CN212214611U - Magnetic building block toy - Google Patents
Magnetic building block toy Download PDFInfo
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- CN212214611U CN212214611U CN202020550119.7U CN202020550119U CN212214611U CN 212214611 U CN212214611 U CN 212214611U CN 202020550119 U CN202020550119 U CN 202020550119U CN 212214611 U CN212214611 U CN 212214611U
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Abstract
The magnetic building block toy comprises a main control module, a touch module, a photosensitive color module, an infrared module, a recording module, a sound module, a framework module and a wheel module which are all independent building blocks in a building block set; all modules are mutually attracted through a magnetic attraction structure; the magnetic adsorption structure comprises three grooves, two guide rails which are centrosymmetric are fixedly arranged in the two grooves, guide grooves are correspondingly formed in opposite sides of the two guide rails, guide pillars are arranged in each guide groove, a circular ring is fixedly connected between the two guide pillars, and a magnet block is embedded in the circular ring. The utility model uses the magnetic adsorption mode as the connection mode between the building blocks, has the advantages of good building block integrity and flexible lamination, the close force transmission of the magnet can meet the requirement between the building blocks, and the building blocks can be dropped by external force when encountering damaging external force; the adsorption between each module can be assembled with a trolley or other building block combinations, and the multifunctional building block has the advantages of multiple functions and convenience in operation.
Description
Technical Field
The utility model belongs to the technical field of the building blocks toy, concretely relates to formula building blocks toy is inhaled to magnetism.
Background
The blocks are generally referred to as cubic solid wood or plastic toys, generally decorated with colors or numbers on the surface, allowing different arrangements or building activities, in various forms, such as cubes and imposters. The building blocks can develop the intelligence of the children, can improve the hand-eye coordination ability and the observation imagination ability of the children, and are very beneficial to the early education of the children.
At present, building blocks in the market are mostly simple and common pure solid blocks or pure makeup types, and the children who use the object for infant are, and there is the building blocks product that has the electrical interface to the collocation of teenagers, like happy building blocks etc. but this kind of building blocks product needs professional knowledge higher, and building blocks product price is expensive, and suitable crowd is narrow. At present, building blocks product concatenation mode is mostly the fixed concatenation of formula of inserting of pulling out in the market, easily produces damage or wearing and tearing in long-time application process, makes to pull out to insert the cooperation and inefficacy. In addition, patent No. 201620106531.3 discloses an intelligent interactive building block system that facilitates two-way interaction of children with blocks, but makes it difficult to emphasize the functional role of the elements of the blocks themselves.
SUMMERY OF THE UTILITY MODEL
The utility model provides a magnetic building block toy which is not easy to damage or wear and is convenient to operate and play.
In order to solve the technical problem, the utility model adopts the following technical scheme: the magnetic building block toy comprises a main control module 1, a touch module 21, a photosensitive color module 28, an infrared module 29, a recording module 30, a sound module 31, a skeleton module 35 and a wheel module 36 which are all independent building blocks in a building block set;
the main control module 1, the touch module 21, the photosensitive color module 28, the infrared module 29, the recording module 30, the sound module 31 and the skeleton module 35 are all in a cube structure with the same side length; the main control module 1, the touch module 21, the photosensitive color module 28, the infrared module 29, the recording module 30, the sound module 31 and the skeleton module 35 all comprise a shell 2 with an open side, and the shell 2 is provided with a square cover plate 18 on the open side through a first buckle structure 19;
the wheel module 36 comprises a cylinder 40 and a wheel body 41, the wheel body 41 is coaxially and fixedly connected to the outside of the cylinder 40, one end or two end faces of the cylinder 40 protrude out of the side face of the wheel body 41, the outer diameter of the wheel body 41 is larger than the side length of the square structure, one end of the cylinder 40 is open, and the cylinder 40 is provided with a round cover plate 42 on the open side through a buckling structure;
the magnetic adsorption structures 3 with the same structure are arranged on five side surfaces of the shell 2 of the touch module 21, the photosensitive color module 28, the infrared module 29, the recording module 30, the sound module 31 and the skeleton module 35, four adjacent side surfaces of the square cover plate 18 on the shell 2 of the main control module 1, the round cover plate 42 and each square cover plate 18; all modules are mutually attracted through the magnetic attraction structure 3;
the magnetic adsorption structure 3 comprises three grooves 44 formed in the inner side walls of the shell 2 and the square cover plate 18, the three grooves 44 in the same surface are uniformly arranged along the center of the shell 2 or the square cover plate 18, two guide rails 45 are fixedly arranged on the inner side walls of the shell 2 and the square cover plate 18, the two guide rails 45 are symmetrically arranged about the center of the groove 44, guide grooves 46 are correspondingly formed in the opposite sides of the two guide rails 45, a guide pillar is arranged in each guide groove 46, a circular ring 48 is fixedly connected between the two guide pillars, and a magnet block 49 is embedded in the circular ring 48; the diameter of the groove 44 is larger than the outer diameter of the circular ring 48, and when the magnet block 49 is parallel to the groove 44, the center lines of the groove 44 and the circular ring 48 are coincided;
a magnetic adsorption type rotary power driving mechanism which is used for magnetically adsorbing the magnetic adsorption structure 3 of other modules and driving the other modules to rotate is arranged in the main control module 1; the magnetically attractive surface of the magnetically attractive rotary power drive faces the opposite side of the cover 18.
