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CS CS 844 and 744 Series: Carbon/Sulfur by Combustion
Carbon and sulfur determination by combustion infrared detection
Quick, accurate, and affordable determination for both production control and research
Calibration, analysis, evaluation, and diagnostic functions accessible via user-friendly brand software
GDS GDS 500A and 850A Atomic Emission Spectrometers
Spectral range from 120 to 800 nm
Continuous profile of concentration/thickness
Large, dynamic range with concentrations from ppm to 100% by weight
Short analysis time (minutes)
高速全自动真空除尘装置直接将粉尘排至仪器外部捕集器中,消除环境污染。上海专业分析仪厂家直销
Procedure - Solid Samples
Instrument calibration/drift correction.
Place the calibration/drift standard in a *** Nickel Basket, and if applicable, place the sample into the appropriate autoloader position.
Press the Analyze button on the instrument screen. After a short delay, the loading head slide-block will open.
Note: samples using automation should be placed in the appropriate autoloader position before starting the
analysis sequence. Once the sequence has started, the automatic analysis will start and end automatically.
Procedure – Powder/Chip Samples
Determine the instrument blank.
Press the Analyze button on the instrument screen again, the loading head slide-block will close and the lower electrode will open.
Clean the upper and lower electrode either manually or remove the crucible and press the analyze button to clean with an automatic cleaner if applicable.
Add approximately 0.05 g of *** Graphite Powder to a 782-720 Graphite Crucible.
Firmly place the crucible on the lower electrode tip or appropriate autoloader position.
Instrument calibration/drift correction.
a. Login a minimum of 3 Standard replicates.
b. Weigh a ~1.000 gram of a calibration/drift standard, enter the mass and standard identification into appropriate replicate fields.
c. Press the Analyze button on the instrument screen. After a short delay, the loading head slide-block will open.
d. Place the calibration/drift standard into the open port at the top of the loading head.
e. Press the Analyze button on the instrument screen again, the loading head slide-block will close and the lower electrode will open.
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Oxygen, Nitrogen, and Hydrogen in Refractory Metals
Summary
Titanium is a metal that can be combined with elements such as aluminum, vanadium, molybdenum, and tin to produce high-strength, lowdensity, and corrosion-resistant alloys. Titanium alloys are used by the military, medical devices, sporting goods, and aerospace industries because of these properties, and due to the strict demands of these industries, effort needs to be taken to assure that the material meets the highest of quality standards.
新型气路管道减少气路连接阀,使得漏气,断路故障更少。江苏进口分析仪咨询报价
长寿命的红外发射光源和无漂移的电路设计保证红外检测池的长期稳定性。上海专业分析仪厂家直销
Sample Preparation
Sampling and sample preparation of refractory metals such as titanium and zirconium is somewhat different from that of steel. Unlike steel samples, hydrogen is not as mobile in this group of materials; therefore, storage in liquid nitrogen or dry ice is not required. However, it is important to keep the sample cool when cutting or sectioning. Sample preparation for oxygen and nitrogen determination has beendifferent from that of hydrogen determination.
上海专业分析仪厂家直销
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