Cartoon work display equipment and method based on steering adjustment
1. Cartoon work display equipment based on steering adjustment comprises a support box (1) and a display screen body (2); the method is characterized in that:
the support box (1) is provided with a first steering assembly (3); a second steering component (4) is arranged on the first steering component (3); the second steering component (4) is arranged on the back surface of the display screen body (2);
the first steering assembly (3) comprises a bearing frame (301) for mounting a second steering assembly (4); two opposite side edges of the bearing frame (301) are rotatably connected with a first supporting column (302) and a second supporting column (303); the lower end of the first support column (302) is fixed on the top wall of the support box (1); the second supporting column (303) is arranged above the supporting box (1) in a sliding manner;
the second steering assembly (4) comprises a support ring (401) fixed on the inner side of a bearing frame (301); one surface of the support ring (401) is rotatably connected with the back surface of the display screen body (2); a driving shaft (402) is coaxially arranged on the inner side of the supporting ring (401); one end of the driving shaft (402) is fixed on the back surface of the display screen body (2); the other end of the driving shaft (402) is connected with the upper end of a vertically arranged telescopic shaft (404) through a universal joint (403); the telescopic shaft (404) is rotatably inserted on the top wall of the support box (1).
2. The cartoon work display equipment based on steering adjustment of claim 1, wherein a driving column (5) is coaxially fixed at the lower end of the telescopic shaft (404); a first gear (501) is horizontally sleeved on the transmission column (5); a second gear (502) is meshed with the first gear (501); the second gear (502) is horizontally fixed on an output shaft of a driving motor (6); the driving motor (6) is fixed on the top wall of the supporting box (1).
3. The cartoon work display equipment based on steering adjustment according to claim 2 is characterized in that a pair of push rods (7) corresponding to the second supporting column (303) are inserted in a side-by-side sliding manner in one side wall of the supporting box (1); one end of the push rod (7) is connected with the lower end of the second supporting column (303); a transmission rack (701) is fixed at the other end of the push rod (7) along the length direction; a pair of first supporting shafts (8) is vertically arranged between the two transmission racks (701); the lower end of the first supporting shaft (8) is rotatably connected to the bottom wall of the supporting box (1); a transmission belt wheel (801) is horizontally fixed at the upper end of the first support shaft (8); the two transmission belt wheels (801) are in transmission connection through a synchronous belt (802); a plurality of teeth are arranged on the working surface of the synchronous belt (802) side by side along the length direction; the teeth on the synchronous belt (802) are meshed with a transmission rack (701); a second supporting shaft (9) is vertically arranged between the synchronous belt (802) and the other transmission rack (701); the lower end of the second supporting shaft (9) is rotatably connected to the bottom wall of the supporting box (1); a third gear (901) is horizontally fixed at the upper end of the second supporting shaft (9); the third gear (901) is meshed with teeth on the synchronous belt (802) and another transmission rack (701).
4. The cartoon work display equipment based on steering adjustment according to claim 3, characterized in that the horizontal cross section of the transmission column (5) is in a regular polygon structure.
5. The cartoon work display equipment based on steering adjustment according to claim 3, characterized in that the transmission column (5) is in sliding fit with the first gear (501); a tension spring (10) is arranged between the first gear (501) and the top wall of the support box (1); the tensioning spring (10) is sleeved on the transmission column (5).
6. The cartoon work display equipment based on steering adjustment according to claim 3, characterized in that a first guide column (11) is vertically arranged on each of two opposite sides of the transmission column (5); the upper end of the first guide column (11) is fixed on the top wall of the support box (1); a guide sleeve (1101) is slidably sleeved on the first guide column (11); a first limiting sheet and a second limiting sheet are horizontally fixed on one side surface of the guide sleeve (1101) respectively; the opposite inner side surfaces of the first limiting piece and the second limiting piece are respectively attached to the upper surface and the lower surface of the first gear (501).
