Model | DR-H304-90 |
Internal Size (W*D*H) | 900x600x500mm |
External Size (W*D*H) | 1410x880x1280mm |
Chamber material | P.V.C rigid plastic plate, thickness 8mm |
Sample tray | Diameter 10mm glass fiber rod, anti-rust V-shape plastic steel to make sure sample in 15~30 degree inclined |
Temperature Range | Room temperature ~ 55℃ |
Temperature Fluctuations | ≤±0.5℃ |
Temperature Uniformity | ≤±2℃ |
Temperature Precision | ±1℃ |
Spraying method | Continuous and Periodic spray type |
Test Chamber Temperature | Salt Spray Method (NSS ACSS)35±1℃ |
Saturated air Barrel Temperature | Salt Spray Method (NSS ACSS)47±1℃ |
Brine Temperature | 35℃±1℃ |
Spray Quantity | 1.0~2.0 ml / 80cm2 / hr |
PH value | Salt Spray Method (NSS ACSS6.5~7.2) |
Lab Volume | 108L |
Brine Tank Capacity | 25L |
Multiple Safety Protection Devices | Current discharge protection, over pressure protection, over temperature protection, over load fuse protection |
Accessories | Testing Salt/ Measuring tank/Nozzle Equipment x 1 set |
Air source | 1HP Air pump (provided by buyer) |
In the field of material corrosion resistance testing, traditional salt spray test equipment can often only spray the sample from a single direction, which limits the comprehensiveness and accuracy of the test to a certain extent. As an innovative solution for salt spray testing, the Multi Spray Salt Mist System can spray samples from multiple directions simultaneously, providing a more comprehensive and accurate testing environment for material corrosion testing. The following content will introduce the unique advantages of multi-surface spray salt spray system, technical characteristics, application scenarios and the use of maintenance points.
First, the system function: multi-angle spray, comprehensive simulation of corrosive environment
1. Multi-surface spray system
Omni-directional spray: Multi-surface spray salt spray system is equipped with multiple nozzles, which can spray the sample from different angles. This omni-directional spraying ensures that all surfaces of the sample are uniformly exposed to the salt spray, thus more realistically simulating the corrosive environment that the material may face in actual use. For example, when testing automotive parts, a multi-surface spray system can simulate salt spray exposure in different directions, providing more comprehensive test results.
Adjustable spray angle and flow rate: The nozzle angle and spray flow rate in the system can be adjusted according to the test requirements. Users can flexibly adjust the nozzle angle and flow rate according to the shape of the sample and the purpose of the test, ensuring that the salt spray covers all surfaces of the sample evenly. This flexibility allows the multi-surface spray system to adapt to a variety of different shapes and sizes of samples to meet the diverse testing needs.
2. Temperature and Humidity Control System
Precise temperature control: The multi-surface spray system is equipped with a high-precision temperature control system, which can accurately control the temperature inside the test chamber. The temperature range is usually between room temperature and 60℃, and the temperature fluctuation can be controlled within ±0.5℃. Precise temperature control is essential to simulate climatic conditions in different regions, such as tropical oceanic or temperate oceanic climates.
Humidity Adjustment Function: The system also has a humidity adjustment function to simulate different humidity environments. The humidity range is between 30% - 98% RH and humidity fluctuations can be controlled within ±2% RH. Humidity control is particularly important for evaluating the corrosion performance of materials under high humidity conditions, especially when testing coated materials, where changes in humidity can significantly affect the corrosion resistance of the coating.
3. Data Recording and Analysis
Automatic recording of test data: The multi-surface spray salt spray system can automatically record key data during the test process, such as temperature, humidity, salt spray concentration, test time, etc. These data are useful for evaluating the corrosion resistance of materials. These data are critical for assessing the corrosion resistance of materials. The system utilizes high precision sensors to ensure data accuracy and reliability.
Data Analysis and Report Generation: With the built-in data analysis software, users can quickly assess the degree of corrosion and corrosion resistance of materials. The system is capable of generating detailed test reports, which can be exported to a variety of formats, such as PDF, Excel, etc., to facilitate data sharing and archiving. The test report contains test parameters, test results, corrosion assessment, etc., providing users with comprehensive test information.
Application Scenarios: Meet Diverse Testing Needs
Parts and components corrosion test: In the automotive industry, multi-surface spray salt spray system is widely used in the corrosion test of automotive parts and components, such as the body, chassis, engine parts, electronic components and so on. Through the multi-surface spray system, it can simulate the salt spray erosion of parts in different directions in actual use, providing more comprehensive test results. For example, when testing an automobile body, the multi-surface spray system can simulate the corrosion of the body in the marine climate and urban driving environment, ensuring that the body will not experience serious corrosion problems during long-term use.
New Material R&D: With the development of lightweight automobiles and new energy vehicles, the R&D and application of new materials are becoming more and more important. Multi-surface spray salt spray system provides a reliable means for corrosion performance testing of new materials, helping automobile manufacturers and material suppliers to optimize material formulations and production processes and improve the corrosion resistance of materials. For example, when developing new aluminum alloy materials, the multi-surface spray salt spray system can be used to conduct tests in different corrosive environments to assess the corrosion resistance of the materials and provide a scientific basis for the selection and application of materials.
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