CN211752494U - Lifting and conveying device of building block toy - Google Patents

Lifting and conveying device of building block toy Download PDF

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Publication number
CN211752494U
CN211752494U CN201921990535.2U CN201921990535U CN211752494U CN 211752494 U CN211752494 U CN 211752494U CN 201921990535 U CN201921990535 U CN 201921990535U CN 211752494 U CN211752494 U CN 211752494U
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plate
fixed
distance
triangular
supporting
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CN201921990535.2U
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刁斯婷
朱丹丽
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Guangdong Zhenfeng Science And Educational Toys Co ltd
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Guangdong Zhenfeng Science And Educational Toys Co ltd
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Abstract

The utility model relates to the technical field of building block toys, in particular to a lifting and conveying device of a building block toy, wherein an outer groove body is fixed at the top of a counterweight base; the front surface of the outer groove body is open; two parallel vertical plates are fixed inside the outer groove body; the front surface of the column body is provided with a plurality of groups of inclined rod groups; the triangular plate on the first vertical plate is a first triangular plate; the inclined rod group consists of two parallel inclined rods; one end of the horizontal section is communicated with one end of the ascending section; the other end of the horizontal section is communicated with one end of the descending section; the other end of the ascending section is communicated with the other end of the descending section. When the toy ball lifting device is used, the toy ball is lifted step by step through the circular motion of the cylinder body along the track of the guide rail groove; the lifting action is completed step by step, and the interest of children can be attracted.

