Knoop scale - Definition. Was ist Knoop scale
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Was (wer) ist Knoop scale - definition

MICRO-HARDENING TEST
Knoop Hardness; Knoop scale; Knoop hardness
  • Comparison between the Mohs and the Knoop scales

Knoop hardness test         
The Knoop hardness test is a microhardness test – a test for mechanical hardness used particularly for very brittle materials or thin sheets, where only a small indentation may be made for testing purposes. A pyramidal diamond point is pressed into the polished surface of the test material with a known (often 100g) load, for a specified dwell time, and the resulting indentation is measured using a microscope.
Scale (insect anatomy)         
COVERING OF AN INSECT'S WING
Lepidopteran scales; Wing scale; Scale (Lepidoptera); Scale (Lepidoptera anatomy); Scale (Lepidopteran anatomy); Scale (Insect anatomy)
Scales are present on the bodies of various insects. A notable example are Lepidoptera, the insect order comprising moths and butterflies, which has scales on their wings and also on the head, parts of the thorax and abdomen as well as parts of the genitalia.
Scale ruler         
Metric scale; Engineer's scale; Architect's scale; Architect scale; Scale rule
A scale ruler is a tool for measuring lengths and transferring measurements at a fixed ratio of length; two common examples are an architect's scale and engineer's scale. In scientific and engineering terminology, a device to measure linear distance and create proportional linear measurements is called a scale.

Wikipedia

Knoop hardness test

The Knoop hardness test is a microhardness test – a test for mechanical hardness used particularly for very brittle materials or thin sheets, where only a small indentation may be made for testing purposes. A pyramidal diamond point is pressed into the polished surface of the test material with a known (often 100g) load, for a specified dwell time, and the resulting indentation is measured using a microscope. The geometry of this indenter is an extended pyramid with the length to width ratio being 7:1 and respective face angles are 172 degrees for the long edge and 130 degrees for the short edge. The depth of the indentation can be approximated as 1/30 of the long dimension. The Knoop hardness HK or KHN is then given by the formula:

H K = load ( kgf ) impression\ area ( mm 2 ) = P C p L 2 {\displaystyle HK={{{\textrm {load}}({\mbox{kgf}})} \over {{\textrm {impression\ area}}({\mbox{mm}}^{2})}}={P \over {C_{p}L^{2}}}}

where:

L = length of indentation along its long axis
Cp = correction factor related to the shape of the indenter, ideally 0.070279
P = load

HK values are typically in the range from 100 to 1000, when specified in the conventional units of kgf·mm−2. The SI unit, pascals, are sometimes used instead: 1 kgf·mm−2 = 9.80665 MPa.

The test was developed by Frederick Knoop and colleagues at the National Bureau of Standards (now NIST) of the United States in 1939, and is defined by the ASTM E384 standard.

The advantages of the test are that only a very small sample of material is required, and that it is valid for a wide range of test forces. The main disadvantages are the difficulty of using a microscope to measure the indentation (with an accuracy of 0.5 micrometre), and the time needed to prepare the sample and apply the indenter.

Variables such as load, temperature, and environment, may affect this procedure, which have been examined in detail.