CN209500791U - The part of three-dimensional machinery model connects system - Google Patents
The part of three-dimensional machinery model connects system Download PDFInfo
- Publication number
- CN209500791U CN209500791U CN201790000806.8U CN201790000806U CN209500791U CN 209500791 U CN209500791 U CN 209500791U CN 201790000806 U CN201790000806 U CN 201790000806U CN 209500791 U CN209500791 U CN 209500791U
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- CN
- China
- Prior art keywords
- lath
- supporting element
- fore shaft
- shaft slot
- union piece
- Prior art date
- Legal status (The legal status 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 status listed.)
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Classifications
-
- A—HUMAN NECESSITIES
- A63—SPORTS; GAMES; AMUSEMENTS
- A63H—TOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
- A63H33/00—Other toys
- A63H33/04—Building blocks, strips, or similar building parts
- A63H33/10—Building blocks, strips, or similar building parts to be assembled by means of additional non-adhesive elements
- A63H33/101—Building blocks, strips, or similar building parts to be assembled by means of additional non-adhesive elements with clip or snap mechanism
-
- A—HUMAN NECESSITIES
- A63—SPORTS; GAMES; AMUSEMENTS
- A63H—TOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
- A63H33/00—Other toys
- A63H33/04—Building blocks, strips, or similar building parts
- A63H33/042—Mechanical, electrical, optical, pneumatic or hydraulic arrangements; Motors
-
- A—HUMAN NECESSITIES
- A63—SPORTS; GAMES; AMUSEMENTS
- A63H—TOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
- A63H33/00—Other toys
Landscapes
- Toys (AREA)
Abstract
The utility model relates to a kind of parts of three-dimensional machinery model to connect system.System is at least made of two flat parts (1,2) to be connected and a set of connector, and the set connector includes a lath (3) and a supporting element (4), and there is lateral fore shaft slot (9) at the both ends on one surface of lath.Meanwhile lath (3) and supporting element (4) respectively have a rectangular cross section.It is equipped with perforation (8) to union piece (1,2), the shapes and sizes of the perforation and the cross-sectional shape and size of fore shaft slot (9) and supporting element (4) opposed end are identical.When assembling the part, lath (3) can play the role of mutually supporting and can realize under the action of mutual support relatively fixed with supporting element (4).By the fixed function of connector, the reliability that part connects can be improved with system described when assembling model again in assembly for the first time.
Description
Technical field
The utility model relates to the companies of retaining element and movable members in structure external member, especially three-dimensional machinery model external member
Welding system can be used in the production of complete articles for children, chess and souvenir.
Background technique
The part of common three-dimensional machinery model connects system (patent No. UA № 104751, international Patent classificating number
A63H33/00, publication date: on November 27th, 2015), at least it is made of two flat parts to be connected and a set of connector.Institute
Stating is preferentially coaxial wheels and/or in-line gears for assembling activity component to union piece, and fixed configuration part and/or
Skeleton part.The connector set is at least made of an extension element and an aciculiform fixing piece, and the extension element is one
The cross section of opposite sides is in the lath of rectangle, and the circular in cross-section of the fixing piece, both ends are pointed.It is described wait connect zero
At least one diameter of part circular hole identical with the diameter of fixing piece and at least one size and extension element end cross-sectional size
Identical rectangular opening or the outer recess of rectangle.There can be shape non-closed grooving identical with the hole around the hole.
The connection method of each part of three-dimensional machinery model are as follows: the corresponding end of each extension element is sequentially inserted on the part
Then rectangular opening is fixed the extension element assembled by the fixing piece of insertion round hole.Fixing piece is used as fixing axle simultaneously,
Movable component is fixed on fixed configuration part and/or skeleton part.After the assembly is completed, fixing piece is stretched out to union piece
The both ends in outside fracture.It is made to union piece and extension element of laminate, fixing axle is using the lower timber production of hardness, packet
It includes and is made using toothpick.
