CN112985187B - Firework inner barrel ball feeding device - Google Patents
Firework inner barrel ball feeding device Download PDFInfo
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- CN112985187B CN112985187B CN202110277014.8A CN202110277014A CN112985187B CN 112985187 B CN112985187 B CN 112985187B CN 202110277014 A CN202110277014 A CN 202110277014A CN 112985187 B CN112985187 B CN 112985187B
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F42—AMMUNITION; BLASTING
- F42B—EXPLOSIVE CHARGES, e.g. FOR BLASTING, FIREWORKS, AMMUNITION
- F42B4/00—Fireworks, i.e. pyrotechnic devices for amusement, display, illumination or signal purposes
- F42B4/30—Manufacture
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Abstract
The invention relates to a device related to firework production, in particular to a firework inner barrel ball feeding device, which comprises a base, a feeding mechanism, an adjusting mechanism, a positioning mechanism and a material loading mechanism, wherein the feeding mechanism is fixedly arranged on the base; the device can be used for filling spherical light beads with different diameters, ensures even filling, avoids the occurrence of superimposed conditions, has good filling effect and saves labor force.
Description
Technical Field
The invention relates to a device related to firework production, in particular to a firework inner barrel ball feeding device.
Background
The modeling of fireworks depends on the arrangement and combination shape of the light beads in the inner tube ball, and in the manufacturing process, the light beads are manually filled, so that a large amount of labor force is wasted, uneven conditions can occur in manual filling, adjustment and modification are needed after primary filling, and the processing time is prolonged.
Disclosure of Invention
The invention mainly solves the technical problem of providing a firework inner tube ball feeding device which can be used for filling spherical light beads with different diameters, ensures uniform filling, avoids overlapping, has a good filling effect and saves labor force.
The purpose of the invention is realized by the following technical scheme:
the utility model provides a fireworks inner tube ball adds material device, includes base, feed mechanism, adjustment mechanism, positioning mechanism and carries the material mechanism, feed mechanism fixed mounting on the base, adjustment mechanism fixed mounting is on the base, carries material mechanism fixed mounting on adjustment mechanism, positioning mechanism fixed mounting is on adjustment mechanism, positioning mechanism meshes with carrying the material mechanism mutually.
As a further optimization of the technical scheme, the feeding mechanism of the firework inner barrel ball feeding device comprises a fixed leg, a rotating motor, a discharging plate, a charging barrel, a feeding rotary disc, an adjusting plate, an adjusting rod, a helical gear, an inner threaded pipe and a rotating threaded rod, wherein the fixed leg is fixedly arranged on the discharging plate, the charging barrel is fixedly arranged on the discharging plate, the rotating motor is fixedly arranged on the fixed leg, the output end of the rotating motor penetrates through the discharging plate and is fixedly provided with the feeding rotary disc, the helical gear is rotatably arranged in a groove arranged on the feeding rotary disc, the adjusting rod is fixedly arranged on the helical gear, the rotating threaded rod is rotatably arranged in a groove arranged on the feeding rotary disc, the inner threaded pipe is in threaded connection with the rotating threaded rod, the inner threaded pipe is slidably arranged in a groove arranged on the feeding rotary disc, and the adjusting plate is fixedly arranged on the inner threaded pipe.
As a further optimization of the technical scheme, the adjusting mechanism of the firework inner barrel ball feeding device comprises a square frame, a hanging frame, a first lifting threaded rod, a first chain wheel, a chain, an adjusting motor, a second chain wheel, an adjusting gear, a second lifting threaded rod, a rotating gear disc, an internal gear and an internal motor, wherein the internal motor is fixedly arranged in a groove formed in a base, the output end of the internal motor is fixedly provided with the internal gear, the internal gear is meshed with the rotating gear disc, the rotating gear disc is rotatably arranged in the groove formed in the base, the square frame is fixedly arranged on the rotating gear disc, the first chain wheel is rotatably arranged in the groove of the square frame, the second chain wheel is rotatably arranged in the groove of the square frame, the adjusting gear is meshed with the second chain wheel, the second chain wheel is meshed with the chain, and the chain is meshed with the first chain wheel, adjusting gear fixed mounting is at adjusting motor's output, and adjusting motor fixed mounting is on square frame, and lifting threaded rod one and sprocket threaded connection, lifting threaded rod one rotatory installation in the recess of gallows, and sprocket two and two threaded connection of lifting threaded rod, lifting threaded rod two rotatory installations in the recess that sets up on the gallows.