Description

Lifting and conveying device of building block toy
Technical Field
The utility model relates to a building blocks toy technical field, in particular to building blocks toy's promotion conveyor.
Background
The building block toy is a toy with different appearance structures formed by splicing and combining a plurality of building blocks, wherein the building block slide is a product which is easily accepted by children, the operation is simple, only a toy ball needs to be placed at the low end of the lifting and conveying device, the ball is lifted to the topmost end of the slide through the lifting and conveying device, and then the ball automatically slides to the bottom of the slide on the slide; the existing lifting and conveying device usually adopts a magnet to attract the small balls to realize the lifting of the small balls, so the magnets are needed in the small balls; and a plurality of balls are difficult to separate after being close to each other due to the action of the magnet, so that children are inconvenient to play.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a promotion conveyor of building blocks toy to prior art's defect with not enough.
In order to achieve the above object, the utility model adopts the following technical scheme:
the utility model relates to a lifting and conveying device of building block toy, which comprises a counterweight base and a column body; an outer groove body is fixed at the top of the counterweight base; the front surface of the outer groove body is in an open shape; two parallel vertical plates are fixed inside the outer groove body; a plurality of set squares are arranged on the front surface of the vertical plate; the set squares are uniformly arranged along the height direction of the inner vertical plate;
a fixing plate is fixed inside the outer tank body; the fixed plate and the column body are arranged between the two vertical plates; the front surface of the column body is provided with a plurality of groups of inclined rod groups; the inclined rod groups are uniformly arranged along the height direction of the column body; the distance between two adjacent groups of the inclined rod groups is the inclined rod distance; the triangular plate on the first vertical plate is a first triangular plate; the triangular plate on the second vertical plate is a second triangular plate; the distance between two adjacent first set squares is a first distance; the distance between two adjacent second set squares is a second distance; the first distance, the second distance and the diagonal rod distance are equal; the inclined rod group consists of two inclined rods which are parallel to each other; the inclined rods are symmetrically arranged on the left side and the right side of the column body respectively; the inclined rod group is arranged between the two vertical plates;
the fixed plate is provided with a cam and a plurality of springs; one end of the spring is fixedly connected with the cylinder; the other end of the spring is fixedly connected with the cylinder; the rotating center of the cam is rotationally connected with the fixed plate; two fixed rods are fixed on the column body; a follow-up wheel is fixed on the fixed rod; two guide rail grooves are formed in the surface of the fixing plate; the two guide rail grooves are arranged along the height direction of the fixed plate; the width of the guide rail groove is equal to the diameter of the follow-up wheel; the wheel bodies of the two follow-up wheels are respectively embedded into the two guide rail grooves; the guide rail groove is triangular; the guide rail groove consists of a horizontal section, an ascending section and a descending section; one end of the horizontal section is communicated with one end of the ascending section; the other end of the horizontal section is communicated with one end of the descending section; the other end of the ascending section is communicated with the other end of the descending section.
Furthermore, a triangular plate at the bottommost part of the vertical plate is a lower triangular plate; the lower triangular plates are fixed with supporting plates; the supporting plates are arranged in parallel; the upper surface of the supporting plate is connected with the upper surface of the lower triangular plate.
Furthermore, the upper surface of the supporting plate is a supporting inclined plane; one end of the supporting inclined plane close to the vertical plate is a supporting tail end; one end of the supporting inclined plane, which is far away from the vertical plate, is a supporting front end; the horizontal height of the front end of the support is greater than that of the tail end of the support.
After the structure is adopted, the utility model discloses beneficial effect does: the utility model relates to a lifting and conveying device of building block toy, an outer groove body is fixed on the top of a counterweight base; the front surface of the outer groove body is open; two parallel vertical plates are fixed inside the outer groove body; a plurality of set squares are arranged on the front surface of the vertical plate; the set squares are uniformly arranged along the height direction of the inner vertical plate; a fixing plate is fixed inside the outer tank body; the fixed plate and the column body are arranged between the two vertical plates; the front surface of the column body is provided with a plurality of groups of inclined rod groups; the inclined rod groups are uniformly arranged along the height direction of the column body; the distance between two adjacent groups of the inclined rod groups is the inclined rod distance; the triangular plate on the first vertical plate is a first triangular plate; the triangular plate on the second vertical plate is a second triangular plate; the distance between two adjacent first set squares is a first distance; the distance between two adjacent second set squares is a second distance; the first distance, the second distance and the diagonal rod distance are equal; the inclined rod group consists of two parallel inclined rods; the inclined rods are respectively and symmetrically arranged at the left side and the right side of the column body; the diagonal rod group is arranged between the two vertical plates; the fixed plate is provided with a cam and a plurality of springs; one