WO2020113800A1 - 翻转魔尺 - Google Patents

翻转魔尺 Download PDF

Info

Publication number
WO2020113800A1
WO2020113800A1 PCT/CN2019/072830 CN2019072830W WO2020113800A1 WO 2020113800 A1 WO2020113800 A1 WO 2020113800A1 CN 2019072830 W CN2019072830 W CN 2019072830W WO 2020113800 A1 WO2020113800 A1 WO 2020113800A1
Authority
WO
WIPO (PCT)
Prior art keywords
cube
center
groove
rail groove
moving rail
Prior art date
Application number
PCT/CN2019/072830
Other languages
English (en)
French (fr)
Inventor
陈善雄
Original Assignee
陈善雄
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 陈善雄 filed Critical 陈善雄
Publication of WO2020113800A1 publication Critical patent/WO2020113800A1/zh

Links

Images

Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F9/00Games not otherwise provided for
    • A63F9/06Patience; Other games for self-amusement
    • A63F9/12Three-dimensional jig-saw puzzles
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys

Definitions

  • the invention relates to the technical field of toys, in particular to a flip magic ruler.
  • the magic cube toy first appeared in 1974 and was invented by the Hungarian architecture professor and sculptor Erno Rubik. In recent years, it has been popularized in China.
  • the Rubik's cube even entered the school classroom.
  • Its core structure is a cubic rail mechanical structure.
  • most of the Rubik’s cube improvements, upgrades, and transformations are difficult to break away from the cubic rail mechanical structure system.
  • Its structure allows the block to only move on a fixed track, so that the block can’t be separated from the track and converted into a strip magic ruler or a chain magic ruler. Or a rectangular parallelepiped, a rectangular parallelepiped; the magic ruler was also invented by Erno Rubik.
  • the magic ruler is connected by the connecting axis to the triangular prism.
  • the connecting shaft passes through the center holes of the square faces of the two adjacent triangular prisms, so that the adjacent two triangular prism magic ruler blocks are infinitely connected.
  • the prior art triangular prism magic ruler blocks have a total of 5 faces. Due to structural design limitations, the square faces of two adjacent triangular prism magic ruler blocks that are parallel and coplanar cannot be vertically flipped and intersected, so that the magic ruler stick cannot be transformed. Cube shape and some other natural shapes.
  • the present invention is to solve the defect that the existing magic ruler block cannot be vertically flipped and intersected, so that the magic ruler can not transform the shape of the cube and some other natural shapes, and provides a reasonable structure, which can be flipped freely and can transform the shape of the cube And some other natural shape flip magic rulers.
  • the present invention adopts the following technical solution: flipping the magic ruler, including a connecting rope and a plurality of cubes, two ends of the connecting rope are respectively provided with chucks, the cube is a hollow body, and the cube is provided with A first moving rail groove and a second moving rail groove, the first moving rail groove includes a connecting groove from the center of the left side of the cube to the center of the front side of the cube, and the second moving rail groove includes the right side of the cube
  • the connecting groove from the center to the center of the rear side of the cube, the first moving rail groove and the second moving rail groove are located at the center position of each side of the square body and are respectively provided with through holes through which the connecting rope can pass.
  • the connecting rope can be located at The first moving rail groove and the second moving rail groove slide, the plurality of cubes are connected by a connecting rope, the chucks at both ends of the connecting rope are located in the two outermost cubes, and the diameters of the chucks at both ends of the connecting rope
  • the diameter of the through hole is larger than that of the first moving rail groove and the second moving rail groove.
  • the positioning points of this solution are concave points or convex points.
  • the positioning points may be all concave points or all convex points, or the positioning points of three sides of the six sides of the cube may be set as positioning convex points and three sides
  • the positioning points are set as positioning concave points, and the positioning points on each side of the cube are corresponding to each other.
  • the positioning concave points can accommodate positioning bumps.
  • the positioning concave and convex points of this solution are provided on the 6 sides of the cube.
  • the positioning concave and convex points can be set correspondingly, and the positioning points are set corresponding to each other, which means that the positions of the positioning points on each side of the cube are uniform. Since the length and width of each side of the cube are equal, the positioning points are also the same;
  • the shape of the dots is also isotropic, such as round convex dots and round concave dots, cross convex dots and cross concave dots, rectangular convex dots and rectangular concave dots, and so on.
  • the first moving rail groove on the cube also includes a connecting groove from the center of the top side of the cube to the center of the front side of the cube