7. The cartoon work display equipment based on steering adjustment of claim 6, wherein a magnet piece (1102) is fixedly embedded in the upper surface of the first limiting piece; a matched electromagnet (12) is arranged above the magnet piece (1102); the electromagnet (12) is fixed on the top wall of the support box (1); one edge of the second limiting sheet close to the transmission column (5) is provided with a lower folded edge; one side of the lower folded edge is rotatably connected with a transmission rod (1103).
8. The cartoon work presentation apparatus based on turning direction adjustment of claim 7, wherein two said driving levers (1103) are connected by a movable block (13) toward the same end; a second guide post (1301) is inserted on the movable block (13) in a sliding mode; the second guide column (1301) is arranged in parallel with the transmission rack (701); one end of the second guide column (1301) is fixed on the other side wall of the support box (1).
9. The cartoon work display equipment based on steering adjustment according to claim 8, characterized in that the upper surface of the movable block (13) is rotatably provided with a horizontally arranged fourth gear (14); the fourth gear (14) can be meshed with the second gear (502) and teeth on the synchronous belt (802).
10. The method for using the animation work display device based on the steering adjustment as claimed in any one of claims 1 to 9, comprising:
the electromagnet (12) attracts or repels the magnet sheet (1102) by changing the direction of the current led into the electromagnet (12);
when the first steering assembly (3) is needed to steer the display screen body (2), the electromagnet (12) attracts the magnet piece (1102), at the moment, the fourth gear (14) is meshed with the second gear (502), the first gear (501) is not meshed with the second gear (502), the driving motor (6) is utilized to drive the second gear (502) to rotate, and power is transmitted to the push rod (7) through the first gear (501), the fourth gear (14), the synchronous belt (802), the third gear (901) and the transmission rack (701), so that the display screen body (2) is driven to rotate;
when needing second to turn to subassembly (4) and transferring to show screen body (2), electro-magnet (12) are rejected magnet piece (1102), and first gear (501) mesh and second gear (502) and fourth gear (14) and second gear (502) do not mesh this moment, utilize driving motor (6) to drive second gear (502) and rotate to through first gear (501), transmission post (5), telescopic shaft (404) and universal joint (403) with power transmission to drive shaft (402), thereby drive show screen body (2) and rotate.
Background
Animation is one of the multimedia image forms enjoyed by modern young people, and carries out the creation of three-dimensional movie and animation artistic works by using a three-dimensional animation software tool. Among the prior art, adopt the display screen to demonstrate with the form of broadcast cartoon work usually, because its screen of display screen is generally unrotatable after the installation, and the horizontal length of display screen is greater than its vertical length usually, this makes when showing some vertical length and being greater than the cartoon work of horizontal length, can lead to the whole less of cartoon work, leads to the whole definition reduction of cartoon work. Therefore, there is a need to develop a cartoon work display apparatus and method based on turning adjustment so as to solve the above-mentioned problems.
Disclosure of Invention
The invention aims to provide animation work display equipment and method based on steering adjustment, and aims to solve the problems in the background technology.
In order to solve the technical problems, the invention is realized by the following technical scheme:
the invention relates to cartoon work display equipment based on steering adjustment, which comprises a support box and a display screen body, wherein the support box is provided with a support box body; the supporting box is provided with a first steering assembly; the first steering assembly is provided with a second steering assembly; the second steering assembly is arranged on the back surface of the display screen body; the first steering assembly comprises a bearing frame for mounting a second steering assembly; two opposite side edges of the bearing frame are rotatably connected with a first supporting column and a second supporting column; the lower end of the first support column is fixed on the top wall of the support box; the second supporting column is arranged above the supporting box in a sliding manner; the second steering assembly comprises a support ring fixed on the inner side of the bearing frame; one surface of the support ring is rotatably connected with the back surface of the display screen body; a driving shaft is coaxially arranged on the inner side of the supporting ring; one end of the driving shaft is fixed on the back surface of the display screen body; the other end of the driving shaft is connected with the upper end of a vertically arranged telescopic shaft through a universal joint; the telescopic shaft is rotatably inserted in the top wall of the supporting box.
