CN110327636B - Splicing building block assembly - Google Patents

Splicing building block assembly Download PDF

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Publication number
CN110327636B
CN110327636B CN201910659599.2A CN201910659599A CN110327636B CN 110327636 B CN110327636 B CN 110327636B CN 201910659599 A CN201910659599 A CN 201910659599A CN 110327636 B CN110327636 B CN 110327636B
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China
Prior art keywords
splicing
component
clamping
block assembly
splice
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CN110327636A (en
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骆运章
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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys
    • A63H33/04Building blocks, strips, or similar building parts
    • A63H33/06Building blocks, strips, or similar building parts to be assembled without the use of additional elements
    • A63H33/08Building blocks, strips, or similar building parts to be assembled without the use of additional elements provided with complementary holes, grooves, or protuberances, e.g. dovetails
    • A63H33/084Building blocks, strips, or similar building parts to be assembled without the use of additional elements provided with complementary holes, grooves, or protuberances, e.g. dovetails with grooves

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  • Joining Of Building Structures In Genera (AREA)
  • Toys (AREA)

Abstract

The invention relates to the field of splicing toys, in particular to a splicing building block assembly, wherein a splicing structure is arranged on a first splicing component and a second splicing component, clamping tongues and clamping grooves of the splicing structure are staggered and are surrounded to form a closed structure, so that the clamping tongues and the clamping grooves on the two splicing components are staggered, the clamping tongues of one splicing component can be embedded into the clamping grooves of the other splicing component, and two identical or different splicing components can be connected through the splicing structure, namely, the connection of the two first splicing components, the connection of the two second splicing components or the connection of the first splicing component and the second splicing component is realized, the limitation of the traditional connection structure of internal threads and external threads is broken, and the combination diversity of the splicing building block assembly is enriched.

