1、 Technical performance of Delta classic DCC-2000 alloy analyzer
Truly achieving non-destructive, fast, and accurate on-site detection, directly displaying the percentage content of elements.
Simply place the alloy analyzer in direct contact with the surface of the alloy to be tested, and the alloy grade can be determined on-site without waiting or spending time.
The objects of the tested sample can be alloy blocks, alloy sheets, alloy wires, alloy slag, and alloy powder.
The compensatory testing method for irregular or small samples can detect very small or few samples, such as filaments with a diameter of 0.04mm that can be immediately identified.
The extendable probe design can detect the interior of pipelines, welds, and other locations.
Alloy grades can be added, edited, and deleted on-site in the library.
The world's fastest analysis speed can identify alloy elements in just 2 seconds.
The customized Windows CE 6.0 system driver microcomputer display system enables all functions to be completed on-site, while the customized Windows CE only retains the most basic performance related to Windows and Delta systems, making the program more flexible.
Without the need for a computer, one can freely specify, view, and zoom in on the spectra of relevant elements on site.
Dustproof, anti fog, and waterproof: The all-in-one machine design, with convex and groove structures for soft rubber and plastic components, enables the instrument to have excellent three proof performance and can withstand harsh working environments such as heavy fog, rain, and dusty work sites.
Higher detection accuracy, the function of calculating the average value of multiple tests can effectively improve the detection accuracy of the instrument.
Large icon display, menu driven, and microcomputer WINDOWS system make instrument operation more convenient.
2、 Application and Use of Delta Classic DCC-2000 Alloy Analyzer
Used for on-site, non-destructive, rapid, and accurate analysis and detection of alloy elements and identification of alloy grades.
Alloy Material Identification (PMI):
Incoming inspection; Inventory material management; Re inspection of installation materials
Due to the serious safety accidents caused by mixing or using unqualified materials in industries such as petrochemical construction, metal smelting, pressure vessels, power plants, petrochemicals, fine chemicals, pharmaceuticals, aerospace, etc.
The Innov-X portable XRF alloy analyzer is used to ensure that the alloy components used in production equipment and pipelines meet the specifications required by the design.
The Innov-X portable XRF alloy analyzer is easy to carry, simple to use, fast in analysis speed, and high in accuracy. Its results directly display the alloy grade and percentage content of metal composition, making the Innov-X portable XRF alloy analyzer the world's leading supplier for alloy material identification.
Metal waste recycling
The recycling and reuse of scrap metals require Innov-X portable XRF alloy analyzer to ensure fast and accurate on-site analysis and testing of a large number of complex and diverse alloy types and material qualities. To make prompt and reliable judgments and provide necessary information for both parties in raw material transactions.
Quality Assurance and Quality Control (QA/QC)
In the metal manufacturing industry, quality assurance and quality control (QA/QC) of materials, semi-finished products, and finished products are essential. Mixing or using unqualified materials will inevitably cause losses to the enterprise. The Innov-X portable XRF alloy analyzer is widely used in various manufacturing industries, from small metal material processing plants to large aircraft manufacturers. It has become the * instrument for material confirmation, semi-finished product inspection, and finished product re inspection in the quality system.
3、 Delta Classic DCC-2000 Alloy Analyzer Technical Specifications
| project | (Classic) Alloy Analyzer Innov-X Delta DCC-2000 |
| Dimensions and Weight | Dimensions: 245x250x88mm; Weight<1.5KG |
| Environmental Requirements | Environmental humidity ranging from 0% to 95%; Environmental working temperature -20℃ ~50℃Blue gray, black, silver white alternating |
| Source of excitement | High power micro straight plate electronic X-ray tube, with multiple selectable voltages ranging from 15kV to 40kV built-in; No high-voltage cables, no RF noise, better X-ray shielding, and better heat dissipation. |
| X-ray tube target material | Ta/Autarget |
| XRadiation detector | High sensitivity Si Pin detector |
| cooling system | Adopting the Peltier constant temperature cooling system, the controller operates at -35 ° C℃Work diligently to ensure the detection accuracy of the instrument and to prevent it from being affected by external temperature |
| filter | Eight filters can automatically switch |
| voltage, current | Voltage 15~40kv, current 100ua |
