Cast weight and metal to melt
API · /casting-api
Metal Casting API
Metal-casting and foundry maths as an API, computed locally and deterministically — the solidification-time, shrinkage and melt-weight numbers a foundryman, patternmaker or casting designer works a job to. The solidification-time endpoint applies Chvorinov's rule, t = B × (V/A)², where V/A is the casting modulus (volume ÷ cooling surface area) and B is the mould constant (~2–4 min/cm² for sand): a chunky part with little surface for its volume freezes slowly, a thin one fast — and because a riser must stay molten longer than the casting it feeds, its modulus has to be larger, which is the number that sizes it. The pattern-shrinkage endpoint makes the pattern oversize for the metal that shrinks as it cools: pattern = casting dimension × (1 + shrinkage/100), the patternmaker's contraction rule — about 1.0–1.6 % for grey iron, ~2 % for steel and aluminium — so a 100 mm steel feature needs a 102 mm pattern. The melt-weight endpoint gives the casting weight = volume × metal density (iron ~7.2, steel ~7.85, aluminium ~2.70 g/cm³) and the metal to actually pour = casting weight ÷ the casting yield, because the sprue, runners and risers are remelted scrap — a 7 kg iron casting at 70 % yield needs about 10 kg in the ladle. Everything is computed locally and deterministically, so it is instant and private. Ideal for foundry and patternmaking tools, casting-design and estimating apps, and metalworking calculators. Pure local computation — no key, no third-party service, instant. 3 compute endpoints. For a part's weight from its dimensions use a metal-weight API; for welded joints a welding API.
API health
healthy- Uptime
- 100.00%
- Server probes · 24h
- Avg latency
- 75 ms
- Server probes · 24h
- Subscribers
- 3,599
- active
- Total calls
- 76
- last 7 days
Pricing
Pick a tier — billed monthly, cancel anytime.
Free
Free
- 6,900 calls / month
- 2 requests / second
- Hard cap (429 above quota, no overage)
- 6,900 calls/month
- 2 req/sec
- Chvorinov + shrinkage + melt weight
- No credit card
Starter
€8.70 /month
- 63,500 calls / month
- 6 requests / second
- Hard cap (429 above quota, no overage)
- 63,500 calls/month
- 6 req/sec
- Modulus & riser sizing
- Email support
Pro
€29.00 /month
- 258,000 calls / month
- 15 requests / second
- Hard cap (429 above quota, no overage)
- 258,000 calls/month
- 15 req/sec
- Foundry & design pipelines
- Priority support
Mega
€89.00 /month
- 1,195,000 calls / month
- 40 requests / second
- Hard cap (429 above quota, no overage)
- 1,195,000 calls/month
- 40 req/sec
- Platform & enterprise scale
- Dedicated SLA
Built by
Related APIs
Other APIs with overlapping tags.
Resin & Epoxy API
Casting and epoxy-resin maths as an API, computed locally and deterministically — the mix, coverage and mould-volume numbers a resin artist, crafter or maker pours a project by. The mix endpoint splits a two-part resin by its label ratio: resin = total × A/(A+B), hardener = total × B/(A+B), from whichever quantity you know — the total, the resin or the hardener — so a 2:1 epoxy for 300 ml is 200 + 100, and a 100:45 by-weight system for 100 g of resin needs 45 g of hardener; it keeps your unit (ml, grams, fl oz) and reminds you that some resins mix by volume and others by weight. The coverage endpoint sizes a flood or seal coat: volume = area × thickness, in metric or US units, returned in millilitres, fluid ounces and gallons plus the mass — matching the familiar art-resin rule of about a gallon per 12 ft² at an eighth of an inch. The moldfill endpoint computes the volume of a box, cylinder, sphere or cone mould (a 10×10×5 cm box is 500 ml, 550 g at epoxy’s ~1.1 g/cm³) and subtracts the displacement of anything you embed, so you never over- or under-pour. Everything is computed locally and deterministically, so it is instant and private. Ideal for resin-art, craft, jewelry, model-making, river-table and maker app developers, project-estimator and material-cost tools, and studio software. Pure local computation — no key, no third-party service, instant. Live, nothing stored. 3 compute endpoints. For pot life and cure follow the product data sheet.