The inside main control circuit board 16 and the supporting baffle 13 that all is on a parallel with square cover plate 18 that is provided with of shell 2 of host system 1, main control circuit board 16 is located between supporting baffle 13 and the square cover plate 18, supporting baffle 13 is all around through the joint of second buckle structure 14 on shell 2, the four corners department of a supporting baffle 13 side is provided with a columniform first battery 12 respectively, supporting baffle 13 another side is provided with the first terminal 17 that is used for connecting first battery 12 and main control circuit board 16, the center department of square cover plate 18 is provided with control switch 20 that is used for switching main control circuit board 16 circuit, be provided with first wireless signal transmitter 15 on the main control circuit board 16.
The magnetic-type rotary power driving mechanism comprises a stepping motor 11, positioning rings 43 are arranged on a supporting partition plate 13 between four first batteries 12, the stepping motor 11 is fixedly arranged on the supporting partition plate 13 through the positioning rings 43, the central line of the stepping motor 11 is perpendicular to a square cover plate 18, a spline shaft head 10 is arranged at the end part of a main shaft of the stepping motor 11, the spline shaft head 10 is in transmission connection with a sun gear 8, a planet carrier 4 is rotatably connected to the inner wall of one side of a shell 2 adjacent to the sun gear 8, three planet gears 6 which are all meshed with the sun gear 8 are rotatably connected to the planet carrier 4, an inner gear ring 7 is arranged on the inner wall of the shell 2, the outer side parts of the three planet gears 6 are all meshed with the inner gear ring 7, three movable magnet pieces 5 which are respectively concentric with the planet gears 6 are fixedly arranged on the planet carrier 4, and one side of the shell 2 adjacent to the.
A control circuit board 24 which is parallel to the square cover plate 18 is arranged inside the shell 2 of the touch module 21, the photosensitive color module 28, the infrared module 29, the recording module 30 and the sound module 31, a second battery 26 and a second binding post 27 for connecting the second battery 26 and the control circuit board 24 are arranged on the inner side surfaces of the square cover plate 18 of the photosensitive color module 28, the infrared module 29, the recording module 30 and the sound module 31, and a second wireless signal emitter 25 is arranged on the control circuit board 24;
be provided with touch 23 on the side of touch module 21, be provided with photo resistance 32 on the shell 2 side of photosensitive color module 28, photosensitive color module 28's other four sides and square cover plate 18's surface all scribbles a colour, be provided with infrared inductor 33 on the shell 2 side of infrared module 29, be provided with recorder 34 on the shell 2 side of recording module 30, be provided with loudspeaker on the shell 2 side of sound module 31.
By adopting the technical scheme, the assembling operation method of the magnetic type building block toy comprises two modes of assembling and operating a building block trolley combination and a music box combination;
the assembly operation building block trolley combination comprises the following steps: A. building a building block trolley and a warning object; B. and controlling the movement of the building block trolley.