Description

Splicing building block assembly
Technical Field
The invention relates to the field of spliced toys, in particular to a spliced building block assembly.
Background
The existing splicing toy has two splicing main bodies 6, wherein one splicing main body 6 is provided with an external thread 62, the other splicing main body 6 is provided with an internal thread 61, and the two splicing main bodies 6 are connected through threads, so that the two splicing main bodies form a structure similar to a sphere (combining with fig. 15), and the splicing main bodies 6 can be made of plastic materials with different colors. In general, one of the splice bodies 6 is further provided with a splice protrusion 63, and the other splice body 6 is provided with a splice groove, so that a plurality of splice toys can be connected end to end, that is, the splice protrusion 63 of one splice toy can be embedded into the splice groove of the other splice toy.
However, it is because the two splice bodies 6 of the splice toy are connected through the screw, so that the two splice bodies 6 must be provided with the internal screw 61 and the external screw 62, respectively, so that the splice bodies 6 can be spliced with each other, which is disadvantageous to the diversity of the combination of the splice toy, and a child can only connect the splice body 6 having the splice protrusion 63 with the splice body 6 having the splice groove, so that the playing method of the toy is too single.
Disclosure of Invention
In order to solve the above problems, the present invention is to provide a spliced building block assembly to solve the problems of lack of combination diversity and too single playing method caused by the influence of a connecting structure on the existing spliced toy.
Based on the above, the invention provides a splicing building block assembly, which comprises a first splicing component and a second splicing component, wherein splicing structures are arranged on the first splicing component and the second splicing component;
the splicing structure comprises one or more clamping tongues and one or more clamping grooves matched with the clamping tongues in shape, the two clamping tongues and the clamping grooves are arranged in a staggered manner, and the clamping tongues and the clamping grooves surround to form a closed structure; the clamping tongues on the first splicing and inserting part are detachably embedded in the clamping grooves on the second splicing and inserting part, and the clamping tongues on the second splicing and inserting part are detachably embedded in the clamping grooves on the first splicing and inserting part.
Preferably, the clamping tongue is provided with a clamping block protruding towards the outer side direction of the splicing structure, the inner side wall of the clamping groove is provided with a groove with an opening towards the inner side direction of the splicing structure, and the clamping block is embedded in the groove.
Preferably, the connection part between the inner side wall of the clamping groove and the inner side wall of the groove is in oblique angle or round angle transition.
Preferably, a guide surface is further arranged between the clamping block and the clamping tongue.
Preferably, the latch is further provided with a reinforcing rib protruding toward the inner side of the splicing structure.
Preferably, the first splicing component is provided with a splicing protrusion, the splicing protrusion is arranged opposite to the splicing structure on the first splicing component, the second splicing component is provided with a splicing concave cavity matched with the splicing protrusion in shape, and the splicing concave cavity is arranged opposite to the splicing structure on the second splicing component.
Preferably, the splicing protrusion comprises a splicing protruding head and a connecting piece, two ends of the connecting piece are respectively connected with the splicing protruding head and the first splicing component, and the maximum outer diameter of the splicing protruding head is larger than that of the connecting piece; and a circle of anti-falling protruding blocks are circumferentially arranged on the inner side wall of the opening of the splicing concave cavity, and the inner diameter of each anti-falling protruding block is smaller than the outer diameter of the splicing protruding head.
Preferably, the splicing protrusion further comprises a splicing boss, and the splicing boss is arranged between the first splicing component and the connecting piece.
Preferably, the first splicing component and/or the second splicing component are/is provided with a splicing hole, the clamping tongue and the clamping groove are arranged around the splicing hole, and the splicing protrusion can be inserted into the splicing hole.
Preferably, the first splicing component and/or the second splicing component are/is provided with a containing cavity, the containing cavity is provided with a containing opening communicated with the outside, and the clamping tongue and the clamping groove are positioned around the containing opening.
According to the splicing building block assembly, the first splicing component and the second splicing component are respectively provided with the splicing structure, the clamping tongues and the clamping grooves of the splicing structures are staggered and are surrounded to form a closed structure, so that the clamping tongues and the clamping grooves of the two splicing components are staggered, the clamping tongues of one splicing component can be embedded into the clamping grooves of the other splicing component, and therefore the two first splicing components are connected, the two second splicing components are connected or the first splicing component is connected with the second splicing component, the limitation of the traditional connecting structure of internal threads and external threads is broken, and the combination diversity of the splicing building block assembly is enriched.
Drawings
FIG. 1 is a schematic diagram of the external configuration of a building block assembly according to an embodiment of the present invention;
FIG. 2 is a schematic elevational view of a cross-sectional structure of a splice block assembly according to an embodiment of the present invention;
FIG. 3 is a schematic elevation view of a partial cross-sectional structure of a splice block assembly according to an embodiment of the present invention;
