CN106390480A - Splicing type building block member - Google Patents

Splicing type building block member Download PDF

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Publication number
CN106390480A
CN106390480A CN201611119007.0A CN201611119007A CN106390480A CN 106390480 A CN106390480 A CN 106390480A CN 201611119007 A CN201611119007 A CN 201611119007A CN 106390480 A CN106390480 A CN 106390480A
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China
Prior art keywords
joint face
groove
big
structural unit
block structural
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CN201611119007.0A
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Chinese (zh)
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CN106390480B (en
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骆运章
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Individual
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Individual
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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
    • 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)

Abstract

The invention relates to a splicing type building block member, and belongs to the technical field of building block toys. The whole splicing type building block member is in a square shape, and is provided with an edge frame and a plurality of connecting surfaces, wherein two first large grooves and two bulges are arranged on a first connecting surface, and the two bulges are correspondingly matched with the two first large grooves; four second large grooves are arranged on a second connecting surface and are matched with the bulges, the two bulges are distributed on a diagonal line of the first connecting surface, the two first large grooves are distributed on the other diagonal line of the first connecting surface, and every two of four second large grooves are distributed on the second connecting surface in a diagonal line way; a first digging groove and a second digging groove are respectively distributed on the first connecting surface and the second connecting surface in a cross way. By adopting the design, the splicing type building block member has the advantage that the problem of adhesive shrinkage and deformation is solved.

