This modular tray can be joined together to extend as needed, creating a cable storage tray of any length. For me, I simply screwed it into the back of my desk, neatly organizing the messy wires and power cords underneath the desk, completely eliminating the problem of cables sprawling all over the floor. To be honest, this little gadget really saved my marriage that was on the verge of collapse! :-)
Product features:
- We provide three main STL files:
1)The main tray body with an opening hole;
2) a short-end tray body used to support the end section of the tray;
3) For the main tray body without opening holes, users can cut and adjust it according to their actual needs, and flexibly customize the length of the tray. - Three STL files of cover plates are provided as accessories:
1)Single clip-type cover plate, specially designed for fixing cables;
2) A fully enclosed cover plate
3) A fully enclosed cover plate with openings - There are small installation holes at the bottom of the tray, paired with larger symmetrical holes, which make it easy to fix it with a power drill and a screwdriver.
- Several pillar spaces are reserved at the bottom, which can be used to insert small cable ties to further stabilize the pallet structure.
- The tray can be installed either vertically
The printing time for each set of trays is about 7 hours. The main STL file includes a printing stabilizing reinforcement rib. The original design intention was to remove it, but even if the reinforcement rib is retained, the trays can still be successfully assembled and formed.
Important note: This model will form long and elongated extrusion trails during printing, allowing each layer of extruded material to cool sufficiently before the subsequent layer is deposited. However, if you use the standard PETG printing temperature, it often results in poor adhesion between layers and even delamination. It may sound counterintuitive, but my best printing experience is to set the temperature to 265°C! It is recommended to conduct multiple test prints first and then explore the most suitable printing temperature based on the actual results. I chose a layer height of 0.2 mm and a 0.4 mm no
As for the performance of PLA materials, I'm not sure about its applicability due to its high hardness. If you encounter any problems or achieve success when using PLA, please be sure to share your experience and valuable insights in the comments section, so we can explore optimization solutions together!
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