The shortcomings that ubiquitous system, has:
Connection reliability is low, and reason is in model use process, is located in movable component in union piece hole
Fixing piece end be easy to happen distortion, thus disablement;
Model disassembly is inconvenient, and reason fractures the both ends of fixing piece when assembling before being, therefore is difficult to consolidate
Determine part to take out from the hole to union piece;
Cost is relatively too high, and new connector set must be bought when reason is to ressemble every time;
The being completely embedded property that air themperature and humidity treat union piece hole inner fixing member both ends influences very big.
The disadvantage greatly limits the use scope of ubiquitous system.
There are also a kind of part connection system of common three-dimensional machinery model (2016076816 А 1 of international application no W О,
International Patent classificating number A63H 33/12, publication date: on March 16th, 2015), at least by two flat parts to be connected and a set of
Connector composition.It is preferentially used on model activity component to union piece, is with a wheel hub and/or several spokes coaxial
Wheel and/or in-line gears, and the join domain to union piece is equipped with multiple perforation.Connector set is at least by two
Lath and a supporting element composition, there is lateral fore shaft slot at the both ends on one surface of lath;The supporting element is a cross
Section is rounded, both ends are pointed axis.The circular hole having to union piece center for placing axis respective end, wheel hub or spoke
There is the rectangular opening for placement plate fore shaft slot respective end on item.Rectangular opening is relative to corresponding round hole radially symmetrical cloth
It sets, the size of the rectangular opening is identical as the size of lath fore shaft slot.Lateral fore shaft slot both sides can set rib, can not also set gear
Side.The length of lath opposite sides fore shaft slot is consistent with the thickness to union piece and quantity.
In lath back to having one or two rectangular flanges among the surface of fore shaft slot, mutually supported with realizing with axis.Dress
With diameter gap identical with the diameter of axle when union piece, is formed between the flange of lath, the axis insertion is justified
Supporting role is generated to lath by flange behind shape hole, with the phase for ensuring each surface of fore shaft slot with being open to hole each on union piece
Surface is answered to be bonded.Meanwhile the rib of fore shaft groove edge clamps the surface to union piece from hole opening two sides.At this time wait connect
The identical gap with rib height is formed among part in the hole opening of side.Longitudinal slot can be opened along fore shaft slot in end
Slot connects compactness to reduce gap with part is improved.It is made to union piece and lath of laminate, fixing axle uses hardness
Lower timber production, including toothpick is used to make.
Compared with common technical solution, uses the lath with fore shaft slot that can properly increase part as connector and connect
The reliability connect can also improve the convenience of model disassembly and assembly.
The shortcomings that ubiquitous system, has:
Use scope is limited, and reason is that fixing piece is mainly used for connecting the part of movable component, and by described
Limitation in the between centers size of component, component to the quantity of union piece, it is described to must assure that the smaller axis of diameter to union piece
Intensity and elasticity;
The reliability of part connection is insufficient, and reason is there is the sky that can not be compensated in the opening of rectangular opening after assembling
Gap, when model is rotated and/or moved in use, the elasticity of axis rapidly depletes and reduces the supporting role of axis,
It falls off from hole so as to cause end;
The service life of axis is insufficient, and reason is that the axis is used for both supporting element and connection movable component and fixation kit
With axis, axis is needed to change when causing to ressemble every time;
After union piece assembles, air themperature and humidity are very big to the elasticity effect of axis.