As further optimization of the technical scheme, the positioning mechanism of the firework inner barrel ball feeding device comprises a shell, a tooth socket plug-in unit and an internal spring, wherein the tooth socket plug-in unit is slidably mounted in a groove of the shell, the internal spring is fixedly mounted on the tooth socket plug-in unit, the other end of the internal spring is fixedly mounted on the shell, and the shell is fixedly mounted on a square frame.
As a further optimization of the technical scheme, the material loading mechanism of the firework inner barrel ball feeding device comprises a hemisphere loading shell, a first limiting hemisphere, a second limiting hemisphere, a third limiting hemisphere, a fixed barrel, a first rotating insection disk, a second rotating insection disk, a third rotating insection disk, a rotating shaft core, an inner rotating shaft barrel and an outer rotating shaft barrel, wherein the hemisphere loading shell is fixedly arranged on a square frame, the fixed barrel is fixedly arranged on a hanging frame, the outer rotating shaft barrel is rotatably arranged in a groove arranged on the fixed barrel, the inner rotating shaft barrel is rotatably arranged in a groove arranged on the outer rotating shaft barrel, the rotating shaft core is rotatably arranged in a groove arranged on the inner rotating shaft barrel, the rotating shaft core is fixedly connected with the third rotating insection disk, the inner rotating shaft barrel is fixedly connected with the second rotating insection disk, the outer rotating shaft barrel is fixedly connected with the first rotating insection disk, the outer rotating shaft barrel is fixedly arranged on the third limiting hemisphere, the inner rotating shaft barrel is fixedly arranged on the second limiting hemisphere, the rotating shaft core is fixedly arranged on the first limiting hemisphere, the tooth socket plug-in unit is meshed with the first rotating insection disc, the tooth socket plug-in unit is meshed with the second rotating insection disc, and the tooth socket plug-in unit is meshed with the third rotating insection disc.
The firework inner tube ball feeding device has the beneficial effects that:
1. the adjusting motor is started, the adjusting motor drives the chain wheel II to rotate through the adjusting gear, the chain wheel II drives the chain wheel I to rotate through the chain, the chain wheel I is in threaded connection with the lifting threaded rod I, the chain wheel II is in threaded connection with the lifting threaded rod II, the lifting threaded rod II and the lifting threaded rod I drive the lifting frame to ascend at the moment, the fixing barrel is fixedly mounted on the lifting frame, and therefore the first limiting hemisphere, the second limiting hemisphere and the third limiting hemisphere ascend at the moment, and the effect of finely adjusting the distance between the first limiting hemisphere and the hemispherical shell can be achieved.
2. Put the inner tube hemisphere in the hemisphere carries the shell, with first spacing hemisphere position adjustment, put into the feed cylinder with a large amount of light pearls, start rotatory motor of using, it is rotatory to use the motor to drive the feed carousel, the feed carousel is rotatory to send the light pearls into the inner tube hemisphere through row flitch, and start inside motor, inside motor drives rotatory gear disc of using through inside gear and rotates, it is rotatory to drive square frame with the gear disc, thereby it is rotatory to drive year material mechanism, thereby make even entering into the inner tube hemisphere of light pearls, avoid appearing the condition of vacancy, because the injecing of first spacing hemisphere, the effectual condition of overlapping of appearing in the inner tube hemisphere of having avoided the light pearls.
3. Upwards spur tooth's socket plug-in components, tooth's socket plug-in components break away from rotatory insection dish one, the tooth's socket of rotatory insection dish two and rotatory insection dish three, rotatory insection dish three this moment, rotatory insection dish three drives the rotation axis core rotatory, the rotation axis core drives first spacing hemisphere rotatory 180, the spacing of second spacing hemisphere to hemisphere year shell this moment is the maximum diameter of the light pearl of pouring into, thereby reach the purpose of the light pearl of the different sizes of pouring into in the realization inside section of thick bamboo hemisphere, can further adjusting device through rotatory insection dish two and rotatory insection dish three, realize the function that adapts to different size light pearls.
