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Pulley Ratio Calculator

Calculate the speed ratio and mechanical advantage of belt-and-pulley systems from pulley diameters. Determine output RPM, torque multiplication, and belt speed for single-stage and compound pulley drives — essential for HVAC fan systems, automotive accessories, industrial machinery, and maker projects.

Pulley Ratio Calculator — Anteprima Rapporto in Tempo Reale
Speed Ratio
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Proportion Solver
A : B = C : D — Enter any 3 values
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Results
Visual ratio breakdown
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Simplified
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Decimal
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Fraction
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Visual Ratio
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    Ratio Simplifier
    Reduce any ratio to its simplest form
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    Simplified Result
    Reduced to lowest terms
    Simplified Ratio
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      Ratio Scaler
      Multiply a ratio by a scale factor
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      Scaled Result
      Ratio after scaling
      Scaled Ratio
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      Original
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        What is a Pulley Ratio?

        A pulley ratio describes the speed relationship between the driving (input) and driven (output) pulleys in a belt drive system, determined by the ratio of their diameters. A 6-inch driver pulley turning a 12-inch driven pulley creates a 2:1 reduction — the driven pulley rotates at half the driver speed but delivers twice the torque. This is mechanically equivalent to a gear ratio but transmitted through a belt rather than meshing teeth.

        Pulley systems are used extensively in HVAC blower systems, automotive serpentine drives, industrial machinery, exercise equipment, woodworking tools, and agricultural implements. Unlike gear drives, belt-and-pulley systems can transmit power over longer distances, absorb shock loads, and slip under overload (protecting the motor), making them ideal for applications requiring vibration isolation and overload protection.

        Formule ed Equazioni Utilizzate

        Questo Pulley Ratio Calculator utilizza 5 equazioni fondamentali:

        1 Pulley Speed Ratio ▼
        Speed Ratio = Driver Diameter / Driven Diameter

        6-inch driver and 12-inch driven: Ratio = 6/12 = 1:2 (speed halved, torque doubled).

        2 Output RPM ▼
        Driven RPM = Driver RPM × (Driver Diameter / Driven Diameter)

        Motor at 1750 RPM with 3" driver and 9" driven: Output = 1750 × (3/9) = 583 RPM.

        3 Torque Output ▼
        Output Torque = Input Torque × (Driven Diameter / Driver Diameter)

        10 ft-lb input with 2:1 ratio: Output = 10 × 2 = 20 ft-lb (minus belt losses).

        Explore all calculation options on the Calcolatore di Rapporto home page.

        Come Usare Questo Calcolatore

        Per utilizzare questo Calcolatore di Rapporto, segui 3 semplici passaggi:

        1

        Inserisci i Valori

        Digita i valori noti nei campi di input. Lascia un campo vuoto: è il valore incognito che il Calcolatore di Rapporto risolverà.

        2

        Scegli la Modalità

        Seleziona la modalità: Risolvi, Semplifica o Scala. Ogni modalità applica equazioni diverse ai tuoi valori di input.

        3

        Ottieni i Risultati

        Fai clic su Calcola. La schermata dei risultati mostra la risposta con una barra grafica del rapporto, un grafico a torta e una spiegazione dettagliata passo dopo passo.

        Problemi di Esempio e Soluzioni Passo dopo Passo

        Ecco 3 problemi di esempio con soluzioni dettagliate passo dopo passo che utilizzano questo calcolatore:

        Input 1 Motor: 1750 RPM, 4" driver, 10" driven pulley
        1 Identify Driver Pulley Diameter (D_1 = 4"), Driven Pulley Diameter (D_2 = 10"), and Motor RPM (N_1 = 1750).
        2 Calculate Pulley Ratio: D_2 / D_1 = 10 / 4 = 2.50 : 1.
        3 Calculate Output Speed: N_2 = N_1 × (D_1 / D_2) = 1750 × (4 / 10) = 700 RPM.
        ✓ Output Speed is 700 RPM (Ratio = 2.50 : 1)
        Input 2 Find driver pulley size for 500 RPM output from 1200 RPM motor
        1 Given: Motor N_1 = 1200 RPM, Output N_2 = 500 RPM, Driven Pulley D_2 = 6".
        2 Formula: D_1 = D_2 × (N_2 / N_1) = 6 × (500 / 1200).
        3 Compute: 6 × 0.4167 = 2.50".
        ✓ Driver Pulley Diameter needed is 2.50 inches
        Input 3 Two-stage pulley system: 3:1 then 2:1
        1 Multiply both reduction stages: 3 × 2 = 6.
        2 Total mechanical speed reduction is 6 : 1.
        ✓ Total Pulley System Ratio is 6.0 : 1

        Domande Frequenti

        How do I calculate pulley RPM? ▼

        Output RPM = Input RPM × (Driver Pulley Diameter ÷ Driven Pulley Diameter). A 1,750 RPM motor with a 4-inch driver and 8-inch driven pulley: Output = 1,750 × (4/8) = 875 RPM. The driven pulley turns at half the motor speed.

        What determines the speed ratio in a pulley system? ▼

        The ratio of the two pulley diameters. Speed Ratio = Driver Diameter ÷ Driven Diameter. A 6-inch driver and 3-inch driven = 2:1 overdrive (output turns twice as fast). A 3-inch driver and 6-inch driven = 1:2 reduction (output turns half as fast).