There are also part connection system (patent No. UA № 108449, the international monopolies point of a kind of common three-dimensional machinery model
Class-mark A63H 33/00, A63F 9/12, publication date: on March 28th, 2016), at least by two flat parts to be connected and a set of
Connector composition.It is preferentially for the coaxial wheels and/or in-line gears of movable component and the fixed configuration of model to union piece
Part and/or skeleton part, and the bonding pad to union piece is equipped with multiple perforation.Connector set is by a lath
It is formed with a supporting element, there is lateral fore shaft slot at the both ends on one surface of lath;The cross section of the supporting element is in square
Shape.The respective end of supporting element and lath fore shaft slot can be accommodated to the hole on union piece.Lath and supporting element pass through a diameter
It can play the role of mutually supporting to flange, the radial flange is located on lath back to the surface of fore shaft slot, or is located at branch
The respective surfaces of support member.Meanwhile the height of the radial flange is able to satisfy the branch guaranteed between the lath and the supporting surface
The condition of support effect.The center of movable component connector is again provided with round hole, for passing through the fixed configuration zero of axis and model
Part and/or skeleton part assembly.Solid plate, such as moisture-proof glued board or plastics system are used to union piece and connector
Make.
Compared with common system, due to increasing the supporting force between lath and supporting element, and energy when assembling
Avoid forming gap in the opening to connection component rectangular opening, the structure of the connector can greatly improve part connection can
By property.Meanwhile improve supporting element rigidly can according to the length of lath increase supporting element length, then can not only increase to
The quantity of union piece, can also guarantee needed for supporting force under the premise of change in a big way to union piece it
Between distance, the specification quantity of three-dimensional machinery model can be significantly increased in this way, the corresponding use scope for expanding system.
The shortcomings that ubiquitous system is since the surface of radial flange on lath is gradually worn, between the lath and supporting element
Supporting role accordingly reduce, when repeatedly using connector set, connection reliability is declined.
Utility model content
The purpose of this utility model is that substantially being mentioned by using another in repeated multiple times assembly or disassembly Shi Junke
The connector of high part connection reliability, the part for improving three-dimensional machinery model connect system.
Realize that the technological achievement of assigned tasks is to ensure that fixedly connected part when mutually supporting between connector.
In order to realize the purpose of this utility model, the part for particularly relating to a kind of three-dimensional machinery model connects system,
Part connection system is at least made of two flat parts to be connected and a set of connector, which includes a plate
There is lateral fore shaft slot at the both ends of item, one surface of lath;With a supporting element;Lath and supporting element respectively have one simultaneously
Rectangular cross section is equipped with perforation, the shapes and sizes of the perforation and fore shaft slot and supporting element reverse side end to union piece
The shapes and sizes of cross section are identical, and when assembling the part, lath and supporting element can play the role of mutually supporting;This reality
It can be realized under the action of mutual support with the supporting element of novel offer and lath relatively fixed.
Lath and supporting element can play the role of mutually supporting by a radial flange, and the radial flange is located at lath
On back to the surface of fore shaft slot.
Transverse concave groove that the lath and supporting element are located on lath among radial flange by one and one are located at institute
Stating the interactive surfaces of supporting element, shape lateral flange corresponding with the transverse concave groove can be real under the action of mutual support
It is existing relatively fixed.
Transverse concave groove on lath among the flange and the interactive surfaces positioned at the supporting element, shape with it is described
The corresponding lateral flange of transverse concave groove is triangular in shape in the plane.
The part connection system of improved three-dimensional machinery model can guarantee the technological achievement for realizing statement.
Detailed description of the invention
Below with reference to the three-dimensional machinery model activity component in city double-decker bus compartment and the connection embodiment of fixation kit
The essence of the utility model is described further.
Component system is as shown, Fig. 1 is the movable component outline drawing formed by two to union piece;Fig. 2 is by two
A movable component assembly outline drawing to union piece composition;Fig. 3 is lath and supporting piece structure figure (embodiment 1);Fig. 4 is plate
Item and supporting piece structure figure (embodiment 2);Fig. 5 is lath and supporting piece structure figure (embodiment 3);Fig. 6 is by three wait connect
The movable component outline drawing of part composition;Fig. 7 is the movable component assembly outline drawing formed by three to union piece;Fig. 8 is
The movable component outline drawing formed by four to union piece;Fig. 9 is the movable component assembly formed by four to union piece
Outline drawing;Figure 10 is movable component and fixation kit assembly outline drawing;Figure 11 is movable component and fixation kit assembly outline drawing
(top view).
