Automatic sorting and distributing device for track shoes

By designing a multi-channel track plate automatic sorting and fabric device, the problems of low processing efficiency and low product yield of the quenching machine tool are solved, efficient sorting and parameter detection of track plates are realized, and production efficiency and product quality are improved.

CN223118513UActive Publication Date: 2025-07-18SUZHOU IND PARK JIUHE IND FURNACE CO LTD
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Patent Information

Application Number
CN202422095947.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2025-07-18
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

The existing quenching machine tool processing methods limit the production efficiency of track plates, and lack the detection and selection of track plates that do not meet the process parameters, resulting in unsatisfactory product yields.

Method used

A track plate automatic sorting and cloth device is designed, adopting a multi-channel structure, combined with horizontal sorting fabric, and is arranged between the quenching furnace and the tempering furnace, including a quick-out roller assembly, a discharge assembly, a quenching machine tool group, a temperature sorting component and a tempering furnace feeding fabric assembly, to realize automatic sorting of track plates and process parameter detection, and select workpieces that do not meet the standards.

Benefits of technology

It improves production efficiency and can select and select non-compliant workpieces before the track plate enters the tempering furnace to improve product yield.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an automatic sorting and distributing device for track shoes. The automatic sorting and distributing device comprises a fast-out roller way assembly, a first discharging assembly, a second discharging assembly, a quenching machine tool set, a temperature sorting assembly, a tempering furnace feeding and distributing assembly, a fast-in roller way and a conveying roller way which are sequentially arranged and butted from a quenching furnace to a tempering furnace, the track shoe treated by the quenching furnace is sequentially conveyed to the quenching machine tool set by the fast-out roller way assembly, the first discharging assembly and the second discharging assembly; the track shoe treated by the quenching machine tool set is sequentially conveyed to the tempering furnace by the temperature sorting assembly, the tempering furnace feeding and distributing assembly, the fast forward roller way and the conveying roller way; the quenching furnace machine tool set comprises at least two quenching machine tools arranged side by side, the temperature sorting assembly and the tempering furnace feeding and distributing assembly are provided with technological parameter detection assemblies for detecting the track shoe in a combined mode, and the side portion of the temperature sorting assembly is provided with a sorting basket.
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Description

Technical Field

[0001] The utility model relates to the technical field of metal heat treatment, and more precisely, to an automatic sorting and feeding device for crawler shoes. Background Art

[0002] The quenching process is an important step in the metal heat treatment process. When the metal is heated to a high temperature and then quenched, martensite transformation will occur, thus forming a hard and brittle phase called martensite. This phase can improve the hardness and strength of the metal. A quenching furnace is an industrial furnace for performing the quenching process, and its function is to rapidly cool the workpiece from a high temperature to achieve specific expected properties. The quenching machine tool is mainly used for quenching the surface of parts. Currently, the workpiece production line for quenching treatment is generally arranged in sequence with a quenching furnace, a quenching machine tool, and an annealing furnace. The workpiece processed by the quenching furnace enters the annealing furnace for annealing treatment.

[0003] The crawler shoe is a moving part of heavy equipment such as bulldozers, excavators, and cranes. Its performance is crucial for the stable and efficient use of these equipment. The crawler shoe is generally long in length and large in overall volume. The existing quenching machine tools are usually single-channel and can only quench one large-sized workpiece at a time. However, the quenching furnace and the annealing furnace can process multiple large-sized workpieces at a single time. It can be seen that the existing single-channel quenching machine tool processing method limits the overall production efficiency. In addition, there is a lack of relevant technical solutions for detecting and selecting crawler shoes with unqualified process parameters after quenching treatment in the existing technology, resulting in an unsatisfactory product yield and unqualified product performance.

[0004] In summary, there is a need in the art to design a sorting and feeding device for quenching and tempering crawler shoes to improve the product yield while increasing the production efficiency. Summary of the Utility Model

[0005] In view of this, the purpose of the utility model is to provide an automatic sorting and feeding device for crawler shoes, which adopts a structure combining multiple channels with horizontal sorting and feeding, cooperates with multiple detection components, performs feeding at the feeding end and the discharging end of the quenching machine tool respectively, and sorts out and collects the workpieces with unqualified process parameters at the discharging end of the quenching machine tool, so as to improve the product yield while increasing the production efficiency.