Furthermore, a transmission column is coaxially fixed at the lower end of the telescopic shaft; a first gear is horizontally sleeved on the transmission column; a second gear is meshed with the first gear; the second gear is horizontally fixed on an output shaft of a driving motor; the driving motor is fixed on the top wall of the supporting box.
Furthermore, a pair of push rods corresponding to the second support column are inserted into one side wall of the support box in a sliding mode side by side; one end of the push rod is connected with the lower end of the second supporting column; a transmission rack is fixed at the other end of the push rod along the length direction; a pair of first supporting shafts is vertically arranged between the two transmission racks; the lower end of the first supporting shaft is rotatably connected to the bottom wall of the supporting box; a transmission belt wheel is horizontally fixed at the upper end of the first supporting shaft; the two transmission belt wheels are in transmission connection through a synchronous belt; a plurality of teeth are arranged on the working surface of the synchronous belt side by side along the length direction; the teeth on the synchronous belt are meshed with a transmission rack; a second supporting shaft is vertically arranged between the synchronous belt and the other transmission rack; the lower end of the second supporting shaft is rotatably connected to the bottom wall of the supporting box; a third gear is horizontally fixed at the upper end of the second supporting shaft; and the third gear is meshed with the teeth on the synchronous belt and the other transmission rack.
Furthermore, the horizontal cross section of the transmission column is of a regular polygon structure; the transmission column is in sliding fit with the first gear; a tension spring is arranged between the first gear and the top wall of the support box; the tensioning spring is sleeved on the transmission column; a first guide column is vertically arranged on one opposite side of the transmission column; the upper end of the first guide column is fixed on the top wall of the support box; a guide sleeve is slidably sleeved on the first guide column; a first limiting piece and a second limiting piece are horizontally fixed on one side surface of the guide sleeve respectively; the opposite inner side surfaces of the first limiting piece and the second limiting piece are respectively attached to the upper surface and the lower surface of the first gear; a magnet piece is fixedly embedded in the upper surface of the first limiting piece; a matched electromagnet is arranged above the magnet piece; the electromagnet is fixed on the top wall of the supporting box; one edge of the second limiting sheet close to the transmission column is provided with a lower folded edge; one side surface of the lower folded edge is rotatably connected with a transmission rod; one ends of the two transmission rods facing the same direction are connected through a movable block; a second guide post is inserted on the movable block in a sliding manner; the second guide column is arranged in parallel with the transmission rack; one end of the second guide column is fixed on the other side wall of the support box; the upper surface of the movable block is rotatably provided with a horizontally arranged fourth gear; the fourth gear can be meshed with the second gear and teeth on the synchronous belt.
A method for using the cartoon work display device based on steering adjustment as described above, comprising:
the electromagnet attracts or repels the magnet piece by changing the direction of the current led into the electromagnet;
when the first steering assembly is needed to steer the display screen body, the electromagnet attracts the magnet piece, the fourth gear is meshed with the second gear, the first gear is not meshed with the second gear, the driving motor is utilized to drive the second gear to rotate, and power is transmitted to the push rod through the first gear, the fourth gear, the synchronous belt, the third gear and the transmission rack, so that the display screen body is driven to rotate;
when needing the second to turn to the subassembly and to the show screen body when transferring to, the electro-magnet repels the magnet piece, and first gear meshes mutually and fourth gear and second gear unmeshing with the second gear this moment, utilizes driving motor to drive the second gear and rotates to pass through first gear, transmission post, telescopic shaft and universal joint with power transmission to the drive shaft, thereby drive the show screen body and rotate.
The invention has the following beneficial effects:
according to the invention, the first steering assembly is arranged on the support box, and the second steering assembly is utilized to connect the first steering assembly with the display screen body, so that steering adjustment can be carried out on the display screen body, the structural design is reasonable, the use is convenient and fast, the use effect of the cartoon work display equipment is effectively improved, and the cartoon work display equipment has higher market application value.
