- adapt meta-/code-/obs- rules to the local Python benchmark pipeline - replace db-sql-ddl, code-config-env-scope, test-e2e-pytest with pipeline equivalents - add code-python-style, data-determinism, data-naming-units, bench-methodology, build-pipeline-tasks - normalize specs and README typography to ASCII per code-data-formatting - rewrite root CLAUDE.md trigger table; add .cursorrules and .gitignore - specs: pipeline plan and task specs 00-11 - rules: 19 binding rule files adapted for this project - docs: CLAUDE.md rule-trigger table - config: .cursorrules commit convention, .gitignore excluding out/ and .venv/ - docs: rewrite README.md with pipeline diagrams, setup guide, result placeholders - config: requirements.txt for the closed dependency list - datagen: make_lab_config.py writes out/config/lab_config.yaml and .done marker
2.3 KiB
02 - Process Flow Diagrams
Context / Goal
Generate the comprehensive Mermaid documentation of the laboratory workflow (reconstructed from the 10 Miro slides) as standalone .md / .mermaid artifacts for the final report and for human review.
Dependencies
01 (uses volumes/terminology from lab_config.yaml).
Task
Produce ./out/report/process_flow.md containing the following diagrams, each also saved as a separate .mermaid file in ./out/report/diagrams/.
D1 - Coupon Assembly
flowchart LR
A([Ti-6Al-4V Base 10x10x3 mm]) --> B[Cleaning]
B --> B1([Rinsed in deionized water])
B1 --> B2([Sonicated in cleaning solution])
B --> C[Smearing Adhesive]
C --> C1([Cr adhesive coating])
C --> D[Vapor Deposition System<br/>Kurt J. Lesker PVD 200]
D --> D1([PtAu sputter coating, gradient])
D --> E([Test Coupon])
D2 - Characterization & Batch Assembly
Test Coupon → SIMTRA (composition / atom energies) → Optical profilometry (film thickness 0.3-1.1 µm) → assemble Test Wafer (×49 coupons) → assemble Test Batch (×3 wafers) → batches 721-724 with the deposition parameter table.
D3 - Testing tree
Friction (RAPID; Lab Air → µ_normal; Dry N2 → µ_dry_nit), Nanoindentation (TI980 → hardness, reduced modulus), AFM (topography → Ra), XRF (M4 Tornado → Pt/Au map).
D4 - Tribometer session sequence (sequenceDiagram)
Request test → Get samples → Load samples → Load ball holders (3 counterfaces/holder) → Create Excel test plan (Sample Plate, Plate Location, Sample ID, Save Location, Folder Name, X/Y/Z Offset, Load, Iterations) → Transfer to tribometer → Set up platter → Activate software → Load plan → Activate tribometer → ... → Software stop → Save avg files → Remove plates/platters → Close software → Pull equipment out.
D5 - Execution loop (flowchart)
Load all counter-faces
FOR EACH of 5 plates
FOR EACH of 6 probes (parallel)
FOR EACH of 4 coupons on coupon square
3x per coupon: draw track -> rotate counter-face
D6 - Data hierarchy ERD-style
batch → wafer → coupon → {xrf_map, nanoindentation, afm, profilometry} and coupon → track → {cycles, loops, wear}; deposition → simtra_profile.
Output
./out/report/process_flow.md,./out/report/diagrams/D1..D6.mermaid- Marker
./out/.done/02.ok.