The present invention relates to the field, of toys. Specifically, the present invention refers to a kind of building block and building block units thereof.
Human brains develop fastest during infancy. And tactile manipulation of objects can promote the development of infant brains. At present, there is a few intelligence related toys on the market, such as puzzles, magic cubes, building blocks. Among these, children deeply love building blocks because children can assemble and disassemble building blocks as they wish with only their imagination as a limit.
In a Chinese patent published as CN 1035058874A, an atomic building block was disclosed. The atomic building block has a plurality of faces on which there are a plurality of interfaces. According to different types of interfaces, elements of the atomic building block can be categorized into two classes, elements with convex interfaces and elements with concave interfaces. By combining convex interfaces with concave interfaces of the atomic building block, 3-D assembly can be realized and children can build many forms and structures. However, because there are two kinds of atomic building blocks, children have to classify them. Many infants fail to conduct 3-D assembly because infants cannot distinguish between the two classes of the atomic building blocks.
In a Chinese patent published as CN 203208689U, a building block was disclosed. The building block comprises a base and a connector, wherein the base is a hexahedron whose top face is installed with fixing holes and whose bottom face, left face, right face, front face and back face are all installed with connecting holes matching the connector. This kind of building block enables children to assemble without classifying the building block. However, when the building block is used to build bottles and cans, the base has to reserve fixing holes to connect with bottles and cans. As a result, the base cannot extend to each side of the building block discretionally. Therefore, the extension of the base is limited. In addition, because the left face, the right, face, the front face, the back face and the bottom face are all installed with only one connecting holes, it's difficult to connect the five faces with the connector at the same time. Furthermore, when a connector is not inserted into its location deep enough, it results in a loose connection between the faces of the base, and the connector can easily move and separate from its location. If the connector is inserted into a connection hole too deep, the other connecting holes cannot be connected.
The present invention discloses a building block and building block units thereof, in order to overcome the issues stated above.
The technical solutions of the invention is as follows:
Technical Solution 1:
A building block system, comprises a plurality of basic units and a plurality of connectors used for connecting two basic units. The basic unit is a hexahedron, wherein each side face of the basic unit is evenly set with four connecting holes, and each face of the basic unit is also set with a slot. Connecting holes on each two opposing faces are connected by slots on the other four faces. The connector goes into the connecting hole on one side face, and comes out from the connecting hole on the opposing face through the slot to connect with another basic unit.
Preferably, the basic unit stated above is a cube, wherein each connecting hole stated above is set at the inner side of each face's side edge and the slot is set at from the central of the face extending to each connecting hole.
Further, the connector is a flat cuboid. The cross section of the connecting hole is a rectangle, wherein the long side of the rectangle is parallel to the corresponding side edge. The connecting hole is adjacent to the inner side of the slot and is interlinked with the slot mutually. All bottom faces of the slots together compose a small cube.
In a first preferable embodiment according to the connecting way stated above, the undersurface of the connector is set with a first strip-type slot along the length direction. Two ends of the connector's undersurface are set with two second strip-type slots which are perpendicular to the first strip-type slot. Each face of the small cube is set with a raised cross to match with the first strip-slot and the second strip-type slot.
In a second preferable embodiment according to the connecting way stated above, each face of the small cube is set with a pin hole. Each end of the connector is set with a location hole. The connector is fixed to the basic unit through inserting the locating pin into the location hole and the pin hole.
In a third preferable embodiment according to the connecting way stated above, the undersurface of the connector is set with a raised line along the length direction. Each face of the small cube is set with a plurality of strip-type slots to match with the raised line. The raised line is set with a plurality of recesses. The strip-type slot is set with a plurality of raised portions to match with the recesses.
Moreover, each end of the connector is set with a through-hole. A disassembling tool can disassemble the building block quickly and conveniently by cooperating with the through-holes. The length of the connector is double of the length of the side edge of the cube.
Technical Solution 2:
A building block unit, comprises an incomplete cube unit and a connector. The incomplete cube unit is set with a cutting part. The cutting part is obtained by cutting a complete cube through a cutting path. The cutting path begins from two side edges of a vertex on a side face and extends directly to corresponding side edges of the opposite vertex. Among the incomplete faces, each of the two opposing faces is set with two connecting holes, each of the two adjacent faces is set with one connecting hole. The remaining two complete adjacent faces is set with four connecting holes. The connecting holes on one face are interlinked to the corresponding connecting holes on the opposing face. One end of the connector is inserted into the two interlinked connecting holes, and the other end comes out from the side face of the incomplete cube unit.
In one preferable embodiment, the cutting part is a right-angle triangular prism. Two rectangular faces of the right-angle triangular prism are portions of two mutually perpendicular side faces of the incomplete cube unit. The end face of the right-angle triangular prism is a right triangle. The two endpoints of the hypotenuse of the right triangle can be any point on the two adjacent, side edges excluding the endpoints of the adjacent side edge. Preferably, the two endpoints of the hypotenuse of the right triangle are the midpoints of two adjacent side edges.
In another preferable embodiment, the cutting part comprises a cutting face. The cutting face is an arc face. The endpoints of the arc face's arc line can be any point on the two adjacent side edges excluding the endpoints of the adjacent side edges. Preferably, the two endpoints of the arc face's arc line are the midpoints of two adjacent side edges.