Description

Spliced Block structural unit
Technical field
The present invention relates to toy, more particularly to a kind of spliced Block structural unit.
Background technology
In prior art, there are various spliced block toys, such as happy high building blocks etc., because the type building blocks are conducive to The manipulative ability of child and the culture of space imagining ability, and very popular.
Spliced Block structural unit of the prior art has as shown in figure 1, spliced Block structural unit 10 ' is cube structure, Wherein one joint face 11 ' is provided with two rounding square boss 12 ' and two square indentations 13 ', rounding square Raised 12 ' are diagonally crisscross arranged with square indentations 13 ', and remaining joint face is provided with four square indentations, on joint face 11 ' The foursquare projection of rounding be not only adapted with the square indentations 13 ' on joint face 11 ' and with remaining joint face on Square indentations are also adapted.The spliced Block structural unit of this kind of structure enables the bridging of various ways, and composite behaviour is good, makes Type enriches, and the degree of freedom of combination is high, and the effect of moulding is good.
But, the problem of contracting glue can be produced after having been found that above-mentioned Block structural unit compression moulding cooling in practice, lead to building blocks structure Part deforms.
Content of the invention
Based on this it is necessary to be directed to the problems referred to above, provide a kind of spliced Block structural unit, this Block structural unit passes through specific Design, will not produce the problem of contracting glue deformation.
A kind of spliced Block structural unit, generally square body, there is frame and multiple joint face, wherein one joint face definition For the first joint face, remaining joint face is defined as the second joint face;
Described first joint face is provided with two the first big grooves and two projections, two described raised described with two the One big groove can correspond to and be adapted, and described second joint face is provided with four the second big grooves being adapted with described projection, Described two projections are distributed on the one pair of which linea angulata on described first joint face, and described two first big grooves are distributed in institute State on the wherein another diagonal on the first joint face, on the second joint face that described four the second big grooves are located at it two-by-two It is distributed in diagonal;
Described first joint face is provided with the first grooving, and described first grooving is located at two described first big grooves and two Between described projection, in crossing distribution;
Described second joint face is provided with the second grooving, and described second grooving is located between four described second big grooves, In crossing distribution.
The present inventor finds in practical work, in routine techniquess Block structural unit produce contracting glue problem, be due in order to Make the square protruding on Block structural unit be capable of the bridging of various ways, then need to guarantee the distance between two square protrudings with The distance between frame meets certain condition, and the glue-line in the middle part of this Block structural unit so can be caused blocked up, and blocked up glue-line is just Easily produce contracting glue phenomenon.
Again through repeatedly groping and testing, the inventors discovered that, the first grooving and the second grooving can be set, by long-pending Grooving in the middle part of wooden component, to reduce the thickness of glue-line, thus avoid producing contracting glue phenomenon.
Wherein in an embodiment, this spliced Block structural unit also includes little groove, every four described little groove compositions One little groove group;
It is equipped with one group of little groove group, four described little grooves in this little groove group around each described first big groove It is uniformly arranged around this first big groove;
Each described second largest groove vicinity is equipped with one group of little groove group, four described little grooves in this little groove group It is uniformly arranged around this second big groove;
And/or
Each described raised surrounding is equipped with one group of little groove group, and the cincture of the described little groove of four in this little groove group should Projection is uniformly arranged.
By the setting of little groove, this spliced Block structural unit and less Block structural unit can be used cooperatively.
Wherein in an embodiment, four central point compositions of four described little grooves in every group of little groove group are square Four summits of shape, this foursquare length of side is defined as W6, and the distance with frame by close for this square frame It is defined as W7, then the relation between W6, W7 is W6: W7=2: 1.By above-mentioned setting so that this spliced Block structural unit with more When little Block structural unit uses cooperatively, still it is capable of the bridging of various ways.
Wherein in an embodiment, described projection is divided into connecting portion and extension, described connecting portion from base portion to top Can be with described first big groove or the second big groove tight fit, and the height of described connecting portion is not more than the first joint face edge and arrives The width of the frame portion that described first big groove is formed, the lateral surface that described extension is extended by described connecting portion is for being bordered by Face, 45 degree of the described angle=being bordered by between face and described first joint face.By above-mentioned control, just enable flexible and changeable Cross-over mode, such as when adjacent two or three, some summit groove grafting simultaneously two or three is raised, can protect Card be fitted close and two or three projections mutually non-interference, and realize multiple cross-over mode.
