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Ballistic RPG-7 Rocket Catcher Blocker Wire-Fence

The Madoors USA Ballistic RPG-7 Rocket Catcher Blocker Wire Fence is a domestically manufactured, export-grade special steel alloy flexible wire fence system providing the highest level of protection against rocket attacks on military units, police stations, base areas, headquarters buildings, road control points, and all public and private security institutions — stopping rockets before they reach and explode against building walls by catching and trapping the rocket in the wire gaps, causing the rocket to fall out without explosion due to the wire's flexible structure. When the rocket cannot be prevented from exploding, the wire fence ensures the explosion occurs outside the building rather than against the wall, minimizing structural and personnel damage. Resistant to high temperatures, durable enough to withstand multiple attacks without damage, and providing outward fire capability through the wire gaps for personnel inside the protected position, the Madoors USA Ballistic Rocket Catcher Wire Fence provides all-rocket protection — anti-tank and anti-personnel — for any building or position facing terrorist rocket attack.

TECHNICAL SPECIFICATIONS
The Madoors USA Ballistic Rocket Catcher Wire Fence is manufactured from special steel alloy — the alloy composition provides the specific combination of tensile strength, flexibility, and high-temperature resistance required for the rocket catching function. Standard structural steel lacks the flexibility required for the wire fence to deform under rocket contact and trap the rocket in the wire gaps without fracturing — the special steel alloy provides the ductility that allows the wire to deform and grip the rocket body while maintaining structural integrity throughout the deformation. High-temperature resistance is the specific property required for survival in the explosion scenario where the wire is subjected to the thermal blast of a nearby RPG detonation.

The working principle of rocket catching operates differently from the razor-cutting mechanism of the companion Madoors USA RPG Cutting Mesh system. The rocket catcher wire fence traps the rocket in the wire gap structure — the flexible wire loops and gaps catch the rocket body as it passes through the fence, the flexible structure grips and decelerates the rocket, and the rocket falls out of the fence without the impact trigger activation required for RPG fuze detonation. This catching-and-deceleration principle prevents the impact fuze from receiving the deceleration impulse that triggers detonation.

In cases where the wire cannot fully prevent explosion — where the rocket detonates within or near the wire fence — the wire fence ensures that the explosion occurs at the fence stand-off distance rather than against the building wall. The stand-off explosion greatly reduces the shaped charge jet penetration into the wall — the shaped charge jet from an RPG warhead is optimized for maximum penetration at a specific stand-off distance, and detonation at the fence position rather than wall contact directly reduces the penetration effectiveness.

The durable structure withstands the explosion without destruction — the special steel alloy and wire geometry maintain the structural integrity of the fence through the blast and thermal loading of the explosion event, allowing the fence to continue providing protection against subsequent attacks. This multi-attack durability directly provides continuous protection at positions subject to repeated rocket fire.

The wire gaps allow personnel inside the protected position to fire outward — the gap geometry provides sufficient aperture for weapon aiming and firing while maintaining the rocket-catching density required for effective RPG interception. This fire capability directly enables the protected position to remain operationally effective while under rocket attack.

KEY FEATURES
Flexible Wire — Rocket Trapping Without Fracture
The flexible special steel alloy wire construction is the functional engineering requirement for the rocket-catching principle — a rigid mesh would either cut the rocket or be penetrated by it without catching. The flexible wire deforms under rocket contact, conforming to the rocket body surface and gripping the rocket through the friction and mechanical interference of the deformed wire. This flexible catching mechanism is the passive arrest function that decelerates and redirects the rocket without triggering the impact fuze.

Explosion Outside Building — Structural Damage Minimization
The rocket catcher wire fence's ability to ensure that any explosion occurs outside the building at stand-off distance — rather than against the building wall — is the secondary protection function that provides significant structural and personnel protection even in the scenario where the wire cannot fully prevent detonation. An RPG detonation at 1 to 2 meters stand-off from a wall produces substantially less structural damage than contact detonation — the shaped charge jet loses penetration effectiveness with increasing stand-off beyond the optimum stand-off distance. This stand-off detonation function directly reduces the structural damage and blast injury to building occupants.

Multi-Attack Durability — Continued Protection After Explosions
The durable structure that is not affected by explosion and can withstand multiple attacks directly provides the continuous protection required at positions subject to repeated rocket fire — a fence that is destroyed by the first explosion leaves the position completely unprotected against all subsequent attacks. The special steel alloy high-temperature resistance and structural durability maintain the fence's catching and stand-off functions through multiple explosion events, providing sustained protection throughout sustained attack scenarios.