Specific embodiment
Embodiment 1.By two movable components formed to union piece (Fig. 1, Fig. 2).
Movable component is made of two flat parts 1 and 2 to be connected and three sets of connectors, the flat part be diameter not
Same gear, every set connector includes a lath 3 and a supporting element 4.5 He of wheel hub is equipped with to union piece 1 and 2
Spoke 6.In the centre to union piece 1 and 2, wheel hub 5 is equipped with circular perforations 7, and rectangular through-holes 8 are equipped on spoke 6.Lath
The end on 3 one surfaces is equipped with lateral fore shaft slot 9, and fore shaft slot two sides have rib 10 (Fig. 3~5).3 back side of lath is equipped with diameter
To flange 11, the radial flange with the supporting element 4 with rectangular cross section for connecting.Select the height of 3 upper flange 11 of lath
It should ensure that lath and supporting element 4 mutually support when spending, " tension " effect formed with the open interior in the hole 8 on to union piece 1 and 2
It answers.It is equipped with plane transverse concave groove 12 triangular in shape at 11 center of flange, there is a plane on the acting surface of supporting element 4
In the lateral flange 13 (Fig. 3~5) of corresponding triangle.Assembly is to union piece 1 in the maximum situation of mutual supporting force
When with 2, the flange 13 on groove 12 and supporting element 4 on lath 3 can be such that the lath reaches with the supporting element to be fixed to each other.
Supporting element 4 can be from the outside insertion perforation 8 to union piece 1 and 2.Limit rib 14 is equipped in one end of supporting element 4.To even
The shapes and sizes with 4 corresponding end of cross section and supporting element of fore shaft slot 9 on lath 3 of perforation 8 is transversal on pipe fitting 1 and 2
The shapes and sizes in face are identical, form gap after can avoid assembly.Meanwhile the rib 10 on lath 3 is from the two sides that perforation 8 is open
The surface to union piece 1 and 2 is clamped, can be rotated in component or prevents the part from disengaging when mobile, model can be greatly improved
The reliability of junction in use process.
According to the size and purposes of connector, grooving (Fig. 8, Fig. 9) can not be opened above the flange 11 of lath 3, it can also be with
Open linear grooving 15 (Fig. 1~4, Fig. 6, Fig. 7) or curved shape grooving 15 (Fig. 5).When lath 3 and supporting element 4 mutually support
When with fixing, the elasticity of material in 11 region of flange is can be improved in grooving 15, correspondingly can be in assembly or disassembly component
When reduce stress and reduce the surface abrasion of 3 upper flange 11 of lath.
According to the length for determining lath 3 and supporting element 4 to the set distance between union piece 1 and 2, according to wait connect zero
The thickness and quantity of part determine the length of fore shaft slot 9 between rib 10 on lath 3.In the embodiment studied, lath 3 is locked
The length of mouth slot 9 is equal to the thickness of respective gears 1 and 2.It, can be in the centre of the lath 3 of the part for connecting driving device
One is cut for winding the skewed slot 16 (Fig. 1~7) of India rubber band.In addition, according to the coordinate to hole 8 on union piece, lath 3
Upper each fore shaft slot 9 can be located at sustained height (Fig. 5) or different height (Fig. 1~4, Fig. 6~9).For connecting configuration part
And/or the shape of 4 outer surface of lath 3 and supporting element of skeleton part can be different, can be arc or angular, Huo Zhete
Shape or other shapes.
Embodiment 2.The movable component (Fig. 6, Fig. 7) formed by three and three or more to union piece.
There are three the movable components to union piece to be made of gear 1,2,17 and three sets of connectors, every set connection
Part includes a lath 3 and a supporting element 4.Gear 1 is relatively large in diameter, and the diameter of gear 2 and 17 is smaller and diameter is identical.To
The structure of union piece 1,2,17 and connector is similar to Example 1.Difference is that the length of each fore shaft slot 9 on lath 3 is different,
The length of side fore shaft slot is identical as the thickness to connector 1, and the length of other side fore shaft slot is equal to union piece 2 and 17
The sum of thickness.