[0006] To achieve the above object, the present utility model provides an automatic sorting and feeding device for track shoes, which is arranged between a quenching furnace and a tempering furnace and includes a fast-out roller table assembly, a first discharging assembly, a second discharging assembly, a quenching machine tool group, a temperature sorting assembly, a tempering furnace feeding and distributing assembly, a fast-in roller table, and a conveying roller table arranged in sequence and butted from the quenching furnace to the tempering furnace; the track shoes processed by the quenching furnace are sequentially transmitted to the quenching machine tool group by the fast-out roller table assembly, the first discharging assembly, and the second discharging assembly, and the track shoes processed by the quenching machine tool group are sequentially transmitted to the tempering furnace by the temperature sorting assembly, the tempering furnace feeding and distributing assembly, the fast-in roller table, and the conveying roller table; the quenching furnace machine tool group includes at least two quenching machine tools arranged side by side, a process parameter detection assembly for detecting the track shoes is integrally arranged at the temperature sorting assembly and the tempering furnace feeding and distributing assembly, and a sorting basket is arranged at the side of the temperature sorting assembly.

[0007] Preferably, the first discharging assembly includes a first support, a first distributing assembly, and a first transmission roller group. The first transmission roller group is installed on the top of the first support, and the first transmission roller group includes a plurality of first transmission rollers arranged in parallel at intervals, and there is a gap between adjacent first transmission rollers; the first distributing assembly is slidably installed in the first support, and the sliding direction of the first distributing assembly is perpendicular to the transmission direction of the track shoes; the first distributing assembly is arranged to be liftable between the gaps of the plurality of first transmission rollers.

[0008] Preferably, the first distributing assembly includes a first distributing base, a plurality of first rolling wheel groups, a first driving assembly, and a first lifting assembly. The plurality of first rolling wheel groups are combined and installed with the first distributing base and the first support. The first distributing base moves relative to the first support through the first rolling wheel groups. The first driving assembly is installed on the top of the first distributing base, and the first lifting assembly is installed on the top of the first driving assembly, and the first lifting assembly is driven by the first driving assembly to rise or fall.

[0009] Preferably, the top of the first lifting assembly has a plurality of first lifting plates, and the first lifting plates are respectively vertically aligned with the gaps between the first transmission rollers.

[0010] Preferably, the second discharging assembly includes a second support, a second distributing assembly, and a second transmission roller group. The second transmission roller group is installed on the top of the second support, and the second transmission roller group includes a plurality of second transmission rollers arranged in parallel at intervals, and there is a gap between adjacent second transmission rollers; the second distributing assembly is slidably installed in the second support, and the sliding direction of the second distributing assembly is perpendicular to the transmission direction of the track shoes; the second distributing assembly is arranged to be liftable between the gaps of the plurality of second transmission rollers.

[0011] Preferably, the second fabric component includes a second fabric base, a plurality of second rolling wheel sets, a second driving component, and a second lifting component. The plurality of second rolling wheel sets are combined and installed with the second fabric base and the second support. The second fabric base moves relative to the second support through the second rolling wheel sets. The second driving component is installed on the top of the second fabric base, and the second lifting component is installed on the top of the second driving component, and the second lifting component is driven by the second driving component to rise or fall.

[0012] Preferably, the temperature sorting component includes a sorting support, a sorting component, and a sorting transmission roller set. The sorting transmission roller set is installed on the top of the sorting support, and the sorting transmission roller set includes a plurality of sorting transmission rollers arranged in parallel at intervals. There is a gap between adjacent sorting transmission rollers; sorting baskets are arranged on both sides of the sorting support; the sorting component is slidably installed in the sorting support, and the sliding direction of the sorting component is perpendicular to the transmission direction of the crawler plate; the sorting component is arranged to be liftable between the gaps of the plurality of sorting transmission rollers.

[0013] Preferably, the sorting component includes a sorting base, a sorting driving component, and a sorting lifting component. The sorting base is slidably connected to the sorting support. The sorting driving component is installed on the top of the sorting base, and the sorting lifting component is installed on the top of the sorting driving component, and the sorting lifting component is driven by the sorting driving component to rise or fall.

