Double Scraper Fineness Gauge

The dual-scraper fineness gauge determines the fineness by placing the sample on a grooved plate with scales, scraping it evenly with a scraper, and observing the position where particles become visible. It is used in industries such as coatings and inks to test the dispersion degree of pigment or filler particles, ensuring product uniformity.
Selection
When selecting a dual-scraper fineness gauge, it is essential to consider whether the measurement range matches the fineness of the sample, whether the groove accuracy meets standards, whether the scraper material is wear-resistant and corrosion-resistant, whether the ease of operation suits daily use, and whether the price fits within the budget.

Terms

Standards

Instruments

The kit can realize automatic grinding fineness Gauge operation, improve test Repeatability, suitable for standard scraper fineness Meter supporting use, simplify the experimental process.

$ 1623.00

Double groove design can achieve rapid fineness detection, Measurement range 0~ 100μm, accuracy +/- 2 microns, wear-resistant and anti-corrosion stainless steel material, suitable for a variety of material fineness determination.

$ 1086.00

Double groove structure can be measured twice at the same time, Measurement range 0~ 25μm, accuracy +/- 2μm, hardened stainless steel material wear and corrosion resistance, suitable for a variety of material fineness detection.

$ 1086.00

Double groove structure with graded slope design, Measurement accuracy of +/- 2 microns, wear-resistant and anti-corrosion stainless steel material, hand-held operation, suitable for rapid detection of various material fineness.

$ 1086.00

Measurement accuracy of +/- 2 microns, wear resistance and corrosion resistance, handheld operation, suitable for rapid detection of various material fineness.

$ 1086.00

Adopt double groove grading slope design, range 0~ 500μm, accuracy +/- 2µm, wear-resistant and anti-corrosion hardened stainless steel material, handheld operation can quickly determine the fineness of various materials.

$ 1692.00

Tool steel hardened and polished, accuracy +/- 2μm, range 0-250μm, ergonomic design for easy holding, suitable for particle size and fineness of grinding inspection.

$ 1531.00

Tool steel hardened and polished, accuracy +/- 2μm, range 0-15μm, ergonomic design, easy to hold, suitable for particle size and fineness of grinding detection.

$ 1157.00

Double groove structure for rapid detection, accuracy of +/- 2 microns, wear and corrosion resistance, support micron, Hegman, North inclined surface of a variety of scale units, Applicable standards.

$ 1384.00

Tool steel hardened and polished, accuracy +/- 2μm, range 0-100μm, suitable for particle size and fineness of grinding inspection, ergonomic design for easy grip.

$ 1157.00

Adopt hardened steel double-channel structure to ensure dimensional stability, range 0-50μm, Graduation 5μm, fineness measurement can be completed within 3 seconds through film scraping and visual evaluation, equipped with stainless steel scraper to ensure flat film scraping.

$ 848.00

Made of Hardness 52 +/- 2HRC wear-resistant and corrosion-resistant alloy steel with 0-25μm range and 1.25μm Graduation, the double-channel design enables two simultaneous measurements for accuracy and efficiency.

$ 194.00

Tool steel hardened and polished, accuracy +/- 2μm, range 0-25μm, ergonomic design, easy to hold, suitable for particle size and fineness of grinding detection.

$ 1157.00

The use of hardened steel to ensure dimensional stability, double-channel design can be measured in the range of 0-15μm, Graduation 1.5μm, scraper Travel 1-2 seconds to complete, 3 seconds to read the fineness value, easy and fast operation.

$ 848.00

Adopt Hardness 52 +/- 2HRC wear-resistant and corrosion-resistant alloy steel, double-channel design, range 0~ 100μm, Graduation 5μm, suitable for measurement of particle dispersion of various materials.

