3D CAD Design – Flush-Mounted Touch Display in Stainless Steel Enclosure (STEP & DXF)
Budget: €50 – €100 EUR
Objective:
Create a complete 3D assembly of a flush-mounted touch display integrated into a stainless steel control cabinet, including all relevant mounting components. The project must be developed in SolidWorks (or compatible CAD software) and delivered as a STEP file (assembly) and DXF files (for individual parts).
Provided Reference Files:
“Touch Panel Mounting Schematic” (PDF) – primary technical reference for display integration
Front glass (DXF) – includes exact dimensions and printed area layout
Touch display (STEP) – 3D model of the touchscreen
Mounting plate sketch (PDF) – rear plate layout for display mounting
Panel sketch (PDF + reference images) – for front view and optional cabinet design
Scope of Work (Mandatory):
3D Assembly:
Combine touch display, front glass, mounting plate, and front stainless steel panel
Ensure flush mounting of the glass with the cabinet surface
Account for glass dimensional tolerance of ±0.2 mm
The cut-out in the stainless steel panel should be 0.3 mm larger than the nominal glass size to ensure proper fit
Glass Print Area Validation:
The printed area on the back of the cover glass must fully cover all visible parts of the touchscreen
The non-printed area should be 2 mm smaller than the touchscreen to ensure clean visual coverage
File Deliverables:
Full assembly as a STEP file
DXF files of all key individual components (e.g., front plate, glass, mounting plate, cut-out dimensions)
Optional Add-On: Complete Cabinet Design
Design a stainless steel enclosure based on the panel sketch and provided reference images
Ensure the final design is waterproof, including correct treatment of:
Sealing profiles
Cable entry
Mounting flange
Internal mounting plate
Deliver the final cabinet as:
STEP file
Photorealistic rendering of the complete unit
Requirements:
Proficiency in SolidWorks or equivalent 3D CAD software
Experience in sheet metal design, enclosure manufacturing, or mechanical integration
Understanding of manufacturing tolerances, especially in stainless steel fabrication
Create a complete 3D assembly of a flush-mounted touch display integrated into a stainless steel control cabinet, including all relevant mounting components. The project must be developed in SolidWorks (or compatible CAD software) and delivered as a STEP file (assembly) and DXF files (for individual parts).
Provided Reference Files:
“Touch Panel Mounting Schematic” (PDF) – primary technical reference for display integration
Front glass (DXF) – includes exact dimensions and printed area layout
Touch display (STEP) – 3D model of the touchscreen
Mounting plate sketch (PDF) – rear plate layout for display mounting
Panel sketch (PDF + reference images) – for front view and optional cabinet design
Scope of Work (Mandatory):
3D Assembly:
Combine touch display, front glass, mounting plate, and front stainless steel panel
Ensure flush mounting of the glass with the cabinet surface
Account for glass dimensional tolerance of ±0.2 mm
The cut-out in the stainless steel panel should be 0.3 mm larger than the nominal glass size to ensure proper fit
Glass Print Area Validation:
The printed area on the back of the cover glass must fully cover all visible parts of the touchscreen
The non-printed area should be 2 mm smaller than the touchscreen to ensure clean visual coverage
File Deliverables:
Full assembly as a STEP file
DXF files of all key individual components (e.g., front plate, glass, mounting plate, cut-out dimensions)
Optional Add-On: Complete Cabinet Design
Design a stainless steel enclosure based on the panel sketch and provided reference images
Ensure the final design is waterproof, including correct treatment of:
Sealing profiles
Cable entry
Mounting flange
Internal mounting plate
Deliver the final cabinet as:
STEP file
Photorealistic rendering of the complete unit
Requirements:
Proficiency in SolidWorks or equivalent 3D CAD software
Experience in sheet metal design, enclosure manufacturing, or mechanical integration
Understanding of manufacturing tolerances, especially in stainless steel fabrication