The cross section of the connecting hole is a rectangle, wherein the long side of the rectangle is parallel to the corresponding side edge.
Each of the remaining two complete adjacent faces is set with a slot. The connecting hole is set along the side face of the slot. The connecting hole is adjacent to the slot and interpenetrate with the slot to form a cross slot.
Technical Solution 3
A building block unit, comprises an incomplete cube unit and a connector. The incomplete cube unit is set with an unfilled corner. The unfilled corner is achieved by cutting three adjacent side faces of a complete cube unit and includes the common vertex of the three adjacent side faces. Each of the remaining three side faces of the incomplete cube unit is evenly set with four first connecting holes. Each of the three incomplete side faces is set with two second connecting holes. The second connecting holes are interlinked with the corresponding first connecting holes on the opposing side face. One end of the connector is inserted into the two interlinked first and second connecting holes, and the other end comes out from the side face of the incomplete cube unit.
In one embodiment, the unfilled corner further comprises an arc face, wherein the arc face is formed by three vertexes, wherein each two vertexes are opposing on one side face. The arc face is part of an inscribed sphere of the incomplete cube unit.
The cross section of the connecting hole is a rectangle, wherein the long side of the rectangle is parallel to the corresponding side edge.
Each side face of the incomplete cube unit is set with a slot in the center of the side face. The first connecting holes and the second connecting holes are set along the side face of the slot. The first connecting hole is adjacent to the inner side of the slot and interpenetrate with the slot to form a cross slot. The second connecting hole is adjacent to the inner side of the slot and interconnected with the slot to form an L-shape slot. All bottom faces of the slots together compose a small cube.
In another embodiment, the unfilled corner comprises a bevel, which is formed by three vertexes, and each two of the three vertexes are opposing on one side face.
Each of the three square side faces of the incomplete cube unit is set with a slot in the central of the side face. The first connecting holes and the second connecting holes are set along the side face of the slot. The first connecting hole is adjacent to the inner side of the slot and interpenetrate with the slot to form a cross slot.
In the two embodiments stated above, the bottom face of each slot is set with a raised cross.
1. Each face of the building block unit is evenly set with a plurality of connecting holes. The connecting holes on each two opposing faces are correspondingly interlinked by the slots on the other four faces. The connector inserts into one connecting hole on one face of the basic unit, and comes out from another connecting hole on the opposing face through the slot to connect with another basic unit. The connecting design not only increases the ways of connecting each two basic units, but also overcomes the clash when more than one connector inserts into the connecting holes. The present invention is help to cultivate children's ability of multiple perspectives thinking and ability of 3D space thinking.
2. The basic unit is a cuboid structure. Each face of the cube is the same. One basic unit can extend along any face of another basic unit, which can combine various shapes of building blocks, and meets the needs of children's curiosity.
3. Each face of the basic unit is set with a slot. The slot interlinks two opposing connecting holes. The bottom faces of the slots compose a small cube. The bottom face of the slot is not only used for supporting the connector, but also used for conducting the connector to insert into the connecting hole, which is convenient for connecting the connector and the basic unit.
4. The connector is set with a raised line and a plurality of recesses. The raised line not only increases the connector's strength, but also guides the connection. Otherwise, cooperation of the recesses and raised portions makes the connection between the basic unit and the connector firmer without slippage or sliding.
5. Various styles of building blocks are obtained after combination. Moreover, the side faces of the building blocks can be arc faces or with the structure of multiple side edges and corners, which brings children different experiences, meets the needs of children's curiosity, cultivates children's ability of multiple perspectives thinking and ability of 3D space thinking.
A building block system, according to
According to
A second embodiment of the invention is basically the same with the preferred embodiment. According to
The difference between a third embodiment and the preferred embodiment and the second embodiment is the connecting way between connector 320 and basic unit 310. According to
To clarify, in the embodiments stated above, two ends of connectors can also be set with through-holes. A disassembling tool can disassemble the building block quickly and conveniently by cooperating with the through-holes.
In a fourth embodiment, according to
In
In a fifth embodiment, according to
According to
The connecting design between connector 520 and connecting hole 512 can adopt the connecting way using a raised line and a slot. This connecting way is a general technique in this field and will not be described in detail.
In a sixth embodiment, according to
According to
In a seventh embodiment, according to
According to
Number | Date | Country | Kind |
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2014 1 0368610 | Jul 2014 | CN | national |
2015 2 0024124 U | Jan 2015 | CN | national |
2015 2 0024153 U | Jan 2015 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2015/073632 | 3/4/2015 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2016/015470 | 2/4/2016 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
604708 | Burton | May 1898 | A |
1142471 | White | Jun 1915 | A |
1281856 | Shaw | Oct 1918 | A |
1608592 | Funk | Nov 1926 | A |
3603026 | Kishigami | Sep 1971 | A |
5924906 | Grafton | Jul 1999 | A |
6322414 | Lin | Nov 2001 | B1 |
Number | Date | Country |
---|---|---|
203208698 | Sep 2013 | CN |
103505887 | Jan 2014 | CN |
Number | Date | Country | |
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20160271508 A1 | Sep 2016 | US |