All-Rocket Protection — Anti-Tank & Anti-Personnel
The confirmed protection against all rocket types — anti-tank and anti-personnel rockets — provides comprehensive coverage against the complete range of rocket weapons that may be used in terrorist and military attacks on buildings. This all-rocket protection capability eliminates the threat type limitation of narrower-specification rocket protection systems that only address specific rocket categories.

Outward Fire Capability — Operational Position Retention
The ability of personnel inside the protected position to fire outward through the wire gaps directly maintains the tactical effectiveness of the protected position under attack — the wire fence provides ballistic protection from incoming rockets without creating a fire obstruction that would prevent the protected personnel from returning fire and defending the position. This outward fire capability is the essential operational requirement for military and police positions where the protected personnel must remain capable of active defense while under rocket attack.

Domestic Production & Export — Manufacturing Quality
The completely domestic factory production by Madoors USA's own means — exported internationally — confirms the manufacturing quality control and supply chain security of the rocket catcher wire fence. All materials, production processes, and quality testing are under Madoors USA factory control, providing the manufacturing accountability required for military and security force procurement of protective systems.

Special Steel Alloy & High-Temperature Resistance
The special steel alloy with high-temperature resistance provides the material properties required for survival in the combined mechanical and thermal loading of the RPG attack and explosion scenario — the wire must withstand the mechanical impact of rocket contact, the blast pressure of nearby detonation, and the thermal exposure of the explosion fireball without the material embrittlement or melting that would compromise the fence structure. This combined mechanical and thermal resistance is the material specification that enables the multi-attack durability.

PROTECTION SCENARIOS
Scenario 1 — Rocket Caught Without Detonation
The RPG is fired at the protected building. The rocket enters the wire fence. The flexible wire gaps catch and grip the rocket body. The rocket is decelerated and trapped — the impact fuze does not receive the deceleration impulse required for activation. The rocket falls out of the fence without explosion. The building and occupants are fully protected.

Scenario 2 — Rocket Detonates at Stand-Off
The RPG is fired. The rocket enters the wire fence. The wire cannot fully arrest the rocket — the fuze activates and the warhead detonates at the fence position. The explosion occurs at stand-off distance from the building wall. The shaped charge jet is degraded by the stand-off distance. The building wall suffers reduced penetration or no penetration. The fence remains structurally intact for continued protection.

Scenario 3 — Sustained Attack
Multiple rockets are fired at the protected position. The fence catches or stand-off detonates each rocket. The high-temperature resistant special steel alloy fence structure survives each explosion without destruction. The fence continues to provide catching and stand-off protection against all subsequent rockets.

ASSEMBLY & INSTALLATION SEQUENCE
Site Assessment & Coverage Planning
Building faces requiring protection, required fence coverage area, stand-off distance from building wall, mounting structure positions, wire gap size for protection level and outward fire requirement, and attachment hardware are confirmed.

Mounting Structure Installation
The supporting frame or post structure is installed at the confirmed stand-off distance from the building wall — providing the mechanical support for the wire fence weight and maintaining the stand-off geometry throughout the fence service life.

Wire Fence Panel Installation
The special steel alloy wire fence panels are installed on the mounting structure — covering the complete protection area with continuous wire coverage and no gaps larger than the confirmed maximum rocket passage dimension. Panel-to-panel joins are confirmed for continuous coverage.

Outward Fire Aperture Verification
The wire gap geometry at the specified weapon firing positions is confirmed to provide sufficient aperture for outward weapon use while maintaining rocket-catching coverage density at all other positions.

Structural Integrity Inspection
Complete wire fence structural connection to the mounting frame, wire tension, and special steel alloy high-temperature resistance coating condition are inspected and confirmed.

Operational Confirmation & Handover
Complete coverage of the protection area, stand-off distance, mounting integrity, and outward fire capability are confirmed. Installation documentation is compiled into the project handover package.

DEPLOYMENT SCENARIOS & USE CASES
Madoors USA Ballistic RPG-7 Rocket Catcher Blocker Wire Fences are deployed at any building or position facing terrorist or military rocket attack threat.

  • Police station building perimeter rocket protection
  • Military road control point rocket blocker wire
  • Military base area building rocket protection fences
  • Military headquarters building rocket catcher wire
  • Border security checkpoint rocket protection wire
  • Embassy and diplomatic building rocket blocker fence
  • Government ministry building rocket protection wire
  • Counter-terrorism forward position rocket catcher fence
  • Military outpost and patrol base rocket protection
  • Prison and security facility perimeter rocket fence
  • Nuclear and critical infrastructure rocket protection
  • VIP protection building rocket catcher wire installation
  • Public institution building terrorist rocket protection
  • Military vehicle park and equipment area rocket fence
  • Any building or security position requiring flexible special steel alloy rocket catching and stand-off protection wire fence against all rocket types