Wet film steel wire scraper Rod

A wet film wire-wound rod consists of a metal rod wrapped with stainless steel wire, which controls the formation of a uniform wet film of coating on the substrate through the gaps between the wires. It is used in laboratories to simulate the coating process, measure the hiding power, leveling, and other properties of coatings, and is suitable for testing the thickness of ink and paint films.
Selection
When selecting, consider the wire diameter to determine the wet film thickness, typically ranging from 25 to 250 micrometers. Choose scrapers of different hardness based on the substrate's flatness; use flexible scrapers for curved substrates. Stainless steel material resists solvent corrosion, and the uniformity of the wire winding spacing affects the coating performance.

Terms

Standards

Instruments

Wire-wound design can be prepared 38.9μm wet-film, stainless steel material to ensure durability, suitable for a variety of liquid materials Spreader, application width up to 300mm.

$ 167.00

A groove control film is formed on the smooth Rod body by extrusion process. The wear-resistant stainless steel material is not easy to break the wire and is easy to clean. The wet film thickness is 105.2 μ m and the application width is 300mm.

$ 167.00

Wire-wound design, wet film thickness 118.9μm, diaMeter 9.5mm, stainless steel material, wear resistance and corrosion resistance, suitable for preparing specific film thickness wet-film.

$ 167.00

Wire-wound process, wet film thickness 6μm, application width 140mm, stainless steel material to ensure durability and accurate Spreader effect, suitable for preparing uniform film samples.

$ 157.00

Using stainless steel material and excellent wire-wound process, wet film thickness 148.6μm, application width 300mm, to ensure accurate and durable film, to avoid the problem of broken wire.

$ 160.00

Wire-wound process is prepared with 6.9 μm wet-film, and the diaMeter of the steel wire is only 0.08mm. If the hair is thin, seamless winding reduces the risk of broken wire, and is suitable for a variety of fluid Spreader applications.

$ 186.00

Wet film thickness 22.9 microns, diaMeter 9.52 mm, the forming Rod uses an extrusion process to process continuous grooves, with no wire breakage and easy cleaning; the wire-wound Rod is based on the traditional principle, and there are differences in coating amount.

$ 167.00

The wire-wound structure enables coating with a 171.5-micron thick film, while the stainless steel material ensures corrosion resistance and long-term durability. The 9.52mm diaMeter Rod body, combined with 1.91mm steel wire, ensures operational stability.

$ 167.00

303 stainless steel material wear and corrosion resistance, wet film thickness 29.7 microns, wire-wound structure to ensure uniform Spreader, suitable for a variety of liquid materials.

$ 160.00

Wire-wound structure ensures 0.1 micron High Accuracy, wet film thickness 50.3 μm, stainless steel material is durable and easy to clean, and the wide-Rod Film Applicator achieves uniform coating.

$ 160.00

Wire-wound design wet film thickness 9.1 μ m, steel wire diaMeter Φ 0.10mm, chrome-plated surface is easy to clean and prolong life, suitable for a variety of substrates, Spreader uniform and flexible.

$ 525.00

A wet film of 148.6 μm can be prepared using a wire-wound process with a 1.65 mm wire diaMeter, ensuring accurate and durable coating while preventing wire breakage issues.

$ 167.00

The wire-wound process ensures uniform coating application, with precise control of the wet film thickness at 57.2μm. The stainless steel material provides durability and easy-to-clean characteristics.

$ 167.00

Wire-wound process, wet film thickness 11.4μm, wire diaMeter 0.13mm, ensure Spreader Uniformity and High Accuracy, suitable for a variety of experimental environments.

$ 160.00

Wire-wound design, film thickness 120 microns, total length 37.5cm, effective application width 25.5cm, stainless steel material to ensure durability and uniform Spreader.

$ 173.00

Articles

Laboratory rod coater for submicron wet film preparation of photoresist.
This article introduces the process of using a laboratory bar coater to prepare submicron wet films of photoresist.
Selection of Wear Testing Machine: Types of Abrasion Wheels and Load Setting Methods
The test results of the wear testing machine primarily depend on the type of grinding wheel and the load setting. Grinding wheels include rubber wheels, abrasive wheels, wire wheels, and fiber wheels, among others. The selection should be matched based on the material characteristics and the actual wear scenario.
The difference between a wire bar coater and a gap-type wet film applicator.
The wire-wound drawdown bar directly quantifies the coating through the gap between wires, making it suitable for thin coating preparation with high precision, particularly for low-viscosity fluids. In contrast, the gap-type wet film applicator indirectly controls film thickness through the groove depth, with the actual coating thickness significantly influenced by material properties, making it more suitable for high-viscosity coatings and thick film preparation.
Wire rod Applicator: Principles, Applications, and Selection Guide - A Precision Coating Tool
This article provides a detailed introduction to the working principles of a Wire rod Applicator, including the mechanism by which it controls wet film thickness through the gap between stainless steel wires. It elaborates on its wide range of applications in fields such as coatings, inks, and lithium batteries, and summarizes its technical advantages, including precise control and ease of operation.