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14 Kw Ultra Cool Cryogenic Tunnel Freezer Line Deep 300C 850mm

    Buy cheap 14 Kw Ultra Cool Cryogenic Tunnel Freezer Line Deep 300C 850mm from wholesalers
     
    Buy cheap 14 Kw Ultra Cool Cryogenic Tunnel Freezer Line Deep 300C 850mm from wholesalers
    • Buy cheap 14 Kw Ultra Cool Cryogenic Tunnel Freezer Line Deep 300C 850mm from wholesalers
    • Buy cheap 14 Kw Ultra Cool Cryogenic Tunnel Freezer Line Deep 300C 850mm from wholesalers

    14 Kw Ultra Cool Cryogenic Tunnel Freezer Line Deep 300C 850mm

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    Brand Name : DJL
    Model Number : DJL-SLX-800
    Certification : ISO9001,CE
    Price : negotiable
    Payment Terms : T/T
    Supply Ability : 20 Set/Sets per Year
    Delivery Time : 30 working days
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    14 Kw Ultra Cool Cryogenic Tunnel Freezer Line Deep 300C 850mm

    -190 Ultra Low Temperature Cryogenic Tunnel Freezer Metal Processing Line Deep Freezer
    Product Description

    Cryogenic treatment refers to materials that need to be processed in an environment of -190°C to -230°C. Suitable for all metal or non-metal materials, such as alloys, carbides, plastics (nylon and Teflon), aluminum, ceramics, etc.
    Ultra-cryogenic technology: When the metal is hardened by heat treatment to the cooling process, the alloy and carbon are dissolved and combined and diffused to form austenite. During the cooling process, martensite is formed due to low temperature compression. Martensite), and because the final transformation point (Mf) of martensite is very low. The hardness, wear resistance and service life of the metal, and the volume change caused by the instability of austenite is prone to structural transformation, causing metal fragmentation. Furthermore, there are many physical properties, especially thermal properties and magnetic properties.


    Metal cryogenic treatment originated in Switzerland for more than one hundred years. At that time, it was discovered that tools that had been refrigerated in ice and snow could last longer. Swiss army knives, clocks, and Gillette blades were all beneficiaries of this technique at that time. Beginning in the 1960s, the United States, the Soviet Union, Japan and other countries began to study metal cryogenic technology. A large number of experiments found that cryogenic treatment effectively extended the life of tools. In the 1980s, several specialized cryogenic companies in the United States, such as 3xistruments&Toling, Material Improvement, and Ame Cry, carried out operations on cutting tools, abrasive tools, gears, special springs, cemented carbide, high-speed steel, and cobalt-based alloys. Cold treatment, experimental results show that cryogenic treatment has a significant effect on the service life of the above-mentioned material parts, which can be increased by 5 to 10 times.


    Domestic research was launched in the middle of the 20th century, using alcohol + dry ice to conduct dimensional stability tests and applications of molds, measuring tools, and tools. In the 1990s, various institutes began to conduct sufficient research and analysis on high-speed steel, die steel, cemented carbide and other materials. Research has shown that cryogenic treatment can improve the wear resistance, toughness, hardness, dimensional stability, and corrosion resistance of these materials. All play a role in varying degrees.


    Specification
    Model
    Inner cavity dimension
    (L*W*H)
    External dimension
    (L*W*H)
    Freezing capacity
    L/KG(hour)
    SLX-433
    400*350*350
    1300*800*1050
    50L/80KGS
    SLX-544
    500*400*400
    1410*830*1080
    80L/150KGS
    SLX-655
    600*500*500
    1500*900*1130
    150L/300KGS
    SLX-755
    700*500*500
    1600*1030*1140
    250L/500KGS
    SLX-966
    900*500*500
    1850*1230*1210
    324L/650KGS
    SLX-1077
    1000*700*7001950*1280*1290
    490L/1000KGS
    SLX-1288
    1200*800*800
    2150*1330*1340
    769L/1500KGS
    SLX-1499
    1400*900*900
    2350*1580*1470
    1000L/2000KGS
    Why take cryogenic treatment of the workpiece?
    * To improve the hardness and strength of workpiece
    * To improve the abrasion resistance of workpiece
    * To improve the impact toughness
    * To improve the fatigue strength

    * To improve the corrosion resistance of workpiece
    * To improve the internal stress distribution of workpiece
    * To ensure the dimension accuracy of workpiece

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