A precision high-frequency forming wheel and its manufacturing method

By designing a precision high-frequency forming wheel with an adjustable assembly structure and a stackable forming structure, the problems of low flexibility and efficiency in existing technologies have been solved, enabling flexible processing and mass production of objects.

CN118288175BActive Publication Date: 2026-05-26SIMIKE MASCH NANJING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SIMIKE MASCH NANJING CO LTD
Filing Date
2024-05-15
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing precision high-frequency forming wheels lack adjustable assembly structures and stackable forming structures, resulting in low flexibility and efficiency during use.

Method used

A precision high-frequency forming wheel, comprising an assembly mechanism and a forming mechanism, was designed. Through the adjustability of the assembly mechanism and the various combinations of the forming mechanism, flexible and batch processing of objects can be achieved.

Benefits of technology

It improves the flexibility and efficiency of the forming wheel, enabling rapid adjustment of the forming structure according to the shape of the object, and supports a variety of processing methods, including processing thinner, thicker, and spherical shapes.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a precision high-frequency forming wheel and its manufacturing method, applied in the field of forming wheel technology. By setting up a forming mechanism, the main grinding component can process an object into a thinner shape when used alone; the auxiliary grinding component can process the surface of the object when used alone; the side grinding component can process the outer edge of the object when used alone; the edge grinding component can cooperate with the side grinding component and the main grinding component to process the object into a thicker shape; and the bottom grinding component can cooperate with the edge grinding component, the side grinding component, and the main grinding component to process the object into a spherical shape. Through various combinations, multiple different processing methods can be achieved on the object, improving the flexibility of object processing.
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Description

Technical Field

[0001] This invention belongs to the field of forming wheel technology, and specifically relates to a precision high-frequency forming wheel and its manufacturing method. Background Technology

[0002] Precision high-frequency forming wheel manufacturing equipment typically refers to the process of processing synthetic materials using high-frequency radio frequency heating technology, heating them to a soft state, and then pressing them through forming molds to make them into wheels or tires of the required precision shape.

[0003] Chinese invention patent CN116913624A discloses a forming wheel device, which includes a base, support components, a first connecting shaft, a second connecting shaft, concave wheel components, and cam components. Two support components are arranged parallel to each other on the base. The two ends of the first connecting shaft are fixedly connected to the two support components, and the first connecting shaft has a first positive thread segment and a first negative thread segment spaced apart. The two ends of the second connecting shaft are fixedly connected to the two support components, and the position of the second connecting shaft on the support components is adjustable. The second connecting shaft has a second positive thread segment and a second negative thread segment spaced apart, with the first and second positive thread segments facing each other, and the first and second negative thread segments facing each other. Two concave wheel components are symmetrically arranged on the first connecting shaft; two cam components are symmetrically arranged on the second connecting shaft. This forming wheel device expands the application range and improves the forming effect.

[0004] Existing precision high-frequency forming wheels and their manufacturing methods have the following disadvantages when used:

[0005] 1. The lack of an adjustable assembly structure makes it impossible to quickly adjust the forming wheel to the required shape according to the object to be formed, which reduces the flexibility of the forming wheel during use.

[0006] 2. The lack of a stackable forming structure makes it impossible to process the required objects in batches, reducing the efficiency of the forming wheel during use. Summary of the Invention

[0007] The purpose of this invention is to address the existing precision high-frequency forming wheel and its manufacturing method, the advantages of which are:

[0008] 1. It has an adjustable assembly structure, which can quickly adjust the forming wheel to the required shape according to the object to be formed, thus improving the flexibility of the forming wheel during use.

[0009] 2. It has a stackable forming structure, which can process the required objects in batches, improving the efficiency of the forming wheel during use.

[0010] The above-mentioned technical objective of the present invention is achieved through the following technical solution: a precision high-frequency forming wheel manufacturing device, comprising an assembly mechanism and a forming mechanism, wherein the forming mechanism is snapped onto the surface of the assembly mechanism, the assembly mechanism comprising a connecting component, a combining component, and a fixing component, wherein the combining component is bolted to the front side of the connecting component, the fixing component is bolted to the surface of the connecting component, the front side of the combining component is snapped onto the connecting component, and the inner side of the fixing component is snapped onto the connecting component; the forming mechanism comprises a main grinding component, a secondary grinding component, a side grinding component, an edge grinding component, and a bottom grinding component, wherein the main grinding component is snapped onto the surface of the fixing component, the secondary grinding component is snapped onto the side of the fixing component away from the main grinding component, and the surface of the secondary grinding component contacts the inner side of the main grinding component; the side grinding component is snapped onto the surface of the fixing component away from the secondary grinding component, and the side of the side grinding component close to the secondary grinding component contacts the secondary grinding component; the edge grinding component is snapped onto the surface of the side grinding component, and the bottom grinding component is snapped onto the surface of the fixing component away from the edge grinding component, and the surface of the bottom grinding component contacts the side grinding component.