| Spectral beam | Two beam segments, with different elements using different voltages and currents, produce analytical effects |
| Host power supply system | 2Lithium battery, 110v/220 universal charger, charger adapter, intelligent docking station |
| Intelligent docking station | Additional batteries can be charged, and the built-in battery of the instrument can be charged simultaneously and display the charging progress. The docking station can be connected to a computer to exchange data, allowing the instrument to be standardized in real time and on standby at any time |
| Power on and replace the battery | The instrument can replace the battery without shutting down even when turned on, with a time of up to 30 seconds |
| standardization | The instrument does not require standardization when turned on and can be directly tested. Standardization is only an optional option |
| 平衡性 | The instrument has good balance and can stand on the workbench during testing without the need for manual support. With a one click button design, it can operate for a long time without fatigue |
| heat dissipation | More than one-third of the machine body adopts an aluminum alloy shell design, and there is a dedicated slot type heat dissipation device on the top of the instrument. The entire system makes heat dissipation very effective, prolongs machine life, and the X-ray analyzer works more stably, resulting in an extremely low failure rate |
| monitor | Integrated design of the whole machine, industrial grade high-resolution TFT QVGA Casio BlanView? Touch display color screen with LED backlight; Pixel 240×320 |
| Display fixing method | All in one machine design, integrated structure of the whole machine, non removable PDA, dustproof, anti fog, waterproof, low fault |
| Display visibility | Monitor not available LCD High altitude sickness, excellent visibility even in low light sources and strong light environments indoors, low energy consumption, and increased display performance in various environments by half compared to traditional white light displays |
| The data shows | The percentage (%) displays the element content, and the element display order can be sorted by energy, concentration value, user-defined, etc. It can also calculate the average value of multiple tests and can be connected to a desktop computer for display; The instrument synchronously and dynamically displays the chemical composition during the testing process |
| data storage | ROM128M、 RAM128M, 1G SD card, capable of storing over 100000 sets of data and spectra |
| data transmission | USBCable and wireless Bluetooth are used for data transmission, and files can be output in TXT and EXCEL formats. |
| Processor CPU | 532MHz CPU、 Freescale, ARM1136-MX31 processor, floating-point operation mode, significantly improved speed |
| System CPU peripherals | Adopting USB bus, I2C, GPIO, Bluetooth, accelerator, real-time clock chip, micro SD memory card (capable of storing 2GB data), GPIO strip connected to the motherboard and PSM |
| operating system | User oriented Windows CE 6.0 system |
| Alloy Beam1pattern | Cd,Ti, V, Cr, Mn, Fe, Co, Ni, Cu, Zn, W, Hf, Ta, Re, Pb, Bi, Zr, Nb, Mo, Pd, Ag, Sn, SbWaiting for 23 elements |
| Alloy Beam2pattern | Ti、 V. Five elements including Cr, Mn, Fe, etc |
| Alloy modeling method | Basic parameter method, the instrument does not require prior knowledge of the alloy type before analyzing the alloy, achieving fully automated analysis |
| Type of alloy | Iron alloy series, nickel based alloy series, cobalt based alloy series, titanium based alloy series, copper based series, 6. High temperature alloy, molybdenum tungsten alloy, aluminum alloy, hybrid alloy series |
| alloy grade | There are 351 alloy grades built-in, and users can customize 300 alloy grades. 651 alloys can be analyzed simultaneously, and up to 10000 alloys can be analyzed, |
| Small sample testing | Compensatory testing methods for irregular or small samples can detect very small or few samples, such as filaments with a diameter of 0.04mm that can be immediately identified |
| High Temperature Test | Can detect temperatures up to 450 degrees Celsius℃High temperature materials |
4、 Delta Classic DCC-2000 Alloy Analyzer Actual Measurement Data Reportannounce
| 304Comparison of actual sample test values | |||||
| Reading | Mode | Cr | Mn | Fe | Ni |
| standard value | Analytical | 18.56 | 1.53 | 71.24 | 8.09 |
| measured value | Analytical | 18.66 | 1.57 | 71.16 | 7.85 |
| measured value | Analytical | 18.61 | 1.58 | 71.02 | 8.05 |
| measured value | Analytical | 18.62 | 1.52 | 71.18 | 7.98 |
| measured value | Analytical | 18.68 | 1.57 | 71.12 | 7.91 |
| measured value | Analytical | 18.67 | 1.5 | 71.03 | 7.99 |
| measured value | Analytical | 18.62 | 1.55 | 71.22 | 7.93 |
| measured value | Analytical | 18.5 | 1.57 | 71.2 | 7.96 |
| measured value | Analytical | 18.7 | 1.53 | 71.14 | 7.99 |
| measured value | Analytical | 18.63 | 1.52 | 71.31 | 7.88 |
| measured value | Analytical | 18.65 | 1.51 | 71.23 | 7.95 |
