Tungsten Alloy Swaging Rod for FGM-172 SRAW

Tungsten alloy swaging rod consists of W-Ni-Fe, W-Ni-Cu or W-Ni-Cu-Fe. Tungsten alloy swaging rod is made of tungsten alloy rod. After being swaged, the ultimate stensile strength can reach 1200 MPa or even 1400MPa. Tungsten alloy swaging rod is widely used in military industries. The warhead of FGM-172 SRAW adopted tungsten alloy swaging rod.

The FGM-172 SRAW (Short-Range Assault Weapon), also known as the Predator SRAW, is a lightweight, close range missile system produced by Lockheed Martin, developed by Lockheed Martin and Israel Military Industries. It is designed to complement the Javelin anti-tank missile. The Predator has a longer range and is more powerful than the AT4 that it is designed to replace, but has a shorter range than the Javelin.

By using tungsten alloy swaging rod, FGM-172 SRAW can penetrate armor easily to destroy armor vehicles or tanks.



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Military Tungsten Alloy Swaging Rod for AGM-169

Military tungsten alloy swaging rod is made of tungsten alloy alloy. Afrter being swaged, the ultimate tensile strength of tungsten alloy rod is increased. The tensile strength of military tungsten alloy swaging rod
can reach 1200MPa, or even 1400MPa. Military tungsten alloy swaging rod is widely used for AGM-169.

The AGM-169 Joint Common Missile (JCM) was a tactical air-to-surface missile developed by the Lockheed Martin corporation from the United States.

The missile was designed to replace the AGM-114 Hellfire and AGM-65 Maverick. Its seeker head used a combination of semi-active laser, millimeter wave, and IR guidance similar to that found on the FGM-148 Javelin anti-tank missile. This allows the missile to have a greater fire and forget capability and to operate off all current air platforms. The missile has longer range, a more potent warhead, and a "safing" system, allowing naval aircraft to return to ship without jettisoning the munitions.

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Military Tungsten Alloy Swaging Rod for AGM-124 Wasp

Military tungsten alloy swaging rod is made of tungsten alloy alloy. Afrter being swaged, the ultimate tensile strength of tungsten alloy rod is increased. The tensile strength of military tungsten alloy swaging rod
can reach 1200MPa, or even 1400MPa. Military tungsten alloy swaging rod is widely used for AGM-124 Wasp.

The AGM-124 Wasp is a missile developed by the United States of America. The Wasp grew out of the 1975 WAAM (Wide-Area Anti-Armour Munitions) program initiated by the US Air Force in order to develop a series of new air-to-ground anti-armour weapons for close-support aircraft. The three-pronged program led to the CBU-92/B ERAM (Extended Range Anti-Armour Munition), the CBU-90/B ACM (Anti-Armour Cluster Munition), and the Wasp anti-armour missile. The Wasp is regarded as the most advanced of these weapons.

With high tensile strength and high hardness of military tungsten alloy swaging rod, AGM-124 Wasp can penetrate armor by using kinetic energy and destroy armor vehicles.



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Military Tungsten Alloy Swaging Rod for MGM-166 LOSAT

Military tungsten alloy swaging rod is made of tungsten alloy alloy. Afrter being swaged, the ultimate tensile strength of tungsten alloy rod is increased. The tensile strength of military tungsten alloy swaging rod
can reach 1200MPa, or even 1400MPa. Military tungsten alloy swaging rod is widely used for MGM-166 LOSAT.

The MGM-166 LOSAT (Line-of-Sight Anti-Tank) was a U.S. surface-to-surface missile system designed by Lockheed Martin (originally Vought) to defeat tanks and other individual targets. Instead of using a High Explosive Anti-Tank warhead like other anti-tank missiles, the LOSAT employed a tungsten alloy kinetic energy penetrator to punch through armor. The LOSAT is fairly light; it was designed to be mounted onto a Humvee while allowing the vehicle to remain air-portable. LOSAT eventually emerged on an extended-length heavy-duty Humvee with a hard-top containing four KEMs used by special operations.

With high tensile strength and high hardness of military tungsten alloy swaging rod, MGM-166 LOSAT can penetrate armor by using kinetic energy and destroy armor vehicles.



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Military Tungsten Alloy Swaging Rod for Kinetic Energy Penetrator

Military tungsten alloy swaging rod is made of tungsten alloy alloy. Afrter being swaged, the ultimate tensile strength of tungsten alloy rod is increased. The tensile strength of military tungsten alloy swaging rod
can reach 1200MPa, or even 1400MPa. Military tungsten alloy swaging rod is widely used for kinetic energy penetrator.

A kinetic energy penetrator (also known as a KE weapon) is a type of ammunition which, like a bullet, does not contain explosives and uses kinetic energy to penetrate the target. The term can apply to any type of armour-piercing shot but typically refers to a modern type of armour piercing weapon, the armour-piercing fin-stabilized discarding-sabot (APFSDS), a type of long-rod penetrator (LRP), and not to small arms bullets.

The principle of the kinetic energy penetrator is that it uses its kinetic energy, which is a function of mass and velocity, to force its way through armour. If the armor is defeated, the heat and spalling (particle spray) generated by the penetrator going through the armor, and the pressure wave that would develop, would destroy the target.

With high tensile strength and high hardness of military tungsten alloy swaging rod, kinetic energy penetrator can penetrate armor by using kinetic energy and destroy armor vehicles.



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Military Tungsten Alloy Swaging Rod for SM-3 Missile

Military tungsten alloy swaging rod is made of tungsten alloy alloy. Afrter being swaged, the ultimate tensile strength of tungsten alloy rod is increased. The tensile strength of military tungsten alloy swaging rod
can reach 1200MPa, or even 1400MPa. Military tungsten alloy swaging rod is widely used for SM-3 missile.