[0011] By adopting the above technical solution, and by setting up an assembly mechanism and a forming mechanism, the assembly mechanism can be connected to another identical assembly mechanism, thereby extending the length of the assembly mechanism and enabling batch processing of the objects to be processed, thus improving the efficiency of processing the items. The forming mechanism can cooperate with the assembly mechanism to change its own combination method to adapt to the needs of processing different object shapes, thereby improving the flexibility of processing the items.

[0012] The present invention is further configured such that: the connecting assembly includes a connecting rod, a limiting sleeve, and a connecting plate, the limiting sleeve being bolted to the surface of the connecting rod, and the connecting plate being bolted to the front side of the connecting rod.

[0013] By adopting the above technical solution, the connecting rod can cooperate with the connecting plate to support and limit the fixed component, the connecting plate can cooperate with the limiting sleeve to support and limit the fixed component, and the connecting plate can support the combined component.

[0014] The present invention is further configured such that: the combined component includes a combined plate, a combined rod, and an assembly rod; the combined plate is bolted to the front side of the connecting plate; the combined rod is bolted to the front side of the combined plate; the assembly rod is bolted to the side of the front side of the combined plate away from the combined rod; and the front side of the combined rod passes through the limiting sleeve connecting plate and is engaged with the limiting sleeve connecting plate.

[0015] By adopting the above technical solution, and by setting up the combination components, the combination plate can support the combination rod and the assembly rod, the assembly rod can limit the connection component and the fixing component, and connect with another identical connection component, thereby achieving the effect of connecting multiple connection components. The assembly rod can further limit the fixing component.

[0016] The present invention is further configured such that: the fixing component includes a fixing tooth plate, a connecting hole and a connecting groove, the fixing tooth plate is engaged with the surface of the limiting sleeve, the connecting hole is opened on the surface of the fixing tooth plate, the connecting groove is opened on the side of the surface of the fixing tooth plate away from the connecting hole, the connecting hole is engaged with the surface of the assembly rod, and the inner side of the connecting groove is engaged with the surface of the assembly rod.

[0017] By adopting the above technical solution, the fixed tooth plate can cooperate with the forming mechanism to limit the forming mechanism by setting the fixing components, the connecting hole can cooperate with the assembly rod to further increase the structural stability of the fixed tooth plate, and the connecting groove can cooperate with the assembly rod to further increase the stability when the fixed tooth plate is connected to the fixed tooth plate.

[0018] The present invention is further configured such that: the main grinding assembly includes a main connecting ring, a main grinding top ring, and a main grinding inclined ring, the main connecting ring being snapped onto the surface of the fixed tooth plate, the main grinding top ring being bolted onto the surface of the main connecting ring, and the main grinding inclined ring being bolted onto the surface of the main grinding top ring.

[0019] By adopting the above technical solution, the main connecting ring can support the main grinding top ring by setting the main grinding assembly. The main grinding top ring can cooperate with the main grinding inclined ring, and the required molded object can be processed into a thinner structure when used alone.

[0020] The present invention is further configured such that: the auxiliary grinding assembly includes an auxiliary connecting ring, an auxiliary rotating plate, and an auxiliary grinding ring; the auxiliary connecting ring is clamped onto the surface of the fixed tooth plate; the auxiliary rotating plate is bolted onto the surface of the auxiliary connecting ring; the auxiliary grinding ring is bolted onto the surface of the auxiliary rotating plate; and the surface of the auxiliary rotating plate is in contact with the inner side of the main grinding inclined ring.

[0021] By adopting the above technical solution, by setting up a secondary grinding assembly, the secondary connecting ring can support the secondary rotating plate, and the secondary rotating plate can cooperate with the secondary grinding ring. When used alone, it can process the surface of the object to be processed, and it can also cooperate with the main grinding inclined ring to support the main grinding inclined ring.

[0022] The present invention is further configured such that: the side grinding assembly includes a side connecting ring, a side snap-fit ​​ring, and a side grinding inclined ring; the side connecting ring is snapped onto the surface of the fixed tooth plate; the side snap-fit ​​ring is bolted onto the surface of the side connecting ring; the side grinding inclined ring is bolted onto the surface of the side snap-fit ​​ring; and the side of the side snap-fit ​​ring near the auxiliary rotating plate is in contact with the auxiliary rotating plate.

