Shelter that can be developed from a cuboid to a hexagonal prism
A technology of hexagonal prisms and cuboids, applied in the field of square cabins that can be developed from cuboids to hexagonal prisms, can solve the problems of easy jamming of the left and right cabins, uneven load of the transmission system, and insufficient overall rigidity, so as to achieve no active dead angle and space utilization The effect of high height and large activity space
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
no. 1 example
[0074] Figure 1 to Figure 10 shows a square cabin that can be developed from a cuboid into a hexagonal prism according to the first embodiment of the present invention. figure 1 The coupling mode of the first folding mechanism 1 and the frame 2 in is as follows: Figure 4 The shown inner concave plate 11 is connected with the first rotary connecting piece 4 and image 3 The shown frame 2 is connected, the axis of the first rotating connector 4 is perpendicular to the bottom surface of the frame 3, the axis of the first rotating connector 4 is located at the vertical edge of the inner concave plate 11 and the vertical edge of the frame 2 near the door panel, and the inner The lower edge of the concave plate 11 is located above the inner bottom surface of the frame 2 , and the upper edge of the inner concave plate 11 is flush with the outer upper plane of the frame 2 to limit the rotation of the inner concave plate 11 . The slide rail 162 in the sliding hinge body 16 is fixed...
no. 2 example
[0080] The square cabin is developed into a hexagonal prism shape such as Figure 15 As shown, the lower plane of the frame 2' is a plane with a symmetrical triangular notch on both sides. The lower part of the vertical surface corresponding to the second side of the frame 2' away from the door is concave, and the outer part of the concave trapezoidal surface hollowed out, such as Figure 11 Shown; The outside of the concave trapezoidal surface of the concave plate 11 ' is hollowed out, as Figure 12 As shown; the second triangular plate 15 ' is two right-angled triangular plates with one right-angled side coincident and the other right-angled side collinearly spliced together, as Figure 13 shown. The shape of the square cabin after being folded into a cuboid is as follows: Figure 14 shown. The form conversion operation of the shelter is the same as the form conversion operation of the shelter in Embodiment 1.
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


