Intelligent false tooth dedusting production line
By introducing a circular conveyor belt, technician table components, and dust collectors into the denture production line, the problem of dust diffusion in traditional denture production lines has been solved, achieving efficient dust removal and automated production, thereby improving production efficiency and environmental protection.
Patent Information
- Application Number
- CN202423038399.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-09
AI Technical Summary
Traditional denture production lines lack effective dust removal systems during the polishing process, leading to dust dispersion that affects the health of operators and the quality of dentures.
A smart production line for removing dust from dentures was designed, including a circular conveyor belt, a technician's table assembly, a grinding guard, a dust inlet, and a dust collector. The dust is effectively removed by connecting the dust inlet and the air inlet, and the automation and flexibility of the production line are improved by using AGV robots and barcode scanners.
It improves dust capture efficiency, enhances the working environment, reduces labor intensity, and increases production efficiency, production line adaptability, and economic benefits.
Smart Images

Figure CN223589021U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a false tooth dust removal production line technical field, especially a false tooth dust removal intelligent production line. BACKGROUND
[0002] In the traditional false tooth production field, the intelligentization and automation level of the production line is low, especially in the key process of false tooth polishing, the dust control problem is particularly prominent. The traditional production line often lacks effective dust removal system, or even if equipped with dust removal equipment, its dust removal effect is difficult to meet the requirements of modern environmental protection and health safety. The dust generated in the false tooth polishing process not only threatens the health of the operators, but also may reduce the surface quality and precision of the false tooth. The existing polishing equipment usually does not integrate efficient dust removal technology, resulting in the diffusion of dust in the working area, increasing the difficulty of subsequent cleaning work, and may have adverse effects on the final appearance and function of the false tooth. SUMMARY
[0003] Therefore, it is necessary to provide a false tooth dust removal intelligent production line aiming at the problem that the traditional false tooth production line is not equipped with a dust removal system or the dust removal effect of the dust removal system is poor in the false tooth polishing process.
[0004] A false tooth dust removal intelligent production line, comprising: an annular conveying belt for conveying materials; a technician desk assembly arranged around the annular conveying belt, the technician desk assembly being provided with a dust suction port; a polishing shield arranged on the technician desk assembly, the polishing shield and part of the technician desk assembly cooperating to form a polishing area, and the dust suction port being located in the polishing area; a polishing machine arranged on the technician desk assembly; a support table arranged on the ground, the support table being located in the annular surrounding area of the annular conveying belt, and the projection of the support table overlapping part of the annular conveying belt; and a dust collector arranged on the technician desk assembly, the dust collector being provided with an air suction port, and the air suction port being in communication with the dust suction port.
[0005] The application discloses a false tooth dust removal intelligent production line. The continuous conveying of materials is realized through the annular conveying belt, the time and labor intensity of material handling are reduced, and thus the overall production efficiency is improved. The technician table assembly is arranged around the annular conveying belt, so that the technician operation is more concentrated and convenient, and the setting of the dust suction port helps to reduce the dust generated in the polishing process and improve the working environment. The polishing shield cooperates with the technician table assembly to form a polishing area, which helps to control dust diffusion, protect the working environment and reduce pollution to surrounding equipment. The dust suction port is located in the polishing area, and the air suction port of the dust collector is in communication with the dust suction port, so that the dust generated in the polishing process can be effectively sucked and removed. The technician table assembly can be flexibly increased or reduced according to production needs, so that the production line can be flexibly adjusted according to the order quantity, and the adaptability and economic benefit of the production line are improved. The setting of the support table provides stable support, and related false tooth processing equipment is placed on the support table, so that the false tooth can be more conveniently processed in addition to polishing, and the false tooth dust removal intelligent production line is more integrated and intelligent.
