sliding rotating shaft for toy card book and use method

文档序号:1779045 发布日期:2019-12-06 浏览:24次 中文

阅读说明:本技术 一种用于玩具卡书上的滑动旋转轴及使用方法 (sliding rotating shaft for toy card book and use method ) 是由 赵晓旭 于 2019-08-15 设计创作,主要内容包括:本发明公开了一种用于玩具卡书上的滑动旋转轴由四个片状结构上、下组合而成,四个片状结构由下向上分别为卡持层、防摩擦层、基层和固定层。防摩擦层和基层的中心分别设有通孔,卡持层的顶面上设有一个向斜上方翘起的卡片,卡片穿过防摩擦层和基层上的通孔并将卡持层、防摩擦层和基层相互卡持。固定层粘接在基层顶面上,穿过基层通孔的卡片被夹持并固定在固定层与基层之间。将玩具卡书中导槽卡持在防摩擦层和基层之间后,实现了滑动旋转轴在导槽中的水平方向移动和自转,配合各种印刷图案或玩具部件后,丰富了玩具卡书的内容和表现形式,提高了玩具卡书的娱乐性,增强了孩子们的动手、动脑能力,使学习和娱乐过程有机结合。(the invention discloses a sliding rotating shaft for a toy card book, which is formed by combining four sheet structures from top to bottom, wherein the four sheet structures respectively comprise a clamping layer, an anti-friction layer, a base layer and a fixing layer from bottom to top. The anti-friction layer and the base layer are respectively provided with a through hole at the center, the top surface of the clamping layer is provided with a clamping piece which is tilted upwards, and the clamping piece passes through the through holes on the anti-friction layer and the base layer and clamps the clamping layer, the anti-friction layer and the base layer mutually. The fixed layer is bonded on the top surface of the base layer, and the card passing through the through hole of the base layer is clamped and fixed between the fixed layer and the base layer. The guide groove in the toy card book is clamped between the anti-friction layer and the base layer, so that the horizontal movement and autorotation of the sliding rotating shaft in the guide groove are realized, the content and the expression form of the toy card book are enriched after various printed patterns or toy components are matched, the entertainment of the toy card book is improved, the practical and mental abilities of children are enhanced, and the learning and entertainment processes are organically combined.)

1. a sliding rotating shaft used for a toy card book is characterized by being formed by combining four sheet structures from top to bottom, wherein the four sheet structures respectively comprise a card clamping layer, an anti-friction layer, a base layer and a fixing layer from bottom to top; the centers of the anti-friction layer and the base layer are respectively provided with a through hole; the top surface of the clamping layer is provided with a clamping sheet which is tilted upwards, and the clamping sheet passes through the through holes on the anti-friction layer and the base layer and clamps the clamping layer, the anti-friction layer and the base layer mutually; the fixing layer is bonded on the top surface of the base layer, and the card penetrating through the through hole of the base layer is clamped and fixed between the fixing layer and the base layer.

2. A sliding pivot axle for a toy card book as claimed in claim 1, wherein the card is a plastic sheet.

3. The sliding rotary shaft according to claim 1 or 2, wherein the holding layer is provided with a slit corresponding to a lower portion of the card, and the card and the holding layer are integrally formed.

4. The sliding pivot axle for a toy card book of claim 1, wherein the anti-friction layer and the base layer are paper or plastic sheets, respectively.

5. the sliding rotation shaft for a toy card book as claimed in claim 1, wherein the catching layer, the anti-friction layer and the base layer are respectively circular in shape.

6. A sliding pivot axle for a toy card book as in claim 1, wherein the fixed layer size is larger than the base layer size.

7. The method of claim 1, wherein the steps of using the sliding rotation shaft for a toy card book include:

step 1, enabling the cards on the clamping layer to penetrate through the through holes of the anti-friction layer, and embedding the clamping layer and the anti-friction layer into the lower part of a guide groove of the toy card book;

step 2, sleeving the through hole on the base layer on the card exposed from the guide groove, wherein the base layer is positioned above the guide groove;

And 3, bonding the fixing layer on the base layer, and fixing the card clamped between the base layer and the fixing layer.

8. The method of claim 7, wherein said step 3 further comprises: printing patterns on the surface of the fixed layer or installing external toy components to be moved.

Technical Field

The invention relates to an accessory on a toy card book, in particular to a sliding rotating shaft which is used as a movable bearing accessory and can slide on a toy card book track and rotate automatically and a using method thereof, belonging to the field of toy books.