[0023] By adopting the above technical solution, by setting the side grinding component, the side connecting ring can cooperate with the side snap ring to support the side grinding inclined ring and limit the edge grinding component. The side grinding inclined ring can process the outer edge of the object to be processed when used alone.

[0024] The present invention is further configured such that: the edge grinding assembly includes an edge retaining ring, an edge grinding top ring, and an edge grinding inclined ring, the edge retaining ring being engaged with the surface of the side retaining ring, the edge grinding top ring being bolted to the surface of the edge retaining ring, and the edge grinding inclined ring being bolted to the surface of the edge grinding top ring.

[0025] By adopting the above technical solution, the side grinding assembly can be set up so that the side retaining ring can support the side grinding top ring and the side grinding inclined ring. The side grinding inclined ring and the side grinding top ring can cooperate with the side grinding inclined ring, the main grinding top ring and the main grinding inclined ring to process the object with a thicker shape.

[0026] The present invention is further configured such that: the bottom grinding assembly includes a bottom connecting ring, a bottom grinding top ring, and a bottom grinding inclined ring; the bottom connecting ring is snapped onto the surface of the fixed tooth plate; the bottom grinding top ring is bolted onto the surface of the bottom connecting ring; the bottom grinding inclined ring is bolted onto the inner side of the bottom grinding top ring; and the surface of the bottom grinding top ring is in contact with the surface of the side grinding inclined ring.

[0027] By adopting the above technical solution, the bottom grinding assembly is set up, the bottom connecting ring can support the bottom grinding top ring, and the bottom grinding inclined ring and the bottom grinding inclined ring can cooperate with the side grinding inclined ring, the side grinding top ring, the side grinding inclined ring, the main grinding inclined ring and the main grinding top ring to process the object to be processed into a spherical shape.

[0028] A method for manufacturing a precision high-frequency forming wheel includes the following steps:

[0029] S1. Stacking Assembly: First, assemble the forming mechanism on the surface of the fixed tooth plate. Then, according to the required requirements, connect the combination rod and assembly rod through the limiting sleeve and connecting plate to the connecting hole until the required length is reached. Then, connect the connecting rod to the reciprocating transmission structure, so that the connecting rod can drive the fixed tooth plate to rotate the forming mechanism along with the reciprocating transmission structure.

[0030] S2. Adjustment Combination: First, when a thinner structure is required, install the main connecting ring on the assembly mechanism. Repeat the installation of the main connecting ring on the assembly mechanism until the desired result is achieved. The main grinding top ring and the main grinding inclined ring will then process the object to be formed thinner. When a thicker structure is required, install the main connecting ring, the secondary connecting ring, and the side connecting ring on the assembly mechanism. The main grinding top ring, the main grinding inclined ring, and the side grinding inclined ring will then process the object to be formed thicker. When the surface of the object needs to be processed, install the secondary connecting ring on the assembly mechanism. Then, the secondary clamping grinding ring will process the surface of the object to be formed. When the object needs to be processed into a spherical shape, install the main connecting ring, the secondary connecting ring, the bottom connecting ring, and the side connecting ring on the assembly mechanism. Then, install the side clamping ring on the side clamping ring. The main grinding top ring, the main grinding inclined ring, the secondary clamping grinding ring, the side grinding inclined ring, the side grinding top ring, the side grinding inclined ring, the bottom grinding top ring, and the bottom grinding inclined ring will then process the object to be formed into a spherical shape.

[0031] In summary, the present invention has the following beneficial effects:

[0032] 1. By setting up an assembly mechanism, the fixed component can limit the forming mechanism, and the connecting component can cooperate with the combination component. By allowing the combination component to connect the current connecting component to another identical connecting component, the assembly mechanism can be stacked and extended, thereby allowing the forming mechanism to process objects in batches, thus improving the efficiency of object processing.

[0033] 2. By setting up a forming mechanism, the main grinding component can process the object into a thinner shape when used alone, the auxiliary grinding component can process the surface of the object when used alone, the side grinding component can process the outer edge of the object when used alone, the edge grinding component can work with the side grinding component and the main grinding component to process the object into a thicker shape, and the bottom grinding component can work with the edge grinding component, the side grinding component and the main grinding component to process the object into a spherical shape. Through various combinations, a variety of different processing methods can be achieved for the object, improving the flexibility of object processing. Attached Figure Description

[0034] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0035] Figure 2 This is a schematic diagram of the assembly mechanism of the present invention;

[0036] Figure 3 This is a schematic diagram of the connection component structure of the present invention;

[0037] Figure 4 This is a schematic diagram of the combined component structure of the present invention;