[0014] Preferably, the tempering furnace feeding and fabricating component includes a feeding support, a feeding and fabricating component, and a feeding transmission roller set. The feeding transmission roller set is installed on the top of the feeding support, and the feeding transmission roller set includes a plurality of feeding transmission rollers arranged in parallel at intervals. There is a gap between adjacent feeding transmission rollers; the feeding and fabricating component is slidably installed in the feeding support, and the sliding direction of the feeding and fabricating component is perpendicular to the transmission direction of the crawler plate; the feeding and fabricating component is arranged to be liftable between the gaps of the plurality of feeding transmission rollers.

[0015] Preferably, the feeding and fabricating component includes a feeding and fabricating base, a plurality of feeding rolling wheel sets, a feeding driving component, and a feeding lifting component. The plurality of feeding rolling wheel sets are combined and installed with the feeding and fabricating base and the feeding support. The feeding and fabricating base moves relative to the feeding support through the feeding rolling wheel sets. The feeding driving component is installed on the top of the feeding and fabricating base, and the feeding lifting component is installed on the top of the feeding driving component, and the feeding lifting component is driven by the feeding driving component to rise or fall.

[0016] Compared with the prior art, the advantages of an automatic sorting and feeding device for crawler shoes disclosed by the present utility model are as follows: the automatic sorting and feeding device for crawler shoes has multiple quenching machine tool channels, and the production efficiency is higher; the automatic sorting and feeding device for crawler shoes can automatically feed the crawler shoes, and can evenly arrange the crawler shoes and then input them into the tempering furnace, which helps to improve the efficiency and treatment effect of the tempering process; the automatic sorting and feeding device for crawler shoes can sort out and collect the crawler shoes with unqualified process parameters before they enter the tempering furnace, improving the yield of the products. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0018] As Figure 1 shown is the front view of an automatic sorting and feeding device for crawler shoes of the present utility model.

[0019] As Figure 2 shown is the top view of an automatic sorting and feeding device for crawler shoes of the present utility model.

[0020] As Figure 3 shown is the structural schematic diagram of the feeding and feeding assembly and the temperature sorting assembly of an automatic sorting and feeding device for crawler shoes of the present utility model.

[0021] As Figure 4 shown is the structural schematic diagram of the first discharging and feeding assembly and the second discharging and feeding assembly of an automatic sorting and feeding device for crawler shoes of the present utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, rather than all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present utility model.

[0023] As Figure 1 and Figure 2As shown in the figure, an automatic sorting and feeding device for crawler shoes of the present application is arranged between a quenching furnace and a tempering furnace, and includes a fast-out roller table assembly 1, a first discharging assembly 2, a second discharging assembly 3, a quenching machine tool group 4, a temperature sorting assembly 5, a tempering furnace feeding and distributing assembly 6, a fast-in roller table 7, and a conveying roller table 8 arranged in sequence and docked from the quenching furnace to the tempering furnace. The crawler shoes processed by the quenching furnace are sequentially transmitted to the quenching machine tool group 4 by the fast-out roller table assembly 1, the first discharging assembly 2, and the second discharging assembly 3. The crawler shoes processed by the quenching machine tool group 4 are sequentially transmitted to the tempering furnace by the temperature sorting assembly 5, the tempering furnace feeding and distributing assembly 6, the fast-in roller table 7, and the conveying roller table 8. Among them, the quenching furnace machine tool group 4 includes at least two quenching machine tools arranged side by side. A process parameter detection assembly for detecting the crawler shoes is combinedly arranged at the temperature sorting assembly 5 and the tempering furnace feeding and distributing assembly 6. A sorting basket 50 is arranged on the side of the temperature sorting assembly 5. The crawler shoes with unqualified process parameters are transmitted to the sorting basket 50 by the temperature sorting assembly 5 for collection.

[0024] The automatic sorting and feeding device for crawler shoes has multiple quenching machine tool channels, and the production efficiency is higher; the automatic sorting and feeding device for crawler shoes can sort out and collect the crawler shoes with unqualified process parameters before the crawler shoes enter the tempering furnace, improving the yield of products.

