The present disclosure relates to a technical field of toy, and more particularly to a child-mother toy.
A toy in the related art usually adopts a gear box and a motor, or circuit control to realize a plurality of continuous actions. On one hand, since the gear box and the motor have high manufacturing cost and high defective rate, and may adversely affect the environment, thereby increasing the overall price of the toy. On the other hand, due to the complicated design, the troublesome operation, and the high failure rate of the circuit control, the overall price of the toy is raised, and the service life of the toy is lowered.
The present disclosure aims to solve at least one of the technical problems existing in the related art. Accordingly, the present disclosure provides a child-mother toy, which has a simple structure, high entertainment, high action reliability, low cost, and is suitable for batch production.
The child-mother toy according to the present disclosure includes a first assembly and a second assembly. The second assembly includes a supporting member, a triggering subassembly, an unfolding subassembly and an ejection subassembly, and the triggering subassembly, the unfolding subassembly and the ejection subassembly are disposed to the supporting member. Before the triggering subassembly is triggered, the unfolding subassembly is folded at the supporting member so as to define an accommodating cavity together with the supporting member, the accommodating cavity is configured to accommodate the first assembly therein; and after the triggering subassembly is triggered, the unfolding subassembly is unfolded to open the accommodating cavity, and meanwhile the ejection subassembly ejects the first assembly out of the accommodating cavity.
The child-mother toy according to the present disclosure can realize separation of the child assembly and the mother assembly, has a simple structure, a high entertainment, high action reliability, low cost, and is suitable for batch production.
In some embodiments, the ejection subassembly includes: an ejection member disposed to the supporting member and movable between an ejected position and a retracted position; and a locking member disposed to the supporting member and movable between a locked position and an unlocked position. When the locking member is located in the locked position, the ejection member is locked in the retracted position by means of the locking member, and when the locking member moves to the unlocked position, the ejection member is released by means of the locking member so as to enable the ejection member to be ejected.
In some embodiments, the ejection member is movable forward and backward between the ejected position and the retracted position by means of a first driving member, and the locking member is movable leftwards and rightwards between the locked position and the unlocked position by means of a second driving member.
In some embodiments, a side wall of the ejection member in a left-and-right direction is provided with two limit blocks spaced apart in a front-and-rear direction, and a limit groove is defined between the two limit blocks, the locking member includes an annular portion having an axis extending in the front-and-rear direction so that the annular portion is fitted over the ejection member. When the locking member is located in the locked position, a side arm of the annular portion in the left-and-right direction is fitted into the limit groove, and when the locking member moves to the unlocked position, the side arm moves out of the limit groove to be released.
In some embodiments, an outer side surface of a rearward limit block of the two limit blocks is configured as a guiding surface extending obliquely towards a longitudinal center line of the ejection member from front to rear, and during a movement of the ejection member from the ejected position to the retracted position from the front to the rear, the guiding surface guides the side arm into the limit groove.
In some embodiments, a side surface of the supporting member in the left-and-right direction has a notch, the locking member includes an extending portion connected with the annular portion and capable of extending out of the supporting member through the notch, the unfolding subassembly includes a triggering block, and during unfolding of the unfolding subassembly, the triggering block pushes the extending portion to move towards an interior of the supporting member along the notch, and the extending portion drives the side arm to move outwards from the limit groove.
In some embodiments, the unfolding subassembly includes two unfolding casings pivotably connected to a left side edge and a right side edge of the supporting member separately. When the two unfolding casings are pivoted towards a top of the supporting member and in a direction of approaching each other, they are folded, and when the two unfolding casings are pivoted away from each other, they are unfolded.
In some embodiments, a third driving member is provided where each unfolding casing and the supporting member are pivotably jointed, and the third driving member applies force to the unfolding casing so as to enable the unfolding casing to tend to be unfolded.
In some embodiments, a bouncing rod is disposed at an inner side of each unfolding casing, an end of the bouncing rod is pivotably connected to the corresponding unfolding casing, a fourth driving member is disposed between the bouncing rod and an inner surface of the unfolding casing, and the fourth driving member applies force to another end of the bouncing rod in a direction away from the corresponding unfolding casing so as to enable the corresponding unfolding casing to tend to be unfolded.
