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Circular Loom Machine
Created with Pixso. 1900–2300 Mm Plastic Circular Loom Machine For PP Woven Fertilizer Sack Fabric Up To 87 M/H

1900–2300 Mm Plastic Circular Loom Machine For PP Woven Fertilizer Sack Fabric Up To 87 M/H

Brand Name: Cholly
Model Number: SBY-2300X10S
MOQ: 1
Price: Negotiable
Detail Information
Place of Origin:
china
Name:
Plastic Circular Loom Machine
Applicable Material:
PP, PE And Synthetic Tape Yarn
Shuttle Quantity:
10 Shuttles
Fold Diameter:
1900–2300 Mm
Output Capacity:
Up To 87 M/h
Operating Speed:
0–68 Rpm, Frequency Controlled
Weft Density:
10–16 Picks/Inch
Maximum Warp Quantity:
2592 Ends
Main Motor Power:
7.5 KW, Frequency Controlled
Yarn Monitoring:
Automatic Stop For Warp Or Weft Abnormalities
Warp Feeding System:
Automatic Warp Let-Off With Tension Adjustment
Application:
PP Woven Fertilizer Sack Tubular Fabric Production
Highlight:

2300mm Circular Loom Machine

,

1900mm Circular Loom Machine

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10 Shuttles circular loom

Product Description

1900–2300 mm Plastic Circular Loom Machine for PP Woven Fertilizer Sack Fabric, Up to 87 m/h

Product Overview

This 1900–2300 mm Plastic Circular Loom Machine weaves PP, PE and other synthetic flat yarns into continuous tubular woven fabric. Its intended applications include the production of wide PP woven fabric used for fertilizer sack bodies.

The loom has a fold-diameter range of 1900–2300 mm, a frequency-controlled operating speed of 0–68 rpm and a documented maximum output of up to 87 m/h. It uses a 7.5 kW frequency-controlled main motor and includes automatic monitoring for warp and weft abnormalities.

The machine produces tubular woven fabric. Printing, coating, cutting and sewing require downstream equipment, so the loom should not be presented as a complete fertilizer bag production line.

Understanding the 1900–2300 mm Fold Diameter

Fold diameter refers to the width of the tubular fabric when laid flat. It directly affects the body dimensions and cutting plan of the converted fertilizer sack.

This machine supports a 1900–2300 mm fold-diameter range, making it relevant to large-format tubular woven fabric. Buyers should work backward from the required finished sack dimensions rather than selecting the machine only by its maximum width.

The specification should be checked against:

  • Finished fertilizer sack length and width;
  • Required lay-flat tubular fabric width;
  • Folding and cutting method;
  • Warp and weft density;
  • Target fabric weight;
  • Printing, coating and sewing allowances.

For conventional smaller fertilizer sacks, the buyer should first confirm whether the 1900–2300 mm range matches the intended product.

Interpreting the Up to 87 m/h Output

The manual lists the output as 87 m/h Max. The correct product-page expression is therefore “maximum output up to 87 m/h,” rather than a fixed production speed under all conditions.

Actual output can be affected by:

Factor Possible influence
Fabric fold diameter Wide fabric changes machine load and setup
Weft density Higher density requires more weft insertion per unit length
Tape-yarn quality Variation or insufficient strength may cause interruptions
Operating speed Adjustable from 0 to 68 rpm
Warp tension Uneven tension may affect continuous weaving
Shuttle condition Wear or insufficient lubrication may cause stoppages
Workshop conditions Manual specifies ≥15°C and ≥60% RH
Maintenance Cam, slider and shuttle require scheduled lubrication

Acceptance criteria for the 87 m/h value should define the yarn, fold diameter, weft density and continuous operating conditions.

PP Tape Yarn and Fabric-Density Requirements

The loom can process PP, PE and synthetic flat yarns. The manual provides the following reference yarn conditions:

  • Linear density: ≥111 tex;
  • Linear-density deviation: ≤±10%;
  • Relative tensile breaking force: ≥0.32 N/tex;
  • Elongation at break: 15%–30%;
  • Weft density: 10–16 picks/inch;
  • Maximum warp quantity: 2592 ends.

