A mixing mechanism for automobile accessory production
By introducing screening and drying components into the mixing mechanism, the problem of uneven mixing was solved, achieving uniform screening and drying of raw materials and improving the processing quality of automotive parts.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- QICHUNLAN QIDUO NETWORK TECH CO LTD
- Filing Date
- 2024-12-13
- Publication Date
- 2026-07-21
AI Technical Summary
Existing mixing mechanisms fail to effectively screen raw materials for automotive parts, resulting in significant particle size differences, uneven mixing, and impacting part performance and service life.
A mixing mechanism was designed, equipped with a screening component and a drying component, including a screen and a vibrating motor for screening, a hot air blower for drying, a mixing shaft and a mixing blade for mixing, and a dust removal hood and connecting pipe for impurity removal.
This process achieves uniform screening and drying of raw materials, avoiding agglomeration and stratification, and ensuring uniform mixing and subsequent processing quality.
Smart Images

Figure CN224524636U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of automotive parts production technology, specifically a mixing mechanism for automotive parts production. Background Technology
[0002] The mixing of raw materials for automotive parts mainly involves the blending of different types of raw materials to create automotive composite materials that meet specific requirements. These raw materials include, but are not limited to, polymer materials, inorganic materials, metallic materials, inks, and pigments.
[0003] When mixing raw materials for automotive parts, a mixing mechanism is usually required to ensure thorough mixing of the various components.
[0004] However, existing mixing mechanisms typically lack the ability to screen raw materials. Without screening, particles with significant size variations may appear during mixing, easily leading to agglomeration or stratification and resulting in uneven mixing. For critical components like engine blocks, unevenly mixed materials can cause porosity and inclusions during casting, reducing the strength and sealing of the engine block and affecting its service life and performance. For alloy materials, uneven mixing can also lead to compositional segregation, meaning differences in alloy composition across different regions. This affects the overall performance and uniformity of the engine block, potentially causing hot cracking and decreased mechanical properties. Therefore, a mixing mechanism for automotive parts production is proposed to address these issues. Utility Model Content
[0005] To address the shortcomings of existing technologies, this utility model provides a mixing mechanism for automotive parts production, which has advantages such as the ability to screen raw materials before mixing, thus solving the problem that traditional mixing mechanisms are prone to uneven mixing during use, which affects parts processing.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a mixing mechanism for the production of automotive parts, comprising a mixing bin, a screening component for screening raw materials is provided on the top of the mixing bin, a feeding port for feeding is also provided on the top of the mixing bin, an electric cover is provided at each feeding port, and a drying component for drying the mixed raw materials is provided at the bottom of the mixing bin.
[0007] The screening assembly includes a mounting platform, which is fixedly connected to the top of the mixing hopper. A connecting hopper is provided on the top of the mounting platform, and a feeding port for feeding is provided on the top of the connecting hopper. Multiple supporting connecting seats are provided on the outside of the feeding port. A connecting spring is fixedly connected to the bottom of each of the multiple connecting seats, and the other end of each of the multiple connecting springs is fixedly connected to the mounting platform. A vibration motor for transmission is also provided on the feeding port.
[0008] The feed inlet is provided with a support base for support, and the support base is provided with a screen for screening the raw materials. The screen is provided with multiple fixing parts, and the screen is fixedly connected to the support base through the fixing parts.
[0009] Furthermore, the drying assembly includes a discharge port, which is connected to the bottom of the mixing hopper. A hot air blower for drying the raw materials is provided on the discharge port, and the air outlet of the hot air blower is connected to the discharge port.
[0010] Furthermore, a dust removal hood is also provided on the discharge port, and a connecting pipe is provided on the dust removal hood.
[0011] Furthermore, a mounting base is fixedly connected to one side of the mixing hopper, a drive motor is fixedly connected to the top of the mounting base, a drive wheel is fixedly connected to the output shaft of the drive motor, a drive belt is provided on the drive wheel, and a driven wheel is driven by the drive belt.
[0012] Furthermore, a stirring shaft for stirring the raw materials is fixedly connected to the driven wheel, the other end of the stirring shaft passes through the mixing bin, and multiple stirring blades are fixedly connected to the rod part of the stirring shaft located in the mixing bin.
[0013] Furthermore, the bottom of the mixing hopper is provided with a support frame for support, and the bottom of the support frame is provided with multiple omnidirectional wheels for easy sliding.
[0014] Compared with the prior art, the technical solution of this application has the following beneficial effects:
[0015] I. This mixing mechanism for automotive parts production, equipped with a feeding port and a screen, can effectively screen the raw materials under the action of a vibrating motor. This effectively avoids the formation of particles with large differences in particle size during the mixing process, which can easily lead to agglomeration or stratification of particles and uneven mixing.