There are four the movable components to union piece to be made of gear 1,2,17,18 and three sets of connectors, every set
Connector includes a lath 3 and a supporting element 4 (Fig. 8, Fig. 9).Gear 1 and 18 is identical and is relatively large in diameter, gear 2
Identical and diameter is smaller with 17.Structure to union piece 1,2,17,18 and connector is similar to Example 1.Difference exists
Longer in the length of fore shaft slot 9 each on lath 3, the length of side fore shaft slot is equal to the sum of the thickness to connector 1 and 18, another
The length of side chain mouth slot is equal to the sum of the thickness to union piece 2 and 17.
Embodiment 3.The fixation kit and movable component (Figure 10, Figure 11) of city double-decker bus compartment model.
Fixation kit includes two configuration flat parts 19 and 20, the part simulation railroad car lateral wall and a few set connectors,
The lath 3 of every set connector is equipped with fore shaft slot 9 and radial flange 11, the cross for having plane triangular in shape among the flange
To groove 12, and supporting element 4 is equipped with the lateral flange 13 that plane is in corresponding triangle.Configuration part 19 and 20 is equipped with circular hole
It (is not indicated) with rectangular opening, is respectively used to place the corresponding end of axis 21 and connector.Lath 3 and 4 surface of supporting element are arc-shaped, mould
Quasi- bus roof inclined-plane, lath 3 and supporting element 4 positioned at compartment both ends can connect with the configuration part of front and back backplate (not indicating)
It connects.Movable component is similar with the embodiment described above 1~2, is fixed on part 19 and 20 by axis 21, can rotate.
In all embodiments studied, solid plate is used to union piece, lath 3 and supporting element 4, such as moisture-proof
Glued board or plastic production, and axis 21 is made of 3~5 millimeters of diameter of timber.
Component assembling method using the three-dimensional machinery model of the system is as follows.
Embodiment 1.By two component assembly movable components (Fig. 1, Fig. 2).
Working surface will be respectively placed in union piece 1,2 and three sets of connectors according to schematic diagram before assembly, every suit connects
Fitting is made of a lath 3 and a supporting element 4.On to union piece 1 and 2, the distance in each hole 8 to connecting shaft is not
Together.Therefore, on the lath 3 of each set connector, the relative altitude of each fore shaft slot 9 is different (Fig. 4).Hand assembled, sequence are as follows:
There is the side of fore shaft slot 9 to be sequentially inserted into hole 8 from the inside to union piece 1 and 2 first block of lath 3, lath 3 is in hole 8 at this time
Position in opening is to have the one side of fore shaft slot 9 back to the Central of the parts, is had the one of flange 11 facing towards the Central of the parts.
Then, component is held on the other hand, supporting element 4 is inserted into from 8 free time of hole on the outside of part 1, is close to the one side for having lateral flange 13
Lath 3 has the surface of flange 11.When the flange 11 on lath 3 is arrived in the end face of supporting element 4, slightly firmly continue supporting element
The mobile supporting force to overcome 11 side of flange, can fill up the gap of 8 opening of hole and formation " tension " effect in this way.When
When lateral flange 13 on transverse concave groove 12 and supporting element 4 on lath 3 is overlapped, the plate in mutual supporting force maximum
Item is realized automatically with the supporting element and is fixed to each other.Second set similar with the third set operating method of connector.It opens and cuts on lath 3
The elasticity of material in 11 region of flange can be improved in slot 15, can when being thus fixed to each other in assembling process and finally
Suitably to reduce dynamics needed for promotion supporting element 4 when supporting element 4 is mutually supported with lath 3.Meanwhile on lath 3 fore shaft slot 9 gear
The rib 14 of side 10 and supporting element 4 clamps the surface of flat part 1 and 2 to be connected from the two sides that perforation 8 is open, and can make in model
It is rotated with movable component in the process or prevents the part from arbitrarily disengaging when mobile.
