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德国DIAS红外测温仪在工业锻造中的应用

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德国DIAS红外测温仪在工业锻造中的应用, 红外测温仪DS40N , DS42N , DS44N , DS10N , 工业铸造用红外测温仪


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德国DIAS红外测温仪在工业铸造中的应用

 

Measurement of the forming temperature during forging of metals: steel, iron and alloys
When industrial forging metal components mainly for shipbuilding, automotive, aerospace, mechanical engineering and plant construction are made, for example in so-called forging. Using the non-contact temperature measurement, the correct shaping temperature of steel, iron, and their alloys are checked when hot forging.

锻造中的正确温度是决定性的质量因素之一

Because the temperature of the workpiece before forging is one of the most important parameters and thus decisive for the quality in the production of many safety-related components. The temperature is depending on the material and process between 950 °C and 1250 °C. The forged blanks are preheated to gas-fired or induction heated furnaces and therefore can not be measured directly with conventional thermocouples. For gas stoves only the internal temperature of the furnace is measured, but not the workpiece itself. In inductively heated furnaces also thermocouple measurement does not apply.

用非接触测温用红外测温仪替代传统的热电偶

That is the reason why it is essential to check the work pieces for the correct forging temperature directly at the exit of the furnace with pyrometers before it will be taken into the forging press. These pyrometers must have a very short response timevery small spot sizes, and a peak picker as the parts are always moving. Only the combination of these 3 properties enables a very exact measurement even if the work piece has scale on the surface.

When industrial forging attention must be paid to the proper forming temperature and forging temperature.
When industrial forging attention must be paid to the proper forming temperature and forging temperature. Image source: Deutsche Fotothek/Wikimedia Commons/CC BY-SA 3.0
The proper forging temperature of the workpiece is a decisive quality factor.
The proper forging temperature of the workpiece is a decisive quality factor. Image source: Deutsche Fotothek/Wikimedia Commons/CC BY-SA 3.0
The temperature is depending on the forging blank (steel, iron, alloys) and process between 950 °C and 1250 °C.
The temperature is depending on the forging blank (steel, iron, alloys) and process between 950 °C and 1250 °C. Image source: Deutsche Fotothek/Wikimedia Commons/CC BY-SA 3.0

在炉窑出口处采用DIAS红外测温仪进行锻造温度的快速非接触测温

So the pyrometer can detect the real material temperature in smallest scratches of the scale and store it in the peak picker. Additionally this fast measurement enables the controlling of a separator to reject too hot or too cold parts and to record each forging piece.

For this measurement task, the robust, stationary pyrometers PYROSPOT DS 40N and DS 42N are used in 2-wire technology or PYROSPOT DS 44N and DS 10N. The pyrometer DS 44N and DS 10N offer besides the usual measuring output of 0/4 to 20 mA another online digital interface RS-485, which also enables the networking of several devices in one bus system. For exact alignment of the pyrometer there are LED or laser targeting light, view finder or video module available.

DIAS pyrometers PYROSPOT for reliable non-contact temperature measurement in forging and forming.
DIAS pyrometers PYROSPOT for reliable non-contact temperature measurement in forging and forming.

兼容性很强的参数设置软件、多种红外测温仪附件可选

The software PYROSOFT Spot and PYROSOFT Spot Pro allow adjustment of all parameters, and thus the optimum adaptation to the process and the digital evaluation of the measured values. For precise alignment and stable mounting, adjustable mounting brackets are used for the permanent low maintenance. Air purge for pyrometers are used for keeping the optics clean and cooling housings are available for use in high ambient temperatures.

其它信息:红外测温仪用于锻造工件的质量保证



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