4. The rotation regulation pole, it is rotatory to adjust the pole and drive the helical gear, and the helical gear is rotatory to drive rotatory threaded rod, and rotatory threaded rod and internal thread pipe threaded connection, internal thread pipe removal this moment and promotion regulating plate remove, and the size of feed carousel recess has been reduced to the regulating plate this moment to reach the purpose that adapts to different light pearl sizes, guarantee the smoothness nature of feed.
Drawings
The invention is described in further detail below with reference to the accompanying drawings and specific embodiments.
Fig. 1 is a schematic perspective view of a firework inner tube ball feeding device.
Fig. 2 is a schematic perspective view of a feeding mechanism 2 of the firework inner barrel ball feeding device of the invention.
Fig. 3 is a schematic partial three-dimensional structure diagram of a feeding mechanism 2 of the firework inner barrel ball feeding device.
Fig. 4 is a schematic partial three-dimensional structure diagram of a feeding mechanism 2 of the firework inner barrel ball feeding device.
Fig. 5 is a schematic structural diagram of a feeding mechanism 2 of the firework inner barrel ball feeding device.
Fig. 6 is a schematic perspective view of a firework inner barrel ball feeding device according to the present invention.
Fig. 7 is a schematic perspective view of an adjusting mechanism 3 of a firework inner barrel ball feeding device according to the present invention.
Fig. 8 is a schematic cross-sectional structure diagram of the adjusting mechanism 3 of the firework inner barrel ball feeding device.
Fig. 9 is a schematic structural diagram of the positioning mechanism 4 of the firework inner barrel ball feeding device of the invention.
Fig. 10 is a schematic perspective view of a material loading mechanism 5 of a firework inner barrel ball feeding device according to the present invention.
Fig. 11 is a schematic partial three-dimensional structure diagram of the material loading mechanism 5 of the firework inner tube ball feeding device.
Fig. 12 is a schematic partial three-dimensional structure view of the material loading mechanism 5 of the firework inner tube ball feeding device of the invention.
Fig. 13 is a partially enlarged structural diagram of a in fig. 12.
Fig. 14 is a partial structural schematic diagram of the material loading mechanism 5 of the firework inner barrel ball feeding device of the invention.
In the figure: a base 1; a feeding mechanism 2; 2-1 of a fixed leg; a motor for rotation 2-2; 2-3 of a discharge plate; 2-4 of a charging barrel; 2-5 of a feeding turntable; adjusting plates 2-6; adjusting a rod 2-7; 2-8 parts of a bevel gear; 2-9 parts of an internal threaded pipe; rotating the threaded rod 2-10; an adjusting mechanism 3; a square frame 3-1; 3-2 of a hanging bracket; 3-3 of a lifting threaded rod; 3-4 parts of a first chain wheel; 3-5 parts of a chain; 3-6 of an adjusting motor; 3-7 parts of a second chain wheel; 3-8 parts of an adjusting gear; 3-9 parts of a second lifting threaded rod; 3-10 parts of a gear disc for rotation; inner gears 3-11; internal motors 3-12; a positioning mechanism 4; a housing 4-1; a gullet insert 4-2; an inner spring 4-3; a material loading mechanism 5; 5-1 parts of a hemispherical carrier shell; a first limiting hemisphere 5-2; 5-3 of a second limiting hemisphere; 5-4 parts of a third limiting hemisphere; 5-5 parts of a fixed cylinder; 5-6 of a rotary insection disc I; 5-7 of a rotary insection disc II; rotating the insection disc III by 5-8; 5-9 parts of a rotating shaft core; 5-10 parts of an inner rotary shaft cylinder; and 5-11 parts of an outer rotating shaft cylinder.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The first embodiment is as follows:
the following describes the present embodiment with reference to fig. 1 to 14, and a firework inner tube ball feeding device includes a base 1, a feeding mechanism 2, an adjusting mechanism 3, a positioning mechanism 4, and a material loading mechanism 5, where the feeding mechanism 2 is fixedly mounted on the base 1, the adjusting mechanism 3 is fixedly mounted on the base 1, the material loading mechanism 5 is fixedly mounted on the adjusting mechanism 3, the positioning mechanism 4 is fixedly mounted on the adjusting mechanism 3, and the positioning mechanism 4 is engaged with the material loading mechanism 5.