The step A specifically comprises the following steps:
a. five main control modules 1, three framework modules 35, four wheel modules 36, two photosensitive color modules 28, one sound module 31 and one touch module 21 are selected from the building block kit;
b. attracting the three skeleton modules 35 in a row along the front-back direction;
c. opening a control switch 20 on a bottom cover plate 18 of the main control module 1;
d. a main control module 1 is respectively sucked on the left side surfaces of the front framework module 35 and the rear framework module 35, and a square cover plate 18 of the main control module 1 is attached to the left side surface of the framework module 35; three magnet blocks 49 on the square cover plate 18 and three magnet blocks 49 on the left side surface of the framework module 35 are attracted together, and the attraction process of the three magnet blocks 49 on the square cover plate 18 and the three magnet blocks 49 on the left side surface of the framework module 35 is as follows: when the three magnets 49 on the square cover plate 18 and the three magnets 49 on the left side surface of the framework module 35 want to be opposite to the opposite magnetic poles, the three magnets 49 are directly adsorbed together, and the magnets 49 all slide into the grooves 44; when the magnetic poles of the opposite surfaces of the two opposite magnet blocks 49 are the same, repulsive force is generated between the two magnet blocks 49, the guide posts fixedly connected at the two sides of the circular ring 48 move inwards along the guide groove 46, when one guide post moves to a position where the distance between the guide post and the bottom of the groove 44 is larger than the radius of the circular ring 48, the circular ring 48 and the magnet block 49 rotate, the other surface of the magnet block 49 is opposite to the opposite magnet block 49, the magnetic poles of the opposite surfaces of the two magnet blocks 49 generate magnetic attraction force oppositely, the guide post moves outwards along the guide groove 46, and the magnet block 49 and the circular ring 48 are absorbed into the groove 44, so that the framework module 35 and the main control module 1 are absorbed into a whole;
then, one wheel module 36 is respectively attracted on the rotary driving surfaces at the left sides of the two main control modules 1, and three magnet blocks 49 on the round cover plate 42 of the wheel module 36 are correspondingly attracted with the three movable magnet pieces 5; the attraction process of the magnet block 49 corresponding to the three movable magnet pieces 5 is as follows: when the magnetic poles of the opposite surfaces of the magnet block 49 and the movable magnet piece 5 are the same, the magnet block 49 and the movable magnet piece 5 generate repulsive force, the guide posts fixedly connected on the two sides of the circular ring 48 move inwards along the guide groove 46, when the guide posts move to a position away from the bottom of the groove 44 and are larger than the radius of the circular ring 48, the circular ring 48 and the magnet block 49 rotate, the other surface of the magnet block 49 is opposite to the movable magnet piece 5, the magnetic poles of the opposite surfaces of the magnet block 49 and the movable magnet piece 5 generate magnetic attraction force, the guide posts move outwards along the guide groove 46, and the magnet block 49 and the circular ring 48 are adsorbed into the groove 44, so that the wheel module 36 and the main control module 1 are;
e. d, sequentially attracting the main control module 1 and the wheel module 36 on the right side surfaces of the front framework module 35 and the rear framework module 36 according to the mode of installing the main control module 1 and the wheel module 36 in the step d;
f. the photosensitive color module 28 is sucked on the upper side of the front framework module 35, and the photosensitive resistor 32 faces the front;
g. the touch module 21 is attracted to the upper side of the middle skeleton module 35, and the touch device 23 faces upwards;
h. the sound module 31 is attached to the upper side face of the rear framework module 35, and the building block trolley is built;
i. taking the fifth main control module 1, opening the control switch 20 on the main control module 1, enabling the rotary driving surface of the main control module 1 to face upwards, taking another photosensitive color module 28 to be sucked onto the rotary driving surface of the main control module 1, enabling the photosensitive resistor 32 on the photosensitive color module 28 to face upwards, respectively smearing four colors on four side surfaces of the photosensitive color module 28, and finishing building the warning object.
The step B specifically comprises the following steps:
i, placing the built building block trolley on a table top or other flat table surfaces, and placing a warning object in front of the building block trolley;
II, using a wireless control device to control the main control module 1 to rotate forwards at a slow speed when a photosensitive color module 28 in the building block trolley receives a first color, control the main control module 1 to rotate forwards at a fast speed when a second color is received, control the main control module 1 to rotate backwards at a slow speed when a third color is received, and control the main control module 1 to rotate backwards at a fast speed when a fourth color is received;
touching a touch device 23 on the top of the touch module 21 with a finger, starting the building block trolley, then controlling the stepping motor 11 of the main control module 1 in the warning object to rotate by using a wireless control device, wherein the stepping motor 11 drives the sun gear 8 to rotate, the sun gear 8 drives the three engaged planetary gears 6 to rotate, the three planetary gears 6 rotate along the inner gear ring 7 and simultaneously drive the planet carrier 4 to rotate, and the three movable magnet pieces 5 on the planet carrier 4 rotate; the photo resistance of the photosensitive color module front side on the building block trolley receives the color signal of the photosensitive color module 28 of the warning object in the rotating process, the master control module 1 which transmits the signal to the control wheel module 36 on the building block trolley in a wireless communication mode in the photosensitive color module on the building block trolley, the stepping motor 11 in the master control module 1 on the building block trolley rotates to play, the wheel module 36 is driven to rotate through the rotation of three movable magnet pieces 5, thereby the building block trolley advances or retreats, when the building block trolley advances, the horn on the sound module 31 on the building block trolley can send the sound of advancing, and the sound of retreating can be sent when retreating.
