X ray Simulation Software

EI Radiation Testing Process Simulation Software

As an advanced simulation software, it is mainly used for simulating radiographic imaging. Although its functions are very powerful and diverse, its design goals are mainly focused on the field of radiation. Can the EI radiographic testing process simulation software meet these requirements

1.Support simulation function for conventional X-ray film, CR, DR detection:
--Conventional radiographic film: The EI radiographic testing process simulation software does not directly support the simulation of conventional radiographic film, and its main application is in digital imaging systems.
--CR (computed radiography) and DR (digital radiography): EI radiographic testing process simulation software can be used to simulate these systems as it can simulate various imaging equipment and detector configurations. But users need to define and configure the simulation environment themselves.

2.Support the selection of X-rays, and the parameters of the source can be customized:
--X-ray selection: The EI X-ray detection process simulation software supports different types of X-ray sources.
--Customization of radiation source parameters: including the focal size of the radiation source, the filtering material and thickness of the radiation angle source. These parameters can be customized through configuration files and scripts in the EI radiation detection process simulation software. Therefore, the EI radiographic inspection process simulation software can meet this requirement

3.During simulation modeling, it is supported to add defect functionality within the detection model
--Defect function: The geometric construction of EI radiographic testing process simulation software is very flexible, and users can simulate different types of defects by defining geometric shapes.
--Defect types: cracks, circular holes, pores, and inclusions, which can be simulated through custom geometry.
--Defect parameter customization: The size, position, and other parameters of defects can be defined and modified through scripts.

4.Support the selection and addition of linear and hole type image quality indicators:
--The EI radiographic testing process simulation software can simulate linear and hole type image quality indicators through geometric modeling, but users need to define these models and parameters themselves.

5.Analysis of grayscale or blackness of detection results:
--The EI radiographic testing process simulation software supports generating imaging data, and users can use external software (such as MATLAB, Python, etc.) for grayscale or blackness analysis. Therefore, this function can be achieved by combining EI radiographic testing process simulation software and other analysis tools.

6.POD analysis of calculation parameters:
--POD (Probability of Detection) analysis requires specialized data analysis tools. The EI radiographic testing process simulation software itself does not have the function of directly conducting POD analysis, but it can generate data for POD analysis. Users need to export these data to other statistical analysis software for POD analysis.

In summary, the EI radiographic testing process simulation software can meet the requirements and, when combined with other data analysis tools, can achieve a complete workflow. The high configurability and flexibility of EI X-ray detection process simulation software enable it to play a role in many application scenarios.