Wherein in an embodiment, the height of described extension is zero.That is to say that described projection only includes described connection Portion, makes this spliced building blocks have the advantages that succinct, attractive in appearance and simple production process.
Wherein in an embodiment, the cross sectional shape of described connecting portion and extension is square, and described first is recessed greatly The cross sectional shape of groove and the second big groove is square.The cross sectional shape of connecting portion and the second groove is set to square, energy The problem enough avoiding producing relative rotation when realizing bridging between building blocks.
Wherein in an embodiment, it is additionally provided with connecting frame and contacts muscle, described connecting frame and the described height contacting muscle Identical, located at described first joint face and described second joint face edge, described contact muscle is located at described first for described connecting frame Grooving and the second grooving edge;When described first joint face is connected with described second joint face, described connecting frame and/or described Contact muscle contacts with each other.Connecting frame and the setting contacting muscle can be passed through, reduce bondline thickness further, to avoid generation contracting glue to ask Topic.
Wherein in an embodiment, described projection is divided into connecting portion and extension, described connecting portion from base portion to top Can be with described first big groove or the second big groove tight fit, and the height of described connecting portion is not more than the first joint face edge and arrives The width of frame portion that described first big groove is formed and the height sum of described connecting frame, by described connection on described extension The lateral surface that portion extends is to be bordered by face, 45 degree of the described angle=being bordered by between face and described first joint face.Due to being provided with Connecting frame with contact muscle, therefore need to consider connecting frame and the height contacting muscle, the height of connecting portion can suitably be increased.
Wherein in an embodiment, by the distance between the center of a projection and its nearest outer side edges of frame corresponding It is defined as W1, the distance between another raised center and its nearest outer side edges of frame corresponding are defined as W2, above-mentioned two Raised center is defined as W3 with the difference of the distance of same frame respectively, then the relation between W1, W2, W3 is:W1: W2: W3=1 ∶1∶2.By above-mentioned setting so that this spliced Block structural unit is when being used in conjunction with each other, be capable of various ways across Connect.
Wherein in an embodiment, four centers of four described second big grooves that described second joint face is provided with Point forms foursquare four summits, and this foursquare length of side is defined as W4, and by this foursquare with frame away from From being defined as W5, then the relation between W4, W5 is W4: W5=2: 1.By above-mentioned setting so that this spliced Block structural unit exists When being used in conjunction with each other, it is capable of the bridging of various ways.
Compared with prior art, the invention has the advantages that:
A kind of spliced Block structural unit of the present invention, by the setting of the first grooving and the second grooving, has reached minimizing glue The thickness of layer, thus avoid producing the purpose of contracting glue phenomenon.
Further, also can pass through connecting frame and the setting contacting muscle, reduce bondline thickness further, to avoid producing contracting Glue problem.
And, this spliced Block structural unit also includes little groove, can be by this spliced Block structural unit and less building blocks Component uses cooperatively, then by little groove, carry out position, proportionate relationship restriction so that this spliced Block structural unit with more When little Block structural unit uses cooperatively, still it is capable of the bridging of various ways.
And, this spliced Block structural unit also by the cooperation between raised height and the width of frame and several The precise control of proportionate relationship etc. of centre distance between projection, when some summit adjacent two or three grooves simultaneously When grafting two or three is raised, can guarantee that tight fit and two or three projections are mutually non-interference, and realize multiple Cross-over mode.
Brief description
Fig. 1 is the structural representation of the spliced Block structural unit of routine in background technology;
Fig. 2 is the structural representation of the spliced Block structural unit of embodiment 1;
Fig. 3 is the top view of the spliced Block structural unit of embodiment 1;
Fig. 4 is the side view of the spliced Block structural unit of embodiment 1;
Fig. 5 is the schematic diagram () of the mutual connecting method of spliced Block structural unit of embodiment 1;
Fig. 6 is the schematic diagram (two) of the mutual connecting method of spliced Block structural unit of embodiment 1;
Fig. 7 is the schematic diagram (three) of the mutual connecting method of spliced Block structural unit of embodiment 1;
Fig. 8 is the schematic diagram (four) of the mutual connecting method of spliced Block structural unit of embodiment 1;
Fig. 9 is the schematic diagram (five) of the mutual connecting method of spliced Block structural unit of embodiment 1;
Figure 10 is the schematic diagram (six) of the mutual connecting method of spliced Block structural unit of embodiment 1;
Figure 11 is the schematic diagram (seven) of the mutual connecting method of spliced Block structural unit of embodiment 1;
Figure 12 is the schematic diagram (eight) of the mutual connecting method of spliced Block structural unit of embodiment 1;
Figure 13 is the schematic diagram (nine) of the mutual connecting method of spliced Block structural unit of embodiment 1;
Figure 14 is the schematic diagram (ten) of the mutual connecting method of spliced Block structural unit of embodiment 1;