In some embodiments, the unfolding subassembly includes a hook member having a hook groove opened at a rear side, the triggering subassembly includes: a stop block having a stop hole penetrating the stop block along an up-and-down direction; and a stop rod passing through the stop hole from bottom to top. When the stop rod moves to a front limit position of the stop hole, the stop rod is fitted into the hook groove so as to lock the unfolding subassembly in a folded state, and when the limit rod moves backwards along the stop hole, the stop rod moves backwards out of the hook groove so as to release the unfolding subassembly to enable the unfolding subassembly to be unfolded.
In some embodiments, the triggering subassembly includes a triggering arm unit, a first layer triggering unit and a second layer triggering unit, the triggering arm unit is disposed to a left side and/or a right side of the supporting member, and the first layer triggering unit is disposed to an upper side and/or a lower side of the second layer triggering unit, when the first layer triggering unit is triggered, the first layer triggering unit triggers the triggering arm unit to perform arm unfolding, and during the arm unfolding of the triggering arm unit, the second layer triggering unit is triggered to act to unfold the unfolding subassembly.
In some embodiments, the triggering arm unit includes two triggering arms, and the two triggering arms are disposed to the left side and the right side of the supporting member separately and have an end pivotably connected to the supporting member respectively.
In some embodiments, the triggering arm is provided with an arm side holding opening, and the triggering arm is provided with a magnetic attraction member therein so as to enable a magnetic body to be held at the arm side holding opening.
In some embodiments, the first layer triggering unit includes: a first layer magnetic attraction member fixed to the supporting member; a first layer front moving member disposed to the supporting member and movable forwards and backwards; and a first layer rear moving member disposed to the supporting member and movable forwards and backwards, and located at a rear side of the first layer front moving member. When a left side and a right side of the first layer rear moving member are separately provided with an arm locking member configured to lock the triggering subassembly in an arm folded state; when the first layer magnetic attraction member attracts a magnetic body to push the first layer front moving member to move backwards, the first layer front moving member pushes the first layer rear moving member to move backwards; and during backward movement of the first layer rear moving member, the triggering arm unit is released to enable the triggering arm unit to perform the arm unfolding.
In some embodiments, the second layer triggering unit includes: a second layer front moving member disposed to the supporting member and movable forwards and backwards, a left side and a right side of a front end of the second layer front moving member being provided with a touching block separately; a second layer rear moving member disposed to the supporting member and movable forwards and backwards, and located at a rear side of the second layer front moving member. The second layer rear moving member is provided with a stop rod configured to lock the unfolding subassembly in a folded state; during the arm unfolding of the triggering arm unit, the triggering arm unit pushes the touching block backwards so as to make the second layer front moving member move backwards; and during the backward movement of the second layer front moving member, the second layer rear moving member is pushed to move backwards so as to make the stop rod release the unfolding subassembly and enable the unfolding subassembly to be unfolded.
In some embodiments, the first assembly includes a fixed member, a triggering component, an unfolding component and an overturning component; the triggering component, the unfolding component and the overturning component are disposed to the fixed member; the unfolding component is unfolded when the triggering component is triggered; the overturning component is driven to pivot during unfolding of the unfolding component, and the first assembly is driven to turn over in the air during pivoting of the overturning component.
The additional aspects and advantages of the present disclosure will be set forth in part in the following description, which will become apparent from the following description or be learned by the practice of the present disclosure.
child-mother toy 100;
first assembly 1;
fixed member 11;
triggering component 12; magnet 121; moving block 122; hook 1221;
unfolding component 13; hook groove 131;
overturning component 14; hook locking hole 141;
hook component 15;
second assembly 2;
supporting member 21; notch 210;
triggering subassembly 22; stop block 221; stop hole 2210; stop rod 222;
triggering arm unit 223; arm side holding opening 2230;
triggering arm 2231; locking opening 22310; poke block 22311;
fifth driving member 2232; arm side magnetic attraction member 2233;
first layer triggering unit 224; first layer magnetic attraction member 2241; first layer front moving member 2242;
first layer rear moving member 2243; arm locking member 22430;
second layer triggering unit 225; second layer front moving member 2251; touching block 22510;
second layer rear moving member 2252;
unfolding subassembly 23; triggering block 230; unfolding casing 231; pivoting shaft 232; third driving member 233;
bouncing rod 234; embedding groove 2340; fourth driving member 235;
hook member 236; hook groove 2360;
ejection subassembly 24; ejection member 241; limit block 2411; guiding surface 24110; limit groove 2412;
locking member 242; annular portion 2421; side arm 24210; extending portion 2422;
first driving member 243; second driving member 244;
magnetic coin 3.