  • the second moving rail groove on the cube also includes the center from the center of the bottom side of the cube to the rear side of the cube The connection slot in the center.
  • the second moving guide groove on the cube also includes a connection groove from the center of the bottom side of the cube to the center of the back side of the cube, and a connection groove from the center of the top side of the cube to the center of the back side of the cube.
  • the guide rail groove of this solution has different structures, which can also increase the direction of the cube rotation, increase the fun and difficulty of the game.
  • it also includes a strip-shaped clip, a groove is provided at the boundary edge portion of each side of the cube without a connection groove, and when the plurality of cubes are connected, a strip-shaped clip can be accommodated in the corresponding groove of two adjacent cubes Embed.
  • the connection groove extends from the center of one surface to the center of the other surface, it must pass through the boundary edge of the two surfaces. Except for the connection groove, the other two boundary edges of the two surfaces are all provided with grooves.
  • the grooves corresponding to two adjacent cubes form a larger groove, and the strip-shaped strip can be embedded in one or more such larger grooves. After embedding, the space position of the two adjacent cubes is temporarily locked and can be increased. Gameplay and difficulty.
  • the connecting rope is an elastic connecting rope.
  • the elastic connecting rope is directly made of elastic material, or can be formed by adding a spring to the ordinary rope.
  • the square body is further provided with an inner liner, a center of the inner liner is provided with a rope hole through which the connecting rope can pass, and the inner liner is provided with two mirror grooves with mirror symmetry, and the rope The hole is located in the center of the cross groove.
  • the inner liner is a sphere, a cube or a cross.
  • the liner can be a sphere (two concave mirror cross grooves are provided on the sphere), or a square body (a concave cross groove is provided on each of the opposite sides of the square body) It can also be an XYZ triaxial body, such as a cross-shaped body itself as the XY axis and cross grooves, and then two fans are set as the Z axis; after the cube block is lined, the connecting rope can pass through the liner to connect multiple cube blocks , The elasticity of the connecting rope will not be changed between the cubes due to the cubes flipping, thereby increasing the stability of the product; during production, the lining needs to be placed into the hollow cube first, and then the cube is closed to leave the lining Inside the cube.
  • N hollow cubes squares
  • appropriate square grooves can also be provided on the 6 faces of each cube respectively.
  • the adjacent two square grooves of two adjacent cubes can be embedded by a section of bar-shaped strips.
  • the moving guide groove cooperates with the connecting rope to play the function of turning the cube, and only one connecting rope is needed to achieve the connection.
  • the effect of adjacent cubes is to connect the cubes with connecting ropes in sequence.
  • the connecting rope can be a self-elastic connecting rope or an ordinary connecting rope. If the ordinary connecting rope is connected, it can be reached by adding a spring to the cube The effect of the elastic rope, so that the function of the product of this solution can be realized.
  • the product of this solution is separated from the existing track structure system of the Rubik’s Cube, improves and innovates on the connection system of the existing triangular prism magic ruler block, and establishes a new cube rotation system, that is, a hexahedral block system that can be vertically flipped by the cube itself, so that the two adjacent One of the cubes (Cube 1, Block 2) flips 90 degrees by itself, so that the original 1 block and 2 blocks are face-to-face and intersect vertically.
  • a new cube rotation system that is, a hexahedral block system that can be vertically flipped by the cube itself, so that the two adjacent One of the cubes (Cube 1, Block 2) flips 90 degrees by itself, so that the original 1 block and 2 blocks are face-to-face and intersect vertically.
  • Square grooves are formed on the six surfaces, so that the two adjacent cubes can be temporarily fixed by a strip card slot, and the strip slot is fixed at different positions of the square slot in the chain block, which can make a cube shape or other cube shape Derived from many different gameplay, and can form 1-9 Arabic numerals, or animals, or cube shape, or cuboid shape or other natural shapes.
  • the present invention has the following beneficial effects: the structure is reasonable, it can be turned freely, and the shape of the cube and some other natural shapes can be transformed.
  • FIG. 1 is a schematic structural diagram of a cube of the present invention.
  • FIG. 2 is a schematic diagram of an extended structure of a square rail moving rail groove of the present invention.
  • FIG. 3 is a schematic diagram of another extension structure of the moving rail groove of the cube block of the present invention.
  • FIG. 4 is a schematic structural view of the elastic connecting rope of the present invention.
  • Fig. 5 is a schematic view of a structure of the ball lining of the present invention.
