the gauge trainer