end of the spring is fixedly connected with the cylinder; the other end of the spring is fixedly connected with the cylinder; the rotating center of the cam is rotationally connected with the fixed plate; two fixed rods are fixed on the column body; a follow-up wheel is fixed on the fixed rod; two guide rail grooves are arranged on the surface of the fixing plate; the two guide rail grooves are arranged along the height direction of the fixed plate; the width of the guide rail groove is equal to the diameter of the follow-up wheel; the wheel bodies of the two follow-up wheels are respectively embedded into the two guide rail grooves; the guide rail groove is triangular; the guide rail groove consists of a horizontal section, an ascending section and a descending section; one end of the horizontal section is communicated with one end of the ascending section; the other end of the horizontal section is communicated with one end of the descending section; the other end of the ascending section is communicated with the other end of the descending section. When the utility model is used, the arc-shaped overranging angles are arranged at the connecting positions among the horizontal section, the ascending section and the descending section; hanging rods are fixed on the left side and the right side of the toy ball; the two hanging rods are used for hanging the triangular plates on the two sides of the vertical plate; when the motor drives the cam to rotate, the two follower wheels are driven to make anticlockwise motion on the triangular guide rail groove by matching with the acting force of the spring; firstly, when the follower wheel moves in a horizontal section, the inclined rods move along the horizontal direction and extend to the positions right below the two hanging rods; secondly, the inclined rod moves along the ascending section to push the hanging rod to move upwards, the hanging rod is firstly attached to the bottom surface of the triangular plate and ascends for a certain distance along the bottom surface of the triangular plate in the ascending process, and when the hanging rod ascends to be level with the top end of the triangular plate right above, the hanging rod slides downwards along the surface of the triangular plate to a position between the top surface of the triangular plate and the front surface of the vertical plate under the action of gravity of a toy ball and is separated from the inclined rod, so that the toy ball ascends for the height of the first distance; thirdly, the inclined rod moves back along the descending section and retracts between the two vertical plates to prevent the inclined rod from interfering with the hanging rod; the toy ball is lifted step by step through the circular motion of the column body along the track of the guide rail groove; the lifting action is completed step by step, and the interest of children can be attracted.
Drawings
FIG. 1 is a front sectional view of the present invention;
FIG. 2 is a schematic structural view of the outer tank body with a vertical plate disposed therein;
FIG. 3 is a schematic structural view of the outer tank body with a column and a diagonal rod;
FIG. 4 is a schematic view of the internal structure between two vertical plates;
FIG. 5 is a schematic structural view of a riser;
FIG. 6 is a partial schematic view of a fixation plate;
FIG. 7 is a schematic diagram of a toy ball;
description of reference numerals:
1. a spring; 2. a fixing plate; 201. a guide rail groove; 201a, a horizontal segment; 201b, a rising section;
202c, a descending section; 3. an outer tank body; 4. a cam; 5. a counterweight base; 6. a cylinder;
601. fixing the rod; 7. a support plate; 8. a diagonal bar; 9. a vertical plate; 901. a set square;
10. a follower wheel A and a toy ball; a01, hanging rod.
Detailed Description
The present invention will be further described with reference to the accompanying drawings.
As shown in fig. 1 to 7, the lifting and conveying device for building block toy of the present invention comprises a counterweight base 5 and a column 6; the top of the counterweight base 5 is fixed with an outer groove body 3; the front surface of the outer tank body 3 is open; two parallel vertical plates 9 are fixed inside the outer groove body 3; a plurality of triangular plates 901 are arranged on the front surface of the vertical plate 9; the triangular plates 901 are uniformly arranged along the height direction of the inner vertical plate 9;
a fixing plate 2 is fixed inside the outer tank body 3; the fixed plate 2 and the column body 6 are both arranged between the two vertical plates 9; a plurality of groups of inclined rod groups are arranged on the front surface of the column body 6; the inclined rod groups are uniformly arranged along the height direction of the column body 6; the distance between two adjacent groups of the inclined rod groups is the inclined rod distance; the triangular plate 901 on the first vertical plate 9 is a first triangular plate; the triangular plate 901 on the second vertical plate 9 is a second triangular plate; the distance between two adjacent first set squares is a first distance; the distance between two adjacent second set squares is a second distance; the first distance, the second distance and the diagonal rod distance are equal; the inclined rod group consists of two inclined rods 8 which are parallel to each other; the inclined rods 8 are symmetrically arranged on the left side and the right side of the column body 6 respectively; the inclined rod group is arranged between the two vertical plates 9;
