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15-5PH Stainless Steel Wire EDM High Precision Tolerance + Fine Finish Review

This 15-5PH Stainless Steel Wire EDM page combines a High-precision tolerance target with a Fine surface target. These requirements must be planned together because finishing passes improve texture while also changing profile offset, cavity size, hole size, or edge geometry.

Quick Answer

For 15-5PH Stainless Steel, ±0.005–0.010 mm and Ra 0.8–1.6 μm are achievable on selected Wire EDM features when wire tension, guide alignment, kerf compensation, flushing, and planned trim passes are planned together. Apply both targets from the same datum, and reserve the tightest values for the dimensions and faces that control function.

Key Quality Decisions

What These Targets Mean

On 15-5PH Stainless Steel, ±0.005–0.010 mm controls the named dimensions and Ra 0.8–1.6 μm controls the named functional faces. In Wire EDM, trim passes correct profile offset and texture together, so guide alignment, flushing, and the final wire offset affect both targets. The supplied condition adds a separate risk: aged condition and corrosion-critical surfaces must be identified before selecting finish energy.

Getting Both Targets Right

Use one machining and inspection datum. Apply ±0.005–0.010 mm only to dimensions that control fit, and Ra 0.8–1.6 μm only to functional faces. Plan wire diameter, kerf compensation, flushing, wire tension, guide alignment, taper, and trim-pass stability. State the exact 15-5PH Stainless Steel condition and the inspection method before releasing the result.

What Gets Missed

On a narrow slot or profile specified at ±0.005–0.010 mm and Ra 0.8–1.6 μm, the top contour can be correct while the lower wall retains taper or a corner opens after the final trim. The tolerance represents a small remaining offset allowance, while the finishing pass removes enough stock to change edge radius and local size; treating them as independent callouts can make the last finishing step destroy the dimension it is meant to improve. Inspect top, bottom, verticality, kerf, and internal radius after the final surface step. For 15-5PH Stainless Steel, also account for this material-specific risk: aged condition and corrosion-critical surfaces must be identified before selecting finish energy.

How the Targets Interact

For 15-5PH Stainless Steel, ±0.005–0.010 mm and Ra 0.8–1.6 μm are linked through the Wire EDM finishing route. Trim passes correct profile offset and texture together, so guide alignment, flushing, and the final wire offset affect both targets. The release plan must bind material condition, geometry, datum, finishing stage, and measurement to the same named features.

Wire EDM Capability Reference

What you're askingWhat you can expect
Feature typesthrough profiles, precision slots, punches, inserts, cutouts, narrow webs, and tapered walls
Tolerance±0.005–0.025 mm
Surface finishRa 0.2–3.2 μm
Wire diameter0.10–0.30 mm planning range
Minimum internal cornerApproximately wire radius plus spark gap
Main limitationBlind cavities and closed pockets are not wire-cut features.

Quality Target Reference

RequirementPlanning rangeWhat it means in practice
High-precision tolerance±0.005–0.010 mmPlan finishing passes, thermal stability and inspection from the same datum scheme.
Fine finishRa 0.8–1.6 μmUsually needs a finishing pass or lower-energy discharge on the specified surface.

Material Condition Reference

ConditionWhat to expectWatch out forSurface notes
solution-treated Condition AUse stable support in the softer solution-treated condition.The part can mark or move before final aging.Keep corrosion-critical surfaces clearly identified for later aging and passivation planning.
H1150 overagedUse the tougher overaged condition where distortion control is important.A thicker affected layer can remain even when the measured Ra is low.Use selective recast removal or passivation on corrosion- and wear-critical faces.
H900 agedUse lower-energy finishing and stable support on the peak-strength H900 condition.The harder H900 condition is less forgiving of aggressive roughing on fatigue, wear, and cutting edges.Treat roughness, recast condition, edge damage, and post-process acceptance as separate requirements on functional faces.
H1025 agedUse H1025 when the design needs a balance of strength, toughness, and dimensional stability.H1025 still requires controlled finishing on fatigue and corrosion-critical faces, but it should not be grouped with H900 as one condition.Use lower-energy finishing on selected functional faces and define corrosion or passivation requirements separately.

Tolerance & Surface Requirements

For Wire EDM at ±0.005–0.010 mm and Ra 0.8–1.6 μm, apply the finish only to the faces named on the drawing. On 15-5PH Stainless Steel, sealing, fatigue and corrosion surfaces should separate roughness from recast-layer or passivation requirements. Roughness does not replace recast, edge, corrosion, crack, or post-process acceptance where those items affect function.

15-5PH Stainless Steel Wire EDM Quality Checkpoints

  • Mark the dimensions that actually need ±0.005–0.010 mm and use the same datum for machining and inspection.
  • Circle the faces that need Ra 0.8–1.6 μm; leave nonfunctional surfaces at a practical production finish.
  • State the 15-5PH Stainless Steel condition, Wire EDM finishing strategy, measurement method, and any recast or edge requirement.

Limits and Better Alternatives

Main Limit

±0.005–0.010 mm and Ra 0.8–1.6 μm are selected-feature planning references for 15-5PH Stainless Steel in Wire EDM, not unconditional whole-part guarantees.

Consider Another Route When

Use Sinker EDM for blind forms, CNC for accessible open geometry, or laser/waterjet when sheet-cutting speed matters more than EDM edge quality.

Practical Next Step

Send the 15-5PH Stainless Steel drawing with the Wire EDM features that need ±0.005–0.010 mm, the faces that need Ra 0.8–1.6 μm, the supplied condition, quantity, datums, and inspection method.

Practical Takeaway

On 15-5PH Stainless Steel, plan ±0.005–0.010 mm and Ra 0.8–1.6 μm together for the selected Wire EDM features. Use one datum and one inspection plan, and apply the tightest values only where they control function.

Monthly Reference

Material Price Reference

Material 15-5PH Stainless Steel

Exact material price not listed this month.

Updated May 2026
Quote Note

Exact material price is not listed this month. Final EDM pricing is confirmed after reviewing the drawing, EDM process, tolerance, quantity and inspection requirements.

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  • Process: Wire EDM
  • Material: 15 5PH Stainless Steel
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  • Drawing or part sketch
  • Material grade
  • Thickness / part size
  • Quantity
  • Tolerance and critical dimensions
  • Surface finish or inspection requirement
Accepted files

STEP/STP, DXF, DWG, PDF, IGS/IGES or ZIP.

Confidential drawing review. NDA support available on request.

Frequently Asked Questions

Can Wire EDM hold the selected tolerance on 15-5PH Stainless Steel?

Use ±0.005–0.010 mm as a selected-feature planning reference. The confirmed result depends on material condition and geometry. Process control covers wire diameter, kerf compensation, flushing, wire tension, guide alignment, taper control, and trim-pass stability. Machining and inspection should use one consistent datum.

Should Ra 0.8–1.6 μm apply to every surface?

No. Apply the fine finish only to functional faces. Other areas can remain at a practical production finish, which reduces cycle time and avoids unnecessary processing.

How does the condition of 15-5PH Stainless Steel affect both targets?

15-5PH Stainless Steel is precipitation-hardening stainless steel whose H900, H1025 and H1150 conditions have different hardness and distortion response. The condition changes support, stress response, finishing energy, dimensional stability, and surface-integrity planning.

What should the drawing identify?

Identify the dimensions that need ±0.005–0.010 mm, the faces that need Ra 0.8–1.6 μm, the datums, the exact 15-5PH Stainless Steel condition, the Wire EDM feature, and the inspection method. Machining and inspection should use the same datum scheme.