[0006] In one of the embodiments, the technician table assembly comprises a plurality of technician tables, the plurality of technician tables are arranged adjacent to each other around the annular conveying belt, each two adjacent technician tables cooperate to form a dust collector accommodating space, and each technician table is provided with the dust suction port. The dust collector accommodating space is formed by each two adjacent technician tables, which helps to centrally manage and optimize the position of the dust collector, thereby improving the dust removal efficiency. The dust collector is arranged in the dust collector accommodating space, and the air suction port is in communication with the dust suction port. This layout enables the dust collector to be closer to the dust source, thereby improving the dust capture efficiency. Each technician table is provided with the dust suction port, which helps to collect dust immediately at the source of dust generation, reduces the diffusion of dust in the air, and protects the working environment and the health of the operator. The layout of the technician table around the annular conveying belt enables the materials to be continuously polished and dusted during the conveying process, reduces the interruption of material handling and processing, and improves the continuity of production.
[0007] In one of the embodiments, the dust collector is arranged on each two adjacent technician tables and located in the dust collector accommodating space, the dust collector is provided with a plurality of air suction ports, and the plurality of air suction ports correspond to the plurality of dust suction ports one by one. The dust collector is arranged in the dust collector accommodating space formed by each two adjacent technician tables, and this layout enables each dust suction port to be directly corresponding to an air suction port, thereby realizing accurate dust control. The design that the plurality of air suction ports correspond to the plurality of dust suction ports one by one ensures that each polishing area can be effectively dusted, thereby improving the overall dust removal efficiency. In addition, the design that the dust collector is provided with a plurality of air suction ports realizes that one dust collector can suck the dust generated in a plurality of polishing areas, improves the dust collection efficiency, and reduces energy consumption.
[0008] In one of the embodiments, the technician table assembly further comprises a plurality of table corners, the table corners being used to connect two adjacent technician tables at the corners. By using table corners to connect two adjacent technician tables at the corners, the structural stability of the entire technician table assembly is improved. The design of the table corner allows the technician tables to be closely arranged, seamlessly surrounding the circular conveyor belt, maximizing the use of space and improving the compactness of the production line.
[0009] In one of the embodiments, the technician table assembly further comprises a dust suction pipe assembly, the dust suction pipe assembly comprising a dust suction pipe body and a cover, the dust suction pipe body being arranged on the technician table at the dust suction port, one end of the dust suction pipe body being in communication with the air suction port, the other end of the dust suction pipe body being located in the polishing area, the cover being detachably arranged on the dust suction pipe body, the cover being located at the other end of the dust suction pipe body. By arranging the dust suction pipe assembly directly on the technician table at the dust suction port, the connection between the dust suction port and the air suction port is more direct and close, improving the dust removal efficiency. One end of the dust suction pipe body is in communication with the air suction port, and the other end is located in the polishing area, which allows the dust suction pipe to collect dust generated during polishing more effectively. The cover is detachably arranged on the dust suction pipe body, which facilitates maintenance and cleaning of the dust suction pipe body. The cover can prevent dust from entering when the dust suction pipe is not in use, and protects the dust collector from damage.
[0010] In one of the embodiments, a plurality of office chairs are further included, the plurality of office chairs corresponding one-to-one to the plurality of technician tables. By providing each technician table with an office chair, it ensures that each operator has a dedicated workstation, which helps to improve work efficiency and continuity of production process. The one-to-one correspondence between the office chairs and the technician tables helps to optimize the space of the production line and ensure the neatness and orderliness of the work area.
[0011] In one of the embodiments, a material box and an AGV robot are further included, the material box being used to store the denture material to be processed, the AGV robot being used to automatically transport the material box from the storage area to the placement position of the circular conveyor belt. By using the AGV robot to automatically transport the material box from the storage area to the placement position of the circular conveyor belt, this automated logistics process significantly improves the efficiency of material handling, improves the automation level of the denture dust removal intelligent production line, reduces manual intervention, and improves production efficiency.