the fixed plate 2 is provided with a cam 4 and a plurality of springs 1; one end of the spring 1 is fixedly connected with the cylinder 6; the other end of the spring 1 is fixedly connected with the column body 6; the rotation center of the cam 4 is rotationally connected with the fixed plate 2; the cam 4 is driven by a motor (not shown in the figure) to realize rotation; two fixing rods 601 are fixed on the column 6; a follow-up wheel 10 is fixed on the fixed rod 601; two guide rail grooves 201 are arranged on the surface of the fixed plate 2; the two guide rail grooves 201 are arranged along the height direction of the fixed plate 2; the width of the guide rail groove 201 is equal to the diameter of the follow-up wheel 10; the wheel bodies of the two follow-up wheels 10 are respectively embedded into the two guide rail grooves 201; the guide rail groove 201 is triangular; the guide rail groove 201 consists of a horizontal section 201a, an ascending section 201b and a descending section 201 c; one end of the horizontal section 201a is communicated with one end of the ascending section 201 b; the other end of the horizontal section 201a is communicated with one end of the descending section 201 c; the other end of the ascending section 201b is communicated with the other end of the descending section 201 c; arc passing angles are arranged at the connecting positions among the horizontal section 201a, the ascending section 201b and the descending section 201 c; hanging rods A01 are fixed on the left side and the right side of the toy ball A; the two hanging rods A01 are used for hanging on the triangular plates 901 on the two sides of the vertical plate 9; when the motor drives the cam 4 to rotate, the acting force of the spring 1 is matched, so that the two follower wheels 10 move anticlockwise on the triangular guide rail groove 201; firstly, when the follower wheel 10 moves in the horizontal section 201a, the diagonal rod 8 moves in the horizontal direction and extends to be right below two hanging rods A01; secondly, the inclined rod 8 moves along the ascending section 201b to push the hanging rod A01 to move upwards, the hanging rod A01 is firstly attached to the bottom surface of the triangular plate 901 in the ascending process and ascends a certain distance along the bottom surface of the triangular plate 901, and when the hanging rod A01 ascends to be flush with the top end of the triangular plate 901 right above, the hanging rod A slides downwards along the surface of the triangular plate 901 to a position between the top surface of the triangular plate 901 and the front surface of the vertical plate 9 under the action of gravity of the toy ball A and is separated from the inclined rod 8, so that the toy ball A ascends by a height of a first distance; thirdly, the inclined rod 8 moves back along the descending section 201c and retracts between the two vertical plates 9 to prevent the inclined rod from interfering with the hanging rod A01; the toy ball A is lifted step by step through the circular motion of the column body 6 along the track of the guide rail groove 201; the lifting action is completed step by step, and the interest of children can be attracted.
As a preferable mode of the present invention, a triangular plate 901 at the bottom of the vertical plate 9 is a lower triangular plate; the lower triangular plates are all fixed with supporting plates 7; the supporting plates 7 are arranged in parallel; the upper surface of the supporting plate 7 is connected with the upper surface of the lower triangular plate; the supporting plate 7 is used for placing a toy ball a to be lifted, and two hanging rods a01 of the toy ball a are hung on the two supporting plates 7 respectively and then slide down along the top surface of the supporting plate 7 onto the top surface of the lower triangular plate.
As a preferred mode of the present invention, the upper surface of the supporting plate 7 is a supporting inclined plane; one end of the supporting inclined plane close to the vertical plate 9 is a supporting tail end; one end of the supporting inclined plane far away from the vertical plate 9 is a supporting front end; the horizontal height of the front end of the support is greater than that of the tail end of the support; the supporting inclined plane can enable the toy ball A to automatically slide along the direction of the lower triangular plate, so that the steps of putting the toy ball A into the toy ball A are simplified, and the operation difficulty is reduced.
When the utility model is used, the arc-shaped overranging angles are arranged at the connecting positions among the horizontal section, the ascending section and the descending section; hanging rods are fixed on the left side and the right side of the toy ball; the two hanging rods are used for hanging the triangular plates on the two sides of the vertical plate; when the motor drives the cam to rotate, the two follower wheels are driven to make anticlockwise motion on the triangular guide rail groove by matching with the acting force of the spring; firstly, when the follower wheel moves in a horizontal section, the inclined rods move along the horizontal direction and extend to the positions right below the two hanging rods; secondly, the inclined rod moves along the ascending section to push the hanging rod to move upwards, the hanging rod is firstly attached to the bottom surface of the triangular plate and ascends for a certain distance along the bottom surface of the triangular plate in the ascending process, and when the hanging rod ascends to be level with the top end of the triangular plate right above, the hanging rod slides downwards along the surface of the triangular plate to a position between the top surface of the triangular plate and the front surface of the vertical plate under the action of gravity of a toy ball and is separated from the inclined rod, so that the toy ball ascends for the height of the first distance; thirdly, the inclined rod moves back along the descending section and retracts between the two vertical plates to prevent the inclined rod from interfering with the hanging rod; the toy ball is lifted step by step through the circular motion of the column body along the track of the guide rail groove; the lifting action is completed step by step, so that the interest of children can be attracted; the supporting plates are used for placing toy balls to be lifted, and two hanging rods of the toy balls are hung on the two supporting plates respectively and then slide down to the top surfaces of the lower triangular plates along the top surfaces of the supporting plates; the supporting inclined plane can enable the toy ball to automatically slide along the direction of the lower triangular plate, so that the steps of putting the toy ball into the toy ball are simplified, and the operation difficulty is reduced.
The above is only the preferred embodiment of the present invention, so all the equivalent changes or modifications made by the structure, features and principles in accordance with the claims of the present invention are included in the claims of the present invention.