  • FIG. 6 is a schematic structural view of the square inner lining of the present invention.
  • FIG. 7 is a schematic structural view of the cross-shaped inner lining of the present invention.
  • FIG. 8 is a schematic structural view of the combination of the cube block and the elastic connecting rope of the present invention.
  • FIG. 9 is another schematic structural view of the combination of the cube block and the elastic connecting rope of the present invention.
  • FIG. 10 is a schematic diagram of the structure of the present invention strip bar.
  • FIG. 11 is a schematic structural diagram of Embodiment 1 of the present invention.
  • Embodiment 12 is a schematic structural view of Embodiment 2 of the present invention.
  • a flip magic ruler includes a connecting rope 2 and a plurality of cubes 1.
  • the connecting rope 2 includes a rope body 21 and chucks 22 fixed at both ends of the rope body 21,
  • the cube 1 is a hollow body.
  • the cube 1 is provided with a first moving rail groove 3 and a second moving rail groove 4.
  • the first moving rail groove 3 includes a connecting groove from the center of the left side of the square 1 to the center of the front side of the square 1
  • the second The moving guide groove 4 includes a connecting groove from the center of the right side of the cube 1 to the center of the rear side of the cube 1
  • four positioning recesses 6 are provided on the top and side of the cube 1
  • four positionings are respectively provided on the left and front sides of the cube 1 Bumps 5
  • four positioning bumps 5 are provided on the bottom side of the cube 1
  • four positioning dimples 6 are respectively provided on the right side and rear side of the cube 1
  • the positioning bumps 5 are corresponding to the positions of the positioning dimples 6, positioning
  • the concave point 6 can accommodate the positioning convex point 5
  • the first movable guide rail groove 3 and the second movable guide rail groove 4 are located at the central positions of the sides of the cube respectively with through holes 7 through which the rope body 21 can pass, and the diameter of the through holes 7 is less than The outer diameter
  • the first moving guide groove 3 further includes a connecting groove from the center of the top side of the cube 1 to the center of the front side of the square 1.
  • the second moving guide groove 4 also includes the center of the bottom side of the square 1 to Connection groove in the center of the rear side of the cube 1;
  • the second moving guide groove 4 on the cube 1 also includes a connecting groove from the center of the bottom side of the cube 1 to the center of the rear side of the cube 1, from the center of the top side of the cube 1 to the rear side of the cube 1 Center connection slot;
  • a strip-shaped strip 8 It also includes a strip-shaped strip 8, a square slot 9 is provided at the middle of the boundary edge of each side of the cube 1 without a connection slot, and when multiple cubes 1 are connected, the strips 8 can be accommodated in the corresponding square slots 9 of two adjacent cubes 1 Embed
  • the cube 1 is also provided with an inner liner 10, a center of the inner liner 10 is provided with a rope hole 11 through which the connecting rope 2 can pass, and the inner liner 10 is provided with two mirror-symmetrical two The cross groove 12 and the rope hole 11 are located in the center of the cross groove 12.
  • the inner liner 10 is a sphere, a cube, or a cross.
  • the inner liner 10 is provided, and the eight cubes 1 and the inner liner 10 are connected to a magic ruler by a connecting rope 2.
  • the specific implementation process is that after a plurality of cubes 1 and the inner liner 10 are connected by a connecting rope 2, a single cube 1 (square) is turned over (turned), that is, two adjacent cubes 1 are on the same cross section, that is, face to face , Assuming that the two faces of the two adjacent cubes 1 on the X axis are on the XY axis coordinates.
  • the cube 1 By flipping one of the faces of the cube 1 to make the two adjacent faces intersect vertically, that is, one on the X axis and one on the Y axis Through the similar flipping, the cube 1 is finally formed into a 3D three-dimensional shape, that is, the XYZ axis and the three axes, so as to realize the function of changing the block, such as forming a large cube; the shape of the product of this solution is variable, this function is the existing magic Ruler, magic board, Rubik's cube is impossible to achieve.
  • the existing Rubik's cube can not be interchanged from three-dimensional to flat, nor can the existing magic ruler be interchanged from plane to cube!
  • the basis of this solution is a combination of stripe-shaped cubes 1, which can be converted into a combination of planar cubes 1 or 3D solid cubes 1 on the basis of the combination of stripe cubes 1, with a variety of transformations, by increasing or decreasing the number of cubes 1 (Number of segments), so as to increase the Nth power of the gameplay; choose the square slots 9 of two adjacent cubes 1 to be fixed with strip card bars 8, which can increase or decrease the difficulty of the problem, and the adjacent square slots 9 in different positions are strip-shaped After the card bar 8 is fixed, a shape of the cube effect can be achieved by a variety of flipping gameplay paths.
  • the above functions add infinite charm to the product of this solution.