The specific assembling structure of the music box assembly for assembling operation is,
the music box consists of two skeleton modules 35, a photosensitive color module 28, an infrared module 29, a touch module 21 and two sound modules 31, wherein the two skeleton modules 35 are attracted up and down, the touch module 21 is attracted to the top of the skeleton module 35 at the upper part, a touch device 23 of the touch module 21 faces upwards, and the photosensitive color module 28, the infrared module 29 and the two sound modules 31 are respectively adsorbed on the four side surfaces of the skeleton module 35 at the upper part; the photo-resistor 32 of the photo-sensitive color module 28 is set in advance;
a control building block combination is arranged in front of the photosensitive color module 28, the control building block combination is composed of a main control module 1, a photosensitive color module 28 and a recording module 30, the photosensitive color module 28 is adsorbed on the top of the main control module 1, and the recording module 30 is adsorbed on the side of the main control module 1.
The specific operation process for assembling and operating the music box assembly is that the player operates the music box assembly through natural language, such as "switch! ", transmit the signal to the recording module 30, the recording module 30 turns the natural language signal of the player into the radio signal to transmit to the master control module 1, the master control module 1 controls the photosensitive color module 28 to rotate 90 degrees, namely switch one face, wherein, the photosensitive color module 28 of the control building block combination draws the black and white stripes of different arrangement modes on the four sides respectively, similar to the bar code, contain the information of the music or song, can be caught by the photosensitive color module 28 of the music box combination; a player starts the music box combination by touching the touch device 23 of the touch module 21 to enter a standby state, and after the black and white bar codes which control the song information on the side surface of the photosensitive color module 28 of the building block combination are captured by the photosensitive color module 28 of the music box combination, the two sound modules 31 are controlled in a radio mode to play music in stereo; the infrared module 29 senses the distance between the human body and the music box assembly, and if the human body is far away, the infrared module 29 controls the two sound modules 31 to play music with larger sound in a radio mode, otherwise, the sound is smaller.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the magnetic adsorption mode is used as the connection mode between the building blocks, the building blocks have the advantages of good integrity and flexible attachment, the close-distance force transmission of the magnet can meet the requirements between the building blocks, and the building blocks can be separated by external force when encountering destructive external force;
2. self-lubricating plastic polytetrafluoroethylene is used as the outer shell of the building blocks, and the friction force can be reduced when the building blocks rotate relatively, so that the abrasion of the building blocks is reduced and the building blocks are protected;
3. the building blocks are divided into modules according to functionality and can transmit and receive signals, so that each module has independent functions, the combinability is good, and the building blocks can be combined and changed in various types;
4. the main control module drives other modules to rotate after being connected through magnetic adsorption, and particularly drives the building block trolley to move back and forth by controlling the stepping motor to rotate forwards or backwards after the building block trolley is built, so that great pleasure can be brought to an operator;
5. the planetary gear is driven to rotate by the stepping motor, so that the planetary gear has the advantages of easiness in processing and manufacturing and high reliability;
6. the three fixed magnet pieces are correspondingly attracted with the three movable magnet pieces, and the attraction points of the regular triangle have the effect of strong stability;
7. the function definition of the building blocks can be realized by using wireless control equipment (mobile phone APP), the interface has good humanization degree, is simple and convenient, has low hand difficulty, and is suitable for most people;
8. the function is various: the main control module, the touch module, the photosensitive color module, the infrared module, the recording module, the sound module and the skeleton module can be assembled into other types of building block combinations;
9. the magnet block is turned over and adsorbed, so that when any two modules are taken to be adsorbed, the two modules with opposite polarities do not need to be selected, the magnet block is automatically adjusted in the modules to be adsorbed, and the operation is convenient and fast.
Drawings
FIG. 1 is a schematic view of the structure of the building block cart and the warning object;
FIG. 2 is a schematic diagram of a main control module according to the present invention;
fig. 3 is an exploded view of the main control module of the present invention;
fig. 4 is an external view of a touch module according to the present invention;
fig. 5 is an exploded view of a touch module according to the present invention;
FIG. 6 is a schematic diagram of a photosensitive color module according to the present invention;
fig. 7 is an outline view of the mid-infrared module of the present invention;
FIG. 8 is a schematic view of the recording module of the present invention;
fig. 9 is an outline view of the sound module of the present invention;
fig. 10 is an external view of a skeleton module according to the present invention;
fig. 11 is an external view of a wheel module according to the present invention;
FIG. 12 is an enlarged schematic view of a magnetic attachment structure on a square cover plate;
fig. 13 is a schematic diagram of the music box assembly and the control building block assembly after the construction of the utility model.
