Building base plates assembled to build block sets in two or three dimensional configurations
Abstract
The present invention relates to building base plates assembled to make two or three dimensional pyramids. Eight building base plates ( 1 A˜ 1 H) can be arranged as a rectangular plane ( 50 ) with seven cubic units in longitudinal direction, five cubic units in transversal direction; or assembled to build a five-layer ( 61˜65 ) pyramid ( 60 ) on a triangular frame each side arrayed five cubic units, a first layer arrayed fifteen cubic units. Furthermore, four building base plates ( 1 I˜ 1 L) with different shapes added to the eight building base plates ( 1 A˜ 1 H), totally fifty six cubic units of those twelve building base plates make a rectangular shape ( 70 ) with eight cubic units in longitudinal direction, seven cubic units in transversal direction, or assembled to build a six-layer ( 81˜86 ) pyramid ( 80 ) on a triangular frame, each side arrayed six cubic units, a first layer of the pyramid arrayed twenty one cubic units.
Claims
exact text as granted — not AI-modified1 . Building base plates assembled to build block sets in two or three dimensional pyramids characterized in that: a block sets ( 10 ) comprising eight building base plates ( 1 A˜ 1 H) each contains three to five cubic units connected together to form two dimensional plates compatible with a coordinated system with X axis and Y axis to define orientations, shapes of the building base plates ( 1 A˜ 1 H) as following:
a building base plate ( 1 A) has four cubic units (a 1 ˜a 4 ) shaped as the first to the third cubic units (a 1 ˜a 3 ) are connected in a row vertically, the fourth cubic unit (a 4 ) is connected horizontally to a lateral side of the third cubic unit (a 3 ); a building base plate ( 1 B) has five cubic units (b 1 ˜b 5 ) shaped as the first to the third cubic units (b 1 ˜b 3 ) are connected in a row vertically, the fourth and the fifth cubic units are also connected in a row vertically, but the fourth and the fifth cubic units (b 4 ,b 5 ) are connected horizontally to a lateral side of the first and second cubic units (b 1 ,b 2 ); a building base plate ( 1 C) has five cubic units (c 1 ˜c 5 ) shaped as the first to the fourth cubic units (c 1 ˜c 4 ) are connected in a row vertically, the fifth cubic unit (c 5 ) is connected horizontally to a lateral side of the third cubic unit (c 3 ); a building base plate ( 1 D) has three cubic units (d 1 ˜d 3 ) shaped as the first and second cubic units (d 1 ,d 2 ) are connected in a row vertically, the third cubic unit (d 3 ) is connected to a lateral side of the first cubic unit (d 1 ); a building base plate ( 1 E) has five cubic units (e 1 ˜e 5 ) shaped as the first and second cubic units (e 1 ,e 2 ) are connected in a row vertically, the third and fourth cubic units (e 3 ,e 4 ) are connected in a row vertically, and the third cubic unit (e 3 ) is connected horizontally to the left side of the second cubic unit (e 2 ), while the fifth cubic unit (e 5 ) is connected horizontally to the left side of the fourth cubic unit (e 4 ); a building base plate ( 1 F) has four cubic units (f 1 ˜f 4 ) shaped as the first and second cubic units (f 1 ,f 2 ) are connected in a row vertically, the third and fourth cubic units (f 3 ,f 4 ) are connected in a row vertically, and the third cubic unit (f 3 ) is connected horizontally to the lateral side of the second cubic unit (f 2 ); a building base plate ( 1 G) has four cubic units (g 1 ˜g 4 ) shaped as the first to the third cubic units (g 1 ˜g 3 ) are connected in a row vertically, the fourth cubic unit (g 4 ) are connected horizontally to the lateral side of the second cubic unit (g 2 ); and a building base plate ( 1 H) has five cubic units (h 1 ˜h 5 ) shaped as the first to the third cubic units (h 1 ˜h 3 ) are connected in a row vertically, the fourth cubic unit (h 4 ) are connected horizontally to the left side of the second cubic unit (h 2 ), while the fifth cubic unit (h 5 ) is connected horizontally to the right side of the second cubic unit (h 2 ).
2 . Building base plates assembled to build block sets in two or three dimensional configurations according to claim 1 wherein a bottom seat ( 30 A) received seven cubic units in a longitudinal direction, five cubic units in a transversal direction, totally thirty five cubic units of eight building base plates ( 1 A˜ 1 H) assembled to fill the bottom seat ( 30 A) to make a rectangular plane ( 50 ).
3 . Building base plates assembled to build block sets in two or three dimensional configurations according to claim 2 wherein an upper surface of bottom seat ( 30 A) has thirty five grooves ( 32 ), opposite to the grooves, each cubic unit of eight building base plates ( 1 A˜ 1 H) has a block ( 11 ) projected outward can be embedded in the groove ( 32 ).
4 . Building base plates assembled to build block sets in two or three dimensional configurations according to claim 1 wherein a triangular frame ( 40 A) with five grooves on each side, totally fifteen grooves ( 42 ) on an upper surface of the triangular frame ( 40 A), eight building base plates ( 1 A˜ 1 H) assembled on the triangular frame ( 40 A) to build a five-layer ( 61 ˜ 65 ) pyramid ( 60 ).
