Chapter 02 of 04 / 第 02 章 · Supply

Supply atlas & material guide供应地图与材料指南

The materials field guide

From ore to magnet.

Choose an ingredient. Follow its physical forms, find its origins, and see what it contributes to a machine that moves.

A PHYSICAL JOURNEY · EXPLANATORY ANIMATION
From mined resource to finished magnetAn illustrated sequence of mining, separation, purchased feedstocks, alloy making and finished magnets. Movement explains sequence, not measured flow volumes. Loading the material journey…
This field guide explains real products. The separate supply experiment still models an aggregate Nd/Dy portfolio; it does not predict a grade from an alloy recipe.

01 / Place, process & control

Follow the material
between places.

Explore extraction, separation, metal and master-alloy conversion, magnet making and U.S. connections. Select a place or an evidence path to see the product and the gaps. This is a documented sample, not a global facility census.

Each layer answers a different question. Reserves are a geological stock; plant pins and supply relationships describe selected activities.

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Drag to pan · scroll or pinch to zoom
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Equal-width lines show evidence relationships, not tonnes or transport itineraries. Hollow markers denote development or display-only regions. Approximate coordinates and missing links are explained for each place.

Turn this evidence fragment into a separate, explicitly assumed disruption experiment. Map locations do not calibrate capacity, yield, inventory or delivery.

Explore the supply-chain laboratory
Map scope & evidence

02 / Read a magnet grade

Strength is one axis.
Holding on is another.

N35 and N52 describe energy-product classes. H, SH and UH indicate higher coercivity classes. Temperature, shape and the opposing field determine suitability.

Dy and Tb help the magnet resist demagnetization. They do not automatically raise its maximum energy product. Grain-boundary diffusion can concentrate these costly ingredients near grain surfaces, rather than adding them throughout the magnet.

Shin-Etsu process explanation

03 / 配方 · alloy formulation

Ingredients become
a physical batch.

Start with the purchased forms, then compare two published specimens and see how their elements enter an ideal batch.

These reported compositions are specimens, not universal N-grade recipes. Different processing histories prevent attributing their performance differences to Dy or Tb alone.

04 / Twenty years of price evidence

Watch the ingredients
change in value.

2006–2025 · nominal prices. Select a material to inspect its actual traded form. Benchmark changes and missing observations remain visible.

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A monthly lens

Is there a repeating season?

05 / Meet the physical inputs

These are industrial materials.

Supplier product references connect material names to feedstocks. Product identity and assay require the cited specification.

Nd–Pr alloy piecesEpoch · product reference
FerroboronNippon Denko · product reference

Trace the product name

Ore ≠ oxide
≠ metal ≠ alloy.

A mine location tells you where extraction happens. A factory quotation tells you which chemical form, composition and delivery terms are being bought.

Supplier product references are credited to their original pages. Original publisher rights are retained.