In mixtures[edit]PETN is used in a number of compositions. It is a maj translation - In mixtures[edit]PETN is used in a number of compositions. It is a maj Indonesian how to say

In mixtures[edit]PETN is used in a

In mixtures[edit]
PETN is used in a number of compositions. It is a major ingredient of the Semtex plastic explosive. It is also used as a component of pentolite, a 50/50 blend with TNT. The XTX8003 extrudable explosive, used in the W68 and W76 nuclear warheads, is a mixture of 80% PETN and 20% of Sylgard 182, a silicone rubber.[19] It is often phlegmatized by addition of 5–40% of wax, or by polymers (producing polymer-bonded explosives); in this form it is used in some cannon shells up to 30 mm caliber, though unsuitable for higher calibers. It is also used as a component of some gun propellants and solid rocket propellants. Nonphlegmatized PETN is stored and handled with approximately 10% water content. PETN alone cannot be cast as it explosively decomposes slightly above its melting point, but it can be mixed with other explosives to form castable mixtures.
PETN can be initiated by a laser.[20] A pulse with duration of 25 nanoseconds and 0.5–4.2 joules of energy from a Q-switched ruby laser can initiate detonation of a PETN surface coated with a 100 nm thick aluminium layer in less than half of a microsecond.[citation needed]
PETN has been replaced in many applications by RDX, which is thermally more stable and has a longer shelf life.[21] PETN can be used in some ram accelerator types.[22] Replacement of the central carbon atom with silicon produces Si-PETN, which is extremely sensitive.[23][24]
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In mixtures[edit]PETN is used in a number of compositions. It is a major ingredient of the Semtex plastic explosive. It is also used as a component of pentolite, a 50/50 blend with TNT. The XTX8003 extrudable explosive, used in the W68 and W76 nuclear warheads, is a mixture of 80% PETN and 20% of Sylgard 182, a silicone rubber.[19] It is often phlegmatized by addition of 5–40% of wax, or by polymers (producing polymer-bonded explosives); in this form it is used in some cannon shells up to 30 mm caliber, though unsuitable for higher calibers. It is also used as a component of some gun propellants and solid rocket propellants. Nonphlegmatized PETN is stored and handled with approximately 10% water content. PETN alone cannot be cast as it explosively decomposes slightly above its melting point, but it can be mixed with other explosives to form castable mixtures.PETN can be initiated by a laser.[20] A pulse with duration of 25 nanoseconds and 0.5–4.2 joules of energy from a Q-switched ruby laser can initiate detonation of a PETN surface coated with a 100 nm thick aluminium layer in less than half of a microsecond.[citation needed]PETN has been replaced in many applications by RDX, which is thermally more stable and has a longer shelf life.[21] PETN can be used in some ram accelerator types.[22] Replacement of the central carbon atom with silicon produces Si-PETN, which is extremely sensitive.[23][24]
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Dalam campuran [sunting]
PETN digunakan di sejumlah komposisi. Ini adalah bahan utama dari ledakan plastik Semtex. Hal ini juga digunakan sebagai komponen pentolite, 50/50 campuran dengan TNT. The XTX8003 extrudable peledak, yang digunakan dalam hulu ledak nuklir W68 dan W76, adalah campuran dari 80% PETN dan 20% Sylgard 182, karet silikon. [19] Hal ini sering phlegmatized dengan penambahan 5-40% dari lilin, atau oleh polimer (polimer memproduksi-berikat bahan peledak); dalam bentuk ini digunakan dalam beberapa kerang meriam hingga 30 mm kaliber, meskipun tidak cocok untuk kaliber tinggi. Hal ini juga digunakan sebagai komponen dari beberapa propelan senjata dan propelan roket padat. PETN Nonphlegmatized disimpan dan ditangani dengan kadar air sekitar 10%. PETN saja tidak bisa dilemparkan karena eksplosif terurai sedikit di atas titik leleh, tetapi dapat dicampur dengan bahan peledak lain untuk membentuk campuran castable.
PETN dapat dimulai oleh laser. [20] Sebuah pulsa dengan durasi 25 nanodetik dan 0,5-4,2 joule energi dari Q-switched laser ruby dapat memulai ledakan permukaan PETN dilapisi dengan 100 nm lapisan aluminium tebal dalam waktu kurang dari setengah dari mikrodetik. [rujukan?]
PETN telah digantikan dalam banyak aplikasi dengan RDX, yang merupakan termal lebih stabil dan memiliki kehidupan rak lagi. [21] PETN dapat digunakan pada beberapa jenis ram akselerator. [22] Penggantian atom karbon pusat dengan silikon menghasilkan Si-PETN, yang sangat sensitif. [23] [24]
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