Abstract

一种翻转魔尺,包括连接绳(2)、多个正方体(1),连接绳(2)两端分别设有卡头(22),正方体(1)为空心体,正方体(1)内设有内衬(10),正方体(1)设有第一移动导轨槽(3)、第二移动导轨槽(4),第一移动导轨槽(3)包括从正方体(1)左侧面中心到正方体(1)前侧面中心的连接槽,第二移动导轨槽(4)包括从正方体(1)右侧面中心到正方体(1)后侧面中心的连接槽,第一移动导轨槽(3)、第二移动导轨槽(4)分别设有可容连接绳(2)穿过的通孔(7),连接绳(2)可在第一移动导轨槽(3)、第二移动导轨槽(4)内滑动,多个正方体(1)通过连接绳(2)连接,连接绳(2)两端的卡头(22)位于最外端的两个正方体(1)内,连接绳(2)两端的卡头(22)直径大于第一移动导轨槽(3)、第二移动导轨槽(4)的通孔直径。翻转魔尺结构合理,可自由翻转,可变换出正方体形状和部分其他自然形状。

Description

翻转魔尺 技术领域
本发明涉及玩具技术领域,尤其是涉及一种翻转魔尺。
背景技术
魔术方块玩具最早出现在1974年,是匈牙利建筑学教授和雕塑家厄尔诺·鲁比克发明的,近年来在我国普及,魔方甚至走进了学校课堂,其核心结构是方体轨道机械结构,现今大部分魔方的改进,升级,改造都难以脱离方体轨道机械结构系统,其结构使得方块只能在固定的轨道上移动,使得方块无法脱离轨道转换成条状魔尺或者链状魔尺或者长方体,正方体;魔尺魔棍亦是厄尔诺·鲁比克发明的,近年来魔尺的普及程度也很高,亦走进了学校课堂;魔尺是由连接轴把三棱柱连接而成的,魔尺的技术构造比较简单,连接轴穿过2个相邻的三棱柱的正方形面的中心孔,使得相邻2个三棱柱魔尺方块无限的连接起来。
现有技术的三棱柱魔尺方块一共5个面,由于结构设计局限,平行共面的相邻2个三棱柱魔尺方块的正方形面无法做到垂直翻转相交,使得魔尺魔棍无法变换出正方体形状和部分其他自然形状。
发明内容
本发明是为了解决现有魔尺方块无法做到垂直翻转相交,使得魔尺魔棍无法变换出正方体形状和部分其他自然形状的缺陷,提供一种结构合理,可自由翻转,可变换出正方体形状和部分其他自然形状的翻转魔尺。
为了实现上述目的,本发明采用以下技术方案:翻转魔尺,包括连接绳、多个正方体,所述的连接绳两端分别设有卡头,所述的正方体为空心体,所述正方体设有第一移动导轨槽、第二移动导轨槽,所述的第一移动导轨槽包括从正方体左侧面中心到正方体前侧面中心的连接槽,所述的第二移动导轨槽包括从正方体右侧面中心到正方体后侧面中心的连接槽,所述第一移动导轨槽、第二移动导轨槽位于正方体各侧面中心位置处分别设有可容连接绳穿过的通孔,所述的连接绳可在第一移动导轨槽、第二移动导轨槽内滑动,所述多个正方体通过连接绳连接,所述连接绳两端的卡头位于最外端的两个正方体内,所述连接绳两端的卡头直径大于第一移动导轨槽、第二移动导轨槽的通孔直径。
作为优选,所述的正方体各侧面分别设有四个定位点。本方案定位点为凹点或凸点,例如,定位点可以全部是凹点或者全部是凸点,也可以把正方体的六个侧面中三个侧面的定位点设置为定位凸点、三个侧面的定位点设置为定位凹点,正方体各侧面上的定位点位置相互对应设置,所述的定位凹点可容纳定位凸点; 本方案的定位凹凸点在正方体的6个侧面设置时,只需定位凹凸点对应设置即可,定位点位置相互对应设置,是指正方体每个侧面上的定位点的位置是统一的,由于正方体每个侧面长宽相等,所以定位点位置也完全相同;而定位点的形状,也是各向同性的,比如圆凸点与圆凹点,十字凸点与十字凹点,矩形凸点与矩形凹点等等。