[0038] Figure 5 This is a schematic diagram of the fixed component structure of the present invention;

[0039] Figure 6 This is a schematic diagram of the molding mechanism structure of the present invention;

[0040] Figure 7 This is a schematic diagram of the main grinding assembly structure of the present invention;

[0041] Figure 8 This is a schematic diagram of the auxiliary grinding assembly structure of the present invention;

[0042] Figure 9 This is a schematic diagram of the side grinding assembly structure of the present invention;

[0043] Figure 10 This is a schematic diagram of the edge grinding assembly structure of the present invention;

[0044] Figure 11 This is a schematic diagram of the bottom grinding assembly structure of the present invention;

[0045] Figure 12 This is a schematic diagram illustrating the method of using the present invention.

[0046] Reference numerals: 1. Assembly mechanism; 101. Connecting component; 1011. Connecting rod; 1012. Limiting sleeve; 1013. Connecting plate; 102. Combination component; 1021. Combination plate; 1022. Combination rod; 1023. Assembly rod; 103. Fixing component; 1031. Fixing toothed plate; 1032. Connecting hole; 1033. Connecting groove; 2. Forming mechanism; 201. Main grinding component; 2011. Main connecting ring; 2012. Main grinding top ring; 201 3. Main grinding inclined ring; 202. Auxiliary grinding assembly; 2021. Auxiliary connecting ring; 2022. Auxiliary rotating plate; 2023. Auxiliary clamping grinding ring; 203. Side grinding assembly; 2031. Side connecting ring; 2032. Side clamping ring; 2033. Side grinding inclined ring; 204. Side grinding assembly; 2041. Side clamping ring; 2042. Side grinding top ring; 2043. Side grinding inclined ring; 205. Bottom grinding assembly; 2051. Bottom connecting ring; 2052. Bottom grinding top ring; 2053. Bottom grinding inclined ring. Detailed Implementation

[0047] The present invention will be further described in detail below with reference to the accompanying drawings.

[0048] Example 1:

[0049] refer to Figure 1-5 A precision high-frequency forming wheel manufacturing device includes an assembly mechanism 1. The assembly mechanism 1 includes a connecting component 101, a combination component 102, and a fixing component 103. The combination component 102 is bolted to the front side of the connecting component 101, and the fixing component 103 is bolted to the surface of the connecting component 101. The front side of the combination component 102 is engaged with the connecting component 101, and the inner side of the fixing component 103 is engaged with the connecting component 101. By setting the assembly mechanism 1, the fixing component 103 can limit the forming mechanism 2. The connecting component 101 can cooperate with the combination component 102. By allowing the combination component 102 to connect the current connecting component 101 to another identical connecting component 101, the assembly mechanism 1 can be stacked and extended, thereby allowing the forming mechanism 2 to batch process objects and improve the efficiency of object processing.

[0050] like Figure 3As shown, the connecting assembly 101 includes a connecting rod 1011, a limiting sleeve 1012, and a connecting plate 1013. The limiting sleeve 1012 is bolted to the surface of the connecting rod 1011, and the connecting plate 1013 is bolted to the front side of the connecting rod 1011. By setting the connecting rod 1011 to cooperate with the connecting plate 1013, the fixed assembly 103 can be supported and limited. The connecting plate 1013 can cooperate with the limiting sleeve 1012 to support and limit the fixed assembly 103. The connecting plate 1013 can support the combined assembly 102.

[0051] like Figure 4 As shown, the assembly 102 includes a combination plate 1021, a combination rod 1022, and an assembly rod 1023. The combination plate 1021 is bolted to the front side of the connecting plate 1013, the combination rod 1022 is bolted to the front side of the combination plate 1021, and the assembly rod 1023 is bolted to the front side of the combination plate 1021 away from the combination rod 1022. The front side of the combination rod 1022 passes through the limiting sleeve 1012 and the connecting plate 1013 and engages with the limiting sleeve 1012 and the connecting plate 1013. By setting the assembly 102, the combination plate 1021 can support the combination rod 1022 and the assembly rod 1023. The assembly rod 1023 can limit the connection component 101 and the fixing component 103 and connect with another identical connection component 101, thereby achieving the effect of connecting multiple connection components 101. The assembly rod 1023 can further limit the fixing component 103.

