A multifunctional explosive experiment device
An experimental device and multi-functional technology, which is applied in the direction of measuring devices, material inspection products, instruments, etc., can solve problems such as high price, low experimental efficiency, and difficult device processing
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Embodiment 1
[0031] Such as Figure 1 to Figure 4 As shown, a multifunctional explosion experiment device of the present invention includes a cement base 1, a channel steel 2, a rectangular steel a5, a brace 6, a brace a7, a brace b8, a rear pressure plate 10, an explosion cylinder 11, a front The pressing plate 12, the specimen plate 14 and the rectangular steel b16, the channel steel 2 are fixed on the cement base 1 through the embedded studs 3, the bottom of the rectangular steel a5 and the support plate b8 are fixed on the top of the channel steel 2 at intervals, the rectangular steel The b16 is connected to the upper part of the rectangular steel a5 through the bolt b17, and the explosion cylinder 11 is fixed on the upper part of the rectangular steel b16. One end of the explosion cylinder 11 is connected to the rear pressure plate 10 through the bolt a9, and the other end of the explosion cylinder 11 is connected to the front pressure plate 12 and the test chamber through the bolt a9....
Embodiment 2
[0042] Such as Figure 5 As shown, the rear pressure plate 10 is fixedly connected with the explosion cylinder 11 and the support plate b8 through bolts a9 respectively, and the rear pressure plate 10 adopts a sealing plate. Adopting such a structural arrangement facilitates the fixed installation and separation among the rear pressure plate 10, the explosion cylinder 11 and the support plate b8, and at the same time achieves the effect of completely sealing the implosion.
[0043] Embodiment 1 adopts a partially enclosed explosive structure, while this embodiment 2 adopts a completely enclosed explosive structure. In this embodiment 2, except that the structure of the rear pressure plate 10 adopts a sealing plate, the rest of the structure and working principle are the same as those of embodiment 1, and will not be described repeatedly. .
Embodiment 3
[0045] Such as Figure 6 to Figure 8 As shown, the backing plate 4 is provided on the upper part of the rectangular steel a5, which is mainly used to fix the explosive tube and provide support in the air blast working condition, and can be disassembled at the same time, which is convenient for working condition conversion, installation and transportation.
[0046] More specifically, the drug-hanging rod 15 is fixed on the bottom of the channel steel 2 through penetration welding, and the drug-hanging rod 15 is hot-bent formed by high-strength steel. With such a structural arrangement, the strength of the charge-hanging rod 15 is strengthened, and it is used for fixing explosives in the air blast working condition, and prevents the charge-hanging rod 15 from being damaged during the explosion. The effect of the charge-hanging rod 15 is mainly used for lifting the explosive 19 by the charge-hanging rope 20 .
[0047] Embodiment 1 and Embodiment 2 both use the explosive cylinder...
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