Skip to content
Request Quote

Precision Glass Processing

Glass Lens Grooving

Geometry, material, edge, surface and inspection review

Glass Grooving can be reviewed for Glass Lens, but the accepted route depends on glass grade, supplied form, dimensions, feature geometry, wall section, edge distance, finish and inspection method. The assigned process record notes: Glass Grooving: source-backed external reference facts retained from V3.2.1; only numeric facts are counted as numeric capability data. The assigned product record adds: Positive/negative meniscus, bi-convex/concave, plano-convex/concave and asphere.

Product and Process

How Glass Grooving Applies to Glass Lens

Glass Grooving can be reviewed for Glass Lens, but the accepted route depends on glass grade, supplied form, dimensions, feature geometry, wall section, edge distance, finish and inspection method. The assigned process record notes: Glass Grooving: source-backed external reference facts retained from V3.2.1; only numeric facts are counted as numeric capability data. The assigned product record adds: Positive/negative meniscus, bi-convex/concave, plano-convex/concave and asphere.

Product form

Glass Lens

Positive/negative meniscus, bi-convex/concave, plano-convex/concave and asphere

Manufacturing route

Glass Grooving

Glass Grooving: source-backed external reference facts retained from V3.2.1; only numeric facts are counted as numeric capability data.

Quotation basis

Feature-specific approval

Tool access, wall section, edge distance, finish, datums, tolerance and inspection method must be approved for the actual drawing.

Process Fit

Compatibility Between the Product Geometry and Process Route

The review separates the intended operation from product-family assumptions and drawing-specific constraints.

Review areaAssigned technical basis
Process purposeGlass Grooving: source-backed external reference facts retained from V3.2.1; only numeric facts are counted as numeric capability data.
Product geometryPositive/negative meniscus, bi-convex/concave, plano-convex/concave and asphere
Typical input formFlat sheet, blank, tube, rod or preform as applicable to the named process
Process limitationsPublic supplier values are not universal; blank numeric fields indicate that no transferable public value was verified
Inspection basisDimensional and visual inspection; add microscopy, profilometry or interferometry when the drawing requires it
Product Geometry

Glass Lens Features That Affect the Process

Product-form records describe typical geometry and inspection needs; the supplied glass grade and drawing remain controlling inputs.

Product requirementWhat to define
Geometry and available formsPositive/negative meniscus, bi-convex/concave, plano-convex/concave and asphere
Dimensions and thickness10 to 90 mm cited HT/HTultra lenses; custom aspheres up to 200 mm diameter
Holes, cutouts and featuresDimension holes, slots, cutouts, steps, grooves, radii and their edge distances.
Edge and surface zonesCentered ground edge, bevel or protective chamfer
InspectionInterferometry, centration, focal/power test, surface-imperfection inspection and spectral measurement
Packaging and handlingState cleanliness, protective film, separators, individual packing and shipping requirements.
Process Window

Glass Grooving References and Design Limits

Numeric values appear only when verified public process evidence is assigned. Proxy-family pages intentionally suppress numeric ranges.

Process parameterReference valueApplicable condition
Minimum Thickness0.76 mmJNS/Abrisa CNC fabrication program
Maximum Thickness>25.4 mmJNS/Abrisa CNC fabrication program; upper limit stated as greater than 25.4 mm
Minimum Part Size50.8 x 50.8 mmCNC program; workholding may require larger size for individual features
Maximum Part Size2286 x 1524 mmCNC program envelope
Dimensional Tolerance±0.508 mm general; up to ±0.127 mmProvider CNC program; feature, material and size dependent
Design itemWhat must be reviewed
Thickness and part envelope0.76 mm >25.4 mm 50.8 x 50.8 mm 2286 x 1524 mm
Tooling and process conditionValley uses 3-, 4- and 5-axis CNC machining for hard and brittle materials. Abrisa states that groove inside dimensions can be tapered or seamed.
Tolerance and finish±0.508 mm general; up to ±0.127 mm
Drawing reviewFor Glass Grooving on Glass Lens, identify the glass grade, datums, processed features, edge and surface zones, quantity and inspection method.
Quality and Failure Risk

Inspection Focus for Glass Lens Grooving Processing

Inspect the processed feature together with adjacent edges, surfaces, wall sections and functional zones.

Review itemProject-specific focus
Process defectsChipping, cracking, subsurface damage, dimensional error, contamination or surface defects as applicable
Process limitationPublic supplier values are not universal; blank numeric fields indicate that no transferable public value was verified
Design conditionDefine material grade, thickness, geometry, edge distances, datum scheme, surface/edge acceptance and inspection method
Product design riskWrong glass melt data, centration error, edge stress, coating mismatch and cosmetic-system ambiguity
Product inspectionInterferometry, centration, focal/power test, surface-imperfection inspection and spectral measurement
Acceptance methodScratch-Dig Inspection: Compare calibrated result with the drawing, purchase order or approved test specification
Drawing and RFQ Inputs

Information Needed Before Quotation

Provide the glass grade, supplied form, dimensions, feature location, edge and surface requirements, quantity and inspection method.

RFQ inputs

  • Glass type/melt data, prescription, diameter, center/edge thickness, form tolerance, centration, surface quality, coating and wavelength
  • Define material grade, thickness, geometry, edge distances, datum scheme, surface/edge acceptance and inspection method
  • Provide a drawing revision, material or grade, quantity, dimensions, tolerances, critical surfaces and the required inspection record.
Technical Evidence

Selected Product and Process References

References support the assigned records but do not replace a drawing-specific feasibility review or approved first article.

Request a Project-Specific Glass Review

Send the drawing, material, dimensions, quantity, tolerances, surfaces and inspection requirements for feasibility review.

You are viewing
  • Process: Glass Grooving
Quote readiness
  • Drawing or part sketch
  • glass type/grade
  • Thickness / part size
  • Quantity
Accepted files

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

Confidential drawing review. NDA support available on request.

Project Questions

Frequently Asked Questions

These answers use the material, process, product and application data assigned to this page.

Can Glass Grooving be used for Glass Lens in Glass Lens Grooving Processing?

Glass Grooving can be reviewed for Glass Lens, but the accepted route depends on glass grade, supplied form, dimensions, feature geometry, wall section, edge distance, finish and inspection method. The assigned process record notes: Glass Grooving: source-backed external reference facts retained from V3.2.1; only numeric facts are counted as numeric capability data. The assigned product record adds: Positive/negative meniscus, bi-convex/concave, plano-convex/concave and asphere.

Which product features affect Glass Grooving for Glass Lens Grooving Processing?

For Glass Lens Grooving Processing, thickness, feature size, edge distance, wall section, internal radii, tool access, datums and protected surfaces can change the accepted process route.

Are the process values on Glass Lens Grooving Processing guaranteed finished-part limits?

No. For Glass Lens Grooving Processing, published process references retain their material and geometry conditions; the quotation and approved drawing define the finished-part acceptance limits.

Which defects should be checked after Glass Grooving on Glass Lens?

For Glass Lens Grooving Processing, inspect feature position and size together with chips, cracks, breakout, edge condition, scratches, contamination and adjacent-wall damage.

How should Glass Lens Grooving Processing be inspected?

For Glass Lens Grooving Processing, connect each critical drawing characteristic to an agreed instrument, datum, fixture condition, sampling plan and numeric acceptance limit.

What should an RFQ include for Glass Lens Grooving Processing?

For Glass Lens Grooving Processing, glass type/melt data, prescription, diameter, center/edge thickness, form tolerance, centration, surface quality, coating and wavelength.