The embodiments of the present disclosure are described in detail below, and the examples of the embodiments are illustrated in the drawings, wherein the same or similar reference numerals are used to refer to the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the drawings are intended to be illustrative of the disclosure and are not to be construed as limiting.
Various embodiments and examples are provided in the following description to implement different structures of the present disclosure. In order to simplify the present disclosure, certain elements and settings will be described. However, these elements and settings are only by way of example and are not intended to limit the present disclosure. In addition, reference numerals may be repeated in different examples in the present disclosure. This repeating is for the purpose of simplification and clarity and does not refer to relations between different embodiments and/or settings. Furthermore, examples of different processes and materials are provided in the present disclosure. However, it would be appreciated by those skilled in the art that other processes and/or materials may be also applied. Moreover, a structure in which a first feature is “on” a second feature may include an embodiment in which the first feature directly contacts the second feature, and may also include an embodiment in which an additional feature is formed between the first feature and the second feature so that the first feature does not directly contact the second feature.
A child-mother toy 100 according to embodiments of the present disclosure is described in detail with reference to the accompanying drawings.
As illustrated in
Referring to
That is, when the triggering component 12 is triggered, the first assembly 1 can perform two actions including unfolding and deformation, and turning-over in the air. For example, the first assembly 1 can present a vehicle shape initially, and when the coin clamping action is triggered, the first assembly 1 can turn over in the air, and meanwhile be unfolded to deform to present a shape of an animal, an insect and a figure sitting on a vehicle frame. Here, it should be noted that a structure and an operation principle of the first assembly 1 capable of realizing the above-described action change are well known to those skilled in the art, and are only briefly described below, and are not repeated herein.
Referring to
That is, before the triggering subassembly 22 is triggered, the unfolding subassembly 23 presents a folded state, in this case, the unfolding subassembly 23 in the folded state and the supporting member 21 cooperatively define the accommodating cavity, and at least a part of the first assembly 1 is accommodated in the accommodating cavity, for example, the first assembly 1 can be accommodated in the accommodating cavity in whole, and in this case, the unfolding subassembly 23 in the folded state and the supporting member 21 can cooperatively wrap the first assembly 1, that is, the second assembly 2 wraps the first assembly 1 in the second assembly 2.
After the triggering subassembly 22 is triggered, the unfolding subassembly 23 can be unfolded so as to open the accommodating cavity, and the first assembly 1 can be exposed, and meanwhile, the ejection subassembly 24 can apply an ejection force on the first assembly 1 so that the first assembly 1 subjecting to the ejection force and not constrained by the accommodating cavity can be ejected out, and further ejected the first assembly 1 can perform the above-mentioned deformation and over-turning actions. Therefore, entertainment of the child-mother toy 100 can be effectively improved.
The child-mother toy 100 according to embodiments of the present disclosure can realize the separation of the child assembly and the mother assembly, and has a simple structure, high entertainment, and high action reliability.
Referring to
Referring to
Referring to
Referring to
Referring to
Referring to
Referring to
Preferably, the structures of the two unfolding casings 231 can be completely identical and symmetrical in the left-and-right direction. When the two unfolding casings 231 are located in the folding position, the two unfolding casings 231 and the supporting member 21 can cooperatively form a vehicle shaped shell, in this case, the supporting member 21 can be in a chassis shape and the two unfolding casings 231 can be in the shape of a half vehicle body divided equally in the left-and-right direction separately. Certainly, the present disclosure is not limited to this, and the structures of the unfolding casing 231 can be configured specifically according to actual requirements so as to satisfy the actual requirements better.