[0025] Among them, the fast-out roller table assembly 1 can quickly output the crawler shoes processed by the quenching furnace, reduce the cooling effect of the external environment on the crawler shoes, and at the same time help improve the production efficiency. The fast-in roller table 7 can quickly convey the crawler shoes processed by the quenching machine tool and arranged in order to the conveying roller table 8, reduce the cooling effect of the external environment on the crawler shoes, and improve the production efficiency. Preferably, the tempering furnace feeding and distributing assembly 6 can arrange the crawler shoes in 8 rows side by side. The 8 rows of side-by-side crawler shoes are conveyed to the tempering furnace by the fast-in roller table 7 and the conveying roller table 8. The crawler shoes do not cross and form occlusion, and the number of crawler shoes processed at one time is greatly increased, which can improve the performance of the processed products while improving the production efficiency.

[0026] Specifically, refer to Figure 3, the first discharging component 2 includes a first support 21, a first cloth-feeding component, and a first conveying roller set 26. The first conveying roller set 26 is installed on the top of the first support 21, and the first conveying roller set 26 includes a number of first conveying rollers arranged in parallel at intervals, with a gap between adjacent first conveying rollers; the first cloth-feeding component is slidably installed in the first support 21, and the sliding direction of the first cloth-feeding component is perpendicular to the conveying direction of the crawler plate; the first cloth-feeding component is arranged to be liftable between the gaps of a number of first conveying rollers. When the first cloth-feeding component rises and protrudes above the top surface of the first conveying roller set 26, the crawler plate at the corresponding position is lifted by the first cloth-feeding component and moves with the first cloth-feeding component. After reaching the predetermined position, the first cloth-feeding component descends below the top surface of the first conveying roller set 26, and the crawler plate is moved and laid at the predetermined position, completing the first cloth-feeding of the crawler plate, so as to facilitate conveying the crawler plate to a number of quenching machine tools in the quenching machine tool group 4 for surface quenching treatment.

[0027] The second discharging component 3 includes a second support 31, a second cloth-feeding component, and a second conveying roller set 36. The second conveying roller set 36 is installed on the top of the second support 31, and the second conveying roller set 36 includes a number of second conveying rollers arranged in parallel at intervals, with a gap between adjacent second conveying rollers; the second cloth-feeding component is slidably installed in the second support 31, and the sliding direction of the second cloth-feeding component is perpendicular to the conveying direction of the crawler plate; the second cloth-feeding component is arranged to be liftable between the gaps of a number of second conveying rollers. When the second cloth-feeding component rises and protrudes above the top surface of the second conveying roller set 36, the crawler plate at the corresponding position is lifted by the second cloth-feeding component and moves with the second cloth-feeding component. After reaching the predetermined position, the second cloth-feeding component descends below the top surface of the second conveying roller set 36, and the crawler plate is moved and laid at the predetermined position, completing the second cloth-feeding of the crawler plate, so as to facilitate conveying the crawler plate to a number of quenching machine tools in the quenching machine tool group 4 for surface quenching treatment.

[0028] After testing, the first discharging component 2 and the second discharging component 3 can fastest achieve conveying one crawler plate to the quenching machine tool group 4 every 7 seconds, greatly improving the production efficiency and helping to improve the performance of the product. Taking the quenching machine tool group 4 including two quenching machine tools arranged in parallel as an example, compared with the traditional solution including only one quenching machine tool, the production capacity can be increased by at least 50%.

[0029] Among them, the first fabric component includes a first fabric base 22, a plurality of first rolling wheel sets 23, a first driving component 24, and a first lifting component 25. The plurality of first rolling wheel sets 23 are integrally installed with the first fabric base 22 and the first support 21. The first fabric base 22 moves relative to the first support 21 through the first rolling wheel sets 23. The first driving component 24 is installed on the top of the first fabric base 22, and the first lifting component 25 is installed on the top of the first driving component 24. Moreover, the first lifting component 25 is driven by the first driving component 24 to rise or fall. The top of the first lifting component 25 has a plurality of first lifting plates 251, and the first lifting plates 251 are vertically aligned with the gaps between the first transmission rollers respectively. When the first lifting component 25 moves up and down, it drives the first lifting plates 251 to move up and down through the gaps between the first transmission rollers, so as to lift or lower the upper track shoe; when the first lifting component 25 moves horizontally with the first fabric base 22, it drives the first lifting plates 251 to move along the gaps, so as to move to the bottom of the track shoe at the corresponding position or move and arrange the track shoe to the corresponding position.

