API · /pottery-api

Pottery & Ceramics API

salutare 4,807 Abbonati

Pottery and ceramics maths as an API, computed locally and deterministically — the shrinkage, glaze-batch and firing numbers a potter works out at the wheel and the kiln. The shrinkage endpoint handles the fact that clay shrinks from wet to bone-dry to fired: with a typical 12 % linear shrinkage a 100 mm rim fires down to 88 mm, and run in reverse it tells you to throw a piece larger to land on a target size — make it 100 mm wet to finish at 88 mm — and reports the volume shrinkage, which is the cube of the linear factor (about 32 %). The glaze endpoint scales a percentage recipe to a real batch: pass the ingredients as a name:percent list and a dry batch weight and it returns the grams of each, dividing by the recipe’s own percent sum so recipes that total over 100 % (a base 100 plus colorant and opacifier additions) still scale correctly, plus the water to add for dipping. The cone endpoint gives the approximate firing temperature for an Orton self-supporting cone at the standard 108 °F/hour ramp — cone 06 is about 1828 °F (998 °C) for bisque, cone 6 about 2232 °F (1222 °C) and cone 10 about 2345 °F (1285 °C) for stoneware — and reminds you that a cone measures heat-work, not just temperature. Everything is computed locally and deterministically, so it is instant and private. Ideal for ceramics, pottery-studio, maker and craft app developers, kiln-log and glaze-calculator tools, and studio-management software. Pure local computation — no key, no third-party service, instant. Live, nothing stored. 3 compute endpoints. For kiln-element power use a different API.

api.oanor.com/pottery-api
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/api/pottery-api/openapi.json
/api/pottery-api/llms.txt

Individuazione: GET /api/index.json elenca ogni API.

API salute

salutare
Tempo di attività
100.00%
Sondaggi del server · 24 ore su 24
Latenza media
85 ms
Sondaggi del server · 24 ore su 24
Abbonati
4,807
attiva
Chiamate totali
4
ultimi 7 giorni

Prezzi

Scegli un livello: fatturazione mensile, annullamento in qualsiasi momento.

Free

Gratis

  • 7,250 chiamate/mese
  • 2 richieste/secondo
  • Tetto rigido (429 sopra la quota, nessuna eccedenza)
  • 7.250 Aufrufe/Monat
  • 2 req/sec
  • Schrumpfung + Glasurbatch + Kegeltemperaturen
  • Keine Kreditkarte
Accedi per abbonarti

Starter

€4.10 /mese

  • 57,500 chiamate/mese
  • 6 richieste/secondo
  • Tetto rigido (429 sopra la quota, nessuna eccedenza)
  • 57.500 Aufrufe/Monat
  • 6 req/sec
  • Umgekehrte Schrumpfung, Rezeptskalierung, Wasser
  • E-Mail-Support
Accedi per abbonarti

Pro

€11.45 /mese

  • 235,500 chiamate/mese
  • 15 richieste/secondo
  • Tetto rigido (429 sopra la quota, nessuna eccedenza)
  • 235.500 Aufrufe/Monat
  • 15 req/sec
  • Glaze-calculator & kiln-log Pipelines
  • Priority-Support
Accedi per abbonarti

Mega

€36.20 /mese

  • 1,355,000 chiamate/mese
  • 40 richieste/secondo
  • Tetto rigido (429 sopra la quota, nessuna eccedenza)
  • 1.355.000 Aufrufe/Monat
  • 40 req/sec
  • Plattform-Skalierung
  • Dedizierte SLA
Accedi per abbonarti

Costruito da

Correlato APIs

Altro APIs con tag sovrapposti.

