A tubular mesh bag is a cylindrical, seamless packaging container made from knitted polypropylene (PP). Unlike flat bags that require side seams, the tubular construction means the bag is woven in one continuous tube, then cut to length and closed at one end—either by sewing, heat sealing, or adding a drawstring. This design maximizes strength and eliminates weak points along the sides.
The bags are made from polypropylene, a durable and lightweight plastic that can be knitted into various mesh densities. Common mesh specifications include 35*70, 40*70, 50*85, and 53*90—numbers that refer to the openings per area, determining how large the holes are. This flexibility allows the bag to be matched precisely to the product: fine mesh for garlic and small oranges, coarser mesh for potatoes and onions.
Breathable by design: The open mesh allows constant air circulation. Moisture escapes, ethylene gas dissipates, and produce stays fresher longer compared to solid plastic packaging.
Strong yet gentle: Tubular PP mesh resists tearing and stretching, yet remains soft and flexible. It cushions contents during transport, reducing bruising and damage.
Customizable: Any color is possible—red, yellow, green, orange, purple—helping brands stand out or differentiate grades. Drawstrings are available for easy closing, or the bags can be left open for quick filling. Packing options range from 1,000 to 3,000 pieces per bale, or tailored to customer requirements.
Cost‑effective: The materials and manufacturing are low‑cost, making these bags an economical choice for high‑volume produce packing.
Tubular mesh bags are commonly used for potatoes, onions, garlic, cabbage, oranges, apples, carrots, and similar fruits and vegetables. Their popularity stems from one simple fact: they protect the product until it reaches the buyer, without adding unnecessary weight or expense.
A tubular mesh bag is a simple, smart packaging tool that combines ventilation, strength, and low cost. It keeps fresh produce in good condition from farm to market, reduces waste, and works reliably load after load.
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