Silane treatment container

By designing a shared silane treatment container suitable for steel wheels and guards, the high cost and dust pollution problems of traditional sandblasting have been solved, achieving flexible and efficient silane treatment to meet the needs of parts of different specifications.

CN224237389UActive Publication Date: 2026-05-15WINDUS ENTERPRISES INC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WINDUS ENTERPRISES INC
Filing Date
2025-05-15
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Traditional sandblasting processes suffer from long processing times, high costs, and severe dust pollution. Furthermore, traditional silane treatment containers cannot be used simultaneously with steel wheels and protective covers, resulting in high costs and large space requirements.

Method used

A silane treatment container was designed, comprising a main body, a first support assembly, a second support assembly, a first strut, a second strut, and a hook assembly. By adjusting the height of the support assembly and the position of the hook assembly, the steel wheel and the protective cover can share a single container, adapting to the processing of parts of different specifications.

Benefits of technology

This allows the steel wheels and protective cover to share a single silane treatment container, saving costs, reducing waste of silane solution, and improving flexibility and efficiency in use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a silane treatment container, and belongs to the technical field of part surface treatment. The utility model discloses a silane treatment container, and aims to provide the silane treatment container which not only can be used for silane treatment of a steel wheel, but also can be used for silane treatment of a protective cover, so that one device has two purposes and the cost is saved. According to the technical scheme, the device comprises a main body, a first supporting assembly, a second supporting assembly, a first supporting rod, a second supporting rod and a lifting hook assembly, and the main body is a rectangular box with an opening in the top and comprises two short side walls and two long side walls; the first supporting assembly comprises two supporting strips and two supporting bodies, the two supporting strips are oppositely fixed to the inner sides of the two short side walls, and each supporting strip is detachably provided with one supporting body capable of adjusting the installation height. The two ends of the first supporting rod are movably placed on the two supporting bodies respectively. The second supporting rod is supported by second supporting assemblies fixed to the two long side walls, and the second supporting rod is sleeved with a plurality of lifting hook assemblies. The device is used for silane treatment of parts.
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Description

Technical Field

[0001] This utility model relates to a silane treatment container, belonging to the field of parts surface treatment technology. Background Technology

[0002] Traditionally, most products require sandblasting before painting and powder coating. However, sandblasting has several drawbacks: 1. It's a time-consuming process, requiring sandblasting the top surface before flipping the workpiece to sand the lower half. 2. It's costly, requiring expensive sandblasting machines with high energy consumption and labor costs. 3. It generates a large amount of dust, necessitating additional environmental protection equipment, further increasing costs.

[0003] To address this, our company has introduced silane treatment technology, which is a process of surface treatment of metal or non-metal materials using organosilanes as the main raw material. To a certain extent, it can replace the sandblasting process.

[0004] Silane treatment produces no sludge, has a short processing time, and is easy to control. It involves few steps, is low-cost, and offers the following benefits: 1. The silane treatment agent can penetrate into the tiny pores of the part surface, reacting chemically with the substrate to form a hydrophobic protective layer, effectively preventing the penetration of moisture and corrosive substances, thus improving the corrosion resistance of the part. 2. Silane treatment improves the adhesion between the coating and the substrate, making the coating adhere more firmly to the part surface, improving the coating's durability and service life. 3. The silane treatment process is non-toxic and pollution-free, meeting environmental protection requirements.

[0005] Many of our products require silane treatment. Making separate treatment containers is time-consuming, labor-intensive, and involves various container sizes, resulting in high costs and large space requirements. Therefore, we need to research a silane treatment container that can be used by multiple products. Utility Model Content

[0006] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a silane treatment container that can perform silane treatment on both steel wheels and protective covers, thus achieving dual-purpose use and saving costs.

[0007] To achieve the above objectives, the present invention adopts the following technical solution: a silane treatment container, comprising a main body, a first support assembly, a second support assembly, a first strut, a second strut, and a hook assembly. The main body is a rectangular box with a top opening, comprising two short sidewalls in the width direction and two long sidewalls in the length direction.

[0008] The first support assembly includes two support bars and two support bodies. The two support bars are vertically arranged and fixed to the inner sides of the two short side walls. Each support bar can be detachably installed with a support body that can adjust the installation height.

[0009] The first support rod is horizontally positioned, with its two ends movably resting on two supporting bodies;

[0010] The second strut is horizontally positioned and supported by a second support assembly fixed to two long side walls. Multiple hook assemblies are fitted onto the second strut.

[0011] Preferably, the installation method of the support bar and the support body can be as follows: multiple sets of first mounting holes of different heights are opened on the opposite surfaces of the two support bars, each set of first mounting holes includes two threaded holes, and two through holes are opened at the bottom of the support body. The connecting bolts pass through the through holes to detachably install the support body on the corresponding support bar.