[0030] The second fabric component has the same structure as the first fabric component. The second fabric component includes a second fabric base 32, a plurality of second rolling wheel sets 33, a second driving component 34, and a second lifting component 35. The plurality of second rolling wheel sets 33 are integrally installed with the second fabric base 32 and the second support 31. The second fabric base 32 moves relative to the second support 31 through the second rolling wheel sets 33. The second driving component 34 is installed on the top of the second fabric base 32, and the second lifting component 35 is installed on the top of the second driving component 34. Moreover, the second lifting component 35 is driven by the second driving component 34 to rise or fall. The top of the second lifting component 35 has a plurality of second lifting plates 351, and the second lifting plates 351 are vertically aligned with the gaps between the second transmission rollers respectively. When the second lifting component 35 moves up and down, it drives the second lifting plates 351 to move up and down through the gaps between the second transmission rollers, so as to lift or lower the upper track shoe; when the second lifting component 35 moves horizontally with the second fabric base 32, it drives the second lifting plates 351 to move along the gaps, so as to move to the bottom of the track shoe at the corresponding position or move and arrange the track shoe to the corresponding position.

[0031] See Figure 4, the temperature sorting component 5 includes a sorting bracket 51, a sorting component, and a sorting transmission roller group 55. The sorting transmission roller group 55 is installed on the top of the sorting bracket 51, and the sorting transmission roller group 55 includes a number of sorting transmission rollers arranged in parallel at intervals. There is a gap between adjacent sorting transmission rollers; sorting baskets 50 are arranged on both sides of the sorting bracket 51. The sorting component is slidably installed in the sorting bracket 51, and the sliding direction of the sorting component is perpendicular to the transmission direction of the crawler plate; the sorting component is liftably arranged between the gaps of a number of sorting transmission rollers. When the sorting component rises above the top surface of the sorting transmission roller group 55, the crawler plate at the corresponding position is lifted by the first cloth feeding component and moves with the sorting component, and the crawler plates with unqualified performance parameters can be transported and collected in the sorting basket 50.

[0032] The sorting component includes a sorting base 52, a sorting drive component 53, and a sorting lifting component 54. The sorting base 52 is slidably connected to the sorting bracket 51. The sorting drive component 53 is installed on the top of the sorting base 52, and the sorting lifting component 54 is installed on the top of the sorting drive component 53. The sorting lifting component 54 is driven by the sorting drive component 53 to rise or fall. There are a number of sorting lifting plates 541 on the top of the sorting lifting component 54. The sorting lifting plates 541 are vertically aligned with the gaps between the sorting transmission rollers respectively. When the sorting lifting component 54 moves up and down, it drives the sorting lifting plates 541 to move up and down through the gaps between the sorting transmission rollers, lifting or lowering the upper crawler plates; when the sorting lifting component 54 moves horizontally with the sorting base 52, it drives the sorting lifting plates 541 to move along the gaps.

[0033] The temperature sorting component 5 further includes a sorting material blocking component 56. The sorting material blocking component 56 is combined and installed with the sorting bracket 51, and the sorting material blocking component 56 is located at one end of the sorting bracket 51 away from the quenching machine group 4. The sorting material blocking component 56 can be telescoped up and down. The sorting material blocking component 56 can block the crawler plates with unqualified processes and prevent them from entering the next process.