The second embodiment is as follows:
the embodiment is described below with reference to fig. 1-14, and the embodiment further describes the first embodiment, wherein the feeding mechanism 2 comprises a fixed leg 2-1, a rotating motor 2-2, a discharging plate 2-3, a charging barrel 2-4, a feeding turntable 2-5, an adjusting plate 2-6, an adjusting rod 2-7, a helical gear 2-8, an internal threaded pipe 2-9, and a rotating threaded rod 2-10, the fixed leg 2-1 is fixedly mounted on the discharging plate 2-3, the discharging plate 2-3 is fixedly mounted with the charging barrel 2-4, the rotating motor 2-2 is fixedly mounted on the fixed leg 2-1, the output end of the rotating motor 2-2 passes through the discharging plate 2-3 and is fixedly mounted with the feeding turntable 2-5, the helical gear 2-8 is rotatably mounted in a groove arranged on the feeding turntable 2-5, an adjusting rod 2-7 is fixedly installed on the helical gear 2-8, a rotary threaded rod 2-10 is rotatably installed in a groove formed in the feeding turntable 2-5, an internal threaded pipe 2-9 is in threaded connection with the rotary threaded rod 2-10, the internal threaded pipe 2-9 is slidably installed in a groove formed in the feeding turntable 2-5, and an adjusting plate 2-6 is fixedly installed on the internal threaded pipe 2-9.
The third concrete implementation mode:
the embodiment is described below with reference to fig. 1-14, and the embodiment will be further described, wherein the adjusting mechanism 3 includes a square frame 3-1, a hanger 3-2, a lifting threaded rod one 3-3, a chain wheel one 3-4, a chain 3-5, an adjusting motor 3-6, a chain wheel two 3-7, an adjusting gear 3-8, a lifting threaded rod two 3-9, a rotating gear disc 3-10, an internal gear 3-11, and an internal motor 3-12, the internal motor 3-12 is fixedly installed in a groove provided on the base 1, the output end of the internal motor 3-12 is fixedly installed with the internal gear 3-11, the internal gear 3-11 is engaged with the rotating gear disc 3-10, the rotating gear disc 3-10 is rotatably installed in a groove provided on the base 1, a square frame 3-1 is fixedly arranged on the rotating gear disc 3-10, a chain wheel I3-4 is rotatably arranged in a groove of the square frame 3-1, a chain wheel II 3-7 is rotatably arranged in a groove of the square frame 3-1, an adjusting gear 3-8 is rotatably arranged in a groove of the square frame 3-1, the adjusting gear 3-8 is meshed with the chain wheel II 3-7, the chain wheel II 3-7 is meshed with a chain 3-5, the chain 3-5 is meshed with the chain wheel I3-4, the adjusting gear 3-8 is fixedly arranged at the output end of the adjusting motor 3-6, the adjusting motor 3-6 is fixedly arranged on the square frame 3-1, a lifting threaded rod I3-3 is in threaded connection with the chain wheel I3-4, the lifting threaded rod I3-3 is rotatably arranged in a groove of the hanger 3-2, the second chain wheel 3-7 is in threaded connection with a second lifting threaded rod 3-9, and the second lifting threaded rod 3-9 is rotatably installed in a groove formed in the hanger 3-2.
The fourth concrete implementation mode:
the third embodiment is further described with reference to fig. 1-14, and the positioning mechanism 4 includes a housing 4-1, a socket insert 4-2, and an internal spring 4-3, wherein the socket insert 4-2 is slidably mounted in a groove of the housing 4-1, the internal spring 4-3 is fixedly mounted on the socket insert 4-2, the other end of the internal spring 4-3 is fixedly mounted on the housing 4-1, and the housing 4-1 is fixedly mounted on the square frame 3-1.
