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Cigarette & Lighter Case - Bic and 8 Smokes locks

Remixed by
IP Report

Print Profile(4)

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

0.16mm layer, 2 walls, 15% infill
0.16mm layer, 2 walls, 15% infill
Designer
2.4 h
1 plate
4.9(114)

0.16mm layer, 2 walls, 15% infill
0.16mm layer, 2 walls, 15% infill
Designer
2.5 h
1 plate
5.0(64)

2 Color Fast Print No Logo
2 Color Fast Print No Logo
2.1 h
1 plate
5.0(10)

8% bigger, 2 colour 0.16mm layer, 2 walls, 10% infill
8% bigger, 2 colour 0.16mm layer, 2 walls, 10% infill
5.3 h
2 plates
4.6(9)

Open in Bambu Studio
Boost
1440
3640
285
70
3.6 k
2.5 k
Released 

Description

🚭 Cigarette Lighter Case with "No Smoking" Logo and Enhanced Latch

Overview:

This 3D printable case is designed to securely hold a standard BIC lighter along with up to 8 cigarettes. It features a prominently displayed "No Smoking" logo on the side, serving both as a design element and a clear statement. The case includes an improved latch mechanism that ensures a satisfying click upon closure, keeping the contents secure.

Features:

  • Integrated "No Smoking" Logo: The side of the case showcases a raised "No Smoking" symbol, making a bold statement and enhancing grip.
  • Enhanced Latch Mechanism: The latch has been redesigned for a more secure closure. Inspired by spring-loaded mechanisms, it provides tactile feedback and ensures the case stays closed during transport. Includes easy open tab.
  • Ergonomic Design: The case is contoured for comfortable handling, with smooth edges and a compact form factor suitable for pockets or bags.
  • Durable Construction: Designed for FDM 3D printing, the case is robust and can withstand daily use.

Printing Recommendations:

  • Material: PLA or PETG for durability and ease of printing.
  • Layer Height: 0.2 mm for optimal balance between detail and print time.
  • Supports: Minimal supports needed; primarily for the latch mechanism.
  • Infill: 20% for a sturdy yet lightweight build.

Assembly:

Post-printing, minimal assembly is required. The latch mechanism is designed to be printed in place, eliminating the need for additional hardware or complex assembly steps.

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