Piston Filler Suppliers & Manufacturers
Find piston filling machine manufacturers and suppliers on Towobo. Compare volumetric piston fillers for medium to high viscosity products including edible oil, sauces, pastes, creams, gels, liquid soap, shampoo, and cosmetics — in pneumatic and servo-driven inline and rotary configurations.
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Browse Piston Filler Suppliers →Piston filling principle and product suitability
A piston filler (also called a volumetric piston filler or positive-displacement piston filler) uses a reciprocating piston inside a cylinder to draw a measured volume of product from the supply tank and inject it into the container. On the intake stroke, the piston withdraws, drawing product from the supply hopper or tank through an inlet valve. On the fill stroke, the piston advances, closing the inlet valve and opening the outlet valve to force the measured volume of product into the container. Because fill volume is determined by the piston stroke length and cylinder diameter rather than by product flowability, piston fillers can handle the full viscosity range — from thin liquids to thick pastes — with high accuracy. Piston fillers are well-suited to: edible oils and cooking oils (light to medium viscosity); sauces and condiments (ketchup, hot sauce, barbecue sauce, mayonnaise — medium to high viscosity); creams and gels (body cream, face cream, hair gel, toothpaste); liquid soap, hand wash, shampoo, conditioner; honey and syrups; peanut butter, tahini, nut butters (high viscosity, requires heated or jacketed cylinder); pharmaceutical syrups and suspensions; cosmetic emulsions and lotions; chemical liquids (detergents, lubricants). For cooking oil filling specifically, piston fillers in food-grade 316 stainless steel are the most common technology on small to medium bottling lines, offering simple operation, easy cleaning, and good fill accuracy (±0.5–1% for oil).
Configurations and integration
Piston fillers are available in pneumatic (air-driven piston) and servo-driven (electric servo motor controls piston movement) versions. Servo-driven piston fillers offer more precise fill volume control, programmable fill speed profiles (slow at start and end to prevent splashing), faster changeover between fill volumes, and data logging capability. Inline linear piston fillers have a row of piston cylinders above a conveyor; containers move along the conveyor, stop under the nozzles, and receive simultaneous fills from all heads before advancing. Common head counts are 2, 4, 6, 8, 10, and 12 heads. Rotary piston fillers arrange piston cylinders around a rotating carousel; containers enter the carousel, fill while rotating, and exit filled. Rotary configurations achieve higher speeds (up to 6,000+ containers per hour for thin liquids) and are used on high-volume cooking oil, beverage, and cosmetic lines. For products that must be filled at elevated temperature to reduce viscosity (some palm oil fractions solidify at ambient temperature), jacketed cylinders and heated product supply circuits maintain the required fill temperature. Piston fillers integrate downstream with capping machines, labelling machines, and date coders in a complete bottling line. Specify: product name and viscosity, product temperature at fill, fill volume range, container type (bottle, jar, tube, pouch), target production speed, food-grade or cosmetic grade requirements, CIP capability, and whether servo or pneumatic drive is preferred.
Frequently asked questions
Can a piston filler handle very thick pastes like peanut butter?
Yes. Piston fillers are specifically suited to high-viscosity pastes and are the standard technology for filling peanut butter, tahini, almond butter, thick tomato paste, and similar products. For very thick or sticky pastes, a larger bore nozzle, slower fill speed, and a product supply system with a positive displacement pump or pressurised hopper to maintain consistent flow to the piston inlet are required. For nut butters that separate (oil migrates to top), a gentle stirring system in the supply hopper maintains product consistency. Heated jacketed cylinders are used for products that stiffen at ambient temperature.
How accurate is a piston filler?
Piston fillers typically achieve ±0.5–1% volumetric accuracy for consistent, uniform-viscosity liquids. For edible oil filling at 500mL, this equates to ±2.5–5mL. Fill accuracy depends on: consistent product viscosity and temperature, cylinder and piston condition, valve seal condition, and absence of air bubbles in the product stream. Loss of accuracy is commonly caused by worn cylinder seals or valves, air entrainment in the product supply, or viscosity variation due to temperature changes. For gravimetric accuracy compliance (legal pre-packaged weight regulations), a checkweigher downstream is recommended to detect out-of-tolerance packs.
What is the difference between a piston filler and a flow-meter filler?
A piston filler doses by volume using the displacement of a mechanical piston; it works across all viscosities but cannot inherently compensate for product density variation. A flow-meter filler (Coriolis or electromagnetic) measures flow by mass or volume electronically; it works for thin to medium viscosity liquids only (thick pastes or particulate-containing products can block or damage flow meters) but can compensate for density changes and does not require cylinder cleaning between products. Flow-meter fillers are the standard for high-speed beverage and water filling; piston fillers are the standard for viscous products and complete cooking oil bottling lines at small to medium scale.
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