Background

The card book is a paper book with the thickness of more than 1cm formed by mounting 200g-400g of paperboard with the weight of 0.5-2mm and binding a plurality of pages. The paperboard is mainly made into stamp album, collection album and the like by utilizing the thickness and hardness of the paperboard, so that the collection and the use of the collection are facilitated in a large quantity.

In recent years, with the development of the book market, a new way to make a child toy card book with a thicker structure of the inner page of the card book is provided. The children toy card book can be provided with accessories such as simple toys, turntables, plug-in pieces, three-dimensional folded paper and the like, and can also be provided with various learning tools, so that the children toy card book can help the children to use the learning tools, the practical performance of the toy card book is improved, the card book content is greatly enriched, the manual operation and brain operation abilities of children are enhanced, the entertainment and the learning process are combined, the form is rich, the content is novel, the occupied area is small, and the children toy card book is deeply loved by parents and children.

in order to further improve the entertainment and the knowledge of the toy card book and enrich the content of the card book, the invention provides the main problem to be solved by improving the accessory structure of the existing toy card book.

Disclosure of Invention

In view of the above-mentioned conventional circumstances, the present invention is directed to provide a sliding rotation shaft capable of sliding on a track of a toy card book and rotating automatically, and a method for using the same, in which various pictures, structures, etc. required to move on the track are supported by the sliding rotation shaft, thereby enriching the representation forms and contents of the toy card book, improving the usability of the toy card book, and enhancing the practical ability of children.

The invention is realized by the following technical scheme:

A sliding rotating shaft used for a toy card book is formed by combining four sheet structures from top to bottom, wherein the four sheet structures are respectively a clamping layer, an anti-friction layer, a base layer and a fixing layer from bottom to top. The centers of the anti-friction layer and the base layer are respectively provided with a through hole. The card is arranged on the top surface of the clamping layer and is tilted upwards, and the card passes through the through holes on the anti-friction layer and the base layer and clamps the clamping layer, the anti-friction layer and the base layer mutually. The fixed layer is bonded on the top surface of the base layer, and the card passing through the through hole of the base layer is clamped and fixed between the fixed layer and the base layer.

The card is a plastic sheet.

The clamping layer corresponding to the lower part of the card is provided with a notch, and the card and the clamping layer are integrated.

The anti-friction layer and the base layer are respectively paper sheets or plastic sheets.

The clamping layer, the anti-friction layer and the base layer are respectively circular in shape.

The size of the fixed layer is larger than that of the base layer.

A use method of a sliding rotating shaft used on a toy card book comprises the following specific steps:

Step 1, the card on the clamping layer penetrates through the through hole of the anti-friction layer, and the clamping layer and the anti-friction layer are embedded into the lower portion of the guide groove of the toy card book.

And 2, sleeving the through hole on the base layer on the card exposed from the guide groove, wherein the base layer is positioned above the guide groove.

And 3, bonding the fixing layer on the base layer, and fixing the card clamped between the base layer and the fixing layer.

The step 3 further comprises: printing patterns on the surface of the fixed layer or installing external toy components to be moved.

The sliding rotating shaft used on the toy card book and the using method have the advantages that:

1. The guide groove is arranged on the toy card book, the sliding rotating shaft is clamped in the guide groove, the sliding rotating shaft moves and rotates in the horizontal direction in the guide groove, after various printed patterns or toy components are used in cooperation with the sliding rotating shaft, the moving requirements of the printed patterns or the toy components in the guide groove are met, the realization of various games on the card book is facilitated, the content and the form of the toy card book are enriched, and the use performance and the entertainment of the toy card book are improved;

2. The sliding rotating shaft combined by the four-layer structure is simple to process and convenient to combine, and can be used for manufacturing the anti-friction layer, the base layer and the fixed layer of the paper sheet by using the common coated paper in the printing process besides the clamping layer made of the plastic sheet with better elasticity, so that the materials are convenient to obtain and the cost is low;

3. The thickness of the four-layer combined sliding rotating shaft is thin, so that the thickness of the toy card book cannot be greatly influenced, the applicability is good, and the movement and the rotation are convenient;

4. the toy card book with the sliding rotating shaft enables the content of the card book to be changed from fixed to moving, is good in interestingness and flexible in expression form after being matched with other toy components, improves the practical and mental capabilities of children, and enables the learning and entertainment processes to be organically combined.

Drawings

FIG. 1 is a schematic view of a sliding pivot shaft assembly for a toy card book according to the present invention;

Fig. 2 is a schematic structural view illustrating a use process of a sliding rotation shaft for a toy card book according to the present invention.