Referring to
In addition, the unfolding subassembly 23 can be unfolded in other methods or in cooperation with other methods. For example, in the examples illustrated in
For example, in the examples illustrated in
Referring to
Thus, the triggering subassembly 22 can trigger the unfolding subassembly 23 to be unfolded simply and reliably, with is highly reliable and easy to implement. In addition, with operation of the stop rod 222 and the stop block 221, excessive movement of the stop rod 222 can be effectively prevented, the hook member 236 can be prevented from being damaged, and the stop rod 222 can be ensured to be reliably fitted with the hook member 236 again. Certainly, the present disclosure is not limited to this, in other embodiments of the present disclosure, the unfolding subassembly 23 can be controlled to unfold in other ways, for example, the triggering subassembly 22 can include a moving magnet, and the unfolding subassembly 23 can have a magnet having same magnetism with the magnet of the triggering subassembly 22. When the magnet in the triggering subassembly 22 moves away, the magnet in the triggering subassembly 22 and the unfolding magnet are no longer attracted and constrained by each other. In this way, under the action of the third driving member 233 and the fourth driving member 235, the unfolding subassembly 23 can be smoothly unfolded.
In some embodiments of the present disclosure, referring to
Referring to
Preferably, when the triggering arm 2231 performs the arm folded state (as illustrated in
Referring to
Referring to
Preferably, a left side and a right side of a front end of the second layer front moving member 2251 are provided with a touching block 22510 separately, a front end of the triggering arm 2231 is provided with a poke block 22311, and during the pivoting of the triggering arm 2231, the poke block 22311 can poke the touching block 22510 to move backwards, thus, the touching reliability can be improved further.
Referring to
When the magnet 121 attracts the magnetic coin 3 in front of the magnet 121, during the process of the magnetic coin 3 moving backwards and approaching the magnet 121, the moving block 122 is pushed to move backwards, and the hook 1221 at the bottom of the moving block 122 also moves backwards so that the locking of the hook locking hole 141 is released. Under the action of an overturning driving member such as a torsion spring or the like, the front end of the overturning component 14 can be overturned from the front to the rear from the bottom of the fixed member 11. Because the overturning component 14 will interact with a supporting surface supporting the overturning component 14 during the downward overturning, under the reaction applied to the overturning component 14 by the supporting surface, the first assembly 1 can jump into the air and do a front somersault, and after landing, the first assembly 1 can continue to move forward under the action of inertial force.
Further, referring to
In the following, referring to
The child-mother toy 100 is in a shape of a child-mother vehicle as a whole. The second assembly 2 is a mother vehicle, and the first assembly 1 is a child vehicle. In an initial state, the child vehicle is located in the mother vehicle. When the mother vehicle moves forwards, it hits the magnetic coin 3 (or other magnetic body) in the front, and the magnetic coin 3 triggers the mechanical structure inside the mother vehicle to enable the two triggering arms 2231 to unfold and the two unfolding casings 231 to unfold and deform, and to eject the child vehicle hided in the mother vehicle. When the child vehicle is ejected, it hits the magnetic coin 3 (or other magnetic body) in the front, and the magnetic coin 3 triggers the mechanical structures inside the child vehicle and enables the child vehicle to overturn in the air and deform.
In the following, referring to
When the mother vehicle accommodating the child vehicle moves forwards and hits the magnetic coin 3 arranged in front of the mother vehicle, the first layer magnetic attraction member 2241 attracts the magnetic coin 3 to move backwards, the first layer front moving member 2242 is pushed to move backwards and pushes the first layer rear moving member 2243 to move backwards, the triggering arm 2231 is released by the arm locking member 22430 of the first layer rear moving member 2243, and the two triggering arms 2231 pivot forwards to unfold and attract the magnetic coin 3 through the corresponding arm side magnetic attraction member 2233, so as to realize a plurality of coin clamping of the mother vehicle.
During the unfolding of the two triggering arms 2231, two poke blocks 22311 push the second layer front moving member 2251 to move backwards, the second layer front moving member 2251 pushes the second layer rear moving member 2252 to move backwards, and the second layer rear moving member 2252 drives the stop rod 222 to move backwards to release the hook member 236 on the unfolding casing 231, in this case, the unfolding casing 231 can be unfolded under the driving action of the third driving member 233 and/or the fourth driving member 235.
During the unfolding of the unfolding casing 231, an extending portion 2422 of the locking member 242 is poked by the triggering block 230 so as to make the locking member 242 to move towards the unlocked position. When the side arm 24210 of the locking member 242 completely moves out of the limit groove 2412 of the ejection member 241, the ejection member 241 is unlocked, and under the action of the first driving member 243, the ejection member 241 can move forwards and eject the child vehicle forwards out of the mother vehicle.