Embodiment 2.By three and three or more component assembly movable components (Fig. 6~9).
Working surface, every suit will be respectively placed in union piece 1,2,17 and three sets of connectors according to schematic diagram before assembly
Connector forms (Fig. 6, Fig. 7) by a lath 3 and a supporting element 4.It is identical to the diameter of union piece 2 and 17, and discharge
It sets.In view of the coordinate to hole 8 on union piece 1 and 2,17 is different and junction waits for that the thickness of union piece is different, lath
The relative altitude of fore shaft slot 9 is different on 3, and the length of fore shaft slot 9 is also different.Hand assembled, assemble sequence is similar to Example 1,
Consider for the longer one end of fore shaft slot 9 insertion on lath 3 to be inserted into union piece 2 and 17, the other end to union piece 1 simultaneously.
The method that hole is inserted into positioning and supporting element 4 of the lath 3 in hole 8 is similar with the studied embodiment in front.
It is similar with four methods to the assembling activity component of union piece 1,2 and 17,18.In this case the lath used
The length of fore shaft slot 9 is identical on 3, and the length of side fore shaft slot is equal to the sum of the thickness of part 1 and 18, the length of other side fore shaft slot
Degree is equal to the sum of the thickness of part 2 and 17 (Fig. 8, Fig. 9).
Embodiment 3.The fixation kit and movable component of city double-decker bus compartment model assemble (Figure 10, Figure 11).
As embodiment listed hereinbefore, each part is respectively placed in by working surface according to schematic diagram before assembly, described zero
Part includes two configuration flat parts 19 and 20, and the flat part simulates railroad car lateral wall;With a few set connectors, every set connects
The lath 3 of fitting is equipped with fore shaft slot 9 and radial flange 11, the transverse concave groove 12 for having plane triangular in shape among the flange,
And supporting element 4 is equipped with the lateral flange 13 that plane is in corresponding triangle.It is assembled in advance according to the embodiment described above for sending out
Strip device and the movable component that rotary force is transmitted to bus tire (not indicating).
Above-mentioned movable component is sequentially fixed to the round hole of configuration part 19 and 20 according to assembling schematic diagram by axis 21
It is upper and rotatable.Then arc lath 3 and support of the upper surface of configuration part 19 and 20 part by simulation bus roof inclined-plane
Part 4 connects together, and compartment one end then passes through the lath 3 that can be connected with the configuration part of backplate before and after compartment and supporting element 4 connects
Together.
The disassembly sequence of said modules is opposite with assemble sequence.
The fixed function of connector when the system that the utility model is recommended can pass through assembly is being assembled for the first time and is being assembled again
The reliability of part connection is improved when model.The rigidity for improving connector can also increase the specification quantity to connector and accordingly expand
The use scope of big system.System is simple, convenient for assembly and disassembly three-dimensional machinery model.
Claims (1)
1. a kind of part of three-dimensional machinery model connects system, at least by two flat parts to be connected and a set of connector group
At the set connector includes a lath, and there is lateral fore shaft slot at the both ends on one surface of lath;It is supported with one
Part;Lath and supporting element respectively have a rectangular cross section simultaneously, are equipped with perforation to union piece, the shape of the perforation and big
It is small identical as the shapes and sizes of fore shaft slot and supporting element reverse side end cross-sectional, when assembling the part by radial flange
Lath and supporting element can play the role of mutually supporting, and the radial flange is located on lath back to the surface of fore shaft slot;It is special
Sign is: transverse concave groove that the supporting element and lath are located on lath among radial flange by one and one are located at institute
Stating the interactive surfaces of supporting element, shape lateral flange corresponding with the transverse concave groove can be real under the action of mutual support
It is existing relatively fixed, meanwhile, the transverse concave groove and lateral flange are all triangular in shape in the plane.
