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Delta Action - CT Enhanced Stock

Print Profile(4)

All
A1
H2S
P2S
X1E
P1S
P1P
X2D
H2D
X1 Carbon
X1
H2C
H2D Pro
A2L

0.2mm layer, 5 walls, 15% infill
0.2mm layer, 5 walls, 15% infill
Designer
9.9 h
1 plate

Compatible with AR stock core (includes AR stock core model)
Compatible with AR stock core (includes AR stock core model)
Designer
10 h
1 plate

Adapted for AR core, does not include AR core model, suitable for operators who already have an AR core for one-click print
Adapted for AR core, does not include AR core model, suitable for operators who already have an AR core for one-click print
Designer
7.5 h
1 plate

Finely tuned version. Beginners should not easily attempt this plate. It is suitable for operators who need to adjust the sliding damping by themselves. It requires printing a slice first to determine the sinkage rate, and some printing experience is needed.
Finely tuned version. Beginners should not easily attempt this plate. It is suitable for operators who need to adjust the sliding damping by themselves. It requires printing a slice first to determine the sinkage rate, and some printing experience is needed.
Designer
7.8 h
2 plates

Open in Bambu Studio
Boost
131
309
3
0
71
33
Released 

Description

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Delta Force Weapon Accessories Open Source Project 002

002 CT Enhanced Stock

Important Update 1.0!!!

Based on feedback from operators, multiple optimizations have been made. Special thanks to @猫佑丶 for providing the AR stock core data

1. All 3 profiles have been updated to fit the AR stock core

2. The sliding damping is smoother, resolving the issue of excessive wobbling due to too much gap in the previous version's stock.

3. The model's topology is generally smoother, eliminating unnecessary sharp edges caused by low polygon count.

4. The first two of the 3 profiles are divided into two types: with stock core and without stock core, for convenient one-click printing on mobile phones.

5. The last one is a finely tuned version, allowing for precise adjustment of damping for different materials, suitable for operators with some printing experience. The specific usage method is

Measure the inner diameter (mm) of the printing slice, and use the following formula to determine themagnification factor to scale all components on the second plate

Magnification Factor = (30+Sliding Tolerance) / Inner Diameter, where forSliding Tolerance, 0.15 is recommended for PETG and PLA, 0.25 for ABS and Nylon, or adjust based on your own printing experience and material properties.

 

  • Restored the articulated structure, allowing for quick disassembly and 5-position length adjustment
  • Fixed with glue and screws. Specifically, is fixed with glue, and is fixed with lock screws. 1 is , 2 is .
  • , 1 is fixed with a 2mm diameter, 20mm long steel rod (filament can also be used for fixing, but the effect is poor). The size of this hole cannot be guaranteed after printing, so it needs to be reamed or the steel rod needs to be heated before insertion. 2 is a spring 40mm long, 9mm outer diameter, wire diameter to be determined by yourself.
  • The foldable structure is not restored here (mainly due to the strength issues of 3D printing). Corresponding optimizations have been made for stress-bearing parts, and it is recommended to print these two components using appropriate CF materials to ensure strength.
  • The layout of stress-bearing components on the plate has avoided the Z-axis direction. Beginners should not easily adjust the layout direction of the components on the plate.
  • Welcome to customize other accessories in the comments section, and welcome to share your prints

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