        How do I increase the speed of a pulley-driven fan? ▼

        Either increase the driver (motor) pulley diameter or decrease the driven (fan) pulley diameter. For example, changing the motor pulley from 3 inches to 4 inches increases fan speed by 33%. Alternatively, reduce the fan pulley from 8 inches to 6 inches for the same effect.

        What is the difference between a pulley ratio and a gear ratio? ▼

        Both describe the speed relationship between input and output. Gear ratios are determined by tooth counts (driven teeth ÷ driving teeth). Pulley ratios are determined by diameters (driver diameter ÷ driven diameter). Gears mesh directly; pulleys are connected by belts, allowing longer distance power transmission.

        How does pulley ratio affect torque? ▼

        Torque multiplication is the inverse of the speed ratio. A 2:1 speed reduction (output turns half as fast) doubles the output torque. A 1:2 speed increase halves the output torque. Power (speed × torque) is conserved minus belt friction losses (typically 2-5%).

        What is a compound pulley system? ▼

        A compound system uses two or more pulley stages in series. Each stage's ratio multiplies with the others. Stage 1: 2:1 reduction. Stage 2: 3:1 reduction. Overall: 6:1 reduction. Compound systems achieve high ratios without extremely large pulleys.

        How do I calculate belt length for a two-pulley system? ▼

        Belt Length ≈ 2C + π/2(D₁+D₂) + (D₁-D₂)²/(4C), where C = center distance, D₁ and D₂ are pulley diameters. For C=24 inches, D₁=6, D₂=12: L ≈ 48 + 28.27 + 0.375 ≈ 76.6 inches.

        What is belt speed and why does it matter? ▼

        Belt speed = π × Pulley Diameter × RPM ÷ 12 (in FPM). Standard V-belts should not exceed 6,500 FPM. Excessive speed causes vibration, heat buildup, and belt ejection. If calculated speed is too high, increase both pulley diameters proportionally.

        Can I use a variable-diameter pulley for speed adjustment? ▼

        Yes. Variable-pitch (adjustable) pulleys have movable sheave faces that change the effective diameter. Tightening the sheave increases the effective diameter (speeds up the driven shaft), and loosening decreases it. This is how many HVAC blowers are adjusted on site.

        What causes belt slip in a pulley system? ▼

        Belt slip is caused by: insufficient belt tension, overloading beyond the belt's friction capacity, oil/grease contamination, worn belt or pulley grooves, misaligned pulleys, or insufficient wrap angle. Properly tensioned belts in clean, aligned systems experience minimal slip (1-2%).

        How do automotive serpentine belts relate to pulley ratios? ▼

        Automotive serpentine belts drive multiple accessories (alternator, A/C compressor, power steering pump, water pump) from a single crankshaft pulley. Each accessory has a different pulley diameter to achieve its required RPM. The alternator typically uses a small pulley (2:1 to 3:1 overdrive) to spin fast enough to generate adequate power at idle.

        Approfondisci i Rapporti

        Cos'è un rapporto?

        Un rapporto è una comparazione tra due o più quantità che indica la grandezza relativa di una rispetto all'altra. Scritto come A : B, significa 'per ogni A unità della prima quantità, ce ne sono B della seconda'. Ad esempio, un rapporto 3 : 4 indica che per ogni 3 parti di A ci sono 4 parti di B. Si usa in cucina, edilizia, finanza, scienze e quotidianità.

        Come risolvo una proporzione?

        Una proporzione è un'uguaglianza tra due rapporti: A : B = C : D. Per ricavare un termine incognito si usa la regola del tre (prodotto incrociato). Se D è incognito: D = (B × C) / A. Questo perché in rapporti equivalenti i prodotti incrociati sono sempre uguali: A × D = B × C. Il nostro strumento lo fa in automatico: inserisci 3 valori per trovare il quarto.

        Come semplifico un rapporto?

        Per semplificare un rapporto, trova il Massimo Comun Divisore (MCD) di entrambi i numeri e dividili per esso. Ad esempio, 24 : 36 — il MCD di 24 e 36 è 12. Di conseguenza, 24 ÷ 12 = 2 e 36 ÷ 12 = 3, che dà il rapporto ridotto di 2 : 3. Il semplificatore trova il MCD e riduce il rapporto per te.

        Cos'è il ridimensionamento dei rapporti e quando è utile?

        Scalare un rapporto significa moltiplicare entrambi i termini per uno stesso fattore in modo da generare un rapporto equivalente più grande (o più piccolo). Ad esempio, scalando 2 : 5 per 3 si ottiene 6 : 15. È molto utile per le ricette (triplicare le dosi), nell'edilizia (scalare le planimetrie), nella chimica o quando occorre mantenere costante una proporzione su scala differente.

        Qual è la differenza tra un rapporto e una frazione?

        Un rapporto A : B mette in relazione due quantità tra loro (parte-parte), mentre una frazione A/B di solito rappresenta un rapporto parte-tutto. Tuttavia, ogni rapporto può essere scritto come frazione: 3 : 4 è equivalente a 3/4 = 0.75. La differenza risiede nel contesto d'uso.