Detailed Description
As shown in fig. 2-12, the magnetic building block toy of the present invention comprises a main control module 1, a touch module 21, a photosensitive color module 28, an infrared module 29, a recording module 30, a sound module 31, a skeleton module 35 and a wheel module 36, all of which are independent building blocks in a building block set;
the main control module 1, the touch module 21, the photosensitive color module 28, the infrared module 29, the recording module 30, the sound module 31 and the skeleton module 35 are all in a cube structure with the same side length; the main control module 1, the touch module 21, the photosensitive color module 28, the infrared module 29, the recording module 30, the sound module 31 and the skeleton module 35 all comprise a shell 2 with an open side, and the shell 2 is provided with a square cover plate 18 on the open side through a first buckle structure 19;
the wheel module 36 comprises a cylinder 40 and a wheel body 41, the wheel body 41 is coaxially and fixedly connected to the outside of the cylinder 40, one end or two end faces of the cylinder 40 protrude out of the side face of the wheel body 41, the outer diameter of the wheel body 41 is larger than the side length of the square structure, one end of the cylinder 40 is open, and the cylinder 40 is provided with a round cover plate 42 on the open side through a buckling structure;
the magnetic adsorption structures 3 with the same structure are arranged on five side surfaces of the shell 2 of the touch module 21, the photosensitive color module 28, the infrared module 29, the recording module 30, the sound module 31 and the skeleton module 35, four adjacent side surfaces of the square cover plate 18 on the shell 2 of the main control module 1, the round cover plate 42 and each square cover plate 18; all modules are mutually attracted through the magnetic attraction structure 3;
the magnetic adsorption structure 3 comprises three grooves 44 formed in the inner side walls of the shell 2 and the square cover plate 18, the three grooves 44 in the same surface are uniformly arranged along the center of the shell 2 or the square cover plate 18, two guide rails 45 are fixedly arranged on the inner side walls of the shell 2 and the square cover plate 18, the two guide rails 45 are symmetrically arranged about the center of the groove 44, guide grooves 46 are correspondingly formed in the opposite sides of the two guide rails 45, a guide pillar is arranged in each guide groove 46, a circular ring 48 is fixedly connected between the two guide pillars, and a magnet block 49 is embedded in the circular ring 48; the diameter of the groove 44 is larger than the outer diameter of the circular ring 48, and when the magnet block 49 is parallel to the groove 44, the center lines of the groove 44 and the circular ring 48 are coincided;
a magnetic adsorption type rotary power driving mechanism which is used for magnetically adsorbing the magnetic adsorption structure 3 of other modules and driving the other modules to rotate is arranged in the main control module 1; the magnetically attractive surface of the magnetically attractive rotary power drive faces the opposite side of the cover 18.
The inside main control circuit board 16 and the supporting baffle 13 that all is on a parallel with square cover plate 18 that is provided with of shell 2 of host system 1, main control circuit board 16 is located between supporting baffle 13 and the square cover plate 18, supporting baffle 13 is all around through the joint of second buckle structure 14 on shell 2, the four corners department of a supporting baffle 13 side is provided with a columniform first battery 12 respectively, supporting baffle 13 another side is provided with the first terminal 17 that is used for connecting first battery 12 and main control circuit board 16, the center department of square cover plate 18 is provided with control switch 20 that is used for switching main control circuit board 16 circuit, be provided with first wireless signal transmitter 15 on the main control circuit board 16.
The magnetic-type rotary power driving mechanism comprises a stepping motor 11, positioning rings 43 are arranged on a supporting partition plate 13 between four first batteries 12, the stepping motor 11 is fixedly arranged on the supporting partition plate 13 through the positioning rings 43, the central line of the stepping motor 11 is perpendicular to a square cover plate 18, a spline shaft head 10 is arranged at the end part of a main shaft of the stepping motor 11, the spline shaft head 10 is in transmission connection with a sun gear 8, a planet carrier 4 is rotatably connected to the inner wall of one side of a shell 2 adjacent to the sun gear 8, three planet gears 6 which are all meshed with the sun gear 8 are rotatably connected to the planet carrier 4, an inner gear ring 7 is arranged on the inner wall of the shell 2, the outer side parts of the three planet gears 6 are all meshed with the inner gear ring 7, three movable magnet pieces 5 which are respectively concentric with the planet gears 6 are fixedly arranged on the planet carrier 4, and one side of the shell 2 adjacent to the.
A control circuit board 24 which is parallel to the square cover plate 18 is arranged inside the shell 2 of the touch module 21, the photosensitive color module 28, the infrared module 29, the recording module 30 and the sound module 31, a second battery 26 and a second binding post 27 for connecting the second battery 26 and the control circuit board 24 are arranged on the inner side surfaces of the square cover plate 18 of the photosensitive color module 28, the infrared module 29, the recording module 30 and the sound module 31, and a second wireless signal emitter 25 is arranged on the control circuit board 24;
be provided with touch 23 on the side of touch module 21, be provided with photo resistance 32 on the shell 2 side of photosensitive color module 28, photosensitive color module 28's other four sides and square cover plate 18's surface all scribbles a colour, be provided with infrared inductor 33 on the shell 2 side of infrared module 29, be provided with recorder 34 on the shell 2 side of recording module 30, be provided with loudspeaker on the shell 2 side of sound module 31.