[0012] In one of the embodiments, a code scanner is further included, which is arranged on the ring-shaped conveyor belt and / or the support table. The material box is provided with a code, and the code scanner is used to identify the code on the material box, so that the ring-shaped conveyor belt can deliver the material box to the corresponding position. The code on the material box can be quickly identified through the arrangement of the code scanner, and the ring-shaped conveyor belt can accurately deliver the material box to the corresponding position, thereby improving the delivery efficiency and accuracy. The application of the code scanner realizes the automatic management of the production line, reduces manual operation, and improves the intelligent level of the production line, thereby achieving fast and accurate data recording and tracing.
[0013] In one of the embodiments, the polishing shield is provided with a first gap and a second gap, which are respectively communicated with the polishing area. The design of the first gap and the second gap takes into account the operation habits and comfort of the technicians, so that the technicians can easily stretch their tools or arms into the polishing area when operating in the polishing area, without the need to frequently move or disassemble the shield. The technicians can flexibly adjust the tools and posture according to the needs of the polishing work, thereby improving the adaptability and flexibility of the production line.
[0014] In one of the embodiments, the number of polishing shields, polishing machines and dust suction ports is multiple. The multiple polishing shields correspond one-to-one to the multiple dust suction ports, and the multiple polishing machines correspond one-to-one to the multiple dust suction ports. By providing each technician desk with an independent polishing shield, polishing machine and dust suction port, multiple denture polishing and dust removal work can be performed simultaneously, thereby significantly improving the production efficiency. Each polishing machine and polishing shield corresponds one-to-one to a dust suction port, which ensures that the dust generated at each work point can be effectively sucked away in time, thereby improving the overall dust removal effect. The arrangement of multiple polishing shields and polishing machines allows the technicians to flexibly select and use according to different polishing needs, thereby improving the adaptability and flexibility of the production line.
[0015] In one of the embodiments, the polishing machine includes a polishing machine body, a handle and a polishing head. The polishing machine body is arranged on the technician desk assembly. One end of the handle is connected to the polishing machine body through a power cord. The polishing head is arranged on the handle and located at the end of the handle away from the polishing machine body. By fixing the polishing machine body on the technician desk assembly, the noise and vibration during polishing can be reduced. The handle and the polishing machine body are connected through the power cord, so that the handle and the polishing head can be moved and used, allowing the technicians to flexibly control the polishing direction and intensity, thereby improving the accuracy and fineness of the polishing work.
[0016] In one of the embodiments, a magnifying glass assembly is further included, which comprises an adjusting support and a magnifying glass body. One end of the adjusting support is arranged on the bench assembly, and the magnifying glass body is arranged on the adjusting support and located at the end of the adjusting support away from the bench assembly. Through the adjustment function of the adjusting support, the technician can adjust the position and angle of the magnifying glass body as needed to ensure accurate control of details during polishing. The integration of the magnifying glass assembly allows the technician to perform precise operations without frequent changes in working position or body posture, improving the working environment and comfort. With the help of the magnifying glass assembly, the technician can more accurately identify the work area, reducing product quality problems caused by visual errors.
[0017] In one of the embodiments, the number of polishing machines and the number of magnifying glass assemblies are both multiple, and the multiple magnifying glass assemblies correspond one-to-one to the multiple polishing machines. By equipping each polishing machine with a magnifying glass assembly, the technician can polish and fine check at the same time at each workstation, improving work efficiency. The one-to-one correspondence ensures that each workstation has the same functions and performance, allowing the production line to flexibly respond to different production tasks and needs.
[0018] In one of the embodiments, a zirconia lathe, a 3D printer, and a zirconia sintering furnace are further included, which are arranged on the support table respectively. By integrating zirconia lathe, 3D printer, and zirconia sintering furnace, etc. denture processing equipment on the support table, the space utilization is improved, making the entire denture dust removal intelligent production line more compact and convenient, and the overall performance of the production line is improved, including production efficiency, product quality, and working environment.
