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Precision Glass Processing

Laboratory Glass Hole Drilling

Geometry, material, edge, surface and inspection review

Glass Hole Drilling can be reviewed for Laboratory Glass, but the accepted route depends on the exact grade or functional material definition, supplied form, thickness, feature geometry, edge condition, surface requirement and inspection method. The assigned process record notes: Glass Drilling: source-backed external reference facts retained from V3.2.1; only numeric facts are counted as numeric capability data. The assigned material or application record adds: Wavelength, reagent compatibility, thermal shock and cleaning method differ among laboratory instruments.

Process × Material Answer

Glass Hole Drilling for Laboratory Glass

Glass Hole Drilling can be reviewed for Laboratory Glass, but the accepted route depends on the exact grade or functional material definition, supplied form, thickness, feature geometry, edge condition, surface requirement and inspection method. The assigned process record notes: Glass Drilling: source-backed external reference facts retained from V3.2.1; only numeric facts are counted as numeric capability data. The assigned material or application record adds: Wavelength, reagent compatibility, thermal shock and cleaning method differ among laboratory instruments.

Specified material family

Laboratory Glass

Laboratory Glass is a functional family rather than a single composition. State the actual grade, optical band, thermal duty, pressure duty or installed function in the RFQ.

Manufacturing route

Glass Hole Drilling

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

Quotation basis

Drawing-defined feasibility

Final capability is reviewed against grade, supplied form, thickness, geometry, edge distance, finish, tolerance, quantity and inspection method.

Compatibility Review

How the Process and Glass Type Interact

The table separates verified process or material records from project-specific items that still require drawing review.

Review areaAssigned technical basis
Process purposeGlass Drilling: source-backed external reference facts retained from V3.2.1; only numeric facts are counted as numeric capability data.
Material or functional basisWavelength, reagent compatibility, thermal shock and cleaning method differ among laboratory instruments.
Input formFlat sheet, blank, tube, rod or preform as applicable to the named process
High-risk conditionThin, brittle, strengthened, crystalline or coated parts require grade- and geometry-specific qualification
Inspection basisDimensional and visual inspection; add microscopy, profilometry or interferometry when the drawing requires it
Functional Glass Family

Material Grade Must Be Confirmed from the Installed Function

Laboratory Glass does not identify one universal glass composition. The assigned application basis is: Provide a chemically durable, cleanable and optically suitable interface for samples, heat or fluid handling. The assigned component basis is: Borosilicate, fused silica/quartz, optical glass, aluminosilicate, soda-lime, glass-ceramic or sapphire after material review. The RFQ should therefore name the actual material grade or provide the operating requirements needed for selection.

Process

Glass Drilling

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

Product form

Custom Glass Components

Holes, slots, cutouts, steps, grooves, radii, chamfers, bores and optical faces

Application

Laboratory Equipment Glass

Provide a chemically durable, cleanable and optically suitable interface for samples, heat or fluid handling.

Process Window

Glass Drilling References and Design Limits

Numeric values are displayed only when an exact or accepted process-family record has verified public evidence. Proxy-family pages suppress numeric ranges and remain drawing-review pages.

Process parameterReference valueApplicable condition
Minimum Thickness0.76 mmCNC drilling program
Maximum Thickness>25.4 mmCNC drilling program
Minimum Part Size50.8 x 50.8 mmCNC program; smaller parts need dedicated holding
Maximum Part Size2286 x 1524 mmCNC program envelope
Minimum Hole Diameter0.5 mmSCHOTT special drilling process range 0.5-40 mm
Maximum Hole Diameter300 mmSCHOTT standard flat-glass hole range 3.5-300 mm
Minimum Edge Distancegreater of 2 x glass thickness or 1.5 x hole diameter, capped at 50 mm for holes up to 60 mmSCHOTT processed-flat-glass design table
Dimensional Tolerance±0.508 mm general; up to ±0.127 mmJNS/Abrisa CNC drilling program
Design itemWhat must be reviewed
Thickness and part envelope0.76 mm >25.4 mm 50.8 x 50.8 mm 2286 x 1524 mm
Feature size0.5 mm
Edge distance and wall sectiongreater of 2 x glass thickness or 1.5 x hole diameter, capped at 50 mm for holes up to 60 mm
Tooling and process conditionCat-i states that its glass drilling techniques include diamond tooling and high-pressure abrasive methods.; Vitrum states that its CNC fabrication machine drills, mills, polishes and cuts holes and notches.
Tolerance and finish±0.508 mm general; up to ±0.127 mm
Drawing reviewFor Glass Hole Drilling on Laboratory Glass, identify datums, critical features, edge and surface zones, coating sides, inspection method and quantity.
Quality and Failure Risk