[0016] Second, the mixing mechanism for automotive parts production is equipped with a drying component, which enables it to effectively dry the raw materials during use, preventing the mixed raw materials from being affected by high moisture content in subsequent processing. The dust removal hood and connecting pipe are also equipped to effectively remove impurities from the mixed raw materials. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of this utility model;
[0018] Figure 2 This is a schematic diagram of the screening component structure of this utility model;
[0019] Figure 3 This is a top view of the screening component structure of this utility model;
[0020] Figure 4 This is a rear view of the structure of this utility model;
[0021] Figure 5 This is a schematic diagram of the drying component structure of this utility model.
[0022] In the diagram: 1. Mixing hopper; 11. Feed inlet; 12. Electric cover plate; 13. Support frame; 14. Casters; 15. Mounting base; 16. Drive motor; 17. Drive wheel; 18. Drive belt; 19. Driven wheel; 191. Agitator shaft; 2. Screening assembly; 21. Mounting platform; 22. Connecting hopper; 23. Feed inlet; 24. Connecting base; 25. Connecting spring; 26. Vibrating motor; 27. Support base; 28. Screen; 29. Fixing component; 3. Drying assembly; 31. Discharge outlet; 32. Hot air blower; 33. Dust collector hood; 34. Connecting pipe. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not 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 effort are within the protection scope of the present utility model.
[0024] Example 1:
[0025] Please see Figures 1-3This embodiment of a mixing mechanism for automotive parts production includes a mixing hopper 1. The mixing hopper 1 has a screening component 2 at its top for screening raw materials, and a feeding inlet 11 at its top for feeding materials. Each feeding inlet 11 is equipped with an electric cover plate 12. The bottom of the mixing hopper 1 has a drying component 3 for drying the mixed raw materials. The screening component 2 includes a mounting platform 21, which is fixedly connected to the top of the mixing hopper 1. A connecting hopper 22 is slidably connected to the top of the mounting platform 21. The top of the connecting hopper 22 is equipped with... A feeding port 23 for feeding materials is provided. Multiple connecting seats 24 for support are provided on the outside of the feeding port 23. A connecting spring 25 is fixedly connected to the bottom of each connecting seat 24. The other end of each connecting spring 25 is fixedly connected to the mounting platform 21. A vibration motor 26 for transmission is also provided on the feeding port 23. A support seat 27 for support is provided inside the feeding port 23. A screen 28 for screening raw materials is provided on the support seat 27. Multiple fixing parts 29 are provided on the screen 28. The screen 28 is fixedly connected to the support seat 27 through the fixing parts 29.
[0026] As a preferred technical solution in this embodiment: In actual use, the staff can set the aperture size of the screen 28 according to the usage requirements, so as to ensure that the size of the screened raw materials is not too large. Furthermore, the screen 28 can be set as a double layer to further screen the raw materials so that the size of the raw materials is within a certain range.
[0027] When the worker pours the raw materials into the feeding port 23, the worker can control the vibration motor 26 to make it vibrate. When the vibration motor 26 vibrates, it can drive the feeding port 23 to vibrate. During the vibration of the feeding port 23, it can effectively drive the screen 28 to achieve the effect of screening the raw materials. At the same time, the connecting spring 25 is provided to further enhance the screening effect of the feeding port 23 and the screen 28 during use.
[0028] It is worth noting that the material of the connecting bucket 22 in this embodiment is preferably an elastic material, but it can also be a component with its own expansion and contraction properties, such as a corrugated pipe.
[0029] The technical effects of the above embodiments are as follows: by setting the feed port 23 and the screen 28, the raw materials can be effectively screened under the action of the vibration motor 26, which effectively avoids the occurrence of particles with large differences in particle size during the mixing process, which would easily lead to the formation of agglomeration or stratification of particles during mixing, resulting in uneven mixing.
[0030] Example 2:
[0031] Please see Figures 4-5To achieve the effects of mixing and drying the raw materials, the drying component 3 in this embodiment includes a discharge port 31, which is connected to the bottom of the mixing bin 1. A hot air blower 32 for drying the raw materials is installed on the discharge port 31, and the air outlet of the hot air blower 32 is connected to the discharge port 31. A dust collector hood 33 is also installed on the discharge port 31, and a connecting pipe 34 is installed on the dust collector hood 33. A mounting base 15 is fixedly connected to one side of the mixing bin 1, and a drive motor 16 is fixedly connected to the top of the mounting base 15. A drive wheel 17 is fixedly connected to the output shaft of the drive motor 16, and a drive belt 18 is installed on the drive wheel 17. The drive belt 18 is driven by a driven wheel 19. A stirring shaft 191 for stirring the raw materials is fixedly connected to the driven wheel 19. The other end of the stirring shaft 191 passes through the mixing bin 1, and multiple stirring blades are fixedly connected to the rod part of the stirring shaft 191 located in the mixing bin 1. The bottom of the mixing bin 1 is provided with a support frame 13 for support, and the bottom of the support frame 13 is provided with multiple omnidirectional wheels 14 for easy sliding.