Claims (3)

1. The utility model provides a building blocks toy's promotion conveyor which characterized in that: it comprises a counterweight base (5) and a column body (6); an outer groove body (3) is fixed at the top of the counterweight base (5); the front surface of the outer tank body (3) is open; two vertical plates (9) which are parallel to each other are fixed inside the outer groove body (3); a plurality of triangular blocks (901) are arranged on the front surface of the vertical plate (9); the triangular plates (901) are uniformly arranged along the height direction of the inner vertical plate (9);
a fixing plate (2) is fixed inside the outer tank body (3); the fixed plate (2) and the column body (6) are arranged between the two vertical plates (9); a plurality of groups of inclined rod groups are arranged on the front surface of the column body (6); the inclined rod groups are uniformly arranged along the height direction of the column body (6); the distance between two adjacent groups of the inclined rod groups is the inclined rod distance; a triangular plate (901) on the first vertical plate (9) is a first triangular plate; a triangular plate (901) on the second vertical plate (9) is a second triangular plate; the distance between two adjacent first set squares is a first distance; the distance between two adjacent second set squares is a second distance; the first distance, the second distance and the diagonal rod distance are equal; the inclined rod group consists of two parallel inclined rods (8); the inclined rods (8) are respectively and symmetrically arranged at the left side and the right side of the column body (6); the inclined rod group is arranged between the two vertical plates (9);
the fixed plate (2) is provided with a cam (4) and a plurality of springs (1); one end of the spring (1) is fixedly connected with the cylinder (6); the other end of the spring (1) is fixedly connected with the column body (6); the rotation center of the cam (4) is rotationally connected with the fixed plate (2); two fixing rods (601) are fixed on the column body (6); a follow-up wheel (10) is fixed on the fixed rod (601); two guide rail grooves (201) are formed in the surface of the fixing plate (2); the two guide rail grooves (201) are arranged along the height direction of the fixed plate (2); the width of the guide rail groove (201) is equal to the diameter of the follow-up wheel (10); the wheel bodies of the two follow-up wheels (10) are respectively embedded into the two guide rail grooves (201); the guide rail groove (201) is triangular; the guide rail groove (201) consists of a horizontal section (201 a), an ascending section (201 b) and a descending section (201 c); one end of the horizontal section (201 a) is communicated with one end of the ascending section (201 b); the other end of the horizontal section (201 a) is communicated with one end of the descending section (201 c); the other end of the ascending section (201 b) is communicated with the other end of the descending section (201 c).
2. A building block toy lifting conveyor as claimed in claim 1, wherein: a triangular plate (901) at the bottommost part of the vertical plate (9) is a lower triangular plate; the lower triangular plates are all fixed with supporting plates (7); the supporting plates (7) are arranged in parallel; the upper surface of the supporting plate (7) is connected with the upper surface of the lower triangular plate.
3. A building block toy lifting conveyor as claimed in claim 2, wherein: the upper surface of the supporting plate (7) is a supporting inclined plane; one end of the supporting inclined plane close to the vertical plate (9) is a supporting tail end; one end of the supporting inclined plane, which is far away from the vertical plate (9), is a supporting front end; the horizontal height of the front end of the support is greater than that of the tail end of the support.
CN201921990535.2U 2019-11-18 2019-11-18 Lifting and conveying device of building block toy Active CN211752494U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921990535.2U CN211752494U (en) 2019-11-18 2019-11-18 Lifting and conveying device of building block toy

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921990535.2U CN211752494U (en) 2019-11-18 2019-11-18 Lifting and conveying device of building block toy

Publications (1)

Publication Number Publication Date
CN211752494U true CN211752494U (en) 2020-10-27

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ID=72963545

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921990535.2U Active CN211752494U (en) 2019-11-18 2019-11-18 Lifting and conveying device of building block toy

Country Status (1)

Country Link
CN (1) CN211752494U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113318423A (en) * 2021-06-15 2021-08-31 浙江大学台州研究院 Literary wound intelligence-benefiting magic cube

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113318423A (en) * 2021-06-15 2021-08-31 浙江大学台州研究院 Literary wound intelligence-benefiting magic cube
CN113318423B (en) * 2021-06-15 2024-03-22 浙江大学台州研究院 Wen creates magic cube that benefits intelligence

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