Fuse Bead API

Fuse-Bead-Mathematik als API, lokal und deterministisch berechnet – die Perlenanzahl, Stecktafel- und Farbzahlen, die ein Perler-, Hama- oder Schmelzperlen-Bastler bei der Planung eines Pixel-Designs benötigt. Der Grid-Endpunkt wandelt ein Pixel-Muster der Breite × Höhe in den tatsächlichen Bau um: Gesamtperlen = Breite × Höhe, Stecktafeln = ⌈Breite ÷ Tafel⌉ × ⌈Höhe ÷ Tafel⌉ (eine 29-Noppen-Quadrattafel für Midi-Perlen) und die fertige Größe = Perlen × Perlenabstand – ein 58 × 58 Midi-Design ergibt also 3.364 Perlen, vier Stecktafeln und etwa 29 × 29 cm, in Millimetern, Zentimetern und Zoll, mit Midi bei 5 mm, Mini bei 2,6 mm und Biggie bei 9–10 mm. Der Palette-Endpunkt teilt die Perlen nach Farbe auf: Gib die Gesamtzahl und eine Liste von Farbprozenten an, und er gibt die Anzahl pro Farbe zurück (normalisiert durch die Prozentsumme, funktioniert also auch, wenn sie nicht genau 100 ergeben) und die zu kaufenden Beutel mit etwa tausend Perlen pro Stück, oder übergib Rohzahlen, um sie direkt zu beuteln. Alles wird lokal und deterministisch berechnet, also ist es sofort und privat. Ideal für Entwickler von Fuse-Bead-, Pixel-Art-, Kinderbastel- und Maker-Apps, für Muster-zu-Einkaufsliste- und Projekt-Schätzer-Tools sowie für Bastelsoftware. Reine lokale Berechnung – kein Key, kein Drittanbieter-Service, sofort. Live, nichts wird gespeichert. 2 Compute-Endpunkte. Für Kreuzstich-Stoffzahlen verwende eine andere API.

api.oanor.com/fusebead-api

Paracord API

Paracord-craft maths as an API, computed locally and deterministically — the cord-length numbers a paracord crafter cuts a project to. The bracelet endpoint sizes the cord from the finished length and the weave using the well-known rule of thumb — about a foot of cord per inch of work for a cobra (Solomon) bar, double that for a king cobra, less for a fishtail — so an 8-inch cobra bracelet takes around 9 feet of cord including a foot of waste for the tails; give it a wrist measurement instead and it adds the fit ease and the buckle to get the finished length first, so a 7-inch wrist comes out near 10 feet. The weave endpoint generalises it to any project — lanyards, belts, dog leashes — as cord = finished length × cord-per-inch × the number of working strands, with the weave factors built in or your own cord-per-inch, and answers in inches, feet and metres. Everything is computed locally and deterministically, so it is instant and private. Ideal for paracord, survival-gear, scouting, craft and maker app developers, project-estimator and cut-list tools, and DIY software. Pure local computation — no key, no third-party service, instant. Rules of thumb — cut long and trim. Live, nothing stored. 2 compute endpoints.

api.oanor.com/paracord-api

Chainmaille API

Chainmaille-Mathematik als API, lokal und deterministisch berechnet – die Seitenverhältnis- und Ringzahlen, nach denen ein Maille-Künstler webt. Der Aspect-Endpunkt berechnet das alles entscheidende Seitenverhältnis = Innendurchmesser ÷ Drahtdurchmesser und löst nach dem fehlenden Wert auf, listet dann die Weaves auf, die dieser Ring ergibt: AR, nicht die absolute Größe, entscheidet alles – zu niedrig und die Ringe schließen nicht ineinander, zu hoch und das Weave wird labbrig, also ein 6,4 mm ID auf 1,6 mm Draht ergibt AR 4,0, gut für European 4-in-1, Byzantine, Box Chain und mehr. Der Ring-Endpunkt erledigt die Materialmathematik: Draht pro Ring ≈ π × (Innendurchmesser + Drahtdurchmesser) – der mittlere Durchmesserumfang – also benötigen diese AR-4-Ringe etwa 25 mm Draht pro Stück und wiegen in Stahl etwa 0,4 g; geben Sie eine Drahtlänge an, um die Anzahl der Ringe zu erhalten, oder eine Ringanzahl, um den gesamten Draht und das Gewicht zu erhalten, in jedem von neun Metallen von Aluminium bis Silber. Alles wird lokal und deterministisch berechnet, also sofort und privat. Ideal für Chainmaille-, Schmuck-, Cosplay-Rüstungs- und Maker-App-Entwickler, Ringkauf- und Projektkalkulator-Tools sowie Bastelsoftware. Reine lokale Berechnung – kein API-Key, kein Drittanbieter-Service, sofort. Maße in mm. Live, nichts wird gespeichert. 2 Compute-Endpunkte. Für Drahtstärke ↔ mm verwenden Sie eine Wire-Gauge-API.