作为优选,所述的正方体上第一移动导轨槽还包括从正方体顶侧面中心到正方体前侧面中心的连接槽,所述的正方体上第二移动导轨槽还包括从正方体底侧面中心到正方体后侧面中心的连接槽。本方案通过增加导轨槽,可增加正方体转动的方向,增加产品的趣味性和玩法难度。
作为优选,所述的正方体上第二移动导轨槽还包括从正方体底侧面中心到正方体后侧面中心的连接槽、从正方体顶侧面中心到正方体后侧面中心的连接槽。本方案导轨槽开设了不同的结构,同样可以增加正方体转动的方向,增加产品的趣味性和玩法难度。
作为优选,还包括条形卡条,所述的正方体各侧面交界边缘部无连接槽处设有槽,所述的多个正方体连接时两个相邻正方体的对应槽内可容条形卡条嵌入。连接槽从一个面的中心延伸到另一个面中心时,必然是通过两个面交界边缘的,除开被连接槽占用的,其它空余的两个面交界边缘均设置槽;此外,正方体组合时,两个相邻正方体对应的槽形成一个较大的槽,而条形卡条可选择嵌入一个或多个这样的较大的槽,嵌入后两个相邻正方体空间位置即被临时锁定,可增加玩法和难度。
作为优选,所述的连接绳为弹性连接绳。弹性连接绳,为弹性材料直接制作而成,或者在普通绳外加弹簧也可形成。
作为优选,所述的正方体内还设有内衬,所述的内衬中心设有可容连接绳穿过的绳孔,所述内衬设有镜像对称的两个十字槽,所述的绳孔位于十字槽的中心。
作为优选,所述的内衬为球体或正方体或十字形体。
本方案在正方体内设有内衬,内衬可以是球体(球体上设置两个凹陷的镜像十字槽),也可以是方体(正方体两个相对的侧面上各设有一个凹陷的十字槽),也可以是XYZ三轴体,如十字形体本身作为XY轴并设置十字槽,再设置两个扇面作为Z轴;正方体方块设有内衬后,连接绳可穿过内衬连接多个正方体方块,各个正方体方块之间不会因为正方体方块翻转而改变连接绳的弹力松紧,从而增加了产品的稳定性;制作时,内衬需要先放置到空心正方体内,然后再封闭正方体,把内衬留在正方体内。
本方案空心正方体(方块)可以采用N个,每个正方体6个面上还可以分别设置适当的方槽,相邻2个正方体相邻的2个方槽可以被一段条形卡条嵌入,从而临时固定住相邻2个正方体表面的空间状态,每个方体上开有2个移动导轨槽, 移动导轨槽配合连接绳起到正方体翻转的功能,只需一根连接绳,就可达到连接相邻正方体的效果,依次把正方体方块用连接绳连接起来,连接绳可以是自带弹力的连接绳,也可以是普通连接绳,普通连接绳连接的话只需在方体中加入弹簧即可到达弹力绳的效果,这样就可以实现本方案产品的功能。
本方案产品脱离现有魔方的轨道结构系统,在现有三棱柱魔尺方块的连接系统上改进创新,建立全新的方体自转系统,即正方体自身可垂直翻转的六面体方块系统,使得相邻2个正方体方块(方块1,方块2)的其中一个方块自身翻转90度,使原本1方块,2方块面对面的面翻转垂直相交。使自然数的1,2,3,4,5,6……N个正方体方块依靠N-1个连接轴组件依次连接成一个整体的长方形方体,或者其它正方体方块,本方案并在六面体方块的六个面上作出方槽,使得相邻2个正方体方块可以被一个条形卡槽临时固定,通过条形卡槽固定在链状方块中方槽不同的位置,可使得一个正方体形状或其它立方体形状衍生出许多不同的玩法,并可成型1-9的阿拉伯数字,或者动物,或者正方体形状,或者长方体形状或者其它自然形状。
因此,本发明具有如下有益效果:结构合理,可自由翻转,可变换出正方体形状和部分其他自然形状。
附图说明
图1是本发明正方体块的一种结构示意图。
图2是本发明正方体块移动导轨槽一种延伸结构示意图。
图3是本发明正方体块移动导轨槽另一种延伸结构示意图。
图4是本发明弹力连接绳的一种结构示意图。
图5是本发明球体内衬的一种结构示意图。
图6是本发明正方体内衬的一种结构示意图。
图7是本发明十字形体内衬的一种结构示意图。
