#!/usr/bin/env python3 """Render per-batch mean stress-strain curves with +/- 1 SD error *channels* (shaded bands) for our SLS Nylon 12 GF prints plus the FormLabs PA12GF benchtop control, one figure per standard. Groups plotted: every SLS batch (rows with a non-null batch_label) and the FormLabs PA12GF_FL control, since it's the same nominal material (Nylon 12 GF) printed on different hardware and is the reference point the SLS batches are being compared against. PLA/PETG filament controls are still excluded — different material entirely, and they already have their own figure (assets/D638_controls.png). Each specimen's analyzed stress-strain curve is resampled onto a common strain grid via linear interpolation (`np.interp`; strain is monotonically increasing in every specimen, so this is safe), then averaged pointwise across the group. The grid runs from 0 to the *shortest* specimen's max strain in that group, so every point in the mean curve is backed by the same number of specimens — n doesn't quietly shrink as strain increases past where some specimens have already broken. The shaded band is +/- 1 sample standard deviation across specimens at each strain value (ddof=1). This is specimen-to-specimen variability (print placement, powder packing, sintering, etc.), which dominates over DAQ/instrument noise here — that's the source of scatter worth showing, so a per-point stddev across replicates is more informative than propagating instrument measurement uncertainty through the curve. With this many groups, overlapping fills of the same low alpha turn to mud where two bands cover the same region, so each band's own upper/lower edge is also traced with a thin, more opaque line in the group's color — that gives every band a visible boundary to follow even where fills stack. A specimen with a degenerate curve (too few points to be a real stress-strain trace, e.g. D790 E6 at 3 points vs. ~2000 for its batch-mates) is excluded from its group's average — otherwise the shared strain grid (bounded by the *shortest* max strain in the group, so every point has full sample size) collapses to near-zero width for the whole group. """ import numpy as np import matplotlib.pyplot as plt from matplotlib.patches import Patch from _lib import BATCH_COLORS, CONTROL_COLOR, OUT_DIR, ROOT, load_standard N_POINTS = 100 BAND_ALPHA = 0.12 EDGE_ALPHA = 0.75 MIN_CURVE_POINTS = 20 # below this a curve is degenerate, not just short FORMLABS_LABEL = "FormLabs PA12GF" # Ordered group -> (color, legend label). SLS batches first, FormLabs last. GROUP_STYLE = {batch: (color, f"Batch {batch}") for batch, color in BATCH_COLORS.items()} GROUP_STYLE["PA12GF_FL"] = (CONTROL_COLOR, FORMLABS_LABEL) def group_key(row: dict) -> str | None: if row["batch_label"]: return row["batch_label"] if row["material_class"] == "PA12GF_FL": return "PA12GF_FL" return None # PLA/PETG controls — excluded, see module docstring def group_average(specs: list[dict]) -> tuple[np.ndarray, np.ndarray, np.ndarray, int]: """specs: per-specimen {"strain": [...], "stress_mpa": [...]}. Returns (strain_grid, mean_stress, std_stress, n_specimens).""" max_strain = min(max(s["strain"]) for s in specs) grid = np.linspace(0, max_strain, N_POINTS) curves = np.array([np.interp(grid, s["strain"], s["stress_mpa"]) for s in specs]) n = len(specs) std = curves.std(axis=0, ddof=1) if n > 1 else np.zeros_like(grid) return grid, curves.mean(axis=0), std, n def plot_standard(standard: str) -> None: specs = load_standard(standard) groups: dict[str, list[dict]] = {} for s in specs: key = group_key(s["row"]) if key is None: continue if len(s["strain"]) < MIN_CURVE_POINTS: print(f" skipping {s['row']['specimen_id']} (group {key}): " f"degenerate curve, only {len(s['strain'])} points") continue groups.setdefault(key, []).append(s) fig, ax = plt.subplots(figsize=(9, 6)) handles = [] for key, (color, label) in GROUP_STYLE.items(): group = groups.get(key) if not group: continue grid, mean, std, n = group_average(group) ax.plot(grid, mean, color=color, linewidth=1.6, alpha=0.95) ax.fill_between(grid, mean - std, mean + std, color=color, alpha=BAND_ALPHA, linewidth=0) # Trace each band's own edges so overlapping fills don't turn to mud. ax.plot(grid, mean + std, color=color, linewidth=0.8, alpha=EDGE_ALPHA) ax.plot(grid, mean - std, color=color, linewidth=0.8, alpha=EDGE_ALPHA) handles.append(Patch(facecolor=color, edgecolor=color, alpha=0.6, label=f"{label} (n={n})")) ax.set_xlabel("Strain (mm/mm)") ax.set_ylabel("Stress (MPa)") title_map = {"D638": "ASTM D638 — tensile batch averages (± 1 SD)", "D790": "ASTM D790 — three-point flex batch averages (± 1 SD)"} ax.set_title(title_map.get(standard, standard)) ax.grid(True, alpha=0.3) ax.set_xlim(left=0) ax.set_ylim(bottom=0) ax.legend(handles=handles, loc="upper left", bbox_to_anchor=(1.02, 1.0), borderaxespad=0, fontsize=9, framealpha=0.9) OUT_DIR.mkdir(parents=True, exist_ok=True) out_path = OUT_DIR / f"{standard}_batch_averages.png" fig.savefig(out_path, dpi=150, bbox_inches="tight") plt.close(fig) print(f"wrote {out_path.relative_to(ROOT)} ({len(handles)} groups)") if __name__ == "__main__": plot_standard("D638") plot_standard("D790")