$ 194.00

Articles

Comparison of Single-Column and Dual-Column Tensile Testing Machines in Plastic Film Testing Selection
This article introduces the differences between single-column and dual-column tensile testing machines in plastic film testing.
Ultrasonic Thickness Gauge Selection: Technical Considerations for Probe Configuration and Measurement Modes
This article primarily introduces the technical factors to consider when selecting an ultrasonic thickness gauge. In terms of probe configuration, the frequency affects both resolution and penetration depth, while crystal size determines adaptability to curvature and surface conditions. Dual-element probes offer a smaller dead zone compared to single-element probes, and delay-line probes are suitable for thin-wall and high-temperature applications.
Cupping test instrument detects the cracking resistance of coatings under deformation.
This article introduces how the cupping test instrument detects the cracking resistance of coatings under deformation. It uses a spherical punch to uniformly press against the back of the sample, causing the coating to bulge with the substrate, simulating biaxial stretching until the coating cracks. The indentation depth at this point is recorded as the key indicator.
Automatic potentiometric titration method for determining hydrogen peroxide concentration by redox method
This article introduces a method for determining the concentration of hydrogen peroxide using an automatic potentiometric titrator. It is based on the redox reaction between potassium permanganate and hydrogen peroxide under acidic conditions, with the titration endpoint automatically determined by the abrupt change in potential.
Application of Two-Step Method with Pre-Coating and Fine-Coating in Eliminating Bubble Defects for Dual-Blade Coater
The dual-blade coater employs a two-step method of pre-coating and precision coating to eliminate bubble defects during the coating process. In the pre-coating stage, high shear force is applied to break the bubbles in the slurry, causing them to rupture and rise to the surface. The precision coating stage then precisely controls the coating thickness, removing any remaining bubbles to form a uniform wet film.
Differences between single-beam and double-beam structures in paper stiffness testers
Paper stiffness testers come in both single-beam and double-beam structures. The choice should be based on testing standards, sample thickness, and precision requirements.
Comparison of Dual-Principle Instruments: Magnetic Induction vs. Eddy Current for Coating Thickness Measurement
This article compares the principles of two coating thickness gauges. The choice of method depends on the substrate material: magnetic induction is used for magnetic metals, while eddy current is applied for non-magnetic metals.
Cupping tester evaluates the ductility of coatings.
The cupping tester is a detection device used to evaluate the ductility of coatings under biaxial tension. During the test, the punch presses the sample into the die until the first continuous crack appears in the coating, at which point the penetration depth of the punch is recorded as the cupping depth.
How does a roll-to-roll coating machine achieve double-sided coating?
How does a roll-to-roll coating machine achieve double-sided coating? Double-sided coating is a process that simultaneously or sequentially applies functional coatings to both sides of a flexible substrate (such as film, paper, or metal foil).
Difference between dual-beam and array spectrophotometers
This article aims to systematically elucidate the core differences between double-beam and array-type spectrophotometers in terms of working principles, optical structures, performance characteristics, and applicable scenarios, providing clear technical references for professionals in related fields.
Scraper Fineness Gauge for Determining the Fineness of Paste Inks
The Scraper Fineness Gauge is used to measure the dispersion degree of pigment particles in products such as paste inks. Its principle involves scraping a film on a scraper plate with wedge-shaped grooves and observing the scale at which particles appear to assess the fineness, with the result expressed in micrometers.
Pendulum Hardness Determination: Comparison of Applicability between Double Pendulum Method and Compound Pendulum Method
This article compares two pendulum methods for measuring coating hardness. The choice of method should consider material hardness and testing conditions, and both methods require standardized calibration and sample preparation.
When selecting a drop testing machine, whether to choose a single-arm or double-arm configuration depends on the size and weight of the packaging.
When selecting a drop tester, the choice between a single-arm or double-arm model mainly depends on the size and weight of the packaging. For small, lightweight, and regularly shaped items, a single-arm tester is sufficient. However, for larger, heavier, or irregularly shaped items, it is better to choose a double-arm tester, as it offers greater stability and ensures more accurate test results.
An article tells you how to choose a fineness gauge.
This article introduces how to select and use a grind gauge. It is a tool for measuring particle size in coatings and inks. When selecting one, the first step is to choose the appropriate range based on the estimated fineness of the sample (commonly 0-50 µm or 0-100 µm).