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
UAU201700669 | 2017-01-30 | ||
UAU201700669U UA114768U (en) | 2017-01-30 | 2017-01-30 | SYSTEM OF CONNECTING DETAILS OF THREE-DIMENSIONAL MECHANICAL MODEL |
PCT/UA2017/000024 WO2018139981A1 (en) | 2017-01-30 | 2017-03-06 | System for connecting parts of a three-dimensional mechanical model |
Publications (1)
Publication Number | Publication Date |
---|---|
CN209500791U true CN209500791U (en) | 2019-10-18 |
Family
ID=58504127
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201790000806.8U Active CN209500791U (en) | 2017-01-30 | 2017-03-06 | The part of three-dimensional machinery model connects system |
Country Status (6)
Country | Link |
---|---|
EP (1) | EP3574969B8 (en) |
CN (1) | CN209500791U (en) |
PL (1) | PL71536Y1 (en) |
RU (1) | RU171326U1 (en) |
UA (1) | UA114768U (en) |
WO (1) | WO2018139981A1 (en) |
Family Cites Families (10)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
GB2271295A (en) * | 1992-10-08 | 1994-04-13 | South London Children S Scrap | Construction kit. |
DE19517216A1 (en) * | 1995-05-11 | 1996-11-14 | Hilti Ag | Fastening element with anchor bolt and expanding wedge |
DE102009008464A1 (en) | 2009-02-10 | 2010-08-12 | Siemens Aktiengesellschaft | Cast resin system for insulating materials in switchgear |
RU2441686C2 (en) * | 2010-04-21 | 2012-02-10 | Виктор Иванович Ярыч | Element of toy erector set |
CN102553263A (en) * | 2010-12-12 | 2012-07-11 | 上海谦毅儿童娱乐设备有限公司 | 3D (three-dimensional) puzzle blocks capable of being assembled into wooden horse model for children |
DK2651525T3 (en) * | 2010-12-16 | 2018-12-10 | Mark Randall Stolten | TOYS BUILDING SYSTEM |
RU2525782C1 (en) * | 2013-06-07 | 2014-08-20 | Дмитрий Андреевич Соколов | Constructor element (versions) |
UA108449C2 (en) | 2014-04-07 | 2015-04-27 | METHOD OF FORECASTING CARDIOVASCULAR EVENTS FOR ONE YEAR AFTER REGRESSION OF LYMPHOPROLIFERATIVE DISEASES | |
UA115090U (en) * | 2014-11-11 | 2017-04-10 | UNIT OF INDIVIDUAL MOVING ELEMENTS OF A MECHANICAL MODEL THAT IS ABLE TO MOVE AROUND ONE AXLE | |
UA108449U (en) * | 2016-03-28 | 2016-07-11 | Антон Олександрович Рубан | MODULAR SYSTEM OF CONNECTING DETAILS OF THREE-DIMENSIONAL MECHANICAL MODEL |
-
2017
- 2017-01-30 UA UAU201700669U patent/UA114768U/en unknown
- 2017-01-30 RU RU2017102961U patent/RU171326U1/en active
- 2017-03-06 EP EP17893857.7A patent/EP3574969B8/en active Active
- 2017-03-06 PL PL128079U patent/PL71536Y1/en unknown
- 2017-03-06 WO PCT/UA2017/000024 patent/WO2018139981A1/en unknown
- 2017-03-06 CN CN201790000806.8U patent/CN209500791U/en active Active
Also Published As
Publication number | Publication date |
---|---|
RU171326U1 (en) | 2017-05-29 |
EP3574969A4 (en) | 2021-03-03 |
EP3574969C0 (en) | 2023-07-19 |
EP3574969A1 (en) | 2019-12-04 |
EP3574969B8 (en) | 2023-08-23 |
UA114768U (en) | 2017-03-10 |
EP3574969B1 (en) | 2023-07-19 |
PL128079U1 (en) | 2020-03-23 |
PL71536Y1 (en) | 2020-10-05 |
WO2018139981A1 (en) | 2018-08-02 |
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