1. Product name: Impact specimen fracture analyzer
2. Specification model: DK-KH
3. Applicable standards: GB/T 8363-2007 "Ferritic steel drop weight tear test method"
GB/T 6803-2008 "Ferritic steel non-plastic transition temperature drop weight test method"
GB 5482-2007 "Metallic material dynamic tear test method"
GB/T12778-2008 "Metal Charpy impact fracture determination method"
GB/T 229-2007 "Metallic material Charpy pendulum impact test method"
4. Introduction:
DK-KH impact specimen fracture analyzer is a product of Jinan Zhicheng Instrument Co., Ltd. based on more than ten years of experience in the production of impact testing machines, in accordance with GB/T 12778-2008 "Metal Charpy impact fracture determination method" and the literature "Metal Fracture Analysis", "Metal Failure Analysis", "Macrofracture and Microfracture", and the American Society for Metals compiled "Metal Handbook · Fracture metallography and fracture atlas.
This fracture analyzer is carefully developed, mainly used for image analysis test of metal material impact (including pendulum impact, drop hammer impact) fracture, and can measure test parameters such as fiber rate of impact specimen fracture section, expansion value of impact fracture side, etc.
V. Functional features:
The impact specimen fracture analyzer is used for analysis and measurement of pendulum impact fracture or drop hammer impact fracture section of metal materials. Through its specific electronic optical sampling system, the impact fracture morphology is sampled in full field of view in real time, and the fiber rate of the fracture section of the specimen, the expansion value of the fracture section side, and the length of the fracture crack can be determined. It is easy to operate, with high accuracy, and can perform measurements that could not be completed manually in the past. It can confirm the position and shape of the crystalline part of the specimen, and automatically judge the results. The stored result data can be repeatedly checked and processed.
VI. Technical indicators:
1. The stage can be rotated and the background light source can be adjusted;
2. Pixels: 8 million
3. Measurement accuracy is higher than 0.02mm
4. Computer automatically calculates and analyzes the results
5. Image data analysis and processing
6. Test data record storage, data re-analysis, and supports manual analysis
7. Overall dimensions: 700*600:800mm
Resound Photoelectric Technology Research Institute (LSRPTR)
Resound Photoelectric Technology Research Institute (LSRPTR), also known as Resound Research Institute, is affiliated with China Haiheng International Trade Group Co., Ltd. (CHHGC). As an investment attraction enterprise in Zhongyuan Science and Technology City and a construction unit of the Zhongyuan Aurora Laboratory, the institute is committed to the industrialization of scientific and technological achievements, guided by market demand.
Technical Cooperation
Resound Research Institute has established technical cooperation with numerous well-known domestic and foreign universities, research institutes, and enterprise platforms, including:
Tsinghua University
Lanzhou University
Zhengzhou University
Altai State Technical University of Russia
Northwestern Polytechnical University
Chinese Academy of Engineering
Henan Academy of Sciences
China Electronics Technology Group
CGN Group
Xiamen University
Henan University
National University
University of Electronic Science and Technology of China
Chinese Academy of Sciences
China Academy of Engineering Physics
China Shipbuilding Group
China Electronics Group
Henan Inspection Group
Research and Development Fields
* Applications of Micro-Electromechanical and Lithography Technology
* Optoelectronics and Spectroscopy Technology
* High-Power Laser and Device Preparation Technology
* Nuclear Instrument and Emergency Equipment System Applications
Introducing Advanced Technologies and Products
Resound Research Institute continuously introduces advanced new technologies and products in industrial application scenarios such as market supervision, public safety, environmental monitoring, and science, education, research, and production. This has led to the formation of a domestically produced high-end scientific equipment industry base that integrates design, research and
development, production, sales, and services. This base drives the iteration of downstream industry technology, enhances the transformation and industrialization level of scientific and technological achievements, and provides technological sources for innovative development.