[0012] Preferably, the installation method of the support bar and the support body can also be as follows: multiple sets of second mounting holes of different heights are opened on the side of the support bar, each set of second mounting holes includes two through holes, the lower part of the support body is groove-shaped and two sets of through holes are opened on the groove side, the lower part of the support body is fastened to the corresponding support bar, and the pin passes through the through hole to detachably install the support body on the support bar.

[0013] Preferably, the top surface of the support body is provided with an arc-shaped groove for placing the first support rod.

[0014] Preferably, the specific structure of the second support component can be as follows: the second support component includes two first support columns and two support blocks. The two first support columns are vertically arranged and relatively fixed on the inner side of the two long side walls. Each first support column can be detachably installed with a support block that can adjust the installation height. The two ends of the second strut are respectively movably placed on the two support blocks.

[0015] Preferably, the top surface of the support block is provided with an arc-shaped groove for placing the second support rod.

[0016] Preferably, the specific structure of the second support component can also be as follows: the second support component includes two second support columns that are relatively fixed to the outside of the two long side walls, the top surface of the second support column is higher than the top surface of the main body, and the two ends of the second strut are respectively movably placed on the top surface of the second support column;

[0017] The hook assembly includes a hanger, a pin, and a hook. The hanger is inverted U-shaped with multiple pin holes of different heights on both sides. The pin passes through the corresponding pin holes and can be detachably installed on the hanger. The upper part of the hook is slidably fitted onto the middle of the pin.

[0018] Preferably, the top surface of the second support column is provided with an arc-shaped groove for placing the second support rod.

[0019] Preferably, there are multiple sets of the first support components, which are spaced apart on the two short sidewalls, and each set of the first support components is movably supported by a first strut.

[0020] Preferably, there are multiple sets of the second support components, which are spaced apart on the two long side walls. Each set of the second support components is movably supported by a second strut, and each second strut is fitted with multiple hook components.

[0021] Compared with the prior art, the present invention has the following beneficial effects.

[0022] 1. Based on the characteristics of the steel wheel and the protective cover, this utility model makes reasonable use of the long and short side walls of the rectangular body, so that the steel wheel and the protective cover can share a silane treatment container without wasting space, and no silane solution is wasted when treating the steel wheel or the protective cover.

[0023] 2. In this utility model, the first support component is fixed to the inner wall of the main body to support the steel wheel, and the support height can be adjusted according to the different specifications and sizes of the steel wheel; the second support component can be fixed to the inner wall of the main body or the outer wall of the main body, and the hanging height can be adjusted in both cases. During use, the appropriate height can be selected according to the height of the protective cover. Thus, this utility model has a wider range of applications and is more flexible in use. Attached Figure Description

[0024] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0025] Figure 1 This is a schematic diagram of the structure of Embodiment 1.

[0026] Figure 2 for Figure 1 A magnified view of a portion of point A in the middle.

[0027] Figure 3 This is a schematic diagram of the process of soaking a steel wheel in Example 1.

[0028] Figure 4 This is a schematic diagram of the immersion cover used in Example 1.

[0029] Figure 5 This is a schematic diagram of the structure of Example 2.

[0030] Figure 6 for Figure 5 A magnified view of a section at point B in the middle.

[0031] Figure 7 This is a schematic diagram of the structure of Example 3.

[0032] Figure 8 This is a schematic diagram of the method used in Example 3 for soaking steel wheels.

[0033] Figure 9 This is a schematic diagram of the immersion cover used in Example 3.

[0034] Figure 10 This is a schematic diagram of the hook assembly in Embodiment 3.

[0035] Figure 11 This is a schematic diagram of the structure after removing the first and second support rods in Example 4.

[0036] Figure 12 This is a schematic diagram of the structure after removing the first and second support rods in Example 5.

[0037] In the diagram: 1 is the main body, 11 is the short side wall, 12 is the long side wall, 2 is the first support assembly, 21 is the support bar, 22 is the support body, 23 is the first mounting hole, 24 is the connecting bolt, 25 is the second mounting hole, 3 is the second support assembly, 31 is the first support column, 32 is the support block, 33 is the second support column, 4 is the first strut, 5 is the second strut, 6 is the hook assembly, 61 is the hanger, 62 is the pin, 63 is the hook, 64 is the pin hole, 7 is the steel wheel, and 8 is the protective cover. Detailed Implementation

[0038] The technical solutions of the present utility model will be clearly and completely described in conjunction with 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 implementation methods obtained by those skilled in the art without creative effort are within the scope of protection of the present utility model.

[0039] It should be noted that the structures, proportions, sizes, etc. shown in the accompanying drawings of this specification are only used to complement the content disclosed in the specification for those skilled in the art to understand and read, and are not intended to limit the conditions under which this utility model can be implemented. Therefore, they have no substantial technical significance. Any modification to the structure, change in the proportional relationship, or adjustment of the size should still fall within the scope of the technical content disclosed in this utility model, provided that it does not affect the effects and purposes that this utility model can produce. It should be noted that in this specification, relational terms such as "first" and "second" are only used to distinguish one entity from several other entities, and do not necessarily require or imply any such actual relationship or order between these entities.