[0019] In one of the embodiments, a color comparison light box is further included, which is arranged on the bench assembly. By arranging the color comparison light box, the color quality of the denture is ensured to meet the standard, improving the overall quality of the product. Arranging the color comparison light box on a specific technician's desk for uniform comparison of the color of the denture can improve the convenience and production efficiency of the entire production line. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a first perspective view of the denture dust removal intelligent production line;
[0021] Figure 2 It is a structural schematic view of the technician's desk assembly and the ring-shaped conveyor belt;
[0022] Figure 3 It is a structural schematic view of the technician's desk and the dust remover;
[0023] Figure 4 It is a perspective view of the dust remover;
[0024] Figure 5 isometric view of the workbench and polishing shield;
[0025] Figure 6 schematic view of the structure of the workbench and polishing shield;
[0026] Figure 7 isometric view of the workbench;
[0027] Figure 8 exploded view of the dust suction pipe assembly;
[0028] Figure 9 isometric view of the polisher.
[0029] In the drawings, the correspondence between the reference signs and the names of the components is as follows:
[0030] 1 annular conveyor belt;
[0031] 2 workbench assembly, 21 workbench, 22 table corner, 23 dust suction pipe assembly, 231 dust suction pipe body, 232 cover, 201 dust suction port;
[0032] 3 polishing shield, 301 polishing area, 302 first gap, 303 second gap;
[0033] 4 polisher, 41 polisher body, 42 handle, 43 polishing head;
[0034] 5 support table;
[0035] 6 dust collector, 601 air suction port;
[0036] 7 magnifying glass assembly, 71 adjusting support, 72 magnifying glass body;
[0037] 8 material box;
[0038] 9 AGV robot;
[0039] 10 office chair. DETAILED DESCRIPTION
[0040] In order to enable the above-mentioned objects, features and advantages of the present application to be more clearly understood, the following will further describe the present application with reference to the drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0041] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be practiced without other different ways from those described herein, and therefore, the scope of protection of the present application is not limited by the specific embodiments disclosed below.
[0042] Some embodiments of the denture dust removal intelligent production line are described below with reference to the accompanying drawings.
[0043] As shown in Figures 1 to 9 The embodiment discloses a denture dust removal intelligent production line, which comprises: a ring-shaped conveying belt 1, which is used for conveying materials; a technician table assembly 2, which is arranged around the ring-shaped conveying belt 1, and is provided with a dust suction port 201; a polishing protective cover 3, which is arranged on the technician table assembly 2, and cooperates with part of the technician table assembly 2 to form a polishing area 301, wherein the dust suction port 201 is located in the polishing area 301; a polisher 4, which is arranged on the technician table assembly 2; a support table 5, which is arranged on the ground, is located in a ring-shaped surrounding area of the ring-shaped conveying belt 1, and has a projection that overlaps part of the ring-shaped conveying belt 1; and a dust collector 6, which is arranged on the technician table assembly 2, and is provided with an air suction port 601 that is in communication with the dust suction port 201.
[0044] The application discloses a denture dust removal intelligent production line, which realizes continuous conveying of materials through the ring-shaped conveying belt 1, reduces the time and labor intensity of material handling, and thus improves the overall production efficiency. The technician table assembly 2 is arranged around the ring-shaped conveying belt 1, so that the technician operation is more concentrated and convenient, and the arrangement of the dust suction port 201 helps to reduce dust generated in the polishing process and improve the working environment. The polishing protective cover 3 cooperates with the technician table assembly 2 to form the polishing area 301, which helps to control dust diffusion, protect the working environment, and reduce pollution to surrounding equipment. The dust suction port 201 is located in the polishing area 301, and the air suction port 601 of the dust collector 6 is in communication with the dust suction port 201, so that dust generated in the polishing process can be effectively sucked and removed. The technician table assembly 2 can be flexibly increased or reduced according to production needs, so that the production line can be flexibly adjusted according to the order quantity, and the adaptability and economic benefits of the production line are improved. The arrangement of the support table 5 provides stable support, and related denture processing equipment is placed on the support table 5, so that the denture can be more conveniently processed in processes other than polishing, and the denture dust removal intelligent production line is more integrated and intelligent.