FIG. 4 is a schematic side view of a cross-sectional structure of a splice block assembly of an embodiment of the present invention;
FIG. 5 is a schematic side view of a partial cross-sectional structure of a splice block assembly of an embodiment of the present invention;
FIG. 6 is a schematic cross-sectional view of a slot of a building block assembly according to an embodiment of the present invention;
FIG. 7 is a schematic illustration of a splice construction of a splice block assembly according to an embodiment of the present invention;
FIG. 8 is a schematic view of a splice projection of a splice block assembly according to an embodiment of the present invention;
FIG. 9 is a schematic view of a splice cavity of a splice block assembly according to an embodiment of the present invention;
FIG. 10 is a schematic view of a structure in which two first plug-in components are connected in an embodiment of the present invention;
FIG. 11 is a schematic view of a structure in which two second splice components are connected in an embodiment of the present invention;
FIG. 12 is a schematic view of a splice projection of a first splice component coupled to a splice cavity of a second splice component in accordance with an embodiment of the present invention;
FIG. 13 is a schematic view of a structure in which a splice protrusion of a first splice component is connected to a splice hole of a second splice component in accordance with an embodiment of the present invention;
FIG. 14 is a schematic diagram of a first splice component with other splice blocks according to an embodiment of the present invention;
fig. 15 is a schematic view of a conventional toy splice.
1, A first splicing component; 11. splicing bulges; 111. splicing the raised heads; 112. a connecting piece; 113. splicing the bosses; 2. a second splice component; 21. splicing the concave cavities; 211. an anti-falling bump; 212. a guide conical surface; 3. a splicing structure; 31. a clamping tongue; 311. a clamping block; 312. a guide surface; 313. reinforcing ribs; 32. a clamping groove; 321. a groove; 4. a splice hole; 5. a receiving chamber; 51. a receiving opening; 6. a splicing main body; 61. an internal thread; 62. an external thread; 63. and splicing the convex blocks.
Detailed Description
The following describes in further detail the embodiments of the present invention with reference to the drawings and examples. The following examples are illustrative of the invention and are not intended to limit the scope of the invention.
It should be understood that the terms "first," "second," and the like are used herein to describe various information, but such information should not be limited to these terms, which are used merely to distinguish one type of information from another. For example, a "first" message may also be referred to as a "second" message, and similarly, a "second" message may also be referred to as a "first" message, without departing from the scope of the invention.
Referring to fig. 1 to 14, the spliced building block assembly of the present invention is schematically shown and comprises a first spliced component 1 and a second spliced component 2, and it should be noted that the structure (including the external structure and the internal structure) of the first spliced component 1 may be different from the structure (including the external structure and the internal structure) of the second spliced component 2, or the structure of the first spliced component 1 may be the same as the structure of the second spliced component 2. As shown in fig. 2 and 4, the first splicing component 1 and the second splicing component 2 are respectively provided with splicing structures 3, that is, the splicing structures 3 on the first splicing component 1 are identical to the splicing structures 3 on the second splicing component 2.
As shown in fig. 2 to 5, the jigsaw structure 3 includes a plurality of tongues 31 and a plurality of grooves 32 matching the shape of the tongues 31, and the tongues 31 and the grooves 32 on each jigsaw structure 3 are staggered, the tongues 31 and the grooves 32 on each jigsaw structure 3 surround to form a closed structure, specifically, the first jigsaw component 1 and the second jigsaw component 2 are both in a revolving structure, the tongues 31 and the grooves 32 on the first jigsaw component 1 are arranged around the axis of the first jigsaw component 1, and the tongues 31 and the grooves 32 on the second jigsaw component 2 are arranged around the axis of the second jigsaw component 2. The number of the clamping tongues 31 in each splicing structure 3 is preferably two, the number of the clamping grooves 32 is preferably two, the two clamping tongues 31 are oppositely arranged and are respectively positioned at two sides of the axis of the splicing component where the clamping tongues 31 are positioned, and the two clamping grooves 32 are oppositely arranged and are respectively positioned at two sides of the axis of the splicing component where the clamping tongues 32 are positioned.
The splicing structure 3 enables the same splicing component or different splicing components to be connected, namely, the two first splicing components 1 are connected, the two second splicing components 2 are connected or the first splicing components 1 are connected with the second splicing components 2. The method comprises the following steps: 1. when the two first splicing and inserting parts 1 are connected (as shown in fig. 10), the clamping tongue 31 of one first splicing and inserting part 1 is detachably embedded in the clamping groove 32 of the other first splicing and inserting part 1; 2. when two second splicing and inserting parts 2 are connected (as shown in fig. 11), the clamping tongue 31 of one second splicing and inserting part 2 is detachably embedded in the clamping groove 32 of the other second splicing and inserting part 2; 3. when the first splicing and inserting part 1 is connected with the second splicing and inserting part 2 (as shown in fig. 1), the clamping tongue 31 on the first splicing and inserting part 1 is detachably embedded in the clamping groove 32 on the second splicing and inserting part 2, and the clamping tongue 31 on the second splicing and inserting part 2 is detachably embedded in the clamping groove 32 on the first splicing and inserting part 1. The splicing structure 3 breaks the limitation of the connecting structure of the traditional internal thread 61 and the external thread 62 (fig. 14 is a schematic structure diagram of the existing splicing toy), and enriches the combination diversity of the splicing building block component. Moreover, even if the old child cannot separate the traditional internal thread 61 and the external thread 62, the spliced structure 3 of the spliced building block assembly can be quickly understood, and the entrance threshold of the spliced building block assembly is reduced.
