After applying a release gel to the mold's surface, the process begins by placing fiber textiles into the mold. These textiles are prepregs composite materials containing a high-strength fiber that has been pre-impregnated with resin.
Once the molds have been filled, you vacuum the air out of the mold cavity and place the whole assembly first in a vacuum bag â?? this step enables equal distribution of pressure across the workpiece. An absorbent material, or bleeder, inside the bag facilitates easier air removal and absorbs any excess resin that may bleed out during the curing process. After removing the air from the bag, the container goes into the cpmpsite autoclave.
Then, the curing process begins. The temperature and pressure inside the autoclave rise, hardening the material and removing pores. Once the product has cured for the specified period, you remove it from the autoclave and place it in an oven to improve its durability. Then, after trimming and inspection, your composite is ready for use.
Composite autoclaves are specialized pressure vessels designed to cure composite materials under precisely controlled conditions. With continuous advancements in efficiency, control, and speed, composite autoclaves for sale remain a cornerstone technology for innovation in the world of composite materials. Composite Autoclave Types Carbon Fiber Industrial Composite Autoclave Autoclave for Composite Curing Laboratory Composite Autoclave The Advantages of Composite Autoclaves in Industrial Applications Composite Autoclaves: Elevating Industrial Manufacturing with High-Performance Curing Composite materials have become game-changers in numerous industries due to their exceptional strength-to-weight ratio, design flexibility, and superior performance characteristics. However, unlocking the full potential of these materials relies heavily on the curing process. This is where composite autoclaves step in, offering a multitude of advantages over traditional curing methods in industrial applications. Superior Quality and Performance: Precise Pressure Control: Unlike ovens with limited pressure capabilities, composite autoclaves from ETSA, one of professional composite autoclave suppliers and composite autoclave manufacturers, can apply significantly higher and precisely controlled pressure. This ensures optimal compaction of laminate layers within the composite, eliminating air pockets (voids) and achieving complete resin flow and fiber wetting. These factors are paramount for achieving the desired mechanical properties, strength, and overall performance of the final composite part. Uniform Heating Throughout: Composite autoclaves for sale guarantee consistent and uniform heat distribution across the entire composite structure, regardless of its size or complexity. This even heat distribution is crucial for attaining consistent material properties throughout the part, eliminating inconsistencies and potential weak points. Environmental protection and energy saving: The autoclave molding process does not use harmful substances such as solvents and paints, which has the advantages of environmental protection and energy saving. The Key Uses of Composite Autoclaves Curing High-Performance Composites: These small composite autoclaves are essential for curing advanced composite materials like carbon fiber and Kevlar. The high pressure ensures optimal compaction of the laminate layers, eliminating air pockets and achieving complete resin flow for maximum strength and performance.
Carbon Fiber Industrial Composite Autoclave Our industrial autoclave range includes a specialized pressure vessel designed exclusively for the production of composite materials. This carbon fiber autoclave, a top-selling item, is a pivotal tool in the manufacturing of composites. Composites, also known as composition materials, are created by combining two or more materials with distinct physical or chemical properties. This combination results in a material with unique characteristics that differ from its individual components. For the production of composites, the autoclave machine for carbon fiber by ETSA, one of leading autoclave machine manufacturers, stands as one of the most effective and widely used techniques. In this process, a two-sided mold set is assembled, forming both surfaces of the panel. This mold set is then placed within the industrial autoclave, where it is exposed to both the required elevated pressure and temperature. Manufacturers rely on these carbon fiber autoclave for sale to process and cure their composites. The high pressure and heat generated within the autoclave are crucial for achieving the desired fiber content in the final product. This ensures the production of composites with optimal properties and performance.
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X-ray machine Technical parameter 1. The numbers of x-ray tubes used in the product are also used as product number and x-ray generator (bulb tube head) number. 2. The current and voltage of x-ray tubes are fixed in three groups, they are: X exposure voltageú¿kvpú¬ 60 65 70 X-ray currentú¿maú¬ 0.50 0.85 1.10 3. When adding up voltage, total current is less than 2a and total power is 500w 4. Drain current and earth resistance are in accordant with the stipulates in gb9706.1 5. The three groups of voltage (60kvíó65kvíó70kv) are adjustable. 6ú«wireless remote control in any angles within 10 meters part form the control box 7. The parameter of x-ray generator (bulb tube head) 7.1. The parameter of x-ray tubes A. Focus index: 0.3í-0.3mm2 Bú«the voltage of the-highest-voltage generator: 90kv C. The highest inverse peak voltage: 90kv D. Filament characteristic: vf=5ví+0.5vú¼if=3a E. Target surface obliquity: 12íp F. The cooling manner of bulb tube head: oil immersion 8.7.2 the parameter of x-ray generator (bulb tube head): A. Focus-skin distance: 200mm B. The thickness of filter-ray film: more than 1.5mmal C. The leakage rate of x-ray: no more than 0.002mgy/h (no. 29.204.3 in gb9706.12 prescript that the leakage rate of x-ray is no more than 0.25mgy/h) D. The manner of limiting beam: using planigraphic device
Technical parameter 1. The numbers of x-ray tubes used in the product are also used as product numbers and x-ray generator (bulb tube head) numbers. 2. The current and voltage of x-ray tubes are fixed in three groups, they are: X exposure voltage (kvp) 60 65 70 X-ray current (ma) 0.50 0.85 1.10 3. When adding up voltage, total current is less than 2a and total power is 500w 4. Drain current and earth resistance are in accordant with the stipulates in gb9706.1 5. The three groups of voltage (60kv, 65kv, 70kv) are adjustable. 6. Wireless remote control in any angles within 10 meters part form the control box 7. The parameter of x-ray generator (bulb tube head) 7.1. The parameter of x-ray tubes A. Focus index: 0.3í-0.3mm2 B. The voltage of the-highest-voltage generator: 90kv C. The highest inverse peak voltage: 90kv D. Filament characteristic: vf=5ví+0.5v, if=3a E. Target surface obliquity: 12íp F. The cooling manner of bulb tube head: oil immersion 7.2 the parameter of x-ray generator (bulb tube head): A. Focus-skin distance: 200mm B. The thickness of filter-ray film: more than 1.5mmal C. The leakage rate of x-ray: no more than 0.002mgy/h (no. 29.204.3 in gb9706.12 prescript that the leakage rate of x-ray is no more than 0.25mgy/h) D. The manner of limiting beam: using planigraphic device
JW 031C Power Supply:220V 50HZ /220V 60HZ/110V 60HZ Power : 0.7HP Air Flux: 62L/min(0.4Mpa) Noise:58dB Max Pressure:0.75Mpa Start-up Pressure 0.5Mpa Rev. :1400r/min Capacity:30L