Magnetic building block for simulation building
Technical Field
The utility model relates to a building blocks especially relates to an emulation building magnetic force building blocks.
Background
The building block toy is an early education toy which can cultivate and exercise the best intelligence of children, in particular to a building block. However, the traditional simulation building blocks are generally made of wood or plastic and are hard matched or stacked, so that the simulation building blocks are often not convenient and fast in use, are not strong in interestingness and have single functions.
Disclosure of Invention
The utility model aims to solve the technical problem that a simple structure is provided, and the method of playing is various, can effectively improve an emulation building magnetic force building blocks who uses convenience and interest.
In order to solve the above problem, the utility model relates to an emulation building magnetic force building blocks, its characterized in that: the building block is composed of a plurality of first building blocks, second building blocks, third building blocks, fourth building blocks, fifth building blocks, sixth building blocks, seventh building blocks, eighth building blocks and ninth building blocks.
The first building block consists of a first building block bottom, a first building block cover and a magnet, wherein the magnet is a permanent magnet, the magnets are arranged on four edges and two sides of the center of the first building block, and two jacks are formed in the surface of the first building block; the width of the first building block is half of the length of the first building block.
The second building block consists of a first building block bottom, a first building block cover and an iron block, the iron blocks are arranged on four edges of the second building block, and the upper surface of the second building block is provided with an insertion hole; the length and the width of the second building block are the same, the length of the second building block is half of that of the first building block, the width of the second building block is the same as that of the first building block, and the height of the second building block is the same as that of the first building block.
The third building block is triangular, a jack is formed on the triangular inclined plane, and an inserting column is arranged on the right-angle plane opposite to the jack; the length and the width of the third building block are the same, the length of the third building block is the same as that of the second building block, and the height of the third building block is the same as that of the first building block.
The fourth building block is in an arch shape, the upper end face of the fourth building block is provided with two insertion columns, the lower end face of the fourth building block is provided with one insertion column, the length of the fourth building block is the same as that of the first building block, the width of the fourth building block is the same as that of the first building block, and the height of the fourth building block is the same as that of the first building block.
The fifth building block is tile-shaped, the upper end surface is tile patterns, and the lower end surface is provided with an insert column; the length is an integral multiple of the width of the building block.
The building block six is flat, the upper end surface is a floor pattern, and the lower end surface is provided with an insert column; the length and degree are integral multiples of the width of the building block.
The building block seventh is cylindrical, and is divided into a part a and a part b, wherein the two ends of the part a are provided with inserting columns, one end of the part b is provided with an inserting column, and the other end of the part b is provided with an inserting hole; the height of the part a and the height of the part b are the same, and the height of the part a and the height of the part b are integral multiple of the height of the first building block.
The building block eight is a door part, the height of the building block eight is an integral multiple of the height of the building block one, and the width of the building block eight is an integral multiple of the length of the building block two.
The building block nine is a window component, the height of the building block nine is an integral multiple of the height of the building block I, and the width of the building block nine is an integral multiple of the length of the building block II.
The distance and the aperture of the jacks on each building block are the same, the distance and the outer diameter of the inserting columns on each building block are the same, and the jacks and the inserting columns can be matched in an inserting mode.
Compared with the prior art, the utility model has the following advantage:
1. because the utility model discloses use magnetic force to connect, and the magnet is the permanent magnet, and the cooperation jack is perfect to be connected simultaneously, makes this emulation building magnetic force building blocks equipment quick, can build molding greatly increased, has improved interesting and playing method variety.
2. The utility model discloses simple structure, convenient operation, it is practical nimble convenient, interesting strong, the preparation plasticity is big, suitable general popularization and application.
Drawings
FIG. 1 is a schematic structural diagram of a first building block of the present invention;
FIG. 2 is a perspective view of a first building block of the present invention;
FIG. 3 is a schematic structural view of a second building block of the present invention;
FIG. 4 is a perspective view of a second building block of the present invention;
FIG. 5 is a perspective view A of a third building block of the present invention;
FIG. 6 is a perspective view B of a third building block of the present invention;
FIG. 7 is a perspective view A of a fourth building block of the present invention;
FIG. 8 is a perspective view B of a fourth building block of the present invention;
FIG. 9 is a perspective view A of a fifth building block of the present invention;
FIG. 10 is a perspective view B of a fifth building block of the present invention;
FIG. 11 is a perspective view A of a sixth building block of the present invention;
FIG. 12 is a perspective view B of a sixth building block of the present invention;
FIG. 13 is a perspective view A of a seventh building block of the present invention;
FIG. 14 is a perspective view B of a seventh building block of the present invention;
FIG. 15 is a perspective view A of a building block eight of the present invention;
FIG. 16 is a perspective view B of a building block eight of the present invention;
FIG. 17 is a perspective view A of a building block nine of the present invention;
FIG. 18 is a perspective view B of a building block nine of the present invention;
FIG. 19 is a schematic diagram of the combination and arrangement of the present invention;
in the figure: a first building block 1; a second building block 2; a third building block; building block four 4; a building block five 5; building block six 6; a building block seven 7; eight 8 building blocks; and a building block nine 9.