Figure 15 is the schematic diagram (11) of the mutual connecting method of spliced Block structural unit of embodiment 1;
Figure 16 is the structural representation of the spliced Block structural unit of embodiment 2;
Figure 17 is the schematic diagram with the mutual connecting method of less Block structural unit for the spliced Block structural unit of embodiment 2 (1);
Figure 18 is the schematic diagram with the mutual connecting method of less Block structural unit for the spliced Block structural unit of embodiment 2 (2);
Figure 19 is the schematic diagram with the mutual connecting method of less Block structural unit for the spliced Block structural unit of embodiment 2 (3);
Figure 20 is the schematic diagram with the mutual connecting method of less Block structural unit for the spliced Block structural unit of embodiment 2 (4);
Figure 21 is the schematic diagram with the mutual connecting method of less Block structural unit for the spliced Block structural unit of embodiment 2 (5);
Figure 22 is the spliced Block structural unit structural representation of embodiment 3;
Figure 23 is the schematic diagram of the mutual connecting method of spliced Block structural unit of embodiment 3;
Figure 24 is the spliced Block structural unit structural representation of embodiment 4.
Wherein:100. frame;200. first joint faces;210. first big grooves;220. it is raised;221. connecting portion;222. Extension 230. first grooving;300. second joint faces;310. second big grooves;320. second groovings;400. little groove;500. Connecting frame;600. contact muscle;
Specific embodiment
For the ease of understanding the present invention, below with reference to relevant drawings, the present invention is described more fully.In accompanying drawing Give presently preferred embodiments of the present invention.But, the present invention can realize in many different forms however it is not limited to this paper institute The embodiment of description.On the contrary, providing the purpose of these embodiments to be to make the understanding to the disclosure more thorough Comprehensively.
Unless otherwise defined, all of technology used herein and scientific terminology and the technical field belonging to the present invention The implication that technical staff is generally understood that is identical.The term being used in the description of the invention herein is intended merely to description tool The purpose of the embodiment of body is it is not intended that in limiting the present invention.Term as used herein "and/or" includes one or more phases The arbitrary and all of combination of the Listed Items closing.
Embodiment 1
A kind of spliced Block structural unit, as shown in Fig. 2 generally square body, has frame 100 and multiple joint face, its In a joint face be defined as the first joint face 200, remaining joint face is defined as the second joint face 300.
Described first joint face 200 is provided with two the first big grooves 210 and two projections 220, two described raised 220 First big groove 210 described with two can corresponding be adapted, and described second joint face 300 is provided with four can be with described projection phase Second big groove 310 of adaptation, described two raised 220 are distributed on the one pair of which linea angulata on described first joint face 200, Described two first big grooves 210 are distributed on the wherein another diagonal on described first joint face 200, described four second It is in that diagonal is distributed two-by-two on the second joint face 300 that big groove 310 is located at it.
Described first joint face 200 is provided with the first grooving 230, described first grooving 230 be located at two described first big Between groove 210 and two described raised 220, in crossing distribution;
Described second joint face 300 is provided with the second grooving 320, and described second grooving 320 is described second largest positioned at four Between groove 310, in crossing distribution.
It should be understood that the effect that above-mentioned first grooving 230 and the second grooving 320 are played is to reduce bondline thickness, with Reach the purpose avoiding producing glue contracting phenomenon.Therefore, this first grooving 230 should be distributed in the thickness between the first big groove and projection At glue-line, and the second grooving 320 should be distributed at the thickening bondline between the second big groove 310, is in crossing distribution substantially, and Edge shape for this first grooving 230 and the second grooving 320 and length, width etc. are not all limited it is only necessary to can play Reduce the effect of bondline thickness.
And, in the present embodiment, as by between the center of a projection and the outer side edges of its nearest frame corresponding away from From being defined as W1, the distance between another raised center and its nearest outer side edges of frame corresponding are defined as W2, and above-mentioned two Individual raised center is defined as W3 with the difference of the distance of same frame respectively, then the relation between W1, W2, W3 is:W1∶W2∶W3 =1: 1: 2, as shown in Figure 3.
In the present embodiment, four central point compositions of four described second big grooves that described second joint face is provided with This foursquare length of side as shown in phantom in Figure 4, is such as defined as W4 by foursquare four summits, and by this foursquare one Side is W5 with the distance definition of frame, then the relation between W4, W5 is W4: W5=2: 1, as shown in Figure 4.
By above-mentioned setting so that this spliced Block structural unit, when being used in conjunction with each other, is capable of various ways Splicing and bridging, as shown in figs. 5-15.
In the present embodiment, as shown in Fig. 2 this spliced Block structural unit also includes little groove 400, every four described little recessed Groove 400 forms a little groove group.
It is equipped with one group of little groove group, four in this little groove group described little around each described first big groove 210 Groove 400 is uniformly arranged around this first big groove 210.