[0045] As shown in Figure 1 、 Figure 2 and Figure 7As shown, in addition to the features of the above embodiments, this embodiment further defines: the technician table assembly 2 includes multiple technician tables 21, which are arranged adjacently around the annular conveyor belt 1. Each pair of adjacent technician tables 21 cooperates to form a dust collector housing space, and each technician table 21 is provided with a dust suction port 201. By forming a dust collector housing space by cooperating between each pair of adjacent technician tables 21, it is helpful to centrally manage and optimize the position of the dust collector 6, thereby improving dust removal efficiency. The dust collector 6 is set in the dust collector housing space, and the air suction port 601 is connected to the dust suction port 201. This layout allows the dust collector to be closer to the dust source, improving the dust capture efficiency. Each technician table 21 is provided with a dust suction port 201, which helps to collect dust immediately at the source of dust generation, reducing the diffusion of dust in the air and protecting the working environment and the health of operators. The layout of the technician tables 21 surrounding the annular conveyor belt 1 allows materials to be continuously ground and dusted during the conveying process, reducing interruptions in material handling and processing, and improving production continuity.
[0046] like Figure 3 and Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the dust collector 6 is arranged on every two adjacent workbenches 21 and located within the dust collector's accommodating space. The dust collector 6 has multiple air intakes 601, and each air intake 601 corresponds one-to-one with a multiple dust extraction port 201. By arranging the dust collector 6 within the dust collector's accommodating space formed by every two adjacent workbenches 21, this layout ensures that each dust extraction port 201 directly corresponds to one air intake 601, achieving precise dust control. The one-to-one correspondence between multiple air intakes 601 and multiple dust extraction ports 201 ensures that each grinding area can be effectively dusted, improving the overall dust removal efficiency. Furthermore, the design of the dust collector 6 having multiple air intakes 601 allows one dust collector 6 to extract dust generated from multiple grinding areas 301, improving dust collection efficiency while reducing energy consumption.
[0047] like Figure 1 and Figure 2 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the technician table assembly 2 also includes table corners 22, and there are multiple table corners 22, which are used to connect two adjacent technician tables 21 at a corner. This design, using table corners 22 to connect two adjacent technician tables 21 at a corner, improves the structural stability of the entire technician table assembly 2. The design of the table corners 22 allows the technician tables 21 to be arranged closely, seamlessly surrounding the annular conveyor belt 1, maximizing space utilization and improving the compactness of the production line.
[0048] like Figure 6 and Figure 8As shown, in addition to the features of the above embodiments, this embodiment is further limited in that the technician table assembly 2 further comprises a dust suction pipe assembly 23, the dust suction pipe assembly 23 comprising a dust suction pipe body 231 and a cover 232, the dust suction pipe body 231 being arranged on the technician table 21 at the dust suction port 201, one end of the dust suction pipe body 231 being in communication with the air suction port 601, the other end of the dust suction pipe body 231 being located within the polishing area 301, the cover 232 being detachably arranged on the dust suction pipe body 231, the cover 232 being located at the other end of the dust suction pipe body 231 away from the air suction port 601. By arranging the dust suction pipe assembly 23 directly on the technician table 21 at the dust suction port 201, this design makes the connection between the dust suction port 201 and the air suction port 601 more direct and close, improving the dust removal efficiency. One end of the dust suction pipe body 231 is in communication with the air suction port 601, and the other end is located within the polishing area 301, which makes the dust suction pipe more effective in collecting dust generated during polishing. The cover 232 is detachably arranged on the dust suction pipe body 231, facilitating maintenance and cleaning of the dust suction pipe body 231. The presence of the cover 232 can prevent dust from entering when the dust suction pipe is not in use, while protecting the dust collector 6 from damage.
[0049] As shown in Figure 1 , in addition to the features of the above embodiments, this embodiment is further limited in that it further comprises a plurality of office chairs 10, and the plurality of office chairs 10 correspond one-to-one to the plurality of technician tables 21. By providing one office chair 10 for each technician table 21, it ensures that each operator has a dedicated workstation, which helps to improve work efficiency and continuity of production processes. The office chair 10 corresponds one-to-one to the technician table 21, which helps to optimize the space of the production line and ensure the neatness and orderliness of the work area.
