⌯ Symmetry

Symmetry · Ubicación · ISO 1101 + ASME Y14.5

Search any geometric tolerance symbol by name, category or drawing example.

It covers form, orientation, location, runout and profile tolerances; datums and basic dimensions; MMC/LMC modifiers, projected zone, free state; dimensional indicators; roughness; welding; ISO 10135 casting; heat treatments; and inspection and testing (100%, sampling, FAI, NDT). Each entry explains what it controls, how to read it on the shop floor and how to verify it.

Reference guidance based on ISO 1101 and ASME Y14.5. For critical parts, always check the standard and the general note quoted on the customer's drawing.

Symbol finder

167 símbolos
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Example in plan

0,05|A|

How to interpret it

The midplane of the element (slot, tongue, etc.) must be centered with respect to the midplane of datum A, with a tolerance of 0.05 mm between both midplanes.

What controls

Controls that a median feature (slot, tab, median plane) is centered on the datum's median plane. The tolerance zone is two parallel planes, equidistant from the datum's median plane, within which the real median plane of the controlled feature must fall.

How to verify

The real width of the feature (slot or tab) and its position relative to the reference faces are measured at several points, computing the real median plane and comparing it with the datum's median plane. On a CMM this is automated by computing both median planes directly. ASME Y14.5-2018 recommends replacing symmetry with a position tolerance at basic dimension 0, easier to verify on a CMM and free of the median-plane ambiguity on irregularly shaped parts.

tolerance zone

Two parallel planes, equidistant from the median plane of the datum, within which the actual median plane must fall.

Datums and notes

The datum is normally a median plane.

Workshop guideline values

General
0.1–0.2 mm in general machining grooves and tongues.
Accuracy
0.03–0.08 mm on keyways or close-fitting features.
High precision
0.01–0.02 mm on precision parts with critical centered elements.

As a guideline: the value of the plane always rules.

Common mistakes when interpreting it

  • Rely on the visual marking or the machine zero without first verifying the actual centering of the part with a comparator or probe.
  • Ignoring that ASME Y14.5-2018 replaces it with position at basic dimension 0: a new drawing with this symbol may be a direct translation of an old, un-updated drawing, so it's worth confirming the criterion with the engineering office.

How to get it in the workshop / if it comes out of tolerance

ASME 2018 replaces it with position with basic dimension. In old plans, symmetrical grooves are still common.

If the slot or tab comes out off-center, check the part's centering with a dial indicator before milling (or use a probing cycle if the machine has one) instead of trusting the visual layout. A cutter with wrong diameter compensation shifts the slot's real center even if the program is right.

What is GD&T and what is it for in the workshop?

GD&T (Geometric Dimensioning and Tolerancing), o tolerancias geométricas según ISO 1101, define cómo deben controlarse forma, orientación, ubicación y oscilación de features respecto a datums. Complementa las tolerancias dimensionales lineales y angulares: una pieza puede cumplir H7 y aun así fallar posición o perpendicularidad. En planos europeos suele citarse ISO 1101; en EE. UU., ASME Y14.5 comparte símbolos pero con matices en modificadores y reglas por defecto.

Main Categories of GD&T Symbols

Forma (⏥, ⌭, ⌒, ○)

Straightness, flatness, roundness and cylindricity control the feature's intrinsic geometry without reference to another element. They are the basis before demanding orientation or position relative to datums.

Orientation (⟂, ∥, ∠)

Perpendicularity, parallelism and angularity limit the tilt relative to a datum. Very common in assemblies with seating faces and fixing holes.

Location (⌖, ⊕, ⌯)

Position, concentricity and symmetry locate the feature in space relative to the datum system. Position with MMC and tolerance bonus is key in assemblies with pins and threads.

Oscillation and profile (↗, ⌰, ⌓)

Circular and total runout, plus line or surface profile tolerances. Runout is measured with the part between centers; 3D profile usually requires a CMM or scanning depending on complexity.

Datums y modificadores (A, Ⓜ, Ⓟ)

Datums build the reference system; the MMC, LMC or projected-zone modifiers change how conformity and tolerance bonus are computed in production and inspection.

Surface, welding and inspection

Roughness, ISO 2553 welding symbols, casting indications and NDT annotations complete the drawing's language. Each sheet states shop criteria and usual verification methods.

Frequently asked questions about GD&T

What is the difference between size tolerance and geometric tolerance?

Size tolerance (H7, ±0.1) limits the size of the feature. Geometric tolerance (⌖, ⟂, ⏥…) controls form, orientation, location or runout relative to datums. The two coexist: a hole can be within size and still fail position.

What is the tolerance bonus with MMC?

With Ⓜ in position, if a hole is larger than its MMC (minimum material), you gain extra geometric tolerance. On an axis, if it is thinner than its MMC, too. It is key for functional gauges and assembly.

Are ISO 1101 and ASME Y14.5 the same?

They share most of the base symbols, but differ in modifiers, default rules and some practices (concentricity/symmetry, all over, simultaneous requirement). Always look at the standard cited on the plan.

Do I need CMM to inspect GD&T?

It depends on the symbol: runout and some shapes are measured with comparator and centers; 3D position and profile usually require CMM or coordinate system. The tab for each symbol indicates common methods.

What is a datum and why does the A-B-C order matter?

A datum is a physical reference on the drawing (face, axis, centre) from which the tolerance is measured. The A-B-C order defines how the coordinate system is built: first the base is fixed, then the direction and finally the lateral position. Changing the order changes the interpretation.

What does the circle with M, L or P next to the tolerance mean?

They are tolerance-zone modifiers: MMC (Ⓜ) allows bonus tolerance, LMC (Ⓛ) is used for least-material conditions on the feature, and the projected tolerance zone (Ⓟ) extends the control in depth (typical for threads or dowel pins).

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