api.oanor.com/chainmaille-api

Leathercraft API

Leathercraft maths as an API, computed locally and deterministically — the weight, area and strap numbers a leatherworker, saddler or maker cuts a project by. The thickness endpoint handles the quirk that leather “weight” is really a thickness: one ounce equals one sixty-fourth of an inch, or 0.397 mm, so 8 oz leather is 3.18 mm — and it converts in either direction between ounces, millimetres and inches and suggests typical uses, from 2–3 oz linings and wallets up to 9 oz-plus belts and saddlery. The area endpoint converts hide area between the US square foot, the European square decimetre (1 ft² = 9.29 dm²) and square metres, and sizes a project: given the leather a project needs and a waste allowance — 25–40 % is normal because hides have irregular edges and flaws — it returns the usable area and how many hides to buy. The strap endpoint counts straps cut from a rectangular piece (count = ⌊width ÷ strap width⌋, each as long as the piece) or the continuous lace length a spiral cut yields from an area (length = area ÷ width). Everything is computed locally and deterministically, so it is instant and private. Ideal for leatherwork, saddlery, crafting, bag-making and maker app developers, project-estimator and material-cost tools, and workshop software. Pure local computation — no key, no third-party service, instant. Live, nothing stored. 3 compute endpoints.

api.oanor.com/leather-api

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Come ottengo una chiave API per Pottery & Ceramics API?
Registrati gratuitamente su oanor.com, genera una chiave API dalla dashboard sviluppatore e chiama Pottery & Ceramics API con l'header x-oanor-key. Nessuna carta di credito richiesta per il piano gratuito.
Qual è il limite di velocità di Pottery & Ceramics API?
Il piano gratuito consente 1 richiesta al secondo. I piani a pagamento arrivano fino a 50 richieste al secondo nel piano Mega. I limiti rigorosi restituiscono HTTP 429 oltre la quota — nessuna spesa imprevista.
Quanto costa Pottery & Ceramics API?
Pottery & Ceramics API ha un piano gratuito con 100 chiamate / mese. I piani a pagamento partono da €4.10 / mese con quote più alte e limiti di velocità più rapidi.
Posso cancellare l'abbonamento in qualsiasi momento?
Sì. I piani sono fatturati mensilmente e puoi cancellare in qualsiasi momento dalla dashboard di fatturazione. Nessun contratto a lungo termine e nessuna penale di cancellazione.
Pottery & Ceramics API è conforme al GDPR?
Tutte le richieste a Pottery & Ceramics API passano attraverso il nostro gateway in UE. La tua chiave upstream non lascia mai il nostro server e nessun dato personale viene condiviso con il fornitore upstream oltre alla richiesta inviata.

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Frammenti di codice

Iscriviti per ottenere una chiave API, quindi chiama qualsiasi percorso sotto il tuo slug.

curl https://api.oanor.com/pottery-api/SOME_PATH \
  -H "x-oanor-key: oanor_test_..."
const res = await fetch("https://api.oanor.com/pottery-api/SOME_PATH", {
  headers: { "x-oanor-key": "oanor_test_..." }
});
const data = await res.json();
$ch = curl_init("https://api.oanor.com/pottery-api/SOME_PATH");
curl_setopt($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/pottery-api/SOME_PATH",
    headers={"x-oanor-key": "oanor_test_..."},
)
print(r.json())

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