Detailed Description
The technical solution of the present invention will be described clearly and completely with reference to the accompanying drawings, and it is obvious that the described embodiments of the building blocks are some, but not all, embodiments of the present invention; based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The first building block is composed of a building block bottom 11, a building block cover 12, a magnet 13 and a magnet 14, the magnet is a permanent magnet, the magnets 13 are arranged on four sides of the building block, the magnet 13 is cylindrical, the magnet 13 is magnetized in the diameter direction, the magnet 13 can rotate around the axis in the placing cavity 131, and the magnet 14 can be turned over in the placing cavity 141. The building block I and the building block I are vertically placed and are magnetically adsorbed together when being placed left and right, as shown in figure 19; the building block I and the building block II 2 are vertically placed and are magnetically adsorbed together when being placed left and right, as shown in figure 19; two insertion holes 15 are formed in one surface of the building block and can be connected with insertion columns on a third wood block 3, a fourth wood block 4, a sixth wood block 6 and a seventh wood block 7, as shown in figure 19. The first block has a width B1 that is half the length A1.
A second building block, as shown in fig. 3 and 4, which is composed of a building block bottom 21, a building block cover 22 and an iron block 23, the second building block and the first building block 1 are placed up and down, and placed left and right and reliably attracted together by magnetism, as shown in fig. 19, two insertion holes 24 are formed in the surface of the second building block, which can be connected with a third building block 3, a fourth building block 4, a sixth building block 6, and an insertion column on a seventh building block 7, as shown in fig. 19, the length A2 and the width B2 of the second building block are the same, the length A2 of the second building block is half of the length A1 of the first building block 1, the width B2 of the second building block is the same as the width B1 of the first building block 1, and the height H2 of the second building block is the same as the height H1 of the first building block 1.
A third building block is in a triangular shape as shown in fig. 5 and 6, a plug hole 31 is formed in the triangular inclined plane and can be connected with a plug post 51 on the fifth building block 5, and a plug post 32 is arranged on the right-angled plane opposite to the plug hole 31 and can be connected with plug holes on the first building block 1, the second building block 2 and the seventh building block 7 as shown in fig. 19; the length A3 and the width B3 of the third block are the same, the length A3 of the third block is the same as the length A2 of the second block 2, and the height H3 of the third block is the same as the height H1 of the first block 1.
A fourth building block, as shown in fig. 7 and 8, is in an arch shape, the upper end surface is provided with two insertion columns 41, the lower end surface is provided with one insertion column 42 which can be connected with the first building block 1, the second building block 2 and the insertion holes on the seventh building block 7, as shown in fig. 19, the length A4 of the fourth building block is the same as the length A1 of the first building block 1, the width B4 of the fourth building block is the same as the width B1 of the first building block 1, and the height H4 of the fourth building block is the same as the height H1 of the first building block 1.
The fifth building block is tile-shaped as shown in fig. 9 and 10, the upper end surface is in a tile pattern, the lower end surface is provided with inserting columns 51 which can be connected with the inserting columns 31 on the third building block 3, as shown in fig. 19, the length A5 of the fifth building block is integral multiple of the width B1 of the first building block 1.
The sixth building block is in a flat plate shape as shown in fig. 11 and 12, the upper end surface of the sixth building block is provided with floor patterns, and the lower end surface of the sixth building block is provided with inserting columns 61 which can be connected with inserting holes on the first building block 1, the second building block 2 and the seventh building block 7 as shown in fig. 19. The length A6 and width B6 of block six are integer multiples of the width B1 of block one 1.
The building block seven is in a cylindrical shape as shown in fig. 13 and 14, and is divided into a part a and a part b, wherein the two ends of the part a are provided with insertion columns 71, one end of the part b is provided with an insertion column 72, the other end of the part b is provided with an insertion hole 73, and the insertion columns 71 and the insertion columns 72 can be matched and connected with the insertion holes. The studs 71 and 72 can be connected to the receptacles on blocks 1, 2 and seven 7, as shown in FIG. 19, where the height of part a is the same as the height of part b, and the height H7 of part a is an integer multiple of the height of block one.
The eighth building block, fig. 15 and 16, is a door member, the height H8 is an integer multiple of the height H1 of the first building block 1, and the width B8 is an integer multiple of the length a2 of the second building block 2.
The ninth block, fig. 17 and 18, is a window unit, the height H9 is an integer multiple of the height H1 of the first block 1, and the width B9 is an integer multiple of the length a2 of the second block 2.