Detailed Description

the center of the invention is to design a sliding rotating shaft which can move horizontally in the card book guide groove and can rotate in the card book guide groove, so that the moving toy components or printed patterns connected on the sliding rotating shaft can move and change freely on the toy card book according to the requirements, thereby enriching the content of the toy card book, and improving the practical ability of children in cooperation with the game process.

The invention is described in further detail below with reference to fig. 1 and 2:

The sliding rotating shaft used on the toy card book is formed by combining four sheet structures from top to bottom, wherein the four sheet structures are respectively a card clamping layer 1, an anti-friction layer 2, a base layer 3 and a fixing layer 4 from bottom to top. Wherein, the anti-friction layer 2, the base layer 3 and the fixed layer 4 are made of paper materials, such as coated paper. In this example, the anti-friction layer 2, the base layer 3 and the fixing layer 4 are circular paper sheets, and through holes are formed in the centers of the anti-friction layer 2 and the base layer 3. The clamping layer 1 is a circular plastic sheet, the clamping sheet 5 which tilts obliquely upwards is arranged along the radial direction of the circular clamping layer 1, the clamping sheet 5 is in a strip shape, the clamping sheet 5 and the clamping layer 1 are integrated, and the clamping layer 1 corresponding to the lower side of the clamping sheet 5 is provided with a notch. The card 5 passes through the through holes 6 on the anti-friction layer 2 and the base layer 3 and then clamps the clamping layer 1, the anti-friction layer 2 and the base layer 3 mutually. The fixing layer 4 is adhered on the top surface of the base layer 3, and a card 5 passing through the base layer 3 is sandwiched and fixed between the fixing layer 4 and the base layer 3. In order to simplify the structure, in this example, patterns are printed on the fixed layer 4, and the movement of the patterns in the guide grooves 11 is realized by moving the sliding rotating shaft 8 with the patterns, so as to complete the game process.

Of course, in order to improve the convenience of use, the fixing layer 4 can be used in combination with other mobile toy components, the size of the fixing layer 4 can be larger than that of the base layer, and the shape of the fixing layer 4 can also be other geometric shapes or combination shapes, such as a rectangular fixing layer 9. In order to improve durability, the anti-friction layer 2 and the base layer 3 can be made of plastic sheets, or one layer can be made of plastic sheets and the other layer can be made of paper sheets.

The use method of the sliding rotating shaft for the toy card book comprises the following specific steps:

Step 1, the card on the clamping layer penetrates through the through hole of the anti-friction layer, and the clamping layer and the anti-friction layer are embedded into the lower portion of the guide groove of the toy card book.

on the premise that the guide groove 11 is arranged in the toy card book 12, the card holding layer 1 and the anti-friction layer 2 inserted below the guide groove 11 are held below the guide groove 11, and the anti-friction layer 2 is in direct contact with the bottom surfaces of the two sides of the guide groove 11, so that the direct contact between the card holding layer 1 and the bottom surfaces of the two sides of the guide groove 11 is avoided.

And 2, sleeving the through hole on the base layer on the card exposed from the guide groove, wherein the base layer is positioned above the guide groove.

the base layer 3 above the guide groove 11 together with the anti-friction layer 2 below the guide groove 11 realizes the upper and lower holding of the guide groove 11, and the sliding rotation shaft 8 has the possibility of moving horizontally in the guide groove 11.

And 3, printing patterns on the surface of the fixed layer, then bonding the fixed layer on the base layer, and fixing the card clamped between the base layer and the fixed layer.

After the base layer 3 and the fixed layer 4 are bonded with each other, the position of the card 5 between the base layer 3 and the fixed layer 4 is fixed, the space position between the base layer 3 and the fixed layer 4 above and the space position between the card holding layers 1 below are fixed, thereby forming the upper and lower card holding of the guide groove 11, realizing the horizontal movement of the sliding rotating shaft 8 in the guide groove 11, meanwhile, under the assistance of the anti-friction layer 2, the upper and lower integrated fixed layers 4, the base layer 3 and the card holding layers 1 can also pass through the rotation of the card holding layers 1, completing the rotating process in the card groove 11, realizing the rotation of the printed patterns on the fixed layer 4 in the horizontal direction, and facilitating the game process

Of course, if the external toy components to be moved are installed on the fixed layer 4, the toy components can be freely moved and rotated on the guide grooves 11 by being supported by the integral sliding rotation shaft 8. If a plurality of sliding rotating shafts 8 are arranged in the guide grooves 11, the use requirements of various games can be met through the mutual matching of patterns or toy components on the plurality of sliding rail rotating shafts 8, and the realization of the game process in the toy card book 12 is facilitated.

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