[0034] The tempering furnace feeding and cloth feeding component 6 includes a feeding bracket 61, a feeding and cloth feeding component, and a feeding transmission roller group 66. The feeding transmission roller group 66 is installed on the top of the feeding bracket 61, and the feeding transmission roller group 66 includes a number of feeding transmission rollers arranged in parallel at intervals. There is a gap between adjacent feeding transmission rollers; the feeding and cloth feeding component is slidably installed in the feeding bracket 61, and the sliding direction of the feeding and cloth feeding component is perpendicular to the transmission direction of the crawler plate; the feeding and cloth feeding component is liftably arranged between the gaps of a number of feeding transmission rollers. When the feeding and cloth feeding component rises above the top surface of the feeding transmission roller group 66, the crawler plate at the corresponding position is lifted by the feeding and cloth feeding component and moves with the feeding and cloth feeding component. After reaching the predetermined position, the feeding and cloth feeding component descends below the top surface of the feeding transmission roller group 66, and the crawler plate is moved and laid at the predetermined position.

[0035] The feeding and cloth-feeding assembly includes a feeding and cloth-feeding base 62, a plurality of feeding rolling wheel sets 63, a feeding driving assembly 64, and a feeding lifting assembly 65. The plurality of feeding rolling wheel sets 63 are combined and installed with the feeding and cloth-feeding base 62 and the feeding support 61. The feeding and cloth-feeding base 62 moves relative to the feeding support 61 through the feeding rolling wheel sets 63. The feeding driving assembly 64 is installed on the top of the feeding and cloth-feeding base 62. The feeding lifting plate 651 is installed on the top of the feeding driving assembly 64, and the feeding lifting assembly 65 is driven by the feeding driving assembly 64 to rise or fall. The top of the feeding lifting assembly 65 has a plurality of feeding lifting plates 651, and the feeding lifting plates 651 are vertically aligned with the gaps between the feeding transmission rollers respectively. When the feeding lifting assembly 65 moves up and down, it drives the feeding lifting plates 651 to move up and down through the gaps between the feeding transmission rollers, so as to lift or lower the upper crawler plates; when the feeding lifting assembly 65 moves laterally with the feeding and cloth-feeding base 62, it drives the feeding lifting plates 651 to move along the gaps, so as to move to the bottom of the crawler plates at the corresponding positions or move and arrange the crawler plates to the corresponding positions.

[0036] The tempering furnace feeding and cloth-feeding assembly 6 further includes a feeding material blocking assembly 67. The feeding material blocking assembly 67 is combined and installed with the feeding support 61, and the feeding material blocking assembly 67 is located at one end of the feeding support 61 away from the quenching machine set 4, and the feeding material blocking assembly 67 can be telescoped up and down. The feeding material blocking assembly 67 can block the crawler plates with unqualified processes to prevent them from entering the next process.

[0037] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to these embodiments shown herein, but will be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. An automatic sorting and feeding device for crawler shoes, characterized in that, It is arranged between the quenching furnace and the tempering furnace, and includes a fast-out roller table assembly, a first discharging assembly, a second discharging assembly, a quenching machine tool group, a temperature sorting assembly, a tempering furnace feeding and distributing assembly, a fast-in roller table and a conveying roller table which are arranged in sequence and butted from the quenching furnace to the tempering furnace; the crawler plates processed by the quenching furnace are sequentially transmitted to the quenching machine tool group by the fast-out roller table assembly, the first discharging assembly and the second discharging assembly, and the crawler plates processed by the quenching machine tool group are sequentially transmitted to the tempering furnace by the temperature sorting assembly, the tempering furnace feeding and distributing assembly, the fast-in roller table and the conveying roller table; the quenching furnace machine tool group includes at least two quenching machine tools arranged side by side, a process parameter detection assembly for detecting the crawler plates is integrally arranged at the temperature sorting assembly and the tempering furnace feeding and distributing assembly, and a sorting basket is arranged at the side of the temperature sorting assembly.

2. The automatic sorting and feeding device for crawler shoes according to claim 1, characterized in that, The first discharging assembly includes a first support, a first distributing assembly and a first transmission roller group. The first transmission roller group is installed on the top of the first support, and the first transmission roller group includes a plurality of first transmission rollers arranged in parallel at intervals. There is a gap between adjacent first transmission rollers; the first distributing assembly is slidably installed in the first support, and the sliding direction of the first distributing assembly is perpendicular to the transmission direction of the crawler plate; the first distributing assembly is arranged in a liftable manner between the gaps of a plurality of the first transmission rollers.

