Tangga Monyet Dwg High Quality [top] Access
The Unseen Hero of Verticality: Mastering High-Quality Tangga Monyet in DWG
In the world of architectural drafting, we often glorify the grand staircase—the sweeping cantilevered marvels of hotels and the helical showpieces of penthouses. But for the back-of-house heroes, the industrial engineers, and the tight-spot saviors, there is one undisputed king of efficiency: Tangga Monyet, or the "Monkey Ladder."
Part 4: Step-by-Step Workflow for Creating the DWG
Step 1: The Elevation View
- Draw the vertical centerline.
- Offset left and right for rail width (e.g., 500mm total width).
- Use the
ARRAYcommand (Path array) to generate rungs vertically every 300mm. - Pro tip: The bottom rung should be exactly 2.2m below the top landing (or as per code). Ensure the array starts/ends correctly.
- Realistic connection points (bolts/welds) at the rung intersections.
- Proper geometry for the rungs (round or square) rather than just simple lines.
- Swing linkage details (if included), showing how the ladder attaches to the structure above.
2. Precision & Scale
- Scale: 1:10 or 1:20 for detailed sections. 1:50 for elevation layout.
- Units: Metric (mm) with 0 decimal places for fabrication.
- Tolerances: Indicate fabrication tolerance (e.g., ±2mm for rung level).
- [ ] Rung spacing = 300mm
- [ ] Top rail extension = 1,100mm
- [ ] Cage starts = 2,200mm AFF (Above Finished Floor)
- [ ] Material callout = Galvanized Steel
- [ ] Weld symbols present
- [ ] Sheet size = A1 or A0 with title block
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Contoh parameter desain (asumsi umum)
- Lebar tangga: 400–600 mm
- Jarak antar anak tangga (pitch): 250–300 mm
- Ketebalan plat step: 3–5 mm (tergantung material)
- Beban kerja seragam: sesuai standard lokal (contoh 1.5 kN/m2 untuk akses ringan)
- Finishing: galvanis atau powder coat untuk ketahanan korosi
Often specified as hot-dip galvanized mild steel or aluminum alloy (e.g., 6063-T5) for corrosion resistance. Safety Cages: Draw the vertical centerline