It is equipped with one group of little groove group, four in this little groove group described little around each described second big groove 310 Groove 400 is uniformly arranged around this second big groove 310.
Preferably, four central point compositions of four described little grooves 400 in above-mentioned every group of little groove group are foursquare Four summits, as shown in phantom in Figure 4, this foursquare length of side are defined as W6, and by this square near frame Distance definition with frame is W7, then the relation between W6, W7 is W6: W7=2: 1, as shown in Figure 4.
In the present embodiment, described raised 220 only include connecting portion 221, and described connecting portion 221 can be recessed greatly with described first Groove 210 or the second big groove 310 tight fit, as a rule, the height H of described connecting portion 221 is not more than the first joint face edge The width W of the frame portion being formed to described first big groove, as shown in Figure 3-4.
In order to reduce bondline thickness further, to avoid producing contracting glue problem.In the present embodiment, described Block structural unit is also It is provided with connecting frame 500 and contact muscle 600, as shown in Fig. 2 described connecting frame 500 is identical with the described height contacting muscle 600, institute State connecting frame 500 located at described first joint face 200 and described second joint face 300 edge, described contact muscle 600 is located at described First grooving 230 and the second grooving 320 edge;When described first joint face 200 is connected with described second joint face 300, institute State connecting frame 500 and/or described contact muscle 600 contacts with each other, carry out spacing.
And, due to being provided with connecting frame 500 and contacting muscle 600, therefore need to consider connecting frame 500 and contact muscle 600 Highly, the height of connecting portion 221 can suitably be increased.Height H as connecting portion 221 is not more than the first joint face edge to described the The width W of the frame portion that one big groove is formed and the height sum of described connecting frame.
In the present embodiment, the cross sectional shape of described connecting portion 221 is square, described first big groove 210 and second The cross sectional shape of big groove 310 is square.Section shape by connecting portion 221, the first big groove 210 and the second groove 310 Shape is set to square, it can be avoided that the problem producing relative rotation when realizing bridging between building blocks.
However, it is to be understood that, the shape of described connecting portion and the first big groove and the second big groove unrestricted it is only necessary to Can mutual close-fitting, reach the effect being connected.For example, the cross sectional shape of described connecting portion for circle or can have Article two, be mutually perpendicular to the symmetric figure of axis of symmetry, the cross sectional shape of described second groove be circular or have two be mutually perpendicular to right Claim symmetric figure of axle etc..
Embodiment 2
The spliced Block structural unit of the present embodiment is essentially identical with embodiment 1, and difference is:
As shown in figure 16, each described raised surrounding of this spliced Block structural unit is equipped with one group of little groove group, and this is little Four described little grooves in groove group are uniformly arranged around this projection.
By above-mentioned setting so that when this spliced Block structural unit and less Block structural unit use cooperatively, still can Realize the bridging of various ways, as shown in Figure 17-21.
Embodiment 3
The spliced Block structural unit of the present embodiment is essentially identical with embodiment 1, and difference is:
As shown in figure 22, described raised 220 are divided into connecting portion 221 and extension 222, described connecting portion from base portion to top Can be with described first big groove or the second big groove tight fit, and the height of described connecting portion is not more than the first joint face edge and arrives The width of the frame portion that described first big groove is formed, the lateral surface that described extension is extended by described connecting portion is for being bordered by Face, 45 degree of the described angle=being bordered by between face and described first joint face.
By above-mentioned control, just enable flexible and changeable cross-over mode, such as when some summit adjacent two or When three groove grafting simultaneously two or three are raised, can guarantee that tight fit and two or three projections are not mutually done Relate to, as shown in figure 23, and realize multiple cross-over mode.
Embodiment 4
The spliced Block structural unit of the present embodiment is essentially identical with embodiment 1, and difference is:
As shown in figure 24, described first joint face is not provided with connecting frame and contacts muscle.And, this spliced Block structural unit Each described raised around be equipped with one group of little groove group, four described little grooves in this little groove group are equal around this projection Even setting.
Each technical characteristic of embodiment described above can arbitrarily be combined, for making description succinct, not to above-mentioned reality The all possible combination of each technical characteristic applied in example is all described, as long as however, the combination of these technical characteristics is not deposited In contradiction, all it is considered to be the scope of this specification record.
Embodiment described above only have expressed the several embodiments of the present invention, and its description is more concrete and detailed, but simultaneously Can not therefore be construed as limiting the scope of the patent.It should be pointed out that coming for those of ordinary skill in the art Say, without departing from the inventive concept of the premise, some deformation can also be made and improve, these broadly fall into the protection of the present invention Scope.Therefore, the protection domain of patent of the present invention should be defined by claims.

