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Stackable Box. BOX ORGANIZER
by Adrengineer
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# ***[A03]Box_Organizer***
### **1. Summary**
________________
This is a proof of concept of stackable box with not moving parts where the lid is locked in place by friction between parts. Bolts can be insert using thread or non-threaded holes. Also, these bolts will act as shank rod, making the box stackable. The bolts will be inserted in crossed position between layers, so in each layer one diagonal is use (see figure in assembly section).

The M3 bolts can be threaded into the hole, due to it has the right dimension for it. Though, if you like it extra strong, you can insert a M3 nut, which will be locked in place due to the conical shape of the hexagonal hole.
Lid is locked into the box by the friction between the four faces. The lid is actually a bit bigger than the box, so it is a strong locking lid. (See previous right figure).
Careful consideration has been put during the design of this box. Through testing, I found the best compromi
### **1. Summary**
________________
This is a proof of concept of stackable box with not moving parts where the lid is locked in place by friction between parts. Bolts can be insert using thread or non-threaded holes. Also, these bolts will act as shank rod, making the box stackable. The bolts will be inserted in crossed position between layers, so in each layer one diagonal is use (see figure in assembly section).

The M3 bolts can be threaded into the hole, due to it has the right dimension for it. Though, if you like it extra strong, you can insert a M3 nut, which will be locked in place due to the conical shape of the hexagonal hole.
Lid is locked into the box by the friction between the four faces. The lid is actually a bit bigger than the box, so it is a strong locking lid. (See previous right figure).
Careful consideration has been put during the design of this box. Through testing, I found the best compromi
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