The fifth concrete implementation mode:
the fourth embodiment is further described with reference to fig. 1-14, wherein the material loading mechanism 5 includes a hemispherical shell 5-1, a first limiting hemisphere 5-2, a second limiting hemisphere 5-3, a third limiting hemisphere 5-4, a fixed cylinder 5-5, a first rotating fluted disc 5-6, a second rotating fluted disc 5-7, a third rotating fluted disc 5-8, a rotating shaft core 5-9, an inner rotating shaft cylinder 5-10, and an outer rotating shaft cylinder 5-11, the hemispherical shell 5-1 is fixedly mounted on the square frame 3-1, the fixed cylinder 5-5 is fixedly mounted on the hanger 3-2, the outer rotating shaft cylinder 5-11 is rotatably mounted in a groove formed on the fixed cylinder 5-5, the inner rotating shaft cylinder 5-10 is rotatably mounted in a groove formed on the outer rotating shaft cylinder 5-11, the rotary shaft core 5-9 is rotatably arranged in a groove arranged on the inner rotary shaft barrel 5-10, the rotary shaft core 5-9 is fixedly connected with the rotary insection disc III 5-8, the inner rotary shaft barrel 5-10 is fixedly connected with the rotary insection disc II 5-7, the outer rotary shaft barrel 5-11 is fixedly connected with the rotary insection disc I5-6, the outer rotary shaft barrel 5-11 is fixedly arranged on the third limiting hemisphere 5-4, the inner rotary shaft barrel 5-10 is fixedly arranged on the second limiting hemisphere 5-3, the rotary shaft core 5-9 is fixedly arranged on the first limiting hemisphere 5-2, the tooth socket insert 4-2 is meshed with the rotary insection disc I5-6, the tooth socket insert 4-2 is meshed with the rotary insection disc II 5-7, and the tooth socket insert 4-2 is meshed with the rotary insection disc III 5-8.
The invention relates to a firework inner barrel ball feeding device, which has the working principle that:
starting an adjusting motor 3-6, driving a chain wheel II 3-7 to rotate by the adjusting motor 3-6 through an adjusting gear 3-8, driving a chain wheel I3-4 to rotate by the chain wheel II 3-7 through a chain 3-5, connecting the chain wheel I3-4 with a lifting threaded rod I3-3 through threads, connecting the chain wheel II 3-7 with a lifting threaded rod II 3-9 through threads, driving a hanging bracket 3-2 to ascend by the lifting threaded rod II 3-9 and the lifting threaded rod I3-3, fixedly mounting a fixed cylinder 5-5 on the hanging bracket 3-2, so that the first limiting hemisphere 5-2, the second limiting hemisphere 5-3 and the third limiting hemisphere 5-4 rise, the distance between the first limiting hemisphere 5-2 and the hemisphere carrying shell 5-1 can be finely adjusted.
Placing the hemisphere of the inner cylinder in a hemisphere carrying shell 5-1, adjusting the position of a first limiting hemisphere 5-2, placing a large amount of light beads in a material cylinder 2-4, starting a motor 2-2 for rotation, driving a feeding turntable 2-5 to rotate by the motor 2-2 for rotation, feeding the light beads into the hemisphere of the inner cylinder through a discharging plate 2-3 by the rotation of the feeding turntable 2-5, and starting an internal motor 3-12, the internal motor 3-12 drives a gear disc 3-10 for rotation to rotate through an internal gear 3-11, the gear disc 3-10 for rotation drives a square frame 3-1 to rotate, thereby driving the material loading mechanism 5 to rotate, leading the light beads to uniformly enter the inner cylinder hemisphere, avoiding the condition of vacancy, due to the limitation of the first limiting hemisphere 5-2, the condition that the light beads are overlapped in the inner tube hemisphere is effectively avoided.