[0032] As a preferred technical solution in this embodiment: In actual use, the operator can control the transmission motor 16 to drive the transmission wheel 17 to make the transmission belt 18 rotate. During the rotation of the transmission belt 18, the driven wheel 19 can be driven so that the stirring shaft 191 can drive multiple stirring blades to achieve the effect of mixing the raw materials in the mixing bin 1. After the raw materials are mixed, the operator can control the discharge port 31 to discharge the mixed raw materials. At the same time, during the discharge process, the operator can control the dust removal hood 33 to generate hot air to achieve the effect of drying the raw materials.
[0033] Furthermore, to avoid excessive dust and other impurities in the raw materials, the staff can connect the connecting pipe 34 to a negative pressure fan or an industrial vacuum cleaner, thereby effectively adsorbing dust from the raw materials during the discharge process. This further enhances the processing effect of the mixed raw materials and prevents the mixed raw materials from being affected by too many impurities, thus avoiding negative impacts on subsequent processing.
[0034] The technical effects of the above embodiments are as follows: by setting the drying component 3, the raw materials can be effectively dried during use, avoiding the impact of high moisture content on subsequent processing of the mixed raw materials; by setting the dust removal hood 33 and the connecting pipe 34, the mixed raw materials can be effectively removed from impurities.
[0035] The working principle of the above embodiments is as follows:
[0036] 1. When the worker pours the raw material into the feeding port 23, the worker can control the vibration motor 26 to make it vibrate. When the vibration motor 26 vibrates, it can drive the feeding port 23 to vibrate. During the vibration of the feeding port 23, it can effectively drive the screen 28 to achieve the effect of screening the raw material. At the same time, the connecting spring 25 is set to further enhance the screening effect of the feeding port 23 and the screen 28 during use.
[0037] II. In actual use, the operator can control the drive motor 16 to drive the drive wheel 17 to rotate the drive belt 18. During the rotation of the drive belt 18, the driven wheel 19 can be driven, which in turn drives the stirring shaft 191 to drive multiple stirring blades to achieve the effect of mixing the raw materials in the mixing bin 1. After the raw materials are mixed, the operator can control the discharge port 31 to discharge the mixed raw materials. At the same time, during the discharge process, the operator can control the dust collector 33 to generate hot air to achieve the effect of drying the raw materials.
[0038] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A mixing mechanism for automobile parts production, comprising a mixing bin (1), characterized in that: The top of the mixing silo (1) is provided with a screening component (2) for screening raw materials. The top of the mixing silo (1) is also provided with a feed inlet (11) for feeding materials. Each feed inlet (11) is provided with an electric cover plate (12). The bottom of the mixing silo (1) is provided with a drying component (3) for drying the mixed raw materials. The screening component (2) includes a mounting platform (21), which is fixedly connected to the top of the mixing hopper (1). A connecting hopper (22) is provided on the top of the mounting platform (21), and a feeding port (23) for feeding is provided on the top of the connecting hopper (22). Multiple connecting seats (24) for support are provided on the outside of the feeding port (23). A connecting spring (25) is fixedly connected to the bottom of each of the multiple connecting seats (24), and the other end of each of the multiple connecting springs (25) is fixedly connected to the mounting platform (21). A vibration motor (26) for transmission is also provided on the feeding port (23). The feed inlet (23) is provided with a support seat (27) for support. The support seat (27) is provided with a screen (28) for screening raw materials. The screen (28) is provided with a plurality of fasteners (29). The screen (28) is fixedly connected to the support seat (27) through the fasteners (29).
2. The mixing mechanism for automobile parts production according to claim 1, characterized in that: The drying assembly (3) includes a discharge port (31), which is connected to the bottom of the mixing hopper (1). A hot air blower (32) for drying raw materials is provided on the discharge port (31), and the air outlet of the hot air blower (32) is connected to the discharge port (31).
3. A mixing mechanism for automobile parts production according to claim 2, characterized in that: A dust removal hood (33) is also provided on the discharge port (31), and a connecting pipe (34) is provided on the dust removal hood (33).
4. A mixing mechanism for automobile parts production according to claim 1, characterized in that: A mounting base (15) is fixedly connected to one side of the mixing bin (1), a drive motor (16) is fixedly connected to the top of the mounting base (15), a drive wheel (17) is fixedly connected to the output shaft of the drive motor (16), a drive belt (18) is provided on the drive wheel (17), and a driven wheel (19) is driven by the drive belt (18).
5. A mixing mechanism for automobile parts production according to claim 4, characterized in that: A stirring shaft (191) for stirring raw materials is fixedly connected to the driven wheel (19). The other end of the stirring shaft (191) passes through the mixing bin (1), and multiple stirring blades are fixedly connected to the rod part of the stirring shaft (191) located in the mixing bin (1).
6. A mixing mechanism for automobile parts production according to claim 1, characterized in that: The bottom of the mixing bin (1) is provided with a support frame (13) for support, and the bottom of the support frame (13) is provided with a number of omnidirectional wheels (14) for easy sliding.