Rotatory commodity circulation device suitable for lighting apparatus preparation
Technical Field
The invention relates to the field of manufacturing and processing of lighting equipment, in particular to a rotary logistics device suitable for manufacturing of the lighting equipment.
Background
With the development of technology and the expansion of industrial scale, the industrial scale of lighting equipment has been gradually expanding in recent years, and the lighting equipment is widely applied to industries such as urban lighting, landscape brightening and the like.
During the process of the lighting device, it is necessary to carry out logistical transport of the components of the lighting device. The traditional industry often relies on the workman to acquire the part on the conveyer belt manually, carries out a series of operations such as clean, oil application, drilling, counterpoint, capping, and the operation is high, inefficiency on the one hand, and on the other hand error rate is high, and the yields receives the harmful effect of certain degree.
Disclosure of Invention
The invention aims to provide a rotary logistics device suitable for manufacturing lighting equipment, which can automatically realize the transmission of components and realize the automatic rotation and drilling operation of the components in the transmission process.
The technical aim of the invention is realized by the following technical scheme: the utility model provides a rotatory logistics device suitable for lighting apparatus preparation, contains drilling equipment, still contains commodity circulation carousel, installs be used for on the commodity circulation carousel to consign the monomer and the driving disk of part, the monomer is a plurality of, is circumference array arrangement and is in on the commodity circulation carousel, the monomer extends in vertical direction, contains the plummer that is used for consigning the part and is used for with the driving disk is connected.
Preferably, the monomer further comprises a connecting column connected with the bearing table, and a buckling table sleeve connected with the connecting column and connected to the logistics turntable.
The logistics turntable can rotate under the driving of other conventional driving components, the monomers are arranged on the logistics turntable, the number of the installed monomers is six to eight, the logistics turntable can be specifically adjusted, and the position arrangement is arranged according to a circumferential array type.
In the working process, the buckling table sleeve is connected to the logistics turntable, specifically can be sleeved, the connecting column is used as a main extension supporting component, and the bearing table is arranged at the uppermost end and used for supporting a component for lamp processing, which is hereinafter referred to as a component for short. The transmission disc at the lowest end has a transmission effect, and specifically, when the logistics turntable rotates, the corresponding single body is driven to be in place, the corresponding transmission disc is in conflict with the driving disc, can be in gear engagement, the driving disc rotates to drive the transmission disc to rotate, and the whole single body is driven to rotate to drive the parts which are shipped on the bearing table to rotate.
Preferably, the drilling device comprises a drilling base, a telescopic column which is connected with the drilling base and can be telescopic in the vertical direction, and a drill bit connected with the telescopic column.
Preferably, the drilling base is further provided with an inductor for detecting the extension length of the telescopic column.
When the component is supported by the single body, the component is driven to a processing position along with the rotation of the logistics turntable, and the drilling device is used for carrying out drilling operation on the component. Specifically, the telescopic column stretches out and draws back to enable the drill bit to be close to the component, and drilling treatment is conducted. The sensor can sense the extension length of the telescopic column, and accuracy is maintained.
As the preferable mode of the invention, the drilling base is also connected with a blowing pipe for blowing air to the drill bit, the logistics turntable is provided with a core passing table, and the outer ring of the core passing table is provided with a retaining wall extending in the vertical direction.
As the preferable mode of the invention, the logistics turntable is provided with a plurality of wind-benefiting grooves, and the wind-benefiting grooves are arranged on the outer side of the retaining wall in a circumferential array.
In the drilling process, scraps and powder are formed, the scraps and the powder are blown away by the blowing pipe, and the retaining wall is specially arranged for avoiding blowing into the core passing platform, so that the cleanliness of the core passing platform is maintained.
The air channel can be optimized when the logistics turntable rotates, so that the air resistance is reduced, and the energy conservation of long-time rotation of the logistics turntable is facilitated.
Preferably, the core through table is provided with a plurality of core through holes, and the core through holes are regular polygons.
In the invention, the through core hole is provided with a hole fixing strip for improving the structural supporting force in the radial direction of the through core hole.
Preferably, the hole fixing strip comprises a wide head fixing part positioned at two ends and an arc-shaped buffer part positioned at the middle part and connected with the two ends, wherein the arc-shaped buffer part is arc-shaped and is recessed towards the central axis direction.
After a long rotation, the via may have deformation tension and may damage components inside the via. In order to increase the structural tension in this respect, the hole-fixing strip is provided in particular. The surface area of the wide head fixing parts at two ends of the hole fixing strip is large, the inner cavities of the through holes are supported, the arc-shaped buffer parts have arc-shaped deformation areas, buffer pressure through arc-shaped deformation, and have certain structural elasticity.
In summary, the invention has the following beneficial effects:
1. The components rotate through the logistics turntable, so that path transmission of the components is realized.
2. The drilling device can automatically drill the parts.
3. The rotation of the components is realized through the driving disc and the transmission disc.
Description of the drawings:
FIG. 1 is a schematic diagram of example 1;
FIG. 2 is a schematic view of another angle of FIG. 1;
fig. 3 is an enlarged detail view of fig. 2A.
