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Pilling Tester LMPLL-C100 runs at 60±2rpm with fabric-wrapped sample tubes inside cork-lined boxes. Equipped with two chambers supported by synchronous motor ensuring consistent rotation. Built-in digital counter tracks test cycles and stops automatically at pre-set values. Its simplified structure ensures smooth performance with minimal maintenance needs. Our model features smart touchscreen interface for seamless monitoring and control.
Specifications
| Pilling Box | 2 |
| Test Speed | 60±2rpm |
| Specimen | 4 |
| Specimen Tube Thickness | 3.2±0.5mm |
| Specimen Tube Length | 140±1mm |
| Specimen Casing | 52.25±1g |
| Cork Liner Thickness | 3.2mm |
| Power Supply | 1∮, AC220V, 3A |
| Specimen Tube Outer Diameter | 31.5±1mm |
| Specimen Dimension | 125×125mm |
| Test Box Dimension | 235×235×235mm |
| Dimension | 875×430×350mm |
| Weight | 60 Kg |
Pricing
| Product | Price | Unit | Action |
|---|---|---|---|
| Pilling Tester LMPLL-C100 | $ 5812.5 | Each of 1 |
Features
Aviation aluminium material
Robust construction
Noise-reduction design
Ergonomic layout
Box connecting flange
Standard Accessories
| Model No | Accessory |
| LMPLL-C100-L1 | Loading tube |
| LMPLL-C100-C1 | Cork packing |
| LMPLL-C100-G1 | Grey cotton strip |
| LMPLL-C100-O1 | Ordinary sample-making tools |
Applications
Pilling Tester LMPLL-C100 is employed in evaluating pilling and surface fuzzing resistance of woven and knitted fabrics in textile testing laboratories, manufacturing units, quality control, and research centers.
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Frequently Asked Questions
1 What is a Pilling Tester LMPLL-C100?
A Pilling Tester LMPLL-C100 is a laboratory instrument designed to evaluate the pilling and fuzzing resistance of textile fabrics.
2 Can Pilling Tester LMPLL-C100 be used for both woven and knitted fabrics?
Pilling Tester LMPLL-C100 is designed to test both woven and knitted fabrics, making it versatile for various textile types commonly used in apparel, upholstery, and industrial applications.
3 Is Pilling Tester LMPLL-C100 suitable for synthetic fiber testing?
Pilling Tester LMPLL-C100 can test synthetic fibers such as polyester, nylon, and acrylic, which are especially prone to pilling due to their filament structure.
4 How does Pilling Tester LMPLL-C100 help in product development?
During product development phase, the Pilling Tester LMPLL-C100 helps manufacturers evaluate how various fabric blends or finishes perform under wear conditions, enabling optimized material selection.
5 Can Pilling Tester LMPLL-C100 simulate long-term fabric wear?
By adjusting the test duration or number of cycles, the Pilling Tester LMPLL-C100 can simulate extended use, providing insights into how fabrics will age and perform over time.
6 Can Pilling Tester LMPLL-C100 be used for uniform and workwear testing?
Pilling Tester LMPLL-C100 is commonly used to test uniforms and workwear to ensure durability and appearance retention after repeated use and laundering.
7 Is Pilling Tester LMPLL-C100 used in research and textile innovation labs?
Textile innovation labs frequently use Pilling Tester LMPLL-C100 to study fiber behavior, fabric blends, and the impact of new technologies on surface wear characteristics.
8 How does Pilling Tester LMPLL-C100 support sustainability in textile production?
Pilling Tester LMPLL-C100 helps identify durable, long-lasting fabrics, which supports sustainable product design by reducing early garment failure and waste.
9 Can Pilling Tester LMPLL-C100 help in evaluating recycled fiber fabrics?
Pilling Tester LMPLL-C100 can assess the pilling behavior of fabrics made from recycled fibers, which often have different surface characteristics than virgin fibers.
10 Does Pilling Tester LMPLL-C100 support batch consistency testing in manufacturing?
Pilling Tester LMPLL-C100 is used in manufacturing environments to ensure that every fabric batch meets consistent pilling resistance levels before shipment.
11 What is a Pilling Tester?
A Pilling Tester is an apparatus designed to assess the resistance of textiles and fabrics to pilling, which is the formation of small fiber balls on the fabric surface.
12 How does a Pilling Tester work?
It simulates wear by rubbing fabric samples together under controlled conditions to evaluate how quickly pilling occurs and to what extent.
13 Why is Pilling Tester important in the textile industry?
It is important in the textile industry because it helps manufacturers determine fabric durability and quality.
14 Can Pilling Tester be integrated into sustainable textile practices?
It is integrated into sustainable textile practices by helping manufacturers select longer-lasting materials, reducing waste and the need for frequent replacements.
15 How is Pilling Tester used in textile research labs?
In textile research labs, it is used to conduct controlled studies on new fiber blends, surface finishes, and manufacturing processes to analyze their resistance to pilling.
16 Can Pilling Tester simulate long-term wear in a short time?
It is designed to simulate long-term wear in a controlled, accelerated manner, allowing manufacturers to predict how a fabric will perform over months or years of usage.
17 How is Pilling Tester used in the automotive industry?
It is used in the automotive industry to test seat covers, headliners, and other textile interiors for resistance to pilling caused by repeated contact and friction.
18 How does Pilling Tester impact the lifecycle assessment of fabrics?
It impacts the lifecycle assessment of fabrics by identifying materials that maintain integrity and appearance longer, contributing to more sustainable and long-lasting textile products.
19 Is Pilling Tester relevant for testing recycled or eco-friendly fabrics?
It is very relevant for testing recycled or eco-friendly fabrics, helping ensure that sustainable materials also meet performance expectations in terms of surface wear and longevity.
20 Can educational institutions use Pilling Tester in textile programs?
Educational institutions use Pilling Tester in textile and fashion programs to teach students about fabric performance testing, quality control procedures, and real-world industry standards.