5 . Building base plates assembled to build block sets in two or three dimensional configurations characterized in that: four building base plates ( 10 ′) added to the eight building base plates ( 10 ) of claim 1 increased to twelve building base plates ( 20 ), the eight building base plates each contains three to five cubic units, the added four building base plates ( 10 ′) each contains five or six cubic units, the twelve building base plates assembled compatible with a coordinate system with X axis and Y axis to define orientations, shapes of twelve building base plates ( 1 A˜ 1 L) as following:
a building base plate ( 1 A) has four cubic units (a 1 ˜a 4 ) shaped as the first to the third cubic units (a 1 ˜a 3 ) are connected in a row vertically, the fourth cubic unit (a 4 ) is connected horizontally to a lateral side of the third cubic unit (a 3 ); a building base plate ( 1 B) has five cubic units (b 1 ˜b 5 ) shaped as the first to the third cubic units (b 1 ˜b 3 ) are connected in a row vertically, the fourth and the fifth cubic units are also connected vertically, but the fourth and the fifth cubic units (b 4 ,b 5 ) are connected horizontally to a lateral side of the first and second cubic units (b 1 ,b 2 ); a building base plate ( 1 C) has five cubic units (c 1 ˜c 5 ) shaped as the first to the fourth cubic units (c 1 ˜c 4 ) are connected in a row vertically, the fifth cubic unit (c 5 ) is connected horizontally to the lateral side of the third cubic unit (c 3 ); a building base plate ( 1 D) has three cubic units (d 1 ˜d 3 ) shaped as the first and second cubic units (d 1 ,d 2 ) are connected in a row vertically, the third cubic unit (d 3 ) is connected to the lateral side of the first cubic unit (d 1 ); a building base plate ( 1 E) has five cubic units (e 1 ˜e 5 ) shaped as the first and second cubic units (e 1 ,e 2 ) are connected in a row vertically, the third and fourth cubic units (e 3 ,e 4 ) are connected in a row vertically, and the third cubic unit (e 3 ) is connected horizontally to the left side of the second cubic unit (e 2 ), while the fifth cubic unit (e 5 ) is connected horizontally to the left side of the fourth cubic unit (e 4 ); a building base plate ( 1 F) has four cubic units (f 1 ˜f 4 ) shaped as the first and second cubic units (f 1 ,f 2 ) are connected in a row vertically, the third and fourth cubic units (f 3 ,f 4 ) are connected in a row vertically, and the third cubic unit (f 3 ) is connected horizontally to a lateral side of the second cubic unit (f 2 ); a building base plate ( 1 G) has four cubic units (g 1 ˜g 4 ) shaped as the first to the third cubic units (g 1 ˜g 3 ) are connected in a row vertically, the fourth cubic unit (g 4 ) is connected horizontally to the lateral side of the second cubic unit (g 2 ); and a building base plate ( 1 H) has five cubic units (h 1 ˜h 5 ) shaped as the first to the third cubic units (h 1 ˜h 3 ) are connected in a row vertically, the fourth cubic unit (h 4 ) are connected horizontally to the left side of the second cubic unit (h 2 ), while the fifth cubic unit (h 5 ) is connected horizontally to the right side of the second cubic unit (h 2 ); a building base plate ( 1 I) has five cubic units (i 1 ˜i 5 ) shaped as the first to the fourth cubic units (i 1 ˜i 4 ) are connected in a row vertically while the fifth cubic unit (i 5 ) is connected horizontally to a lateral side of the first cubic unit (i 1 ); a building base plate ( 1 J) has five cubic units (j 1 ˜j 5 ) shaped as the first to the third cubic units (j 1 ˜j 3 ) are connected in a row vertically, the fourth and the fifth cubic units (j 4 ˜j 5 ) are connected in a row vertically, while the fourth cubic unit (j 4 ) is connected horizontally to the lateral side of the third cubic unit (j 3 ); a building base plate ( 1 K) has five cubic units (k 1 ˜k 5 ) shaped as the first to the third cubic units (k 1 ˜k 3 ) are connected in a row vertically, the fourth cubic unit (k 4 ) is connected horizontally to the left side of second cubic unit (k 2 ) while the fifth cubic unit (k 5 ) is connected horizontally to the right side of the first cubic unit (k 1 ); and a building base plate ( 1 L) has six cubic units (l 1 ˜l 6 ) shaped as the first to the third cubic units are connected in a row vertically, the fourth and the fifth cubic units (l 4 ,l 5 ) are connected in a row vertically as well as connected horizontally to the left side of the second and third cubic units (l 2 ,l 3 ) respectively, the six cubic unit (l 6 ) is connected horizontally to the left side of the fifth cubic unit (l 5 ).
6 . Building base plates assembled to build block sets in two and three dimensional configurations according to claim 5 wherein an upper surface of bottom seat ( 30 B) accommodates eight cubic units in longitudinal direction, seven cubic units in transversal direction, thereby fifty six cubic units of the twelve building base plates ( 1 A˜ 1 L) fulfill an upper surface of the bottom seat ( 30 B) in a rectangular shape.
7 . Building base plates assembled to build block sets in two and three dimensional configurations according to claim 6 wherein an upper surface of bottom seat ( 30 B) has fifty six grooves ( 32 ), each of the fifty six cubic units of the twelve building base plates has a block projected outward from a surface, which is opposite to the groove ( 32 ), the cubic units can be embedded in the grooves ( 32 ).
8 . Building base plates assembled to build block sets in two and three dimensional configurations according to claim 5 wherein a triangular frame ( 40 B) with six grooves on each side therefore totally twenty one grooves ( 42 ) on an upper surface of the triangular frame ( 40 B), twelve building base plates ( 1 A˜ 1 L) assembled on the triangular frame ( 40 B) to build a six-layer ( 81 ˜ 86 ) pyramid ( 80 ).Join the waitlist — get patent alerts
Track US2008274665A1 — get alerts on status changes and closely related new filings.
We store only your email — no account needed. See our privacy policy.