Tape-yarn consistency and tension affect fabric dimensions, surface condition and continuous weaving. The machine uses automatic warp let-off, with tension adjustment on both sides, while the frequency-control system supports changes to fabric weft density.

The manual references GB 8946/8947-88. Buyers requiring a current standard or customer-specific specification should define it separately in the purchase agreement.

Application

This Plastic Circular Loom Machine is used by fertilizer packaging material manufacturers to weave PP or PE tape yarn into wide tubular fabric for subsequent winding, printing, coating, cutting and sewing. The fabric can be converted into outer packaging for granular fertilizer, compound fertilizer and other dry fertilizer products. The machine is relevant to production requiring a 1900–2300 mm fold diameter, adjustable 10–16 picks/inch weft density and continuous fabric winding. Where the fertilizer requires moisture, corrosion or contamination protection, the coating, liner and closure must be defined in downstream converting processes because the circular loom only produces the woven base fabric.

Main Technical Specifications

Specification Machine configuration
Product name Plastic Circular Loom Machine
Model SBY-2300X10S
Processed material PP, PE and synthetic flat yarn
Fabric form Tubular plastic woven fabric
Fold diameter 1900–2300 mm
Operating speed 0–68 rpm, frequency controlled
Maximum output Up to 87 m/h
Weft density 10–16 picks/inch
Maximum warp quantity 2592 ends
Maximum filling-yarn package diameter Ø105 mm
Yarn carrier dimensions 38 × 230 mm
Main motor power 7.5 kW, frequency controlled
Machine dimensions 15.7 × 3.7 × 4.4 m
Total weight Approximately 10 t
Warp let-off Automatic
Warp monitoring Automatic stop for broken or loose warp
Weft monitoring Automatic stop for broken or exhausted weft
Recommended temperature Not lower than 15°C
Recommended relative humidity Not lower than 60%

The main parameter table lists ten shuttles, while parts of the operating section refer to six shuttles. The final shuttle quantity should be confirmed against the machine nameplate, drawing or bill of materials before publication or purchase.

Monitoring for Continuous Weaving

The weft-detection system uses a generator on the shuttle to produce pulse signals. When the weft breaks or is exhausted, the signal changes and the controller requests the main drive to stop. The manual also describes automatic stopping when the warp breaks or becomes loose.

These functions help operators identify yarn abnormalities before the loom continues producing defective fabric. They do not replace tape-yarn inspection, warp-tension adjustment, shuttle maintenance or routine machine checks.

The specified effective distance between the detector transmitter and receiver is 70–80 mm. Incorrect alignment or excessive distance may prevent normal operation or cause repeated stoppages.

Selection and Inquiry Checklist

Before selecting the loom, the buyer should provide:

  1. Finished fertilizer sack dimensions;
  2. Required tubular fabric fold diameter;
  3. PP or PE tape-yarn specifications;
  4. Target fabric weight and weft density;
  5. Planned production speed and daily output;
  6. Downstream coating requirements;
  7. Available factory length, width and height;
  8. Local electrical standard;
  9. Workshop temperature and humidity;
  10. Required installation, commissioning and operator training.

The most important step is confirming whether the 1900–2300 mm fold-diameter range matches the intended fertilizer sack. If the finished bag is substantially smaller, a different circular loom model may be more appropriate.

FAQ

Does this machine produce complete fertilizer sacks?

No. It weaves PP or PE tape yarn into tubular fabric. Printing, coating, cutting, sewing and inspection require downstream converting equipment.

Is 87 m/h a guaranteed continuous output?

No. It is the documented maximum output. Actual production depends on fold diameter, weft density, tape-yarn quality, speed setting, tension and maintenance.

What does the 1900–2300 mm value represent?

It is the fold diameter, or the approximate width of the tubular fabric when laid flat. It should be matched with the finished sack dimensions and cutting plan.

Why does the manual require at least 60% relative humidity?

The manual states that plastic flat yarn can deteriorate under low-temperature and dry conditions. It therefore specifies a temperature of at least 15°C and relative humidity of at least 60%.

Does the loom stop automatically after a yarn break?

The manual describes automatic stopping for broken or exhausted weft and for broken or loose warp. Correct detector installation and routine inspection remain necessary.