[0050] As shown in Figure 1 and Figure 2 , in addition to the features of the above embodiments, this embodiment is further limited in that it further comprises a material box 8 and an AGV robot 9, the material box 8 being used to store the denture material to be processed, and the AGV robot 9 being used to automatically transport the material box 8 from the storage area to the placement position of the ring conveyor belt 1. By using the AGV robot 9 to automatically transport the material box 8 from the storage area to the placement position of the ring conveyor belt 1, this automated logistics process significantly improves the efficiency of material handling, improves the automation level of the denture dust removal intelligent production line, reduces manual intervention, and improves production efficiency.
[0051] As shown in Figure 1 and Figure 2As shown, in addition to the features of the above embodiments, this embodiment is further limited in that: a code scanner is further included, the code scanner is arranged on the ring-shaped conveyor belt 1 and / or the support table 5, the material box 8 is provided with a code, and the code scanner is used to identify the code on the material box 8 so that the ring-shaped conveyor belt 1 can deliver the material box 8 to the corresponding position. Through the arrangement of the code scanner, the code on the material box 8 can be quickly identified, and the ring-shaped conveyor belt 1 can accurately deliver the material box 8 to the corresponding position, thereby improving the delivery efficiency and accuracy. The application of the code scanner realizes the automatic management of the production line, reduces manual operation, and improves the intelligent level of the production line, achieving fast and accurate data recording and tracing.
[0052] As shown in Figure 5 , in addition to the features of the above embodiments, this embodiment is further limited in that: the polishing shield 3 is provided with a first gap 302 and a second gap 303, and the first gap 302 and the second gap 303 are respectively communicated with the polishing area 301. Through the design of the first gap 302 and the second gap 303, the operation habits and comfort of the technicians are considered, making it more convenient for technicians to operate in the polishing area 301. They can easily extend their tools or arms into the polishing area 301 without the need to frequently move or disassemble the shield. Technicians can flexibly adjust tools and posture according to the needs of polishing work, improving the adaptability and flexibility of the production line.
[0053] As shown in Figure 1 , Figure 2 and Figure 5 , in addition to the features of the above embodiments, this embodiment is further limited in that: the number of polishing shields 3, polishing machines 4 and dust suction ports 201 is multiple, and the multiple polishing shields 3 correspond one-to-one with the multiple dust suction ports 201, and the multiple polishing machines 4 correspond one-to-one with the multiple dust suction ports 201. By providing each technician's desk 21 with independent polishing shields 3, polishing machines 4 and dust suction ports 201, multiple denture polishing and dust removal work can be performed simultaneously, significantly improving production efficiency. Each polishing machine 4 and polishing shield 3 corresponds one-to-one with a dust suction port 201, ensuring that the dust generated at each work point can be effectively sucked away in time, improving the overall dust removal effect. The arrangement of multiple polishing shields 3 and polishing machines 4 allows technicians to flexibly choose to use according to different polishing needs, improving the adaptability and flexibility of the production line.
[0054] As shown in Figure 9As shown, in addition to the features of the above embodiments, this embodiment is further limited in that the sander 4 includes a sander body 41, a handle 42, and a sanding head 43. The sander body 41 is mounted on the technician desk assembly 2. One end of the handle 42 is connected to the sander body 41 through a power cord. The sanding head 43 is mounted on the handle 42, located at the end of the handle 42 away from the sander body 41. By mounting the sander body 41 on the technician desk assembly 2, noise and vibration during sanding can be reduced. The connection between the handle 42 and the sander body 41 through the power cord allows the handle 42 and the sanding head 43 to be moved and used, allowing the technician to flexibly control the sanding direction and force, improving the accuracy and fineness of the sanding work.