[0052] like Figure 5 As shown, the fixing component 103 includes a fixing toothed plate 1031, a connecting hole 1032, and a connecting groove 1033. The fixing toothed plate 1031 is snapped onto the surface of the limiting sleeve 1012. The connecting hole 1032 is formed on the surface of the fixing toothed plate 1031, and the connecting groove 1033 is formed on the side of the surface of the fixing toothed plate 1031 away from the connecting hole 1032. The connecting hole 1032 is snapped onto the surface of the assembly rod 1022, and the inner side of the connecting groove 1033 is snapped onto the surface of the assembly rod 1023. By setting the fixing component 103, the fixing toothed plate 1031 can cooperate with the forming mechanism 2 to limit the forming mechanism 2. The connecting hole 1032 can cooperate with the assembly rod 1022 to further increase the structural stability of the fixing toothed plate 1031. The connecting groove 1033 can cooperate with the assembly rod 1023 to further increase the stability when the fixing toothed plate 1031 is connected to the fixing toothed plate 1032.

[0053] Brief description of the usage process: First, assemble the forming mechanism 2 on the surface of the fixed tooth plate 1031. Then, according to the required requirements, connect the combination rod 1022 and the assembly rod 1023 through the limiting sleeve 1012 and the connecting plate 1013 to the connecting hole 1032 until the required length is reached. Then, connect the connecting rod 1011 to the reciprocating transmission structure, so that the connecting rod 1011 can drive the fixed tooth plate 1031 to rotate the forming mechanism 2 along with the reciprocating transmission structure.

[0054] Example 2:

[0055] refer to Figure 6-11 A precision high-frequency forming wheel manufacturing device includes a forming mechanism 2, which is snapped onto the surface of an assembly mechanism 1. The forming mechanism 2 includes a main grinding assembly 201, a secondary grinding assembly 202, a side grinding assembly 203, an edge grinding assembly 204, and a bottom grinding assembly 205. The main grinding assembly 201 is snapped onto the surface of a fixed assembly 103. The secondary grinding assembly 202 is snapped onto the side of the fixed assembly 103 away from the main grinding assembly 201, and its surface contacts the inner side of the main grinding assembly 201. The side grinding assembly 203 is snapped onto the side of the fixed assembly 103 away from the secondary grinding assembly 202, and its side near the secondary grinding assembly 202 contacts the secondary grinding assembly 202. The edge grinding assembly 204 is snapped onto the surface of the side grinding assembly 203. The bottom grinding assembly 205 is snapped onto the fixed assembly 103. The surface of component 103 is away from the side grinding component 204, and the surface of the bottom grinding component 205 is in contact with the side grinding component 203. By setting the forming mechanism 2, the main grinding component 201 can process the object into a thinner shape when used alone, the auxiliary grinding component 202 can process the surface of the object when used alone, the side grinding component 203 can process the outer edge of the object when used alone, the side grinding component 204 can cooperate with the side grinding component 203 and the main grinding component 201 to process the object into a thicker shape, and the bottom grinding component 205 can cooperate with the side grinding component 204, the side grinding component 203 and the main grinding component 201 to process the object into a spherical shape. Through various combinations, various processing methods can be achieved for the object, improving the flexibility of object processing.

[0056] like Figure 7 As shown, the main grinding assembly 201 includes a main connecting ring 2011, a main grinding top ring 2012, and a main grinding inclined ring 2013. The main connecting ring 2011 is snapped onto the surface of the fixed toothed plate 1031, the main grinding top ring 2012 is bolted onto the surface of the main connecting ring 2011, and the main grinding inclined ring 2013 is bolted onto the surface of the main grinding top ring 2012. By setting the main grinding assembly 201, the main connecting ring 2011 can support the main grinding top ring 2012, and the main grinding top ring 2012 can cooperate with the main grinding inclined ring 2013. When used alone, the required molded object can be processed into a thinner structure.

[0057] like Figure 8 As shown, the auxiliary grinding assembly 202 includes an auxiliary connecting ring 2021, an auxiliary rotating plate 2022, and an auxiliary grinding ring 2023. The auxiliary connecting ring 2021 is snapped onto the surface of the fixed toothed plate 1031, the auxiliary rotating plate 2022 is bolted onto the surface of the auxiliary connecting ring 2021, and the auxiliary grinding ring 2023 is bolted onto the surface of the auxiliary rotating plate 2022. The surface of the auxiliary rotating plate 2022 contacts the inner side of the main grinding inclined ring 2013. By setting the auxiliary grinding assembly 202, the auxiliary connecting ring 2021 can support the auxiliary rotating plate 2022, and the auxiliary rotating plate 2022 can cooperate with the auxiliary grinding ring 2023. When used alone, it can process the surface of the object to be processed, and it can also cooperate with the main grinding inclined ring 2013 to support the main grinding inclined ring 2013.

