Method for detecting manganese in carbon manganese alloy
A detection method and alloy technology, applied in the preparation of test samples, material analysis by observing the influence of chemical indicators, and analysis by making materials undergo chemical reactions, etc., can solve the problem that the amount of sample weighing cannot guarantee the representativeness of the analysis sample In order to achieve the effects of good sample uniformity, easy observation, and accurate judgment of the end point
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2011-07-20
Abstract
Description
technical field
[0001] The invention belongs to the technical field of element analysis, in particular to a method for detecting manganese in carbon-manganese alloys. Background technique
[0002] At present, carbon-manganese alloy is a new type of composite material, which is generally made into a spherical shape and used in the smelting and alloying process of medium and high carbon steel. The manganese in the carbon-manganese alloy ball plays the role of deoxidation, desulfurization and alloy additive in the steelmaking process. Therefore, the accurate determination of the manganese content in carbon-manganese alloy balls is of great significance to improve the analysis and detection technology, improve product quality, and increase economic benefits.
[0003] The analysis of manganese in carbon-manganese alloys generally refers to the analysis method of manganese in ferromanganese, that is, the ammonium nitrate oxidation volumetric method. The representativeness of the...
Examples
Embodiment 1
[0036] Analysis process of manganese in carbon-manganese alloy balls:
[0037] 1. Weigh 3.1106g of the sample in a gray dish with constant weight, burn it at 700--900°C for 2 hours, take it out and cool it to room temperature and weigh it. The weight of the sample after burning is 2.0711g. The percentage A of the sample mass is 66.58%.
[0038] 2. Mix the sample thoroughly after burning, weigh 0.2000g into a 250ml Erlenmeyer flask, add 15ml of phosphoric acid, 5ml of nitric acid (5-10 drops of hydrofluoric acid can be added for insoluble samples), and heat until the sample is completely Dissolve (the solution in the bottle is calm at this time, without bubbles).
[0039] Continue to keep emitting phosphoric acid fumes for 20 seconds, take it off, and place it for 40 seconds, then immediately add 2g of ammonium nitrate, and shake the conical flask fully to completely oxidize the divalent manganese and drive away the yellow nitrogen oxide gas.
[0040] 3. Titration: Let the s...
Embodiment 2
[0046] Analysis process of manganese in carbon-manganese alloy:
[0047] 1. Weigh 5.0919g of the sample in a gray dish with constant weight, burn it at 700--900°C for 2 hours, take it out and cool it to room temperature and weigh it. The weight of the sample after burning is 4.0033g. The percentage A of the sample mass is 78.62%.
[0048] 2. Fully mix the sample after burning, weigh 0.2000g into a 250ml Erlenmeyer flask, add 15ml of phosphoric acid, 5ml of nitric acid (5-10 drops of hydrofluoric acid can be added for insoluble samples), and heat until the sample is completely Dissolve (the solution in the bottle is calm at this time, without bubbles).
[0049] Continue to keep emitting phosphoric acid fumes for 20 seconds, remove it, and place it for 40 seconds, then immediately add 2g of ammonium nitrate, and shake the conical flask fully to completely oxidize the divalent manganese and drive away the yellow nitrogen oxide gas.
[0050] 3. Titration: Let the sample solutio...