GD OTS Canada Small Caliber IR Cartridge Development

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Photo : Sgt Norm McLean, Combat Camera - DND ref.: IS2013-0004-6464 GD OTS Canada Small Caliber IR Cartridge Development Presented by: Pierre Lemay Prepared by: Isabelle Laroche; Isabelle Theobald; Pierre Lemay NDIA May 2014 1

Outline Project Objectives Development Methodology Design of Experiment (DOE) Spectrum Analysis Live Fire Test Results Flame Temperature High Rate Production Process Conclusion 2

Develop a family of small caliber infrared (IR) cartridges in 5.56mm, 7.62mm and 12.7mm calibers. Develop tracer and igniter compositions visible predominantly through Gen II NVG (Night Vision Goggles). Project Objectives Source: Gamma Scientific www.gamma-sci.com 3

Define, for each caliber: Design parameters Process parameters Use same projectile jacket and cores of visual tracers Use same machinery and tooling as visual tracers Meet NATO standard trace distances and testing protocols, but in IR. Use GD OTS Canada patented IR Tracer Mix. Project Objectives 4

IR Tracer Patent 5

Development Methodology Using «Lean Design for Six Sigma» methodology: 1. Preselection of formulation 2. Characterisation of ingredients/formulation: Particle size distribution Heat of combustion Sensitivity to friction and static 3. Combined Design of Experiment (DOE): Ingredients Process parameters 4. Static firing & Spectrum Analysis 5. Long Range, Live Fire Testing 6. High Rate Production Testing 6

Design Of Experiment (DOE) 20 formulations 16 projectile assembly process parameters 320 Static test series: Spectrum analysis Light Intensity Wavelength distribution Burning duration Downselect to: 4 original formulations 2 optimized formulations, based on DOE Model Long range live fire night testing Choice of optimal formulation 7

Spectrum Analysis Lab Setup Tracer mix placed on high speed router shaft Initiation of trace through friction between rotating igniter pellet and steel nail upon contact Spectrum recorded through Spectrophotometer Friction initiation device, before contact Spectrophotometer Friction initiation after contact with tracer 8

Spectrum Analysis Example Sodium 9

Live Fire Test Results Tests done with cartridges conditionned at -52 C, 21 C and +54 C Minimum IR Trace distance: 5.56mm: 100% met 600 m objective (average = 650 m) 7.62mm: 100% met 775 m objective (average 1,000 m) IR Trace very bright to side observers through Gen II NVG 95% + visibility all along the path IR Trace invisible to naked eye side observer IR Trace faintly visible to naked eye from firing position because: Low light level eye response shifted to shorter wavelenghts at night (scotopic vision) due to rod receptors IR trace spectrum indicates some low light emissions in the 500 nm area Scotopic (low light level) Photopic (daylight level) 10

Emitted light intensity Unaided Night Vision 250000 200000 150000 7.62 mm 5.56 mm 100000 50000 0 400 500 Wavelength (nm) 600 700 11

Live Fire Testing Results Conventional 12.7 mm Igniter 1/30 s View through Image Intensifier Dim Trace 12.7mm Igniter 1/30 s view through Image Intensifier 12

Flame temperature ( C) Flame Temperature 300 Visual tracer measured flame temperatures : 1350 C Maximum measured flame temperature of IR formulation: 200 C to 250 C 250 200 150 100 50 0 0 5 10 15 20 Time (s) 13

High Rate Production Process Qualification High Rate projectile tracer loading was developped for the Manurhin MCH 240 Tracer Loading equipment. Same tooling as for conventional tracer was used. Dry ignitor and tracer mix were adjusted to ensure homogeneous flow in hoppers and feeders. Manurhin MCH 240 tracer loading machine 14

Conclusion Satisfactory 5.56mm and 7.62mm IR Trace formulation, clearly visible with Gen II NVG was developped New formulation may be used on conventional tracer loading machinery IR trace invisible to enemy combatants on receiving end with or without Gen II NVG Final qualification process to be undertaken shortly Samples available 15

14DT0425_XC77A1 Contact Information Pierre Lemay, Product Manager General Dynamics Ordnance and Tactical Systems Canada Phone: 1-450-582-6361 Email: pierre.lemay@can.gd-ots.com 16