3. The automatic sorting and feeding device for crawler shoes according to claim 2, characterized in that, The first distributing assembly includes a first distributing base, a plurality of first rolling wheel groups, a first driving assembly and a first lifting assembly. The plurality of first rolling wheel groups are combined and installed with the first distributing base and the first support. The first distributing base moves relative to the first support through the first rolling wheel groups. The first driving assembly is installed on the top of the first distributing base, and the first lifting assembly is installed on the top of the first driving assembly. The first lifting assembly is driven by the first driving assembly to rise or fall.

4. The automatic sorting and feeding device for crawler shoes according to claim 3, characterized in that A plurality of first lifting plates are arranged at the top of the first lifting assembly, and the first lifting plates are vertically aligned with the gaps between the first transmission rollers respectively.

5. The automatic sorting and feeding device for crawler shoes according to claim 1, characterized in that, The second discharging assembly includes a second support, a second distributing assembly and a second transmission roller group. The second transmission roller group is installed on the top of the second support, and the second transmission roller group includes a plurality of second transmission rollers arranged in parallel at intervals. There is a gap between adjacent second transmission rollers; the second distributing assembly is slidably installed in the second support, and the sliding direction of the second distributing assembly is perpendicular to the transmission direction of the crawler plate; the second distributing assembly is arranged in a liftable manner between the gaps of a plurality of the second transmission rollers.

6. The automatic sorting and feeding device for crawler shoes according to claim 5, characterized in that, The second fabric component includes a second fabric base, a plurality of second rolling wheel sets, a second driving component, and a second lifting component. The plurality of second rolling wheel sets are combined and installed with the second fabric base and the second support. The second fabric base moves relative to the second support through the second rolling wheel sets. The second driving component is installed on the top of the second fabric base, and the second lifting component is installed on the top of the second driving component. Moreover, the second lifting component is driven by the second driving component to rise or fall.

7. The automatic sorting and feeding device for crawler shoes according to claim 1, characterized in that, The temperature sorting component includes a sorting support, a sorting component, and a sorting transmission roller set. The sorting transmission roller set is installed on the top of the sorting support, and the sorting transmission roller set includes a plurality of sorting transmission rollers arranged in parallel at intervals. There is a gap between adjacent sorting transmission rollers; sorting baskets are arranged on both sides of the sorting support; the sorting component is slidably installed in the sorting support, and the sliding direction of the sorting component is perpendicular to the transmission direction of the crawler plate; the sorting component is arranged to be liftable between the gaps of the plurality of sorting transmission rollers.

8. The automatic sorting and feeding device for crawler shoes according to claim 7, characterized in that, The sorting component includes a sorting base, a sorting driving component, and a sorting lifting component. The sorting base is slidably connected to the sorting support. The sorting driving component is installed on the top of the sorting base, and the sorting lifting component is installed on the top of the sorting driving component. Moreover, the sorting lifting component is driven by the sorting driving component to rise or fall.

9. The automatic sorting and feeding device for crawler shoes according to claim 1, wherein The tempering furnace feeding and fabricating component includes a feeding support, a feeding and fabricating component, and a feeding transmission roller set. The feeding transmission roller set is installed on the top of the feeding support, and the feeding transmission roller set includes a plurality of feeding transmission rollers arranged in parallel at intervals. There is a gap between adjacent feeding transmission rollers; the feeding and fabricating component is slidably installed in the feeding support, and the sliding direction of the feeding and fabricating component is perpendicular to the transmission direction of the crawler plate; the feeding and fabricating component is arranged to be liftable between the gaps of the plurality of feeding transmission rollers.

10. The automatic sorting and feeding device for crawler shoes according to claim 9, characterized in that, The feeding and fabricating component includes a feeding and fabricating base, a plurality of feeding rolling wheel sets, a feeding driving component, and a feeding lifting component. The plurality of feeding rolling wheel sets are combined and installed with the feeding and fabricating base and the feeding support. The feeding and fabricating base moves relative to the feeding support through the feeding rolling wheel sets. The feeding driving component is installed on the top of the feeding and fabricating base, and the feeding lifting component is installed on the top of the feeding driving component. Moreover, the feeding lifting component is driven by the feeding driving component to rise or fall.