[0055] As shown in Figure 5 , in addition to the features of the above embodiments, this embodiment is further limited in that it also includes a magnifying glass assembly 7. The magnifying glass assembly 7 includes an adjusting bracket 71 and a magnifying glass body 72. One end of the adjusting bracket 71 is mounted on the technician desk assembly 2. The magnifying glass body 72 is mounted on the adjusting bracket 71, located at the end of the adjusting bracket 71 away from the technician desk assembly 2. Through the adjusting function of the adjusting bracket 71, the technician can adjust the position and angle of the magnifying glass body 72 as needed, ensuring accurate control of details during sanding. The integration of the magnifying glass assembly 7 allows the technician to perform precise operations without frequently changing work positions or adjusting body posture, improving the work environment and comfort. With the help of the magnifying glass assembly 7, the technician can more accurately identify the work area, reducing product quality problems caused by visual errors.
[0056] As shown in Figure 1 and Figure 2 , in addition to the features of the above embodiments, this embodiment is further limited in that the number of sanders 4 and magnifying glass assemblies 7 is multiple, and each of the multiple magnifying glass assemblies 7 corresponds to one of the multiple sanders 4. By equipping each sander 4 with a magnifying glass assembly 7, the technician can perform sanding and fine inspection simultaneously at each workstation, improving work efficiency. The one-to-one correspondence ensures that each workstation has the same functions and performance, allowing the production line to flexibly respond to different production tasks and demands.
[0057] As shown in Figure 1 and Figure 2As shown in the above embodiments, in addition to the features of the above embodiments, the present embodiment is further limited: further comprising a zirconia lathe, a 3D printer and a zirconia sintering furnace, the zirconia lathe, the 3D printer and the zirconia sintering furnace are arranged on the support table 5. By integrating the denture processing equipment such as the zirconia lathe, the 3D printer and the zirconia sintering furnace on the support table 5, the space utilization is improved, the whole denture dedusting intelligent production line is more compact and convenient, and the overall performance of the production line is improved, including production efficiency, product quality and working environment.
[0058] As shown in the above embodiments, in addition to the features of the above embodiments, the present embodiment is further limited: further comprising a zirconia lathe, a 3D printer and a zirconia sintering furnace, the zirconia lathe, the 3D printer and the zirconia sintering furnace are arranged on the support table 5. By integrating the denture processing equipment such as the zirconia lathe, the 3D printer and the zirconia sintering furnace on the support table 5, the space utilization is improved, the whole denture dedusting intelligent production line is more compact and convenient, and the overall performance of the production line is improved, including production efficiency, product quality and working environment. Figure 1 Figure 2 As shown in the above embodiments, in addition to the features of the above embodiments, the present embodiment is further limited: further comprising a zirconia lathe, a 3D printer and a zirconia sintering furnace, the zirconia lathe, the 3D printer and the zirconia sintering furnace are arranged on the support table 5. By integrating the denture processing equipment such as the zirconia lathe, the 3D printer and the zirconia sintering furnace on the support table 5, the space utilization is improved, the whole denture dedusting intelligent production line is more compact and convenient, and the overall performance of the production line is improved, including production efficiency, product quality and working environment.
[0059] The technical features of the above embodiments can be combined in any way. To make the description concise, not all possible combinations of the technical features in the above embodiments are described, but as long as the combinations of the technical features do not exist, they should be considered within the scope of the present disclosure.
[0060] The above embodiments only express several embodiments of the present application, and the description is more specific and detailed, but it should not be understood as limiting the scope of the application. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, some modifications and improvements can be made, which are within the scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.
Claims
1. A false tooth dedusting intelligent production line, characterized in that, The application relates to a polishing device for polishing false teeth, which comprises the following components: a ring-shaped conveying belt (1) for conveying materials; a technician desk assembly (2) arranged around the ring-shaped conveying belt (1), which is provided with a dust suction port (201); a polishing shield (3) arranged on the technician desk assembly (2), which cooperates with part of the technician desk assembly (2) to form a polishing area (301), and the dust suction port (201) is located in the polishing area (301); a polisher (4) arranged on the technician desk assembly (2); a support table (5) arranged on the ground, which is located in a ring-shaped surrounding area of the ring-shaped conveying belt (1), and the projection of the support table (5) overlaps part of the ring-shaped conveying belt (1); a dust collector (6) arranged on the technician desk assembly (2), which is provided with an air suction port (601) in communication with the dust suction port (201).