api.oanor.com/resin-api
Business Tendency Survey API
What manufacturers in each economy are actually reporting about their order books, output, prices, exports and hiring — the OECD business tendency surveys as an API, live, no key. Every month national statistics offices ask factory managers whether order books are full or thin, whether they expect to raise or cut production, whether they plan to put prices up, whether export demand is strong, and whether they will hire or fire. The OECD harmonises the answers into balances — the share answering up/good minus the share answering down/bad, on a scale around zero (positive = expansion/optimism, negative = contraction/pessimism). These survey balances are pure soft data that move before the hard numbers, which is why they are watched as one of the earliest reads on the manufacturing cycle — and the selling-price balance, in particular, is a leading signal of pipeline inflation. This API exposes the manufacturing survey components themselves, not just the composite confidence index: order books (current demand), production expectations, selling-price expectations, employment expectations and export order books. The country endpoint returns one economy's full survey panel with the month-on-month change in each balance. The orderbooks endpoint ranks every economy by its order-books balance (who has the fullest order books right now). The sellingprices endpoint ranks by the selling-price balance — the pipeline-inflation gauge, where firms are planning the biggest price rises. Each reading carries its own month and discontinued series are excluded, so the board is genuinely current. The business-survey-components cut — distinct from the composite Business & Consumer Confidence board (which gives only the headline index), the leading-indicator board, and the generic multi-provider data aggregator. Balances are in percentage points; figures are monthly.
api.oanor.com/businesssurvey-api
Industrial Production API
How much each economy's factories, mines and utilities are actually producing, and which way output is turning — the OECD industrial production index as an API, live from the OECD's official statistics, no key. The industrial production index is one of the headline monthly hard-data prints: it measures the real volume of output across industry (mining, manufacturing and utilities, excluding construction), and its year-on-year change is a direct read on whether the real economy is expanding or contracting — it moves markets and feeds straight into GDP nowcasts. Manufacturing, the largest and most cyclical part, is broken out separately. The OECD publishes a seasonally-adjusted production-volume index for each economy; this API turns it into the number people use — the year-on-year and month-on-month growth of industrial output. The board endpoint ranks every economy by its industrial-production growth (industry excluding construction), with manufacturing alongside, so you can see where factories are humming and where they are stalling. The manufacturing endpoint ranks by manufacturing output growth on its own. The country endpoint gives one economy's industrial and manufacturing growth, year-on-year and month-on-month. Each reading carries its own period and discontinued series are excluded, so the board is genuinely current. The industrial-output / hard-data cut — distinct from the leading-indicator and confidence boards (soft, survey-based, forward-looking), the annual IMF database, and the generic data aggregator. Figures are monthly, in percent.
api.oanor.com/industrialproduction-api
Welding Settings API
Welding settings and consumables maths as an API, computed locally and deterministically — the amperage, wire and gas numbers a welder or fabricator dials a machine in with. (For joint strength, that is a separate weld-strength calculation.) The amperage endpoint gives a starting current from material thickness using the mild-steel rule of thumb of about one amp per 0.001 inch — so an eighth-inch plate runs around 125 A, give or take ten percent — and suggests an electrode or wire size to match. The deposition endpoint does the MIG arithmetic exactly: deposition rate (lb/hr) = wire feed speed × the wire’s weight per inch × 60 × efficiency, where weight per inch = (π/4 · d²) × 0.284 lb/in³ for steel, so 0.035-inch wire at 300 in/min lays down about 4.9 lb/hr fed, 4.8 deposited at 98 % — and from a target deposit it returns the arc time and the pounds of wire to buy. The gas endpoint sizes shielding gas: gas used (ft³) = flow in CFH × arc time in hours, and a cylinder’s arc-time duration, so 35 CFH empties an 80 ft³ bottle in about 2.3 hours of actual arc time. Everything is computed locally and deterministically, so it is instant and private. Ideal for welding, metal-fabrication, manufacturing and shop-management app developers, job-costing and consumable-planning tools, and welding-education software. Pure local computation — no key, no third-party service, instant. Machine settings, not joint strength. Live, nothing stored. 3 compute endpoints.
api.oanor.com/welding-api
Frequently asked questions
Quick answers about pricing, quotas, and integration.
How do I get an API key for Metal Casting API?
What's the rate limit for Metal Casting API?
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Code snippets
Sign up to get an API key, then call any path under your slug.
curl https://api.oanor.com/casting-api/SOME_PATH \
-H "x-oanor-key: oanor_test_..."
const res = await fetch("https://api.oanor.com/casting-api/SOME_PATH", {
headers: { "x-oanor-key": "oanor_test_..." }
});
const data = await res.json();
$ch = curl_init("https://api.oanor.com/casting-api/SOME_PATH");
curl_setopt($ch, CURLOPT_RETURNTRANSFER, true);
curl_setopt($ch, CURLOPT_HTTPHEADER, ["x-oanor-key: oanor_test_..."]);
$response = curl_exec($ch);
import requests
r = requests.get(
"https://api.oanor.com/casting-api/SOME_PATH",
headers={"x-oanor-key": "oanor_test_..."},
)
print(r.json())
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