[0058] like Figure 9 As shown, the side grinding assembly 203 includes a side connecting ring 2031, a side snap-fit ​​ring 2032, and a side grinding inclined ring 2033. The side connecting ring 2031 is snapped onto the surface of the fixed toothed plate 1031, the side snap-fit ​​ring 2032 is bolted onto the surface of the side connecting ring 2031, and the side grinding inclined ring 2033 is bolted onto the surface of the side snap-fit ​​ring 2032. The side snap-fit ​​ring 2032 is in contact with the auxiliary rotating plate 2022 on the side near the auxiliary rotating plate 2022. By setting the side grinding assembly 203, the side connecting ring 2031 can cooperate with the side snap-fit ​​ring 2032 to support the side grinding inclined ring 2033 and limit the movement of the side grinding assembly 204. The side grinding inclined ring 2033 can be used alone to process the outer edge of the object to be processed.

[0059] like Figure 10 As shown, the edge grinding assembly 204 includes an edge retaining ring 2041, an edge grinding top ring 2042, and an edge grinding inclined ring 2043. The edge retaining ring 2041 is engaged with the surface of the side retaining ring 2032, the edge grinding top ring 2042 is bolted to the surface of the edge retaining ring 2041, and the edge grinding inclined ring 2043 is bolted to the surface of the edge grinding top ring 2042. By setting the edge grinding assembly 204, the edge retaining ring 2041 can support the edge grinding top ring 2042 and the edge grinding inclined ring 2043. The edge grinding inclined ring 2043 and the edge grinding top ring 2042 can cooperate with the side grinding inclined ring 2033, the main grinding top ring 2012, and the main grinding inclined ring 2013 to process the thicker shape of the object to be processed.

[0060] like Figure 11As shown, the bottom grinding assembly 205 includes a bottom connecting ring 2051, a bottom grinding top ring 2052, and a bottom grinding inclined ring 2053. The bottom connecting ring 2051 is snapped onto the surface of the fixed tooth plate 1031, the bottom grinding top ring 2052 is bolted onto the surface of the bottom connecting ring 2051, and the bottom grinding inclined ring 2053 is bolted onto the inner side of the bottom grinding top ring 2052. The surface of the bottom grinding top ring 2052 is in contact with the surface of the side grinding inclined ring 2033. By setting the bottom grinding assembly 205, the bottom connecting ring 2051 can support the bottom grinding top ring 2052. The bottom grinding inclined ring 2053 and the bottom grinding inclined ring 2053 can cooperate with the side grinding inclined ring 2043, the side grinding top ring 2042, the side grinding inclined ring 2033, the main grinding inclined ring 2013, and the main grinding top ring 2012 to process the object to be processed into a spherical shape.

[0061] Brief description of the usage process: First, when it is necessary to process the object into a thinner structure, install the main connecting ring 2011 on the assembly mechanism 1. Repeat the installation of the main connecting ring 2011 on the assembly mechanism 1 until the desired result is achieved. The main grinding top ring 2012 and the main grinding inclined ring 2013 can then process the object into a thinner structure. When it is necessary to process the object into a thicker structure, install the main connecting ring 2011, the auxiliary connecting ring 2021, and the side connecting ring 2031 on the assembly mechanism 1. The main grinding top ring 2012, the main grinding inclined ring 2013, and the side grinding inclined ring 2033 will then process the object into a thicker structure. This process is also applicable when it is necessary to process the surface of the object. When the secondary connecting ring 2021 is installed on the assembly mechanism 1, the secondary grinding ring 2023 will then perform surface processing on the object to be shaped. When the object needs to be shaped into a sphere, the main connecting ring 2011, the secondary connecting ring 2021, the bottom connecting ring 2051, and the side connecting ring 2031 are installed on the assembly mechanism 1, and the side retaining ring 2041 is installed on the side retaining ring 2032. The main grinding top ring 2012, the main grinding inclined ring 2013, the secondary grinding ring 2023, the side grinding inclined ring 2033, the side grinding top ring 2042, the side grinding inclined ring 2043, the bottom grinding top ring 2052, and the bottom grinding inclined ring 2053 will then perform spherical processing on the object to be shaped.

[0062] Among them, such as Figure 12 As shown, the specific steps of the above-described method for manufacturing a precision high-frequency forming wheel are as follows:

[0063] S1. Stacking Assembly: First, assemble the forming mechanism 2 on the surface of the fixed tooth plate 1031. Then, according to the required requirements, connect the combination rod 1022 and the assembly rod 1023 through the limiting sleeve 1012 and the connecting plate 1013 to the connecting hole 1032 until the required length is reached. Then, connect the connecting rod 1011 to the reciprocating transmission structure, so that the connecting rod 1011 can drive the fixed tooth plate 1031 to rotate the forming mechanism 2 along with the reciprocating transmission structure.