The ejected child vehicle hits the magnetic coin 3 in front of the child vehicle, and the magnetic coin 3 is attracted to move backwards by means of the magnet 121, and the magnetic coin 3 can push the moving block 122 and the hook 1221 to move backwards, so as to release 141 of the overturning component 14. In this case, the overturning component 14 can overturn so as to enable the child vehicle to do the front somersault as a whole, and meanwhile, the overturning component 14 can push the hook component 15 to move forwards so as to release the hook groove 131 of the unfolding component 13, and in this case, the unfolding component 13 can be unfolded to enable the child vehicle to finish the somersault and deformation.
In summary, the child-mother toy 100 according to the above-mentioned specific embodiment of the present disclosure realizes complex and continuous actions with normal material and simple mechanical principle, which not only improves the entertainment of the child-mother toy 100, but also enables the number of parts to be less and the structures to be simple, reducing the manufacturing cost of the product effectively and facilitating the quantity production of the product, and during the manufacturing and assembly of the product, the defective rate of the product is reduced effectively, so large quantities of purchasing is suitable. In addition, when the child-mother toy 100 is processed with transparent material, as the child-mother toy 100 has a simple structure, the player can know the internal configuration of the child-mother toy 100 at a glance, so that players, such as children, can understand simple mechanical principles and increase knowledge while playing.
In the specification, it is to be understood that terms such as “central,” “longitudinal,” “lateral,” “length,” “width,” “thickness,” “upper,” “lower,” “front,” “rear,” “left,” “right,” “vertical,” “horizontal,” “top,” “bottom,” “inner,” “outer,” “clockwise,” “counterclockwise,” “axial,” “radial,” and “circumferential” should be construed to refer to the orientation as then described or as shown in the drawings under discussion. These relative terms are for convenience of description and do not require that the present disclosure be constructed or operated in a particular orientation.
In addition, terms such as “first” and “second” are used herein for purposes of description and are not intended to indicate or imply relative importance or significance or to imply the number of indicated technical features. Thus, the feature defined with “first” and “second” may comprise one or more of this feature. In the description of the present disclosure, “a plurality of” means two or more than two, unless specified otherwise.
In the present disclosure, unless specified or limited otherwise, the terms “mounted,” “connected,” “coupled,” “fixed” and the like are used broadly, and may be, for example, fixed connections, detachable connections, or integral connections; may also be mechanical or electrical connections; may also be direct connections or indirect connections via intervening structures; may also be inner communications of two elements, which can be understood by those skilled in the art according to specific situations.
In the present disclosure, unless specified or limited otherwise, a structure in which a first feature is “on” or “below” a second feature may include an embodiment in which the first feature is in direct contact with the second feature, and may also include an embodiment in which the first feature and the second feature are not in direct contact with each other, but are contacted via an additional feature formed therebetween. Furthermore, a first feature “on,” “above,” or “on top of” a second feature may include an embodiment in which the first feature is right or obliquely “on,” “above,” or “on top of” the second feature, or just means that the first feature is at a height higher than that of the second feature; while a first feature “below,” “under,” or “on bottom of” a second feature may include an embodiment in which the first feature is right or obliquely “below,” “under,” or “on bottom of” the second feature, or just means that the first feature is at a height lower than that of the second feature.
In the description of the present specification, the description with reference to the terms “an embodiment,” “some embodiments,” “one embodiment”, “another example,” “an example,” “a specific example,” or “some examples” and the like means a specific feature described in connection with the embodiment or example. A structure, material or feature is included in at least one embodiment or example of the disclosure. In the present specification, the schematic representation of the above terms is not necessarily directed to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in a suitable manner in any one or more embodiments or examples. In addition, various embodiments or examples described in the specification and features of various embodiments or examples may be combined and combined without departing from the scope of the disclosure.
Although explanatory embodiments have been shown and described, it would be appreciated by those skilled in the art that the above embodiments cannot be construed to limit the present disclosure, and changes, alternatives, and modifications can be made in the embodiments without departing from principles and scope of the present disclosure.
Number | Date | Country | Kind |
---|---|---|---|
201621088779.8 | Sep 2016 | CN | national |
The present application is a national phase entry under 35 USC § 371 of International Application PCT/CN2017/084640, filed May 17, 2017, which claims the benefit of and priority to Chinese Patent Application No. 201621088779.8, filed Sep. 28, 2016, the entire disclosures of which are incorporated herein by reference.
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/CN2017/084640 | 5/17/2017 | WO | 00 |