Of course, it is not necessary for any product in which the invention is practiced to achieve all of the above-described advantages at the same time.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a schematic structural diagram of a cartoon work display device based on steering adjustment according to the present invention;
FIG. 2 is a rear view of the structure of FIG. 1;
FIG. 3 is a schematic structural view of the first steering assembly and the second steering assembly mounted on the supporting box according to the present invention;
FIG. 4 is a schematic structural view of the present invention with the driving motor, the pushing rod, the electromagnet and the fourth gear installed in the supporting box;
FIG. 5 is a schematic structural view of the present invention with the driving post, the driving motor, the first guiding post and the first supporting shaft installed in the supporting box;
FIG. 6 is a diagram showing the positional relationship among the push rod, the first support shaft, the second support shaft, the first guide post, the electromagnet, the movable block, and the fourth gear according to the present invention;
fig. 7 is a diagram of the position relationship among the transmission column, the tension spring, the first guide column, the movable block and the fourth gear.
In the drawings, the components represented by the respective reference numerals are listed below:
1-support box, 2-display screen body, 3-first steering component, 4-second steering component, 5-transmission column, 6-driving motor, 7-pushing rod, 8-first support shaft, 9-second support shaft, 10-tension spring, 11-first guide column, 12-electromagnet, 13-movable block, 14-fourth gear, 301-bearing frame, 302-first support column, 303-second support column, 401-support ring, 402-driving shaft, 403-universal joint, 404-telescopic shaft, 501-first gear, 502-second gear, 701-transmission rack, 801-transmission pulley, 802-synchronous belt, 901-third gear, 1101-guide sleeve, 1102-magnet sheet, 1103-drive rod, 1301-second guide post.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-7, the present invention relates to a cartoon work display device based on turning adjustment, which comprises a supporting box 1 and a display screen body 2; the support box 1 is provided with a first steering component 3; the first steering component 3 is provided with a second steering component 4; the second steering component 4 is arranged on the back surface of the display screen body 2; the first steering assembly 3 comprises a carrying frame 301 for mounting the second steering assembly 4; the bearing frame 301 is of a square structure; two opposite side edges of the carrying frame 301 are rotatably connected with a first supporting column 302 and a second supporting column 303; the lower end of the first support column 302 is fixed on the top wall of the support box 1; the second supporting column 303 is slidably arranged above the supporting box 1; a pair of push rods 7 corresponding to the second support columns 303 are inserted into one side wall of the support box 1 in a sliding mode in parallel; one end of the push rod 7 is fixedly connected with the lower end of the second supporting column 303; a transmission rack 701 is fixed at the other end of the push rod 7 along the length direction; the transmission rack 701 is arranged inside the support box 1; a pair of first supporting shafts 8 is vertically arranged between the two transmission racks 701; the lower end of the first supporting shaft 8 is rotatably connected to the bottom wall of the supporting box 1; a transmission belt wheel 801 is horizontally fixed at the upper end of the first supporting shaft 8; the two driving belt wheels 801 are in transmission connection through a synchronous belt 802; a plurality of teeth are arranged on the working surface of the synchronous belt 802 side by side along the length direction; the teeth on the synchronous belt 802 are engaged with a transmission rack 701, and the transmission rack 701 is engaged with the teeth on the outer periphery of a transmission pulley 801 (the transmission pulley 801 is similar to a gear structure by the teeth wound on the transmission pulley 801); a second supporting shaft 9 is vertically arranged between the synchronous belt 802 and the other transmission rack 701; the lower end of the second supporting shaft 9 is rotatably connected to the bottom wall of the supporting box 1; a third gear 901 is horizontally fixed at the upper end of the second supporting shaft 9; the third gear 901 is engaged with the teeth on the synchronous belt 802 and the other transmission rack 701, and the third gear 901 is engaged with the teeth on the outer periphery of the other transmission pulley 801 (the teeth wound on the transmission pulley 801 make the transmission pulley 801 similar to a gear structure);