Inspection Focus for Laboratory Glass Glass Hole Drilling Feasibility Review

Acceptance should connect the drawing characteristic to a measurement method, fixture condition and stated limit.

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 riskUnmachinable corners, insufficient edge distance, thin walls, mixed tolerance systems and inspection mismatch
Product inspectionDrawing-based dimensional, visual, microscopic, surface and optical inspection
Application failure modesChemical etching, thermal shock, path contamination, tube-end chips and seal leakage.
Application inspectionDimensions, visual cleanliness, spectral baseline, leak test where fluidic and thermal-cycle validation.
Drawing and RFQ Inputs

Information Needed Before Quotation

Use the drawing to define the exact material, process feature, tolerance, edge and surface acceptance criteria.

RFQ inputs

  • Controlled drawing, material grade, dimensions/tolerances, surface/edge requirements, optical/thermal/chemical environment, cleaning, quantity and documentation
  • Sample/reagent, temperature, pressure, wavelength/path, geometry, ports, edge, cleaning and packaging.
  • 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 Material and Process References

References support the assigned records but do not replace an approved part drawing, first-article result or production specification.

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 Hole Drilling
  • Material: Laboratory Glass
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.

Is Glass Hole Drilling suitable for Laboratory Glass on Laboratory Glass Glass Hole Drilling Feasibility Review?

Glass Hole Drilling can be reviewed for Laboratory Glass, but the accepted route depends on the exact grade or functional material definition, supplied form, thickness, feature geometry, edge condition, surface requirement and inspection method. The assigned process record notes: Glass Drilling: source-backed external reference facts retained from V3.2.1; only numeric facts are counted as numeric capability data. The assigned material or application record adds: Wavelength, reagent compatibility, thermal shock and cleaning method differ among laboratory instruments.

Which material details must be confirmed before Glass Hole Drilling for Laboratory Glass?

For Laboratory Glass Glass Hole Drilling Feasibility Review, laboratory Glass is a functional family rather than a single composition. State the actual grade, optical band, thermal duty, pressure duty or installed function in the RFQ.

Which geometry details control Glass Hole Drilling for Laboratory Glass?

For Laboratory Glass Glass Hole Drilling Feasibility Review, define material grade, thickness, geometry, edge distances, datum scheme, surface/edge acceptance and inspection method.

Can published process values be used as guaranteed tolerances for Laboratory Glass Glass Hole Drilling Feasibility Review?

For Laboratory Glass Glass Hole Drilling Feasibility Review, no. Published values remain reference conditions. The accepted tolerance depends on the exact material grade, thickness, geometry, datum scheme, edge and surface requirement, quantity and inspection method.

Which defects and inspection checks matter after Glass Hole Drilling on Laboratory Glass?

For Laboratory Glass Glass Hole Drilling Feasibility Review, chipping, cracking, subsurface damage, dimensional error, contamination or surface defects as applicable.

What should an RFQ include for Laboratory Glass Glass Hole Drilling Feasibility Review?

For Laboratory Glass Glass Hole Drilling Feasibility Review, controlled drawing, material grade, dimensions/tolerances, surface/edge requirements, optical/thermal/chemical environment, cleaning, quantity and documentation Sample/reagent, temperature, pressure, wavelength/path, geometry, ports, edge, cleaning and packaging.