The first splicing component 1 and/or the second splicing component 2 are/is provided with a containing cavity 5, in this embodiment, the first splicing component 1 and the second splicing component 2 are respectively provided with a containing cavity 5, the containing cavity 5 is provided with a containing opening 51 communicated with the outside, and the plurality of clamping tongues 31 and the plurality of clamping grooves 32 are positioned around the containing opening 51. As shown in fig. 6 and 7, the locking tongue 31 is provided with a locking block 311 protruding towards the radial outer side of the splicing component, the inner side wall of the locking groove 32 is provided with a groove 321 with an opening towards the radial inner side of the splicing component, the locking block 311 is detachably embedded in the groove 321, and the locking block 311 and the groove 321 can prevent the two connected splicing components from being separated accidentally. Further, the connection between the inner side wall of the clamping groove 32 and the inner side wall of the groove 321 is in a bevel or rounded transition, which enables a child to apply force to separate the clamping block 311 from the groove 321. Correspondingly, a guiding surface 312 is further arranged between the clamping block 311 and the clamping tongue 31, and the guiding surface 312 is beneficial to embedding the clamping tongue 31 into the clamping groove 32. When the first splicing component 1 or the second splicing component 2 is produced, the groove 321 can cause uneven stress and deformation of the accommodating opening 51 of the accommodating cavity 5, the clamping tongue 31 is further provided with the reinforcing ribs 313 protruding towards the inner side direction of the splicing structure 3, the reinforcing ribs 313 can enable uniform stress when the die is pulled out, product deformation amount and errors are reduced, and particularly the reinforcing ribs 313 are arranged along the circumferential direction of the splicing component.
As shown in fig. 8 and 9, the first splicing component 1 is provided with splicing protrusions 11, and the splicing protrusions 11 are arranged opposite to the splicing structure 3 on the first splicing component 1; correspondingly, the second splicing component 2 is provided with a splicing concave cavity 21 matched with the splicing protrusion 11 in shape, the splicing concave cavity 21 and the splicing structure 3 on the second splicing component 2 are arranged in a back-to-back mode, as shown in fig. 12, and the splicing protrusion 11 can be detachably embedded in the splicing concave cavity 21. Specifically, the splicing protrusion 11 includes a splicing protrusion 111 and a connecting piece 112, both ends of the connecting piece 112 are respectively connected to the splicing protrusion 111 and the first splicing component 1, the outer diameter of the splicing protrusion 111 is larger than that of the connecting piece 112, the splicing protrusion 111 is in a sphere structure, and the connecting piece 112 is in a cylinder structure. A circle of anti-falling protruding blocks 211 are circumferentially arranged on the inner side wall of the opening of the splicing concave cavity 21, the inner diameter of each anti-falling protruding block 211 is smaller than the outer diameter of each splicing convex head 111, and when each splicing convex head 111 is embedded into the splicing concave cavity 21, each anti-falling protruding block 211 can prevent each splicing convex head 111 from being separated from the corresponding splicing concave cavity 21. A circle of guiding conical surface 212 is further arranged between the anti-falling bump 211 and the opening of the splicing concave cavity 21, and the guiding conical surface 212 can be used for giving way for the connecting piece 112, so that the splicing protrusion 11 can swing relative to the splicing concave cavity 21.
In order to splice the first splicing component 1 with other splicing blocks (as shown in fig. 14), the splicing protrusion 11 further includes a splicing boss 113, the splicing boss 113 is disposed between the first splicing component 1 and the connecting piece 112, the splicing boss 113 is approximately in a cuboid structure, and each corner of the splicing boss is a rounded corner.
As shown in fig. 2 and fig. 4, the first splicing component 1 and/or the second splicing component 2 are provided with a splicing hole 4, the splicing hole 4 is located in the accommodating cavity 5, a plurality of clamping tongues 31 and a plurality of clamping grooves 32 are arranged around the splicing hole 4, and the splicing protrusion 11 can extend into the accommodating groove and be inserted into the splicing hole 4 (as shown in fig. 13).
In summary, according to the splicing building block assembly disclosed by the invention, the splicing structures 3 are arranged on the first splicing component 1 and the second splicing component 2, the clamping tongues 31 and the clamping grooves 32 of the splicing structures 3 are staggered and are surrounded to form a closed structure, so that the clamping tongues 31 and the clamping grooves 32 on the two splicing components are staggered, and the clamping tongues 31 of one splicing component can be embedded into the clamping grooves 32 of the other splicing component, thus the connection of the two first splicing components 1, the connection of the two second splicing components 2 and the connection of the first splicing component 1 and the second splicing component 2 can be realized, the limitation of the connection structure of the traditional internal threads 61 and the external threads 62 is broken, and the combination diversity of the splicing building block assembly is enriched.
The foregoing is merely a preferred embodiment of the present invention, and it should be noted that modifications and substitutions can be made by those skilled in the art without departing from the technical principles of the present invention, and these modifications and substitutions should also be considered as being within the scope of the present invention.

