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Lithium battery UN38.3 test, what is the difference between UN38.3 and MSDS

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    Lithium battery UN38.3 test, what is the difference between UN38.3 and MSDS

    Product range
    1. Various lead-acid batteries (such as lead-acid batteries for car start-up, fixed lead-acid batteries, small valve-controlled sealed lead-acid batteries, etc.)
    2. Various power secondary batteries (such as power vehicle battery, electric road vehicle battery, electric tool battery, hybrid vehicle battery, etc.)
    3. Various cell phone batteries (such as lithium ion battery, lithium polymer battery, nickel hydrogen battery, etc.)
    4. A variety of small secondary battery (e.g., laptop batteries, digital camera batteries, camera batteries, all kinds of cylindrical battery, wireless communication, portable DVD, CD and MP3 players, etc.)
    5. Various primary batteries (such as basic zinc manganese battery, lithium manganese battery, etc.)
    Test standard
    UN38.3 test items and test qualification criteria
    UN38.3 test items
    T.1 high altitude simulation test
    In pressure of 11.6 kPa or less, 20 + / - 5 ℃ temperature conditions, save more than six hours, no leakage, exhaust, disintegration, rupture, burning.
    2 hot test. T.
    In 72 + 2 ℃ and - 40 plus or minus 2 ℃ under the condition of high and low temperature impact test, the limit temperature storage time of 6 h, or high and low temperature conversion time 30 min or less, shock, 10 times at room temperature (20 + / - 5 ℃) for 24 h, test the total time for at least a week
    T.3 vibration test
    Within 15min, a reciprocating logarithmic sweep sine vibration was completed from 7Hz to 200Hz, and 12 three-dimensional directional vibration was completed within 3h.
    Logarithmic sweep: from 7 hz to maintain the maximum acceleration of 1gn until the frequency reaches 18 hz. The amplitude is then kept at 0.8mm
    (total offset: 1.6mm) and increase the frequency until the maximum acceleration reaches 8gn (frequency: about 50hz). Will be the biggest
    The acceleration stays at 8gn until the frequency increases to 200 hz.
    T.4 impact test
    Semi-sine shocks of 150g, 6ms or 50g and 11ms shall be carried out 3 times in each installation direction, a total of 18 times.
    T.5 external short circuit test
    Outside the 55 + 2 ℃, resistance < 0.1 Ω under the condition of short circuit, short circuit time until the battery temperature back to 55 + 2 ℃ after 1 h.
    T.6 collision test
    9.1kg weight was placed on the battery with a 15.8mm round rod from a height of 61 + / -2.5cm to test the battery surface temperature.
    T.7 overcharging test
    Under the condition of 2 times the maximum continuous charging current and 2 times the maximum charging voltage, the battery is overcharged for 24 hours.
    T.8 forced discharge test
    The battery is connected with a 12V dc power supply and forced discharge is carried out with the maximum discharge current.
    Determine the test eligibility criteria
    (a) no disintegration or fire occurred during the tests between t.1 and t.6.
    (b) in test t. 1, t. 2 and t. 5, the effluent was not toxic, flammable or corrosive.
    > visual observation showed no exhaust or leakage.
    2> did not occur, resulting in weight loss exceeding the exhaust or leakage shown in table 38.3.4.7.1.
    (c) in test T.3 and T.6, the effluent was not toxic or corrosive.
    > visual observation showed no exhaust or leakage.
    2> did not occur, resulting in weight loss exceeding the exhaust or leakage shown in table 38.3.4.7.1.
    Packing requirements and condition restrictions
    Packaging requirements
    1. Unless installed in the equipment (such as mobile phone, camera, walkie-talkie, laptop, etc.),
    The battery and the original battery must be packed separately to prevent short circuit and packed in a strong outer package.
    2. Unless installed in the equipment, if each package contains more than 24 primary batteries or 12 batteries,
    The following requirements must also be met:
    1) each package must be marked with a mark indicating the special measures to be taken when the lithium battery and the package are damaged
    Shi.
    2) random documents must be provided for each batch of goods to explain that lithium battery and packaging parts should be damaged in the package
    Special measures.
    3) each package must be able to withstand the drop test of 1.2m in any direction without damaging the package
    The battery, or metaclasses, do not change the position of the battery in it to the battery and battery (or the original battery and the original electricity)
    Contact with each other, no battery leaks from the package.
    4) unless the lithium battery is installed in the equipment, the gross weight of each package shall not exceed 30kg.
    conditions
    The delivered lithium-ion batteries and lithium battery packs may be non-restricted (non-hazardous) if they meet all the following conditions
    Transportation. If any of the following conditions cannot be met, the operation shall be carried out in accordance with the requirements of UN3090 or UN3091


    what is the difference between UN38.3 and MSDS


    UN38.3 is the test standard. Full name is specifically formulated for dangerous goods transportation at the United Nations "the dangerous goods transportation test and standard manual" in part 3 of 38. The paragraph 3, which requires lithium battery before shipping, must pass height simulation, high and low temperature cycle, vibration test, impact test and 55 ℃ short circuit, impact test, overcharge test, mandatory discharge test, to ensure the safety of the lithium battery transport. If the lithium battery is not installed with the device and each package contains more than 24 battery cores or 12 batteries, it must pass the 1.2m free fall test.
    MSDS (Material Safety Data Sheet) refers to the chemical Safety technical specification, which can also be translated into the chemical Safety specification or the chemical Safety Data specification. Is chemical producers and importers is used to illustrate the physical and chemical properties of chemicals (such as PH value, flash point, flammable degrees, reaction activity, etc.) as well as to the user's health (such as cancer, birth defects, etc.) may produce the hazards of a text


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