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Pilling Tester LMPLL-A100

Pilling Tester LMPLL-A100 features 4 working stations for simultaneous multi-sample assessment. Operates with controlled rotational speeds for consistent fabric testing. Built with variable pressure settings tailored for abrasion and pilling resistance analysis. Equipped with durable stainless-steel components and meticulously engineered motion system. Our Pilling Tester integrates 7-inch PLC touch screen, ensuring smooth and efficient monitoring.

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Specifications

Working Stations 4
Test Speed Outer wheel: 47.5±2.5r/min, Inner wheel: 44.5±2.4r/min
Test Pressure Cloth Sample Holder 155g±1g
Test Pressure Cloth Sample Weight 260g±1g
Test Pressure Pilling Resistance 595±7g/795±7g
Test Pressure Abrasion Resistance 415±2g
Loading Hammer Mass 2385g±10g
Wear Resistance Stroke 60.5±0.5mm
Pilling Stroke 24±0.5mm
Display PLC 7-inch touch screen
Power Supply 1∮, AC220V, 5A
Grinding Table Diameter 120mm
Flattening Diameter 120±10mm
Dimension 860×610×380mm
Flattening Weight 2.5±0.5kg
Weight 80 Kg

Pricing

Product Price Unit Action
Pilling Tester LMPLL-A100 $ 5812.5 Each of 1

Features

Corrosion-resistant top motion plate 

Low-maintenance design

Compliance with global standards

Consistent lissajous motion

User-friendly interface

Standard Accessories

Model No.

Accessory

LMPLL-A100-A1Abrasion weight and holder
LMPLL-A100-P1Pilling weight and holder
LMPLL-A100-S1Standard abradents fabric for each head
LMPLL-A100-P2Photographs
LMPLL-A100-P3Pressing weight
LMPLL-A100-A2Auxiliary device for specimen mounting
LMPLL-A100-P4Power line

Applications

Pilling Tester LMPLL-A100 is employed in textile testing laboratories, manufacturing units, quality control, research centres, and educational institutions to determine pilling resistance of fabrics.

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Frequently Asked Questions

1 What is a Pilling Tester LMPLL-A100?

Pilling Tester LMPLL-A100 is a lab instrument designed to assess the pilling resistance of textile fabrics.

2 How does Pilling Tester LMPLL-A100 simulate pilling?

Pilling Tester LMPLL-A100 simulates pilling by subjecting fabric samples to rubbing or abrasion in a controlled environment, replicating real-world wear.

3 What types of fabrics can be tested using Pilling Tester LMPLL-A100?

Pilling Tester LMPLL-A100 is suitable for testing woven, knitted, and non-woven fabrics across a wide range of fiber types.

4 Is Pilling Tester LMPLL-A100 suitable for both laboratory and industrial use?

Pilling Tester LMPLL-A100 is designed for both laboratory research and industrial quality control applications.

5 How does Pilling Tester LMPLL-A100 help textile research labs?

Pilling Tester LMPLL-A100 supports textile research labs by providing precise data on fabric surface wear, aiding in the development of new and improved textiles.

6 How does Pilling Tester LMPLL-A100 improve product consistency in textile mills?

Pilling Tester LMPLL-A100 ensures consistent product quality in textile mills by regularly monitoring fabric pilling levels during production runs.

7 Can Pilling Tester LMPLL-A100 help in optimizing fabric finishing processes?

Pilling Tester LMPLL-A100 helps optimize finishing processes like singeing or enzyme washing by evaluating their effect on reducing fabric pilling.

8 How does Pilling Tester LMPLL-A100 support export certification processes?

Pilling Tester LMPLL-A100 provides standardized data required for export documentation and quality certificates in global trade.

9 Can Pilling Tester LMPLL-A100 detect early fabric breakdown in blends?

Pilling Tester LMPLL-A100 detects early signs of surface wear, especially in blended fabrics where fiber compatibility affects durability.

10 How does Pilling Tester LMPLL-A100 improve testing turnaround time in high-volume labs?

Pilling Tester LMPLL-A100 improves turnaround by allowing simultaneous testing of multiple samples with programmable, repeatable cycles.

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.