FIG. 4 is a schematic view of a via and a via bar;
fig. 5 is a schematic view of a drilling apparatus.
In the figure:
1. The material flow turntable, 11, a wind benefiting groove, 12, a retaining wall, 13, a core passing table, 131, a core passing hole, 14, a hole fixing strip, 141, a wide head fixing part, 142, an arc buffer part, 2, a single body, 21, a bearing table, 22, a connecting column, 23, a buckling table sleeve, 24, a transmission disc, 3, a drilling device, 31, a drilling base, 32, an inductor, 33, a telescopic column, 34, a drill bit, 35, a blowing pipe, 4 and a driving disc.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The present embodiment is only for explanation of the present invention and is not to be construed as limiting the present invention, and modifications to the present embodiment, which may not creatively contribute to the present invention as required by those skilled in the art after reading the present specification, are all protected by patent laws within the scope of claims of the present invention.
Embodiment 1, as shown in fig. 1, 2, 3 and 4, a rotary logistics device suitable for manufacturing lighting equipment comprises a drilling device 3, a logistics turntable 1, a plurality of monomers 2 and a driving disc 4, wherein the monomers 2 are installed on the logistics turntable 1 and used for transporting components, the monomers 2 are circumferentially arranged on the logistics turntable 1 in an array manner, and the monomers 2 extend in the vertical direction and comprise a bearing table 21 used for transporting the components and a driving disc 24 used for being connected with the driving disc 4.
The monomer 2 further comprises a connecting column 22 for connecting with the bearing table 21, and a buckling table sleeve 23 connected with the connecting column 22 and connected on the logistics turntable 1.
The logistics rotary table 1 can rotate under the driving of other conventional driving components, each monomer 2 is arranged on the logistics rotary table 1, the number of the arranged monomers can be six to eight, the adjustment can be specifically carried out, and the position arrangement is arranged according to a circumferential array type.
In the working process, the buckling table sleeve 23 is connected to the logistics turntable 1, specifically, may be sleeved, the connecting column 22 is used as a main extending supporting component, and the bearing table 21 is at the uppermost end and is used for supporting a component for lamp processing, which is hereinafter referred to as a component for short. The transmission disc 24 at the lowest end plays a transmission role, specifically, when the material flow turntable 1 rotates, the corresponding monomer 2 is driven in place, the corresponding transmission disc 24 is abutted against the driving disc 4, which can be in gear engagement, the driving disc 4 rotates to drive the transmission disc 24 to rotate, the whole monomer 2 is driven to rotate, and the parts loaded on the bearing table 21 are driven to rotate.
The drilling device 3 includes a drilling base 31, a telescopic column 33 which is telescopic in a vertical direction with the drilling base 31, and a drill 34 connected with the telescopic column 33. The drill base 31 is also provided with an inductor 32 for detecting the extension length of the telescopic column 33.
When the component is supported by the single body 2, the component is driven to a processing station along with the rotation of the logistics turntable 1, and the drilling device 3 is used for drilling the component. Specifically, the telescopic column 33 is telescopic so that the drill 34 approaches the component, and a drilling process is performed. While the sensor 32 can sense the extension length of the telescopic column 33, maintaining accuracy.
The drilling base 31 is also connected with a blowing pipe 35 for blowing air to the position of the drill bit 34, the logistics turntable 1 is provided with a core passing table 13, and the outer ring of the core passing table 13 is provided with a retaining wall 12 extending in the vertical direction.
A plurality of wind-utilizing grooves 11 are arranged on the logistics turntable 1, and the wind-utilizing grooves 11 are distributed on the outer side of the retaining wall 12 in a circumferential array. During the drilling process, chips and powder are formed, which are blown away by the blowing pipe 35, and the retaining wall 12 is specially provided to maintain the cleanliness of the core table 13 in order to avoid blowing into the core table 13.
The air duct can be optimized when the logistics rotary table 1 rotates due to the arrangement of the air utilizing grooves 11, so that the air resistance is reduced, and the long-time rotation energy conservation of the logistics rotary table 1 is facilitated.
The core through table 13 is provided with a plurality of core through holes 131, and the core through holes 131 are regular polygons. The through core hole 131 is provided with a hole fixing strip 14 for lifting structural supporting force in the radial direction of the through core hole 131. The hole fixing strip 14 comprises a wide head fixing part 141 positioned at two ends and an arc-shaped buffer part 142 positioned at the middle part and connected with the wide head fixing parts 141 at two ends, wherein the arc-shaped buffer part 142 is arc-shaped and is sunken towards the central axis direction.
After a long period of rotation, the via 131 may have deformation tension and may damage components inside the via 131. To increase the structural tension in this regard, the perforation strips 14 are provided in particular. The wide head fixing parts 141 at the two ends of the hole fixing strip 14 have large surface area, support the inner cavity of the through core hole 131, and the arc-shaped buffer part 142 has an arc-shaped deformation area, buffers pressure by arc-shaped deformation and has certain structural elasticity.