2. The denture dusting intelligent production line according to claim 1, characterized in that, The technician desk assembly (2) comprises a plurality of technician desks (21), which are arranged adjacently around the ring-shaped conveying belt (1), and every two adjacent technician desks (21) cooperate to form a dust collector accommodating space, and each technician desk (21) is provided with the dust suction port (201).
3. The denture dusting intelligent production line according to claim 2, characterized in that, The dust collector (6) is arranged on every two adjacent technician desks (21) and located in the dust collector accommodating space, and the dust collector (6) is provided with a plurality of air suction ports (601) corresponding to the plurality of dust suction ports (201) one by one. The technician desk assembly (2) further comprises a plurality of desk corners (22) for connecting two adjacent technician desks (21) at a corner. The technician desk assembly (2) further comprises a dust suction pipe assembly (23) comprising a dust suction pipe body (231) and a cover (232), the dust suction pipe body (231) is arranged on the technician desk (21) and located at the dust suction port (201), one end of the dust suction pipe body (231) is in communication with the air suction port (601), and the other end of the dust suction pipe body (231) away from the air suction port (601) is located in the polishing area (301), and the cover (232) is detachably arranged on the dust suction pipe body (231) and located at the other end of the dust suction pipe body (231) away from the air suction port (601). A plurality of office chairs (10) corresponding to the plurality of technician desks (21) are further arranged.
4. The denture dusting intelligent production line according to claim 1, characterized in that, A material box (8) for storing false tooth materials to be processed and an AGV robot (9) for automatically transporting the material box (8) from a storage area to a placing position of the ring-shaped conveying belt (1) are further arranged.
5. The denture dusting intelligent production line according to claim 4, characterized in that, Also comprising a code scanner arranged on the annular conveyor belt (1) and / or the support table (5), the material box (8) being provided with a code, the code scanner being used to identify the code on the material box (8) so that the annular conveyor belt (1) delivers the material box (8) to the corresponding position.
6. The denture dusting intelligent production line according to claim 1, characterized in that, The polishing shield (3) is provided with a first notch (302) and a second notch (303), which respectively communicate with the polishing area (301); And / or the number of the polishing shield (3), the polisher (4) and the dust suction port (201) is multiple, multiple polishing shields (3) and multiple dust suction ports (201) one-to-one correspondence, multiple polishes (4) and multiple dust suction ports (201) one-to-one correspondence.
7. The denture dusting intelligent production line according to claim 1, characterized in that, The polisher (4) comprises a polisher main body (41), a handle (42) and a polishing head (43), the polisher main body (41) is arranged on the technician desk assembly (2), one end of the handle (42) is connected with the polisher main body (41) through a power line, the polishing head (43) is arranged on the handle (42), and the polishing head (43) is located at one end of the handle (42) away from the polisher main body (41).
8. The denture dusting intelligent production line according to claim 1, characterized in that, Also comprising a magnifying glass assembly (7), the magnifying glass assembly (7) comprising an adjusting support (71) and a magnifying glass body (72), one end of the adjusting support (71) is arranged on the technician desk assembly (2), the magnifying glass body (72) is arranged on the adjusting support (71), and the magnifying glass body (72) is located at one end of the adjusting support (71) away from the technician desk assembly (2).
9. The denture dusting intelligent production line according to claim 8, characterized in that, The number of the polisher (4) and the magnifying glass assembly (7) is multiple, and multiple magnifying glass assemblies (7) correspond to multiple polishers (4) one-to-one.
10. The denture dusting intelligent production line according to claim 1, characterized in that, Also comprising a zirconia lathe, a 3D printer and a zirconia sintering furnace, the zirconia lathe, the 3D printer and the zirconia sintering furnace are arranged on the support table (5) respectively; And / or also comprising a color comparison light box, the color comparison light box is arranged on the technician desk assembly (2).