Mapple Dyne Test Pen Indian 64 Dyne/cm To Evaluating Surface Energy On Substrates Original price was: ₹599.00.Current price is: ₹450.00.
Back to products
Mapple Dyne Test Pen Indian 72 Dyne/cm To Evaluating Surface Energy On Substrates Original price was: ₹599.00.Current price is: ₹450.00.

Mapple Dyne Test Pen Indian 70 Dynes/cm To Evaluating Surface Energy On Substrates

Original price was: ₹599.00.Current price is: ₹450.00.

SKU: DCP-INDIAN-70
  • Zero Waste, Fast Results: Eliminate scrap materials and accelerate results effortlessly. The Corona Dyne Test Pen ensures streamlined manufacturing for time-conscious professionals.
  • User-Friendly Efficiency: Simplify operations with user-friendly efficiency. No specialized engineers needed to measure surface energy on a polymer surface corona treatment easily for smooth and accessible processes.
  • Scientific Precision Guaranteed: For accuracy seekers, the Corona Dyne Test Pen offers scientific accuracy. Reliably determine surface tension of a surface and treat levels for accurate measurements.
  • Cost-Effective Solutions: Access affordable excellence with our range of Dyne Pens. Cost-effective and easily available online, ensuring seamless procurement for quality assurance.
  • Versatile for Any Application: Tailored for Printing, Coating, and Lamination Processes, the pen ensures optimal surface tension for plastic substrates. Versatility at your fingertips for various applications.
  • Effortless Procurement, Swift Delivery: Simplify procurement with a user-friendly online process. Experience prompt delivery of the Surface Wetting Test Pen of 70 Dynes/cm. Upgrade Your Manufacturing Precision? Shop Now!
19 People watching this product now!

Description

Dyne Test Pens Indian 70 Dyne/CM

Experience the precision of our Dyne Test Pens Indian 70 Dyne/CM – your ultimate solution for precise surface energy evaluation on substrates.

What is a Dyne Pen?

Crafted as a powerful tool, the Dyne Test Pen meticulously assesses surface energy on various substrates. Unlike unreliable methods such as corona, plasma, or flame treatments, our Dyne Test Pen ensures accurate measurements, even amidst frequent winding/unwinding or machine friction, preventing unstable readings at 70 Dyne/CM.

In a dyne test pen, liquids with varying wetting tensions are applied to a film surface to assess its printability, coating distribution, and heat-sealing capabilities. The process involves gradually increasing the tension of the solutions until one is identified that adequately wets the surface of the polymer film.

Why Choose Dyne Test Pens?

Our Dyne Test Pens offer a quick and simple method to analyze surface characteristics, ensuring effective adhesion in printing, coating, and laminating processes. With a specific Dyne level of 70, our pens guarantee higher-quality products and superior results.

How to Measure Surface Tension:

  1. Prepare Your Workspace: Ensure your workspace is on a pristine, virgin surface never before tested, providing an ideal environment for accurate assessments.
  2. Select the Right Dyne Check Pen: Opt for the Dyne pen with the closest level to your requirement, specifically 70 Dyne/CM.
  3. Prepare the Dyne Pen: Press the tip against a clean surface and pump it to ensure smooth ink flow.
  4. Apply the Ink: Draw a line of ink on the surface you’re testing, observing its behavior at 70 Dyne/CM.
  5. Observe the Ink: Check if the ink spreads smoothly or forms droplets at the specified level.
  6. Record the Result: Note down the surface tension level observed – precisely 70 Dyne/CM.
  7. Clean Up: Wipe off any excess ink from the surface and the pen tip.
  8. Store The Dyne Pen: Safely store the pen in a cool, dry place with the cap securely in place.

By following these steps, you can easily utilize our Dyne Test Pens to measure surface tension accurately, ensuring the top quality of your products. Trust in our Dyne Test Pens Indian 70 Dyne/CM for superior surface energy assessment and unmatched results in your printing, coating, or laminating processes. Elevate your quality assurance today with our reliable Dyne Test Pens ? the epitome of precision and performance!

IMPORTANT SAFETY NOTICE:

To ensure safety and accurate test results, adhere to the following guidelines:

  • Avoid Skin Contact: These materials can be harmful to the skin. Do not touch them directly.
  • Use in Well-Ventilated Areas: Work in places with good ventilation to prevent inhaling fumes.
  • Protect Your Eyes: Keep the fluid away from your eyes. In case of contact, rinse with water immediately.
  • Not for Pregnant Individuals: Pregnant women should avoid conducting this test for safety reasons.
  • Keep Surfaces Clean: Do not touch or contaminate the surface you are testing, as dirty surfaces affect results.
  • Check Expiry Date: Dyne Pens typically last 6-12 months. Do not use expired or contaminated pens.
  • Immediate Testing: Conduct surface energy testing right after treatment for meaningful results.
  • Avoid Retesting Same Spot: Move along the sample or use a new one; retesting the same spot can give inaccurate readings.
  • Maintain Clean Test Areas: Dirty surfaces lose their ability to be wet, so ensure a clean test level area.
  • Store at Room Temperature: Keep Dyne test pens in a room-temperature environment.
  • Protect from Light: Keep pens closed when not in use to prevent exposure to light, which can alter dyne levels.
  • Prevent Ink Exposure: Properly sealed pens prevent the ink from being exposed to air, maintaining dyne levels.
  • Use Consistent Pressure: Inconsistent or excessive pressure during testing may lead to false dyne level readings.

Prioritize safety and follow these guidelines for accurate and reliable results.

Specification

Overview

Dimensions 15 × 5 × 6 cm
Dyne Value Indian

70

Product Type

Pens Indian

Brand

Mapple

Usage/Application

On Surface

Features

High Performance

Material

Plastic Marker Pen

Ink Color

Pink

Customer Reviews

0 reviews
0
0
0
0
0

There are no reviews yet.

Be the first to review “Mapple Dyne Test Pen Indian 70 Dynes/cm To Evaluating Surface Energy On Substrates”

Your email address will not be published. Required fields are marked *

1 2 3 4 5
1 2 3 4 5
1 2 3 4 5