The assembling operation method of the magnetic type building block toy of the utility model comprises two modes of assembling and operating a building block trolley combination and a music box combination;
as shown in fig. 1, the building block and trolley combination comprises the following steps: A. building a building block trolley and a warning object; B. and controlling the movement of the building block trolley.
The step A specifically comprises the following steps:
a. five main control modules 1, three framework modules 35, four wheel modules 36, two photosensitive color modules 28, one sound module 31 and one touch module 21 are selected from the building block kit;
b. attracting the three skeleton modules 35 in a row along the front-back direction;
c. opening a control switch 20 on a bottom cover plate 18 of the main control module 1;
d. a main control module 1 is respectively sucked on the left side surfaces of the front framework module 35 and the rear framework module 35, and a square cover plate 18 of the main control module 1 is attached to the left side surface of the framework module 35; three magnet blocks 49 on the square cover plate 18 and three magnet blocks 49 on the left side surface of the framework module 35 are attracted together, and the attraction process of the three magnet blocks 49 on the square cover plate 18 and the three magnet blocks 49 on the left side surface of the framework module 35 is as follows: when the three magnets 49 on the square cover plate 18 and the three magnets 49 on the left side surface of the framework module 35 want to be opposite to the opposite magnetic poles, the three magnets 49 are directly adsorbed together, and the magnets 49 all slide into the grooves 44; when the magnetic poles of the opposite surfaces of the two opposite magnet blocks 49 are the same, repulsive force is generated between the two magnet blocks 49, the guide posts fixedly connected at the two sides of the circular ring 48 move inwards along the guide groove 46, when one guide post moves to a position where the distance between the guide post and the bottom of the groove 44 is larger than the radius of the circular ring 48, the circular ring 48 and the magnet block 49 rotate, the other surface of the magnet block 49 is opposite to the opposite magnet block 49, the magnetic poles of the opposite surfaces of the two magnet blocks 49 generate magnetic attraction force oppositely, the guide post moves outwards along the guide groove 46, and the magnet block 49 and the circular ring 48 are absorbed into the groove 44, so that the framework module 35 and the main control module 1 are absorbed into a whole;
then, one wheel module 36 is respectively attracted on the rotary driving surfaces at the left sides of the two main control modules 1, and three magnet blocks 49 on the round cover plate 42 of the wheel module 36 are correspondingly attracted with the three movable magnet pieces 5; the attraction process of the magnet block 49 corresponding to the three movable magnet pieces 5 is as follows: when the magnetic poles of the opposite surfaces of the magnet block 49 and the movable magnet piece 5 are the same, the magnet block 49 and the movable magnet piece 5 generate repulsive force, the guide posts fixedly connected on the two sides of the circular ring 48 move inwards along the guide groove 46, when the guide posts move to a position away from the bottom of the groove 44 and are larger than the radius of the circular ring 48, the circular ring 48 and the magnet block 49 rotate, the other surface of the magnet block 49 is opposite to the movable magnet piece 5, the magnetic poles of the opposite surfaces of the magnet block 49 and the movable magnet piece 5 generate magnetic attraction force, the guide posts move outwards along the guide groove 46, and the magnet block 49 and the circular ring 48 are adsorbed into the groove 44, so that the wheel module 36 and the main control module 1 are;
e. d, sequentially attracting the main control module 1 and the wheel module 36 on the right side surfaces of the front framework module 35 and the rear framework module 36 according to the mode of installing the main control module 1 and the wheel module 36 in the step d;
f. the photosensitive color module 28 is sucked on the upper side of the front framework module 35, and the photosensitive resistor 32 faces the front;
g. the touch module 21 is attracted to the upper side of the middle skeleton module 35, and the touch device 23 faces upwards;
h. the sound module 31 is attached to the upper side face of the rear framework module 35, and the building block trolley is built;
i. taking the fifth main control module 1, opening the control switch 20 on the main control module 1, enabling the rotary driving surface of the main control module 1 to face upwards, taking another photosensitive color module 28 to be sucked onto the rotary driving surface of the main control module 1, enabling the photosensitive resistor 32 on the photosensitive color module 28 to face upwards, respectively smearing four colors on four side surfaces of the photosensitive color module 28, and finishing building the warning object.