The gullet insert 4-2 is pulled upwards, the gullet insert 4-2 is separated from gullets of the first rotating insection disk 5-6, the second rotating insection disk 5-7 and the third rotating insection disk 5-8, the third rotating insection disk 5-8 drives the rotating shaft core 5-9 to rotate, the rotating shaft core 5-9 drives the first limiting hemisphere 5-2 to rotate 180 degrees, and the distance from the second limiting hemisphere 5-3 to the hemisphere carrying shell 5-1 is the maximum diameter of injected optical beads, so that the purpose of injecting optical beads with different sizes into the inner cylinder hemisphere is achieved, the device can be further adjusted through the second rotating insection disk 5-7 and the third rotating insection disk 5-8, and the function of adapting to optical beads with different sizes is achieved.
The adjusting rods 2-7 are rotated, the adjusting rods 2-7 drive the bevel gears 2-8 to rotate, the bevel gears 2-8 rotate to drive the rotating threaded rods 2-10 to rotate, the rotating threaded rods 2-10 are in threaded connection with the internal threaded tubes 2-9, the internal threaded tubes 2-9 move at the moment and push the adjusting plates 2-6 to move, and the adjusting plates 2-6 reduce the size of grooves of the feeding turntables 2-5 at the moment, so that the purpose of adapting to different light bead sizes is achieved, and feeding fluency is guaranteed.
It is to be understood that the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and that various changes, modifications, additions and substitutions which are within the spirit and scope of the present invention and which may be made by those skilled in the art are also within the scope of the present invention.
Claims (2)
1. The utility model provides a fireworks inner tube ball adds material device, includes base (1), feed mechanism (2), adjustment mechanism (3), positioning mechanism (4) and carries material mechanism (5), its characterized in that: the feeding mechanism (2) is fixedly arranged on the base (1), the adjusting mechanism (3) is fixedly arranged on the base (1), the material loading mechanism (5) is fixedly arranged on the adjusting mechanism (3), the positioning mechanism (4) is fixedly arranged on the adjusting mechanism (3), and the positioning mechanism (4) is meshed with the material loading mechanism (5);
the adjusting mechanism (3) comprises a square frame (3-1), a hanging bracket (3-2), a lifting threaded rod I (3-3), a chain wheel I (3-4), a chain (3-5), an adjusting motor (3-6), a chain wheel II (3-7), an adjusting gear (3-8), a lifting threaded rod II (3-9), a gear disc for rotation (3-10), an internal gear (3-11) and an internal motor (3-12), wherein the internal motor (3-12) is fixedly arranged in a groove arranged on the base (1), the output end of the internal motor (3-12) is fixedly provided with the internal gear (3-11), the internal gear (3-11) is meshed with the gear disc for rotation (3-10), the gear disc for rotation (3-10) is rotatably arranged in the groove arranged on the base (1), a square frame (3-1) is fixedly arranged on the rotating gear disc (3-10), a chain wheel I (3-4) is rotatably arranged in a groove of the square frame (3-1), a chain wheel II (3-7) is rotatably arranged in a groove of the square frame (3-1), an adjusting gear (3-8) is rotatably arranged in a groove of the square frame (3-1), the adjusting gear (3-8) is meshed with the chain wheel II (3-7), the chain wheel II (3-7) is meshed with a chain (3-5), the chain (3-5) is meshed with the chain wheel I (3-4), the adjusting gear (3-8) is fixedly arranged at the output end of an adjusting motor (3-6), the adjusting motor (3-6) is fixedly arranged on the square frame (3-1), a lifting threaded rod I (3-3) is in threaded connection with the chain wheel I (3-4), the lifting threaded rod I (3-3) is rotatably installed in a groove of the hanger (3-2), the chain wheel II (3-7) is in threaded connection with the lifting threaded rod II (3-9), and the lifting threaded rod II (3-9) is rotatably installed in a groove formed in the hanger (3-2);