Claims (9)

1. The splicing building block assembly is characterized by comprising a first splicing component and a second splicing component, wherein splicing structures are arranged on the first splicing component and the second splicing component;
the splicing structure comprises one or more clamping tongues and one or more clamping grooves matched with the clamping tongues in shape, the two clamping tongues and the clamping grooves are arranged in a staggered manner, and the clamping tongues and the clamping grooves surround to form a closed structure; the clamping tongue on the first splicing and inserting component is detachably embedded in the clamping groove on the second splicing and inserting component, and the clamping tongue on the second splicing and inserting component is detachably embedded in the clamping groove on the first splicing and inserting component;
The first splicing component is provided with a splicing bulge, the splicing bulge is arranged opposite to the splicing structure on the first splicing component, the second splicing component is provided with a splicing concave cavity matched with the splicing bulge in shape, and the splicing concave cavity is arranged opposite to the splicing structure on the second splicing component;
The first splicing component and/or the second splicing component are/is provided with a containing cavity, and are/is provided with splicing holes, the splicing holes are located in the containing cavity, and the splicing protrusions can be inserted into the splicing holes.
2. The spliced building block assembly according to claim 1, wherein the clamping tongue is provided with a clamping block protruding towards the outer side direction of the spliced structure, the inner side wall of the clamping groove is provided with a groove with an opening arranged towards the inner side direction of the spliced structure, and the clamping block is embedded in the groove.
3. The spliced building block assembly of claim 2, wherein the connection of the inner side wall of the clamping groove and the inner side wall of the groove is in oblique angle or rounded angle transition.
4. The building block assembly according to claim 2, wherein a guiding surface is further provided between the clamping block and the clamping tongue.
5. The building block assembly according to claim 2, wherein the clamping tongue is further provided with a reinforcing rib protruding towards the inner side of the splicing structure.
6. The splicing block assembly of claim 1, wherein the splicing protrusion comprises a splicing protrusion and a connecting piece, two ends of the connecting piece are respectively connected to the splicing protrusion and the first splicing component, and a maximum outer diameter of the splicing protrusion is larger than a maximum outer diameter of the connecting piece; and a circle of anti-falling protruding blocks are circumferentially arranged on the inner side wall of the opening of the splicing concave cavity, and the inner diameter of each anti-falling protruding block is smaller than the outer diameter of the splicing protruding head.
7. The splice block assembly of claim 6 wherein the splice projection further comprises a splice boss disposed between the first splice component and the connector.
8. The splice block assembly of claim 1 wherein the tabs and the slots are disposed around the splice opening.
9. The spliced building block assembly of claim 1, wherein the accommodating cavity is provided with an accommodating opening communicated with the outside, and the clamping tongue and the clamping groove are positioned around the accommodating opening.
CN201910659599.2A 2019-07-19 2019-07-19 Splicing building block assembly Active CN110327636B (en)

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CN110327636B true CN110327636B (en) 2024-08-06

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Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113018883A (en) * 2020-03-16 2021-06-25 太仓市哲泰天产品设计有限公司 Spherical building block
CN219492780U (en) * 2021-07-01 2023-08-08 邱子游 Splice structural member

Citations (2)

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CN203108213U (en) * 2013-01-29 2013-08-07 王赟 Toy building block connecting piece
CN210904968U (en) * 2019-07-19 2020-07-03 骆运章 Splicing building block assembly

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CN201030239Y (en) * 2007-02-12 2008-03-05 刘付忠 Building block component and block toy
CN202951255U (en) * 2012-12-21 2013-05-29 黄华东 Novel building block capable of rotating and changing
CN203525322U (en) * 2013-11-20 2014-04-09 云和县和协工艺厂 Novel connecting structure for toys
CN204865003U (en) * 2015-07-21 2015-12-16 浙江巧之木玩具股份有限公司 Castle theme building blocks toy
CN105617685A (en) * 2016-01-08 2016-06-01 陈腾 Luminous building block set
CN107224727B (en) * 2016-03-24 2023-12-01 深圳市优必选科技有限公司 Toy building element
CN205988570U (en) * 2016-05-23 2017-03-01 黄鹂 The splicing building blocks of single component
CN207286689U (en) * 2017-10-17 2018-05-01 骆运章 A kind of interlocking building blocks bottom plate
CN109550264A (en) * 2019-01-04 2019-04-02 骆运章 A kind of connection structure for Puzzle provided with elements movable in relation to each other

Patent Citations (2)

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Publication number Priority date Publication date Assignee Title
CN203108213U (en) * 2013-01-29 2013-08-07 王赟 Toy building block connecting piece
CN210904968U (en) * 2019-07-19 2020-07-03 骆运章 Splicing building block assembly

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