[0064] S2. Adjustment Combination: First, when a thinner structure is required, install the main connecting ring 2011 on the assembly mechanism 1. Repeatedly install the main connecting ring 2011 on the assembly mechanism 1 until the desired result is achieved. The main grinding top ring 2012 and the main grinding inclined ring 2013 can then perform thinner processing on the desired object. When a thicker structure is required, install the main connecting ring 2011, the auxiliary connecting ring 2021, and the side connecting ring 2031 on the assembly mechanism 1. The main grinding top ring 2012, the main grinding inclined ring 2013, and the side grinding inclined ring 2033 will then perform thicker processing on the desired object. When it is necessary to thicken the surface of the object... During operation, the secondary connecting ring 2021 is installed on the assembly mechanism 1. Then, the secondary grinding ring 2023 will perform surface processing on the object to be shaped. When it is necessary to process the object into a spherical shape, the main connecting ring 2011, the secondary connecting ring 2021, the bottom connecting ring 2051, and the side connecting ring 2031 are installed on the assembly mechanism 1. Then, the side retaining ring 2041 is installed on the side retaining ring 2032. The main grinding top ring 2012, the main grinding inclined ring 2013, the secondary grinding ring 2023, the side grinding inclined ring 2033, the side grinding top ring 2042, the side grinding inclined ring 2043, the bottom grinding top ring 2052, and the bottom grinding inclined ring 2053 will perform spherical processing on the object to be shaped.

[0065] This specific embodiment is merely an explanation of the present invention and is not intended to limit the invention. After reading this specification, those skilled in the art can make modifications to this embodiment without contributing any inventive step, but such modifications are protected by patent law as long as they are within the scope of the claims of the present invention.

Claims

1. A precision high-frequency forming wheel manufacturing device, comprising an assembly mechanism (1) and a forming mechanism (2), characterized in that: The forming mechanism (2) is snapped onto the surface of the assembly mechanism (1). The assembly mechanism (1) includes a connecting component (101), a combination component (102), and a fixing component (103). The combination component (102) is bolted to the front side of the connecting component (101), and the fixing component (103) is bolted to the surface of the connecting component (101). The front side of the combination component (102) is snapped onto the connecting component (101), and the inner side of the fixing component (103) is snapped onto the connecting component (101). The forming mechanism (2) includes a main grinding component (201), a secondary grinding component (202), a side grinding component (203), a side grinding component (204), and a bottom grinding component (205). The main grinding component (201) is snapped onto the surface of the fixing component. (103) Surface, the auxiliary grinding assembly (202) is snapped onto the surface of the fixed assembly (103) away from the main grinding assembly (201), the surface of the auxiliary grinding assembly (202) is in contact with the inner side of the main grinding assembly (201), the side grinding assembly (203) is snapped onto the surface of the fixed assembly (103) away from the auxiliary grinding assembly (202), the side grinding assembly (203) is in contact with the auxiliary grinding assembly (202) on the side close to the auxiliary grinding assembly (202), the edge grinding assembly (204) is snapped onto the surface of the side grinding assembly (203), the bottom grinding assembly (205) is snapped onto the surface of the fixed assembly (103) away from the edge grinding assembly (204), the surface of the bottom grinding assembly (205) is in contact with the side grinding assembly (203); The connecting assembly (101) includes a connecting rod (1011), a limiting sleeve (1012), and a connecting plate (1013). The limiting sleeve (1012) is bolted to the surface of the connecting rod (1011), and the connecting plate (1013) is bolted to the front side of the connecting rod (1011). The combined assembly (102) includes a combined plate (1021), a combined rod (1022), and an assembly rod (1023). The combined plate (1021) is bolted to the front side of the connecting plate (1013). The combined rod (1022) is bolted to the front side of the combined plate (1021). The assembly rod (1023) is bolted to the front side of the combined plate (1021) away from the combined rod (1022). The front side of the combined rod (1022) passes through the limiting sleeve (1012) and the connecting plate (1013) and engages with the limiting sleeve (1012) and the connecting plate (1013). The fixing assembly (103) includes a fixing toothed plate (1031), a connecting hole (1032), and a connecting groove (1033). The fixing toothed plate (1021)... 031) The connecting hole (1032) is opened on the surface of the fixed toothed plate (1031), and the connecting groove (1033) is opened on the side of the fixed toothed plate (1031) away from the connecting hole (1032). The connecting hole (1032) is engaged with the surface of the assembly rod (1022), and the inner side of the connecting groove (1033) is engaged with the surface of the assembly rod (1023). The main grinding assembly (201) includes a main connecting ring (2011), a main grinding top ring (2012), and a main grinding inclined ring (2013). The main connecting ring (2011) is engaged with the surface of the fixed toothed plate (1031), and the main grinding top ring (2012) is bolted to the main connecting ring (2011). On the surface, the main grinding inclined ring (2013) is bolted to the surface of the main grinding top ring (2012). The auxiliary grinding assembly (202) includes an auxiliary connecting ring (2021), an auxiliary rotating plate (2022), and an auxiliary grinding ring (2023). The auxiliary connecting ring (2021) is clamped to the surface of the fixed tooth plate (1031). The auxiliary rotating plate (2022) is bolted to the surface of the auxiliary connecting ring (2021). The auxiliary grinding ring (2023) is bolted to the surface of the auxiliary rotating plate (2022). The surface of the auxiliary rotating plate (2022) contacts the inner side of the main grinding inclined ring (2013). The side grinding assembly (203) includes a side connecting ring (2031), a side clamping ring (2032), and a side grinding inclined ring (2033). The side connecting ring ( 2031) is snapped onto the surface of the fixed toothed plate (1031), the side snap-fit ​​ring (2032) is bolted onto the surface of the side connecting ring (2031), the side grinding bevel ring (2033) is bolted onto the surface of the side snap-fit ​​ring (2032), the side snap-fit ​​ring (2032) is in contact with the sub-rotating plate (2022) on the side near the sub-rotating plate (2022), the side grinding assembly (204) includes a side snap-fit ​​ring (2041), a side grinding top ring (2042) and a side grinding bevel ring (2043), the side snap-fit ​​ring (2041) is snapped onto the surface of the side snap-fit ​​ring (2032), the side grinding top ring (2042) is bolted onto the surface of the side snap-fit ​​ring (2041), and the side grinding bevel ring (2043) is bolted onto the surface of the side grinding top ring (2042).The bottom grinding assembly (205) includes a bottom connecting ring (2051), a bottom grinding top ring (2052), and a bottom grinding inclined ring (2053). The bottom connecting ring (2051) is snapped onto the surface of the fixed toothed plate (1031). The bottom grinding top ring (2052) is bolted onto the surface of the bottom connecting ring (2051). The bottom grinding inclined ring (2053) is bolted onto the inner side of the bottom grinding top ring (2052). The surface of the bottom grinding top ring (2052) is in contact with the surface of the side grinding inclined ring (2033).

