Wax Shore Hardness Tester

The wax Shore hardness tester uses spring pressure to press the indenter into the surface of the wax sample, and the depth of penetration is measured and converted into a Shore hardness value. It is used to detect the softness and hardness of wax materials, and to control the quality of wax products in industries such as candles, packaging, and ink.
Selection
When selecting, consider the thickness and shape of the wax to be tested to match the type of indenter. Use Type A for conventional wax and Type C for soft wax. Verify that the hardness measurement range covers the hardness range of the test object, and check whether the indenter accuracy and spring force value comply with the detection standards. Pay attention to the influence of the operating environment temperature on the hardness of the wax.

Terms

Standards

Instruments

Can be used with A type or C type Shore DuroMeter, fixed load weight mass 0.75 +/- 0.05kg, hardness Gauge clamping Rod connection size M7x0.5mm, improve hardness testing accuracy and Stability.

$ 180.00

Measurement range 20-90HA, Indication Error ≤ +/- 1HA, can determine a variety of hardness of materials, easy to operate and high accuracy, suitable for laboratory and field testing.

$ 122.00

Dial design can maintain the maximum Measured value display, Measurement range 0-100 Shore, accuracy up to 1shore, made of wear and corrosion resistant stainless steel aluminum oxide material.

$ 1053.00

Supporting D-type Shore DuroMeter, applying 5kg test force by weight, equipped with Glass bench and adjusting nut to ensure full contact with the sample and improve measurement Stability.

$ 248.00

Suitable for low hardness rubber and sponge determination, measurement range 20-90HAO, resolution 0.1HAO, support real-time mode, peak mode, automatic timing and average mode.

$ 399.00

Using D type High Accuracy Impact device, Measurement range 30~ 110HS, can detect cast steel roll, forged steel roll and cast iron roll three kinds of hardness of materials, with anti-Impact and anti-electromagnetic interference ability, support 7 kinds of Hardness standard automatic conversion.

$ 554.00

Suitable for the determination of materials with high Hardness, Measurement range 20-90HD, Indication Error ≤ +/- 1 HD, using Dial display, easy to operate, suitable for rubber and plastic and microporous materials.

$ 162.00

Suitable for low Hardness Rubber and Sponge Determination, Measurement range 20-90HAO, Indication Error ≤ +/- 1HAO, Portable design for quick field testing.

$ 141.00

Pin Travel 0~ 2.5mm, Measurement range 0~ 100HA, error +/- 1HA, can be used in the matching measuring rack or handheld, to meet a variety of rubber hardness testing needs.

$ 525.00

Measurement range greater than 90A, resolution up to 0.1H, with MAX Maximum latch and automatic shutdown function, support USB and Bluetooth data output, to meet a variety of hardness of materials testing needs.

$ 302.00

Travel 0-2.5 mm, measurement error +/- 1HA, can be used with a rack or hand-held operation to meet the requirements of standard test pieces and field object Hardness measurement.

$ 135.00

Suitable for materials such as high Hardness rubber and engineering plastics, pressing needle Travel 0~ 2.5mm, Measurement range 0~ 100HD, error +/- 1HD, in line with ASTM D 2240-05 and GB/T2411-2008 standards.

$ 864.00

Suitable for Medium and Low Hardness Material Testing, Needle Stroke 2.5mm, Needle Head Size Φ 0.79mm. It can be matched with a special test frame to improve Measurement accuracy and Stability.

$ 170.00

Double pointer design can be used with rack or hand, pressing needle Travel 0-2.5 mm, measurement error +/- 1HA, suitable for rubber and plastic hardness testing.

$ 138.00

Double pointer design for easy reading, Pin Travel 0~ 2.5mm, Measurement range 0~ 100HD, error +/- 1HD, lightweight and portable only 0.16kg, suitable for on-site Hardness detection.

$ 180.00

Articles

Shore Durometer Selection: Matching Principles of Hardness Models and Measurement Ranges
This article introduces the selection method for Shore durometers, with the core focus on ensuring that the hardness type matches the material's hardness range and rebound characteristics. When selecting, the principle that the measured value falls within 20% to 80% of the full scale should be followed to avoid data distortion.
Shore hardness tester measures the hardness of rubber sealing rings.
This article introduces the method of measuring the hardness of rubber sealing rings using a Shore durometer. The Shore durometer presses a needle into the rubber surface under spring force and converts the indentation depth into a hardness value, commonly using the A scale.
Shore durometer measures the hardness of cured cast resin.
The Shore durometer measures hardness by pressing an indenter into the material surface, making it suitable for evaluating the properties of cast resin after curing.
Don't confuse the A-type, D-type, and AX-type Shore durometers for measuring rubber hardness.
The Shore durometer measures hardness by assessing the depth to which the indenter penetrates the material under the force of a spring, with higher values indicating greater material hardness. The main differences between Type A, Type D, and Type AX lie in the shape of the indenter and the magnitude of the spring force, making them suitable for materials within different hardness ranges.
How to Choose Between the Ring and Ball Method and the Cup and Ball Method for Softening Point Testers? Read This and Stop Worrying
This article introduces two main methods for determining the softening point of materials: the ring-and-ball method and the cup-and-ball method. The ring-and-ball method is more widely used and is suitable for materials such as asphalt. It involves measuring the temperature at which a steel ball causes the sample to sink. The cup-and-ball method is often used for specific resins or wax products, relying on the flow of the sample or the penetration of a steel ball to determine the endpoint.