图8是本发明正方体块与弹力连接绳组合的一种结构示意图。
图9是本发明正方体块与弹力连接绳组合的另一种结构示意图。
图10是本发明条形卡条的结构示意图。
图11是本发明实施例一结构示意图。
图12是本发明实施例二结构示意图。
图中:1、正方体 2、连接绳 3、第一移动导轨槽 4、第二移动导轨槽 5、定位凸点 6、定位凹点 7、通孔 8、条形卡条 9、方槽 10、内衬 11、绳孔 12、十字槽 21、绳体 22、卡头。
具体实施方式
下面结合附图对本发明做进一步的描述。
如图1至图4、图8至图10所示,一种翻转魔尺,包括连接绳2、多个正方体1,连接绳2包括绳体21、固定于绳体21两端的卡头22,正方体1为空心体,正方体1设有第一移动导轨槽3、第二移动导轨槽4,第一移动导轨槽3包括从正方体1左侧面中心到正方体1前侧面中心的连接槽,第二移动导轨槽4包括从正方体1右侧面中心到正方体1后侧面中心的连接槽,正方体1顶侧面设有四个定位凹点6,正方体1左侧面、前侧面上分别设有四个定位凸点5,正方体1底侧面设有四个定位凸点5,正方体1右侧面、后侧面上分别设有四个定位凹点6,定位凸点5与定位凹点6位置对应设置,定位凹点6可容纳定位凸点5,第一移动导轨槽3、第二移动导轨槽4位于正方体各侧面中心位置处分别设有可容绳体21穿过的通孔7,通孔7直径小于卡头22外径,绳体21可在第一移动导轨槽3、第二移动导轨槽4内滑动,多个正方体1通过连接绳2连接,连接绳2两端的卡头22位于最外端的两个正方体1内;连接绳2为弹性连接绳;
移动导轨槽一种延伸结构如图2,第一移动导轨槽3还包括从正方体1顶侧面中心到正方体1前侧面中心的连接槽,第二移动导轨槽4还包括从正方体1底侧面中心到正方体1后侧面中心的连接槽;
移动导轨槽另一种延伸结构如图3,正方体1上第二移动导轨槽4还包括从正方体1底侧面中心到正方体1后侧面中心的连接槽、从正方体1顶侧面中心到正方体1后侧面中心的连接槽;
还包括条形卡条8,正方体1各侧面交界边缘中部无连接槽处设有方槽9,多个正方体1连接时两个相邻正方体1的对应方槽9内可容条形卡条8嵌入;
如图4、图5、图6所示,正方体1内还设有内衬10,内衬10中心设有可容连接绳2穿过的绳孔11,内衬10设有镜像对称的两个十字槽12,绳孔11位于十字槽12的中心。
内衬10为球体或正方体或十字形体。
实施例一,如图10所示,采用8个正方体,内设内衬10,用一根连接绳2将8个正方体1及内衬10连接成长条魔尺。
实施例二,如图11所示,8个正方体1翻转连接成一个大立方体。
具体实施过程是,多个正方体1及内衬10用连接绳2连接后,实现了单个正方体1(方块)的翻转(转向),即相邻2个正方体1在同一截面即面对面的2个面,假定处于XY轴坐标上X轴上相邻2个正方体1的2个面,通过翻转其中一个正方体1的面,让相邻2个面垂直相交,即一个在X轴,一个翻转到Y轴, 通过类似的翻转最终使正方体1之间实现3D即XYZ轴3轴的立体成形,从而实现方块变化翻转的功能,例如形成一个大立方体;本方案产品成形形状多变,此功能是现有魔尺,魔板,魔方不可能实现的。
此外,现有的魔方不可能实现立体到平面的互换,现有的魔尺亦不可能平面到正方体的互换!本方案的基础是连接成条状的正方体1组合,在条状正方体1组合的基础上可变换为面状正方体1组合或者3D立体正方体1组合,变换形式多样,通过增减正方体1的块数(段数),从而使玩法N次方的增加;选择相邻两个正方体1的方槽9用条形卡条8固定,可以增减闯关题目难度,不同位置的相邻方槽9被条形卡条8固定后,一个形状状态的方体效果可以被多种翻转玩法路径达到,以上功能给本方案产品增加了无穷的魅力。