SM-3 missile  is a ship-based missile system used by the US Navy to intercept short- to intermediate-range ballistic missiles as a part of Aegis Ballistic Missile Defense System. Although primarily designed as an anti-ballistic missile missile, the SM-3 has also been employed in an anti-satellite capacity against a satellite at the lower end of low Earth orbit. The SM-3 is primarily used and tested by the United States Navy and also operated by the Japan Maritime Self-Defense Force.

On February 14, 2008, U.S. officials announced plans to use a modified SM-3 missile launched from a group of three ships in the North Pacific to destroy the failed American satellite USA 193 at an altitude of 130 nautical miles (240 kilometers) shortly before atmospheric reentry, stating that the intention was to "reduce the danger to human beings" due to the release of toxic hydrazine fuel carried on board. A spokesperson stated that software associated with the SM-3 had been modified to enhance the chances of the missile's sensors recognizing that the satellite was its target, since the missile was not designed for ASAT operations.

With high tensile strength and high hardness of military tungsten alloy swaging rod, NOTS-EV-1 Pilot can destroy satellite easily by using kinetic energy.



Tungsten Heavy Alloy Manufacturer & Supplier: Chinatungsten Online - http://www.tungsten-alloy.com
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Military Tungsten Alloy Swaging Rod for NOTS-EV-2 Caleb

Military tungsten alloy swaging rod is made of tungsten alloy alloy. Afrter being swaged, the ultimate tensile strength of tungsten alloy rod is increased. The tensile strength of military tungsten alloy swaging rod
can reach 1200MPa, or even 1400MPa. Military tungsten alloy swaging rod is widely used for NOTS-EV-2 Caleb.

The NOTS-EV-2 Caleb, also known as NOTS-500, Hi-Hoe and SIP was an expendable launch system, which was later used as a sounding rocket and prototype anti-satellite weapon. It was developed by the United States Navy Naval Ordnance Test Station (NOTS) as a follow-up to the NOTS-EV-1 Pilot, which had been abandoned following ten consecutive launch failures. Two were launched in July and October 1960, before the cancellation of the project. Following cancellation, two leftover Calebs were used in the Satellite Interceptor Program, or SIP, whilst three more were used as sounding rocktets, under the designation Hi-Hoe. These derivatives flew until July 1962, when the Hi-Hoe made its final flight.

With high tensile strength and high hardness of military tungsten alloy swaging rod, NOTS-EV-1 Pilot can destroy satellite easily by using kinetic energy.



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Military Tungsten Alloy Swaging Rod for NOTS-EV-1 Pilot

Military tungsten alloy swaging rod is made of tungsten alloy alloy. Afrter being swaged, the ultimate tensile strength of tungsten alloy rod is increased. The tensile strength of military tungsten alloy swaging rod
can reach 1200MPa, or even 1400MPa. Military tungsten alloy swaging rod is widely used for NOTS-EV-1 Pilot.

The NOTS-EV-1 Pilot, also known as NOTSNIK was an expendable launch system and anti-satellite weapon developed by the United States Navy United States Naval Ordnance Test Station (NOTS). Ten were launched during July and August 1958, all of which failed. It was the first air-launched rocket to be used for an orbital launch attempt, however none were recorded as having reached orbit. Following the first and third orbital launch attempts, a tracking station in New Zealand reported receiving weak signals from the spacecraft, however this was never confirmed, and the launches were not catalogued as having reached orbit. The Pilot rocket was part of Project Pilot.

With high tensile strength and high hardness of military tungsten alloy swaging rod, NOTS-EV-1 Pilot can destroy satellite easily by using kinetic energy.



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Military Tungsten Alloy Swaging Rod for High Virgo

Military tungsten alloy swaging rod is made of tungsten alloy alloy. Afrter being swaged, the ultimate tensile strength of tungsten alloy rod is increased. The tensile strength of military tungsten alloy swaging rod
can reach 1200MPa, or even 1400MPa. Military tungsten alloy swaging rod is widely used for High Virgo.

High Virgo, also known as Weapons System 199C (WS-199C), was a prototype air-launched ballistic missile (ALBM) jointly developed by Lockheed and the Convair division of General Dynamics during the late 1950s. The missile proved moderately successful and aided in the development of the later GAM-87 Skybolt ALBM; in addition, it was used in early test of anti-satellite weapons.

With high tensile strength and high hardness of military tungsten alloy swaging rod, High Virgo can destroy satellite easily by using kinetic energy.



Tungsten Heavy Alloy Manufacturer & Supplier: Chinatungsten Online - http://www.tungsten-alloy.com
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Military Tungsten Alloy Swaging Rod for Bold Orion Missile

Military tungsten alloy swaging rod is made of tungsten alloy alloy. Afrter being swaged, the ultimate tensile strength of tungsten alloy rod is increased. The tensile strength of military tungsten alloy swaging rod
can reach 1200MPa, or even 1400MPa. Military tungsten alloy swaging rod is widely used for Bold Orion missile.

The Bold Orion missile, also known as Weapons System 199B (WS-199B), was a prototype air-launched ballistic missile (ALBM) developed by Martin Aircraft during the 1950s. Developed in both one- and two-stage designs, the missile was moderately successful in testing, and helped pave the way for development of the GAM-87 Skybolt ALBM. In addition, the Bold Orion was used in early anti-satellite weapons testing, performing the first interception of a satellite by a missile.

With high tensile strength and high hardness of military tungsten alloy swaging rod, Bold Orion missile can destroy satellite by using kinetic energy.



Tungsten Heavy Alloy Manufacturer & Supplier: Chinatungsten Online - http://www.tungsten-alloy.com
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