the positioning mechanism (4) comprises a shell (4-1), a tooth socket plug-in piece (4-2) and an internal spring (4-3), the tooth socket plug-in piece (4-2) is slidably mounted in a groove of the shell (4-1), the internal spring (4-3) is fixedly mounted on the tooth socket plug-in piece (4-2), the other end of the internal spring (4-3) is fixedly mounted on the shell (4-1), and the shell (4-1) is fixedly mounted on a square frame (3-1);
the material loading mechanism (5) comprises a hemispherical loading shell (5-1), a first limiting hemisphere (5-2), a second limiting hemisphere (5-3), a third limiting hemisphere (5-4), a fixed cylinder (5-5), a first rotating insection disc (5-6), a second rotating insection disc (5-7), a third rotating insection disc (5-8), a rotating shaft core (5-9), an inner rotating shaft cylinder (5-10) and an outer rotating shaft cylinder (5-11), wherein the hemispherical loading shell (5-1) is fixedly arranged on a square frame (3-1), the fixed cylinder (5-5) is fixedly arranged on a hanging frame (3-2), the outer rotating shaft cylinder (5-11) is rotatably arranged in a groove arranged on the fixed cylinder (5-5), the inner rotating shaft cylinder (5-10) is rotatably arranged in a groove arranged on the outer rotating shaft cylinder (5-11), a rotating shaft core (5-9) is rotatably arranged in a groove arranged on an inner rotating shaft cylinder (5-10), the rotating shaft core (5-9) is fixedly connected with a rotating insection disc III (5-8), the inner rotating shaft cylinder (5-10) is fixedly connected with a rotating insection disc II (5-7), an outer rotating shaft cylinder (5-11) is fixedly connected with a rotating insection disc I (5-6), an outer rotating shaft cylinder (5-11) is fixedly arranged on a third limiting hemisphere (5-4), the inner rotating shaft cylinder (5-10) is fixedly arranged on a second limiting hemisphere (5-3), the rotating shaft core (5-9) is fixedly arranged on a first limiting hemisphere (5-2), a tooth socket insert (4-2) is meshed with the rotating insection disc I (5-6), the tooth socket insert (4-2) is meshed with the rotating insection disc II (5-7), the tooth socket insert (4-2) is meshed with the rotary insection disc III (5-8).
2. The firework inner barrel ball feeding device as recited in claim 1, wherein: the feeding mechanism (2) comprises a fixed leg (2-1), a rotating motor (2-2), a discharging plate (2-3), a charging barrel (2-4), a feeding turntable (2-5), an adjusting plate (2-6), an adjusting rod (2-7), a helical gear (2-8), an internal threaded pipe (2-9) and a rotating threaded rod (2-10), wherein the fixed leg (2-1) is fixedly arranged on the discharging plate (2-3), the discharging plate (2-3) is fixedly provided with the charging barrel (2-4), the rotating motor (2-2) is fixedly arranged on the fixed leg (2-1), the output end of the rotating motor (2-2) penetrates through the discharging plate (2-3) and is fixedly provided with the feeding turntable (2-5), and the helical gear (2-8) is rotatably arranged in a groove arranged on the feeding turntable (2-5), an adjusting rod (2-7) is fixedly installed on the helical gear (2-8), a rotary threaded rod (2-10) is rotatably installed in a groove formed in the feeding turntable (2-5), an internal threaded pipe (2-9) is in threaded connection with the rotary threaded rod (2-10), the internal threaded pipe (2-9) is slidably installed in the groove formed in the feeding turntable (2-5), and an adjusting plate (2-6) is fixedly installed on the internal threaded pipe (2-9).
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CN211041963U (en) * | 2019-05-29 | 2020-07-17 | 邓红梅 | Firework inner barrel charging machine |
CN110823012A (en) * | 2019-11-22 | 2020-02-21 | 百特(福建)智能装备科技有限公司 | Firework inner barrel filling equipment and filling process thereof |
CN110887414A (en) * | 2019-11-29 | 2020-03-17 | 宿州市鑫尧健康科技有限公司 | Firework assembly production line |
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Effective date of registration: 20220831 Address after: Xiaoyuan Village, Chengtanjiang Town, Liuyang City, Changsha City, Hunan Province 410300 Applicant after: Liuyang Hongcheng Fireworks Production Co.,Ltd. Address before: No.32, Jianhong street, Daowai District, Harbin City, Heilongjiang Province Applicant before: Zhao Lili |
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