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Industrial analysis instrument for parallel test

An industrial analyzer and sampling technology, applied in the field of industrial analyzers, can solve the problems of not fully satisfying the online analysis, reducing the test efficiency of the instrument, and prolonging the test time, so as to shorten the total analysis time, shorten the test time, and shorten the positioning range. wide effect

Active Publication Date: 2007-10-24
HUNAN SUNDY SCI & TECH DEV
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AI Technical Summary

Problems solved by technology

In addition, there is another type of automatic industrial analyzer that adopts a single analysis furnace structure, without an automatic sampling mechanism, but weighs directly in the analysis furnace, which is likely to cause the balance to drift due to the influence of the furnace temperature, making the results inaccurate
Although the entire measurement process of the above two types of industrial analyzers has been automated, they still have common shortcomings such as slow speed.
Because this type of equipment often only has one analytical furnace or a set of weighing mechanism, the three test indicators of industrial analysis cannot be carried out at the same time. Different indicators sometimes need to wait for the analytical furnace to cool down according to their own characteristics, which prolongs the entire test time. , which reduces the test efficiency of the instrument and cannot fully meet the requirements of on-line analysis in the industrial field

Method used

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  • Industrial analysis instrument for parallel test
  • Industrial analysis instrument for parallel test
  • Industrial analysis instrument for parallel test

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Embodiment Construction

[0026]An industrial analyzer capable of parallel testing of the present invention comprises a control mechanism 1 fixed on a base plate 2, a sample feeding weighing mechanism 3, a sampling mechanism 4, an analysis furnace 5 and a heat preservation weighing mechanism 6, and a sampling mechanism 4 is located between the sample feeding and weighing mechanism 3, the analysis furnace 5 and the heat preservation weighing mechanism 6. Comprising one or more furnace bodies, the sampling mechanism 4 includes a Y-axis horizontal movement mechanism 41, an X-axis horizontal movement mechanism 43, and a manipulator lifting mechanism 42 fixed on the Y-axis horizontal movement mechanism 41 or the X-axis horizontal movement mechanism 43. The analysis furnace 5 can be one or more high-temperature furnace bodies. The high-temperature furnace body includes a high-temperature plate and a high-temperature furnace. The high-temperature furnace is connected to the sampling mechanism 4 through a high-...

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Abstract

The invention discloses an industry analyzer which can parallel test, comprising a controller fixed on a bottom plate, a feeding weighting device, a sample sender, an analyzing furnace and an thermal insulation weighting device, wherein the sample sender is between the feeding weighting device, the analyzing furnace and the thermal-insulation weighting device, the feeding weighting device, the analyzing furnace and the thermal insulation weighting device are respectively connected with the sample sensor, the analyzing furnace comprises at least one furnace, the sample sender comprises a Y-axis horizontal moving device, a X-axis horizontal moving device, and a mechanical hand fixed on the Y-axis horizontal moving device or the X-axis horizontal moving device. The invention has high automatic degree, high efficiency, high accuracy, simple operation, reliable property, and parallel test.

Description

technical field [0001] The invention mainly relates to the field of measuring instruments used for analyzing the components of combustible substances, in particular to an industrial analyzer capable of parallel testing. Background technique [0002] Industrial analysis usually includes the analysis and testing of moisture, ash, volatile matter and fixed carbon on combustible substances. These four indicators are used as the basic basis for evaluating combustible substances. According to the measurement results of moisture and ash yield of combustibles, one can roughly understand the organic matter or the percentage of combustibles in combustibles; according to the volatile matter yield of combustibles, the nature of organic matter in combustibles can be known, which is the main index. Usually moisture, ash and volatile yields are directly measured by equipment, and the analysis furnace temperature, analysis time and operation mode required for their analysis and testing are ...

Claims

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Application Information

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IPC IPC(8): G01N35/00
Inventor 朱先德
Owner HUNAN SUNDY SCI & TECH DEV
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