Claims (8)

  1. 一种翻转魔尺,其特征在于,包括连接绳、多个正方体,所述的连接绳两端分别设有卡头,所述的正方体为空心体,所述正方体设有第一移动导轨槽、第二移动导轨槽,所述的第一移动导轨槽包括从正方体左侧面中心到正方体前侧面中心的连接槽,所述的第二移动导轨槽包括从正方体右侧面中心到正方体后侧面中心的连接槽,所述第一移动导轨槽、第二移动导轨槽位于正方体各侧面中心位置处分别设有可容连接绳穿过的通孔,所述的连接绳可在第一移动导轨槽、第二移动导轨槽内滑动,所述多个正方体通过连接绳连接,所述连接绳两端的卡头位于最外端的两个正方体内,所述连接绳两端的卡头直径大于第一移动导轨槽、第二移动导轨槽的通孔直径。
  2. 根据权利要求1所述的翻转魔尺,其特征是,所述的正方体各侧面分别设有四个定位点。
  3. 根据权利要求1所述的翻转魔尺,其特征是,所述的正方体上第一移动导轨槽还包括从正方体顶侧面中心到正方体前侧面中心的连接槽,所述的正方体上第二移动导轨槽还包括从正方体底侧面中心到正方体后侧面中心的连接槽。
  4. 根据权利要求1所述的翻转魔尺,其特征是,所述的正方体上第二移动导轨槽还包括从正方体底侧面中心到正方体后侧面中心的连接槽、从正方体顶侧面中心到正方体后侧面中心的连接槽。
  5. 根据权利要求1所述的翻转魔尺,其特征是,还包括条形卡条,所述的正方体各侧面交界边缘部无连接槽处设有槽,所述的多个正方体连接时两个相邻正方体的对应槽内可容条形卡条嵌入。
  6. 根据权利要求1所述的翻转魔尺,其特征是,所述的连接绳为弹性连接绳。
  7. 根据权利要求1所述的翻转魔尺,其特征是,所述的正方体内还设有内衬,所述的内衬中心设有可容连接绳穿过的绳孔,所述内衬设有镜像对称的两个十字槽,所述的绳孔位于十字槽的中心。
  8. 根据权利要求7所述的翻转魔尺,其特征是,所述的内衬为球体或正方体或十字形体。
PCT/CN2019/072830 2018-12-04 2019-01-23 翻转魔尺 WO2020113800A1 (zh)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CN201822036127.5 2018-12-04
CN201822036127 2018-12-04
CN201910028244.3 2019-01-11
CN201910028244.3A CN109745697A (zh) 2018-12-04 2019-01-11 翻转魔尺

Publications (1)

Publication Number Publication Date
WO2020113800A1 true WO2020113800A1 (zh) 2020-06-11