2. The method for manufacturing a precision high-frequency forming wheel manufacturing device as described in claim 1, characterized in that: Includes the following steps: S1. Stacking Assembly: First, assemble the forming mechanism (2) on the surface of the fixed tooth plate (1031). Then, according to the required requirements, connect the combination rod (1022) and the assembly rod (1023) through the limiting sleeve (1012) and the connecting plate (1013) to the connecting hole (1032) until the required length is reached. Then, connect the connecting rod (1011) to the reciprocating transmission structure. The connecting rod (1011) will drive the fixed tooth plate (1031) to rotate the forming mechanism (2) along with the reciprocating transmission structure. S2. Adjustment Combination: First, when it is necessary to process the object into a thin structure, install the main connecting ring (2011) on the assembly mechanism (1), and repeat the installation of the main connecting ring (2011) on the assembly mechanism (1) until the required result is achieved. The main grinding top ring (2012) and the main grinding inclined ring (2013) can then process the object into a thin structure. When it is necessary to process the object into a thick structure, install the main connecting ring (2011), the secondary connecting ring (2021), and the side connecting ring (2031) on the assembly mechanism (1). The main grinding top ring (2012), the main grinding inclined ring (2013), and the side grinding inclined ring (2033) will then process the object into a thick structure. When it is necessary to process the surface of the object, install the secondary connecting ring (2011), the secondary connecting ring (2021), and the side connecting ring (2031) on the assembly mechanism (1). The ring (2021) is installed on the assembly mechanism (1), and then the auxiliary grinding ring (2023) will perform surface processing on the object to be shaped. When the object needs to be processed into a spherical shape, the main connecting ring (2011), auxiliary connecting ring (2021), bottom connecting ring (2051) and side connecting ring (2031) are installed on the assembly mechanism (1), and then the side retaining ring (2041) is installed on the side retaining ring (2032). The main grinding top ring (2012), main grinding inclined ring (2013), auxiliary grinding ring (2023), side grinding inclined ring (2033), side grinding top ring (2042), side grinding inclined ring (2043), bottom grinding top ring (2052) and bottom grinding inclined ring (2053) will perform spherical processing on the object to be shaped.