the second steering assembly 4 comprises a support ring 401 fixed to the inner side of the carriage frame 301; one surface of the support ring 401 is rotatably connected with the back surface of the display screen body 2; a driving shaft 402 is coaxially arranged at the inner side of the supporting ring 401; one end of the driving shaft 402 is fixed on the back of the display screen body 2; the other end of the driving shaft 402 is connected with the upper end of a vertically arranged telescopic shaft 404 through a universal joint 403; the telescopic shaft 404 is composed of a rod barrel and a support rod inserted in the rod barrel in a sliding manner, and the support rod can slide in the rod barrel axially and can be driven by the rod barrel to rotate together; the telescopic shaft 404 is rotatably inserted on the top wall of the support box 1; a transmission column 5 is coaxially fixed at the lower end of the telescopic shaft 404; a first gear 501 is horizontally sleeved on the transmission column 5; a second gear 502 is meshed with the first gear 501; the second gear 502 is horizontally fixed on an output shaft of a driving motor 6; the driving motor 6 is fixed on the top wall of the supporting box 1; the horizontal cross section of the transmission column 5 is in a regular polygon structure; the transmission column 5 is in sliding fit with the first gear 501; a tension spring 10 is arranged between the first gear 501 and the top wall of the support box 1; the tension spring 10 is sleeved on the transmission column 5; the upper end of the tension spring 10 is connected with the top wall of the support box 1, and the lower end of the tension spring abuts against the upper surface of the first gear 501; a first guide column 11 is vertically arranged on one opposite side of the transmission column 5; the upper end of the first guide column 11 is fixed on the top wall of the support box 1; a guide sleeve 1101 is slidably sleeved on the first guide post 11; a first limiting sheet and a second limiting sheet are horizontally fixed on one side surface of the guide sleeve 1101 respectively; the opposite inner side surfaces of the first limiting piece and the second limiting piece are respectively attached to the upper surface and the lower surface of the first gear 501; a magnet piece 1102 is fixedly embedded in the upper surface of the first limiting piece; a matched electromagnet 12 is arranged above the magnet sheet 1102; the electromagnet 12 is fixed on the top wall of the support box 1; one edge of the second limiting sheet close to the transmission column 5 is provided with a lower folded edge; one side of the lower hem is rotatably connected with a transmission rod 1103; the two driving rods 1103 are connected by a movable block 13 towards the same end; the movable block 13 is rotatably connected with the transmission rod 1103; a second guide column 1301 which is horizontally arranged is inserted on the movable block 13 in a sliding manner; the second guide column 1301 is arranged in parallel with the transmission rack 701; one end of the second guide column 1301 is fixed on the other side wall of the support box 1; the upper surface of the movable block 13 is rotatably provided with a horizontally arranged fourth gear 14; the fourth gear 14 can be engaged with the second gear 502 and the teeth on the timing belt 802.
A method for using the cartoon work display device based on steering adjustment as described above, comprising:
by changing the direction of the current flowing into the electromagnet 12, the electromagnet 12 attracts or repels the magnet piece 1102;
when the first steering assembly 3 is required to steer the display screen body 2, the electromagnet 12 attracts the magnet sheet 1102, at the moment, the fourth gear 14 is meshed with the second gear 502, the first gear 501 is not meshed with the second gear 502, the driving motor 6 is used for driving the second gear 502 to rotate, and power is transmitted to the push rod 7 through the first gear 501, the fourth gear 14, the synchronous belt 802, the third gear 901 and the transmission rack 701, so that the display screen body 2 is driven to rotate;
when the second steering assembly 4 is needed to steer the display screen body 2, the electromagnet 12 repels the magnet sheet 1102, at this time, the first gear 501 is meshed with the second gear 502, the fourth gear 14 is not meshed with the second gear 502, the driving motor 6 is used for driving the second gear 502 to rotate, and power is transmitted to the driving shaft 402 through the first gear 501, the transmission column 5, the telescopic shaft 404 and the universal joint 403, so that the display screen body 2 is driven to rotate.
The preferred embodiments of the invention disclosed above are intended to be illustrative only. The preferred embodiments are not intended to be exhaustive or to limit the invention to the precise embodiments disclosed. Obviously, many modifications and variations are possible in light of the above teaching. The embodiments were chosen and described in order to best explain the principles of the invention and the practical application, to thereby enable others skilled in the art to best utilize the invention. The invention is limited only by the claims and their full scope and equivalents.
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