Family

ID=66405508

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2019/072830 WO2020113800A1 (zh) 2018-12-04 2019-01-23 翻转魔尺

Country Status (2)

Country Link
CN (2) CN209392715U (zh)
WO (1) WO2020113800A1 (zh)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN209392715U (zh) * 2018-12-04 2019-09-17 陈善雄 翻转魔尺

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6241248B1 (en) * 1999-08-05 2001-06-05 Stephen J. Winter Interlocking solid puzzles with sliding movement control mechanisms
CN2512476Y (zh) * 2001-12-06 2002-09-25 蔡启发 魔方
WO2003022379A1 (en) * 2001-09-07 2003-03-20 David Watkins Jigsaw puzzle
CN202666370U (zh) * 2012-07-05 2013-01-16 浙江金马工艺品有限公司 一种人体姿态立方体串智力玩具
CN205759704U (zh) * 2016-06-02 2016-12-07 龚火亮 立方体多变机器人
CN206980048U (zh) * 2017-07-03 2018-02-09 蔡璇真 翻转魔方

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2004089484A1 (en) * 2003-04-12 2004-10-21 Steven William Gee Puzzle
GB2423727A (en) * 2005-03-04 2006-09-06 John Reginald Greening Puzzle apparatus
CN2870929Y (zh) * 2006-03-01 2007-02-21 马达伟 一种智力玩具
WO2011097565A1 (en) * 2010-02-06 2011-08-11 Boaz Leicht Interconnectible building elements for intellectual challenge games
GB2478591A (en) * 2010-03-12 2011-09-14 Gideon Cube-Sherman Articulated sub-units
CN102743863B (zh) * 2012-07-05 2014-08-13 浙江金马工艺品有限公司 一种动物立方体串智力玩具
CN209392715U (zh) * 2018-12-04 2019-09-17 陈善雄 翻转魔尺

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6241248B1 (en) * 1999-08-05 2001-06-05 Stephen J. Winter Interlocking solid puzzles with sliding movement control mechanisms
WO2003022379A1 (en) * 2001-09-07 2003-03-20 David Watkins Jigsaw puzzle
CN2512476Y (zh) * 2001-12-06 2002-09-25 蔡启发 魔方
CN202666370U (zh) * 2012-07-05 2013-01-16 浙江金马工艺品有限公司 一种人体姿态立方体串智力玩具
CN205759704U (zh) * 2016-06-02 2016-12-07 龚火亮 立方体多变机器人
CN206980048U (zh) * 2017-07-03 2018-02-09 蔡璇真 翻转魔方

Also Published As

Publication number Publication date
CN209392715U (zh) 2019-09-17
CN109745697A (zh) 2019-05-14

Similar Documents

Publication Publication Date Title
US4452454A (en) Manipulatable game
CN203989874U (zh) 一种易于造型的积木玩具
US4715605A (en) Two and three-dimensional number game or puzzle
US3608902A (en) Cube game
JP2008272484A (ja) 積み木装置
US7306225B2 (en) Octave magic cube
US3606333A (en) Three-dimensional board game apparatus
KR20180030598A (ko) 장난감 건설세트
RU2005138846A (ru) Кубическая логическая игрушка
US4526372A (en) Puzzle toy
WO2020113800A1 (zh) 翻转魔尺
WO2020155328A1 (zh) 魔方块
WO1990002591A1 (en) Token filled track and turntable
US4060247A (en) Geometric puzzle
CN209967685U (zh) 一种单孔轴连接万向魔尺
CN201216866Y (zh) 一种魔球
CN209967630U (zh) 一种带连接杆单向翻转魔尺
CN215538363U (zh) 一种磁力定位及磁力减速魔方棱块结构
CN217391558U (zh) 一种异型玩具魔方
RU195423U1 (ru) Куб-головоломка заерко
SU1618432A1 (ru) Объемна логическа головоломка
RU196812U1 (ru) Квадрат-головоломка заерко
CN213965164U (zh) 一种新型拼接积木组件及积木结构
CN217139170U (zh) 一种带磁力定位拼图的三阶魔方
CN212141433U (zh) 一种新型拼图

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 19894021

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 19894021

Country of ref document: EP

Kind code of ref document: A1