Koenig's pendulum

The König pendulum determines the viscosity of a liquid by measuring the degree of amplitude attenuation as the pendulum swings on the coating surface. After the pendulum contacts the sample, the rate at which the number of swings decreases reflects the material's flow resistance. It is used for viscosity control in paints, inks, and other materials to ensure coating leveling and drying effectiveness.

Instruments

Equipped with 200 +/- 0.2g Koenig pendulum and 500g platinum saz pendulum two configurations, the swing period is 1.4 +/- 0.02s and 1 +/- 0.001S, through the photoelectric system automatic measurement of film damping time, to meet the different standards of test requirements.

$ 751.00

Support Koenig and Persaz double pendulum automatic switching, steel ball diaMeter 5mm and 8mm, with electromagnetic release and electronic counting mechanism to ensure that the test is accurate and not affected by the environment.

$ 11520.00

Support Koenig and Persaz two test methods automatic switching, ball diaMeter of 5mm and 8mm, equipped with electromagnetic release system and sound and light prompt function, to ensure Test accuracy and ease of operation.

$ 11520.00

Adopting Koenig pendulum structure, the total mass is 200 +/- 0.2g, and the swing period is 1.4 +/- 0.02s. The coating Hardness is accurately measured by the swing attenuation time, and the number of swing angles is automatically recorded.

$ 525.00

Equipped with 200 +/- 0.2g and 500 +/- 0.1g two swing bars, can measure the film damping time, reflect the surface Hardness through swing attenuation, support different standard test requirements.

$ 590.00

Using electromagnet cissing pendulum, equipped with two laser Probe recording data, can test 0.1mm to 5.5mm thickness test plate, swing period 1.4s, Organic Glass door cover to reduce the impact of airflow.

$ 1429.00

Using the electromagnet cissing pendulum, it can measure the thickness of the test plate from 0.1mm to 5.5mm, and is equipped with two laser Probes to record data. The swing period is 0.625s.

$ 1445.00

Using electromagnet cissing pendulum, equipped with two laser Probe to record data, the thickness range can be measured 0.1-5 mm, the organic Glass door cover reduces the influence of airflow, and the swing period is 1 second.

$ 1429.00

Adopting double swing bar design, steel ball diaMeter 8mm, swing period 0.625s, automatic counting function, accurate measurement of film resilience changes, easy to operate.

$ 1655.00

It can be equipped with 200 +/- 0.2g and 500g swing Rods, providing 1.4 +/- 0.02s and 1 +/- 0.001s swing cycles respectively, and accurately determines the film Hardness through damping time to adapt to different coating resilience and viscosity characteristics.

$ 538.00

Konig and Persoz swing bars are used, Konig swing period is 1.4s, Persoz swing period is 1s, and the number of swing angles is automatically recorded, which is suitable for accurate determination of paint film Hardness.

$ 662.00

Impact specimens with semi-spherical punches are used for energy consumption measurement to evaluate anti-Impact performance. Impact energy range is 3J, Impact speed is 2.5m/s, and it is suitable for a variety of film and paper tests.

$ 1348.00

Using stopwatch counting method, the length of the swing Rod is 500 +/- 1mm, and the total mass of the swing is 120 +/- 1g. The resistance to deformation is evaluated by measuring the ratio of the swing amplitude time on the film to the swing time on the Glass.

$ 251.00

Using Konig swing Rod, mass 200g, swing period 1.4 +/- 0.02s, can swing 250 +/- 10s on flat Glass, suitable for coating damping test, accurate measurement Hardness change.

$ 503.00

Measurement accuracy is ensured by the automatic counting function and the coating attenuation characteristics are determined by the stainless steel ball support.

$ 1719.00

Articles

Transverse Burst Strength Tester for the Evaluation of Impact Resistance of Corrugated Cardboard
This article explains how a lateral bursting strength tester is used to evaluate the impact resistance of corrugated cardboard. It measures the energy absorbed by the cardboard at the point of rupture using the pendulum impact principle, requiring the preparation of specimens according to standards and the control of environmental conditions during testing.
Pendulum Impact Tester Evaluates Impact Strength of Glass Fiber Reinforced Nylon
This article introduces the use of a pendulum impact tester to evaluate the impact strength of glass fiber reinforced nylon. The test is based on the principle of energy conservation, where the energy absorbed by the material is calculated by measuring the height difference of the pendulum before and after impacting the specimen, thereby quantifying its impact resistance.
Charpy Impact Tester Evaluates Brittle Fracture of Carbon Fiber Plates
This article explains how to use a simply supported beam impact testing machine to evaluate the brittle fracture characteristics of carbon fiber plates. During the test, a pendulum impacts the sample, and the energy absorbed by the material during fracture is calculated based on the energy difference, which helps determine its tendency toward toughness or brittleness.
The pendulum hardness tester tests the scratch resistance limit of varnish.
The pendulum hardness tester measures the hardness of varnish by observing the attenuation of the pendulum's swing on the coating surface, with faster attenuation indicating a softer coating. The scratch resistance of varnish depends not only on hardness but also on elasticity and toughness. Hardness testing sets the basic threshold for scratch resistance.
Use of pendulum hardness tester for paint film curing degree assessment in the laboratory.
The pendulum hardness tester evaluates the hardness of a paint film by measuring the decay time of a pendulum swinging on the surface of the film, where a longer time indicates a harder film and a higher degree of curing.
Principle and Operation of Packaging Tear Strength Tester
This article introduces the working principle and operation method of the packaging tear strength tester. It employs the Elmendorf tear method, where a pendulum falls to tear the sample, and the energy loss is measured to calculate the tear strength.
Impact testing machine tests the impact resistance of powder coatings.
This article introduces the method of testing the impact resistance of powder coatings using an impact tester. The test simulates instantaneous impact through a falling weight or pendulum hammer, following ISO or ASTM standards.
Pendulum hardness tester measures the damping hardness of powder coatings.
This article introduces the method of testing the damping hardness of powder coatings using a pendulum hardness tester. The test is based on the principle of energy attenuation, where the hardness is reflected by the time it takes for the amplitude of the pendulum to decay as it swings on the coating surface, with a longer time indicating a harder coating.
Pendulum hardness tester measures coating damping hardness.
This article explains how a pendulum hardness tester measures the damping hardness of coatings. The principle involves evaluating the hardness and elasticity of the coating based on the time it takes for the amplitude of a pendulum's swing to decay on the coating surface. A longer decay time indicates a harder coating.
Use of Tearing Tester in Evaluating Tear Resistance of Paper Sheets
The tear tester is used to measure the tear resistance of paper sheets by applying force to notched specimens through pendulum or electric methods, simulating actual tearing conditions. The testing follows standard methods, such as the Elmendorf tear method, with results expressed as tear strength or tear index.
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.
Corrugated Board Impact Resistance - Application of Puncture Strength Tester in Packaging Testing
The impact resistance of corrugated cardboard is crucial for transportation protection, with puncture strength being a key indicator of its ability to withstand dynamic impacts. The puncture strength tester simulates impacts using a pendulum system and measures the energy consumed to penetrate the cardboard, with results expressed in joules or kilojoules per square meter.
How to Choose Between IPX3 and IPX7 for a Rain Test Chamber? Understand the Rating Comparison Table and You'll Know
The rain test chamber is used to simulate product waterproof testing, with its core being the IP protection rating. IPX3 represents protection against spraying water, simulating rain splashes through a swinging pipe spray, suitable for outdoor lighting fixtures, etc. IPX7 represents protection against short-term immersion, simulating water submersion through soaking, suitable for portable devices.