The step B specifically comprises the following steps:
i, placing the built building block trolley on a table top or other flat table surfaces, and placing a warning object in front of the building block trolley;
II, using a wireless control device to control the main control module 1 to rotate forwards at a slow speed when a photosensitive color module 28 in the building block trolley receives a first color, control the main control module 1 to rotate forwards at a fast speed when a second color is received, control the main control module 1 to rotate backwards at a slow speed when a third color is received, and control the main control module 1 to rotate backwards at a fast speed when a fourth color is received;
touching a touch device 23 on the top of the touch module 21 with a finger, starting the building block trolley, then controlling the stepping motor 11 of the main control module 1 in the warning object to rotate by using a wireless control device, wherein the stepping motor 11 drives the sun gear 8 to rotate, the sun gear 8 drives the three engaged planetary gears 6 to rotate, the three planetary gears 6 rotate along the inner gear ring 7 and simultaneously drive the planet carrier 4 to rotate, and the three movable magnet pieces 5 on the planet carrier 4 rotate; the photo resistance of the photosensitive color module front side on the building block trolley receives the color signal of the photosensitive color module 28 of the warning object in the rotating process, the master control module 1 which transmits the signal to the control wheel module 36 on the building block trolley in a wireless communication mode in the photosensitive color module on the building block trolley, the stepping motor 11 in the master control module 1 on the building block trolley rotates to play, the wheel module 36 is driven to rotate through the rotation of three movable magnet pieces 5, thereby the building block trolley advances or retreats, when the building block trolley advances, the horn on the sound module 31 on the building block trolley can send the sound of advancing, and the sound of retreating can be sent when retreating.
As shown in fig. 13, the music box assembly for assembly operation has a specific assembly structure,
the music box consists of two skeleton modules 35, a photosensitive color module 28, an infrared module 29, a touch module 21 and two sound modules 31, wherein the two skeleton modules 35 are attracted up and down, the touch module 21 is attracted to the top of the skeleton module 35 at the upper part, a touch device 23 of the touch module 21 faces upwards, and the photosensitive color module 28, the infrared module 29 and the two sound modules 31 are respectively adsorbed on the four side surfaces of the skeleton module 35 at the upper part; the photo-resistor 32 of the photo-sensitive color module 28 is set in advance;
a control building block combination is arranged in front of the photosensitive color module 28, the control building block combination is composed of a main control module 1, a photosensitive color module 28 and a recording module 30, the photosensitive color module 28 is adsorbed on the top of the main control module 1, and the recording module 30 is adsorbed on the side of the main control module 1.
The specific operation process for assembling and operating the music box assembly is that the player operates the music box assembly through natural language, such as "switch! ", transmit the signal to the recording module 30, the recording module 30 turns the natural language signal of the player into the radio signal to transmit to the master control module 1, the master control module 1 controls the photosensitive color module 28 to rotate 90 degrees, namely switch one face, wherein, the photosensitive color module 28 of the control building block combination draws the black and white stripes of different arrangement modes on the four sides respectively, similar to the bar code, contain the information of the music or song, can be caught by the photosensitive color module 28 of the music box combination; a player starts the music box combination by touching the touch device 23 of the touch module 21 to enter a standby state, and after the black and white bar codes which control the song information on the side surface of the photosensitive color module 28 of the building block combination are captured by the photosensitive color module 28 of the music box combination, the two sound modules 31 are controlled in a radio mode to play music in stereo; the infrared module 29 senses the distance between the human body and the music box assembly, and if the human body is far away, the infrared module 29 controls the two sound modules 31 to play music with larger sound in a radio mode, otherwise, the sound is smaller.
It is important to point out that the automatic control between each hardware in the present invention does not involve a new computer program, and can be realized only by the existing conventional computer program.
The present embodiment is not intended to limit the shape, material, structure, etc. of the present invention in any form, and all of the technical matters of the present invention belong to the protection scope of the present invention to any simple modification, equivalent change and modification made by the above embodiments.