Claims (10)

1. a kind of spliced Block structural unit, generally square body, has frame and multiple joint face, and wherein one joint face is defined as First joint face, remaining joint face is defined as the second joint face;It is characterized in that,
Described first joint face is provided with two the first big grooves and two projections, and two described projections are described with two first big Groove can correspond to and be adapted, and described second joint face is provided with four the second big grooves being adapted with described projection, described Two projections are distributed on the one pair of which linea angulata on described first joint face, and described two first big grooves are distributed in described On wherein another diagonal on one joint face, the second joint face that described four the second big grooves are located at it is in two-by-two right Linea angulata is distributed;
Described first joint face is provided with the first grooving, and described first grooving is located at described in two described first big grooves and two Between projection, in crossing distribution;
Described second joint face is provided with the second grooving, and described second grooving is located between four described second big grooves, in ten Font is distributed.
2., it is characterised in that also including little groove, every four described little for spliced Block structural unit according to claim 1 Groove forms a little groove group;
It is equipped with one group of little groove group, the described little groove cincture of four in this little groove group around each described first big groove This first big groove is uniformly arranged;
Each described second largest groove vicinity is equipped with one group of little groove group, the described little groove cincture of four in this little groove group This second big groove is uniformly arranged;
And/or
Each described raised surrounding is equipped with one group of little groove group, and four described little grooves in this little groove group are around this projection It is uniformly arranged.
3. spliced Block structural unit according to claim 2 is it is characterised in that four in every group of little groove group described little Four central points of groove form foursquare four summits, this foursquare length of side is defined as W6, and this square is leaned on Near side (ns) frame while being W7 with the distance definition of frame, then the relation between W6, W7 is W6: W7=2: 1.
4. spliced Block structural unit according to claim 1 is it is characterised in that described projection is divided into even from base portion to top Socket part and extension, described connecting portion can be with described first big groove or the second big groove tight fit, and the height of described connecting portion Degree is not more than the width of the frame portion that the first joint face edge is formed to described first big groove, by described company on described extension The lateral surface that socket part extends is to be bordered by face, 45 degree of the described angle=being bordered by between face and described first joint face.
5. spliced Block structural unit according to claim 4 is it is characterised in that the height of described extension is zero.
6. spliced Block structural unit according to claim 4 is it is characterised in that the section shape of described connecting portion and extension Shape is square, and the cross sectional shape of described first big groove and the second big groove is square.
7. spliced Block structural unit according to claim 1 is it is characterised in that being additionally provided with connecting frame and contacting muscle, described Connecting frame is identical with the described height contacting muscle, and described connecting frame is located at described first joint face and described second joint face side Edge, described contact muscle is located at described first grooving and the second grooving edge;When described first joint face and described second joint face During connection, described connecting frame and/or described contact muscle contact with each other.
8. spliced Block structural unit according to claim 7 is it is characterised in that described projection is divided into even from base portion to top Socket part and extension, described connecting portion can be with described first big groove or the second big groove tight fit, and the height of described connecting portion Degree be not more than the width of frame portion that formed to described first big groove of the first joint face edge and described connecting frame height it With, the lateral surface that described extension is extended by described connecting portion is to be bordered by face, described be bordered by face and described first joint face it Between 45 degree of angle=.
9. the spliced Block structural unit according to any one of claim 1-8 it is characterised in that by the center of a projection with right The distance between its nearest outer side edges of frame are answered to be defined as W1, another raised center is outer with its nearest frame corresponding The distance between side is defined as W2, and the raised center of above-mentioned two is defined as W3 with the difference of the distance of same frame, then respectively Relation between W1, W2, W3 is:W1: W2: W3=1: 1: 2.
10. the spliced Block structural unit according to any one of claim 1-8 is it is characterised in that on described second joint face Four central points of four described second big grooves being provided with form foursquare four summits, by this foursquare length of side definition For W4, and this foursquare distance definition with frame is W5, then the relation between W4, W5 is W4: W5=2: 1.
CN201611119007.0A 2016-12-07 2016-12-07 Spliced building block component Active CN106390480B (en)

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Publication number Priority date Publication date Assignee Title
CN106861211A (en) * 2017-03-15 2017-06-20 骆运章 Interpolation building blocks pedestal
CN108635886A (en) * 2018-04-28 2018-10-12 骆运章 Spliced abnormity track building blocks
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

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CN106861211A (en) * 2017-03-15 2017-06-20 骆运章 Interpolation building blocks pedestal
CN106861211B (en) * 2017-03-15 2023-12-01 骆运章 Building block base
CN108635886A (en) * 2018-04-28 2018-10-12 骆运章 Spliced abnormity track building blocks
CN108635886B (en) * 2018-04-28 2023-11-28 骆运章 Spliced special-shaped track building block
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

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