Claims (4)
1. Formula building blocks toy is inhaled to magnetism, its characterized in that: the intelligent building block comprises a main control module (1), a touch module (21), a photosensitive color module (28), an infrared module (29), a recording module (30), a sound module (31), a skeleton module (35) and a wheel module (36), wherein the main control module, the touch module (21), the photosensitive color module, the infrared module (29), the recording module (30), the sound module (31), the skeleton module and the wheel module are all independent building blocks in;
the main control module (1), the touch module (21), the photosensitive color module (28), the infrared module (29), the recording module (30), the sound module (31) and the skeleton module (35) are all in a cube structure with the same side length; the main control module (1), the touch module (21), the photosensitive color module (28), the infrared module (29), the recording module (30), the sound module (31) and the framework module (35) respectively comprise a shell (2) with an open side, and a square cover plate (18) is arranged on the open side of the shell (2) through a first buckle structure (19);
the wheel module (36) comprises a cylinder body (40) and a wheel body (41), the wheel body (41) is coaxially and fixedly connected to the outside of the cylinder body (40), one end or two end faces of the cylinder body (40) protrude out of the side face of the wheel body (41), the outer diameter of the wheel body (41) is larger than the side length of the square structure, one end of the cylinder body (40) is open, and the cylinder body (40) is provided with a circular cover plate (42) on the open side through a clamping structure;
magnetic adsorption structures (3) with the same structure are arranged on five side faces of the shell (2) of the touch module (21), the photosensitive color module (28), the infrared module (29), the recording module (30), the sound module (31) and the skeleton module (35), four adjacent side faces of the square cover plate (18) on the shell (2) of the main control module (1), the round cover plate (42) and each square cover plate (18); the modules are mutually attracted through the magnetic adsorption structure (3);
the magnetic adsorption structure (3) comprises three grooves (44) formed in the inner side walls of the shell (2) and the square cover plate (18), the three grooves (44) in the same surface are uniformly arranged along the center of the shell (2) or the square cover plate (18), two guide rails (45) are fixedly arranged on the inner side walls of the shell (2) and the square cover plate (18), the two guide rails (45) are symmetrically arranged relative to the center of the groove (44), guide grooves (46) are correspondingly formed in the opposite sides of the two guide rails (45), a guide pillar is arranged in each guide groove (46), a circular ring (48) is fixedly connected between the two guide pillars, and a magnet block (49) is embedded in the circular ring (48); the diameter of the groove (44) is larger than the outer diameter of the circular ring (48), and when the magnet block (49) is parallel to the groove (44), the center lines of the groove (44) and the circular ring (48) are superposed;
a magnetic adsorption type rotary power driving mechanism which is used for magnetically adsorbing the magnetic adsorption structure (3) of other modules and driving the other modules to rotate is arranged in the main control module (1); the magnetic attraction surface of the magnetic rotary power driving mechanism faces to the opposite side surface of the square cover plate (18).
2. A magnetic building block toy according to claim 1, wherein: the main control circuit board (16) and the supporting partition board (13) which are all parallel to the square cover board (18) are arranged inside the shell (2) of the main control module (1), the main control circuit board (16) is located between the supporting partition board (13) and the square cover board (18), the supporting partition board (13) is connected to the shell (2) in a clamping mode through the second clamping structure (14) all around, the four corners of one side face of the supporting partition board (13) are respectively provided with a first cylindrical battery (12), the other side face of the supporting partition board (13) is provided with a first wiring terminal (17) used for connecting the first battery (12) and the main control circuit board (16), the center of the square cover board (18) is provided with a control switch (20) used for opening and closing the circuit of the main control circuit board (16), and the main control circuit board (16) is provided with a.
3. A magnetic building block toy according to claim 2, wherein: the magnetic-type rotary power driving mechanism comprises a stepping motor (11), positioning rings (43) are arranged between four first batteries (12) on a supporting partition plate (13), the stepping motor (11) is fixedly arranged on the supporting partition plate (13) through the positioning rings (43), the center line of the stepping motor (11) is perpendicular to a square cover plate (18), a spline shaft head (10) is arranged at the end part of a main shaft of the stepping motor (11), the spline shaft head (10) is in transmission connection with a sun gear (8), a planetary gear rack (4) is rotatably connected to the inner wall of one side, adjacent to the sun gear (8), of a shell (2), three planetary gears (6) which are respectively meshed with the sun gear (8) are rotatably connected to the planetary gear rack (4), an inner gear ring (7) is arranged on the inner wall of the shell (2), the outer side parts of the three planetary gears (6) are respectively meshed with the inner gear ring (7), and three movable magnets (6) which are respectively concentric with the planetary gears (5) And one side surface of the shell (2) corresponding to and adjacent to the three movable magnet sheets (5) is a rotary driving surface.
4. A magnetic building block toy according to claim 1, wherein: a control circuit board (24) which is parallel to the square cover plate (18) is arranged inside a shell (2) of the touch module (21), the photosensitive color module (28), the infrared module (29), the recording module (30) and the sound module (31), a second battery (26) and a second wiring terminal (27) used for connecting the second battery (26) and the control circuit board (24) are arranged on the inner side surfaces of the square cover plate (18) of the photosensitive color module (28), the infrared module (29), the recording module (30) and the sound module (31), and a second wireless signal emitter (25) is arranged on the control circuit board (24);
be provided with touch ware (23) on the side of touch module (21), be provided with on shell (2) side of photosensitive colour module (28) photo resistance (32), the surface of other four sides and square apron (18) of photosensitive colour module (28) all scribbles a colour, be provided with infrared inductor (33) on shell (2) side of infrared module (29), be provided with recorder (34) on shell (2) side of recording module (30), be provided with loudspeaker on shell (2) side of sound module (31).
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN114832397A (en) * | 2021-02-01 | 2022-08-02 | 深圳市芯扬智能科技有限公司 | Control system for intelligent building block identity recognition and interconnection linkage |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN114832397A (en) * | 2021-02-01 | 2022-08-02 | 深圳市芯扬智能科技有限公司 | Control system for intelligent building block identity recognition and interconnection linkage |
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