[0040] The present invention provides the following embodiments.

[0041] Example 1

[0042] like Figure 1As shown, the present invention provides a silane processing container, comprising a main body 1, a first support assembly 2, a second support assembly 3, a first strut 4, a second strut 5, and a hook assembly 6. The main body 1 is a rectangular box with an open top, comprising two short sidewalls 11 in the width direction and two long sidewalls 12 in the length direction.

[0043] like Figure 2 As shown, the first support assembly 2 includes two support bars 21 and two support bodies 22. The two support bars 21 are vertically arranged and fixed to the inner sides of the two short side walls 11. The two support bars 21 have multiple sets of first mounting holes 23 at different heights on their opposite surfaces. Each set of first mounting holes 23 includes two threaded holes. The lower part of the support body 22 has two through holes. The connecting bolts 24 pass through the through holes to detachably install the support body 22 onto the corresponding support bar 21.

[0044] The first support rod 4 is set horizontally, with its two ends movably placed on the two support bodies 22 respectively;

[0045] The top surface of the support 22 is provided with an arc-shaped groove for placing the first support rod 4;

[0046] The second support component 3 includes two first support columns 31 and two support blocks 32. The two first support columns 31 are vertically arranged and fixed to the inner side of the two long side walls 12. Each first support column 31 can be detachably installed with a support block 32 that can adjust the installation height. The specific installation method of the support block 32 on the first support column 31 is the same as the installation method of the support body 22 on the support bar 21.

[0047] The second support rod 5 is set horizontally, with its two ends movably placed on two support blocks 32 respectively. Multiple hook assemblies 6 are fitted on the second support rod 5.

[0048] The top surface of the support block 32 is provided with an arc-shaped groove for placing the second support rod 5.

[0049] In this first embodiment, the width of the main body 1 is adapted to the diameter of the steel wheel 7, and the length of the main body 1 is adapted to the length of the protective cover 8.

[0050] In this first embodiment, a through hole can be provided at the bottom of the side wall of the main body 1 to install a valve for discharging silane reagent solution.

[0051] In this first embodiment, the support body 22 can be connected to the first mounting holes 23 at different heights via connecting bolts 24, thereby accommodating parts of different specifications, ensuring that the parts do not touch the bottom, and saving silane reagent solution. Similarly, the support block 32 can also be adjusted in height to achieve the same function as the support body 22.

[0052] like Figure 3As shown, in this embodiment, when soaking the steel wheel 7, the second support rod 5 is removed, and multiple steel wheels 7 are spaced out and fitted onto the first support rod 4. After adjusting the height of the support body 22 according to the size of the steel wheel 7, the first support rod 4 is hoisted and placed on the two support bodies 22. An appropriate amount of silane reagent solution is added to the main body 1 to ensure that the top of the steel wheel 7 is submerged. After soaking for 10 minutes, the steel wheel 7 is removed, dried with compressed air, and then the steel wheel 7 can be painted or powder coated.

[0053] like Figure 4 As shown, in this embodiment, when soaking the protective cover 8, the first support rod 4 is removed, and multiple protective covers 8 are hung on the hook assembly on the second support rod 5. After adjusting the height of the support block 32 according to the height of the protective cover 8, the second support rod 5 is hoisted and placed on the two support blocks 32. An appropriate amount of silane reagent solution is added to the main body 1 to ensure that the top of the protective cover 8 is submerged. After soaking for 10 minutes, the protective cover 8 is removed, dried with compressed air, and then powder coated.

[0054] Example 2

[0055] like Figure 5 As shown, the present invention provides a silane processing container, comprising a main body 1, a first support assembly 2, a second support assembly 3, a first strut 4, a second strut 5, and a hook assembly 6. The main body 1 is a rectangular box with an open top, comprising two short sidewalls 11 in the width direction and two long sidewalls 12 in the length direction.

[0056] like Figure 6 As shown, the first support assembly 2 includes two support bars 21 and two support bodies 22. The two support bars 21 are vertically arranged and fixed to the inner sides of the two short side walls 11. The side of each support bar 21 has multiple sets of second mounting holes 25 at different heights. Each set of second mounting holes 25 includes two through holes. The lower part of the support body 22 is groove-shaped and has two sets of through holes on the groove side. The lower part of the support body 22 is fastened to the corresponding support bar 21. The pin passes through the through hole to detachably install the support body 22 on the support bar 21.

[0057] The first support rod 4 is set horizontally, with its two ends movably placed on the two support bodies 22 respectively;

[0058] The top surface of the support 22 is provided with an arc-shaped groove for placing the first support rod 4;

[0059] The second support component 3 includes two first support columns 31 and two support blocks 32. The two first support columns 31 are vertically arranged and fixed to the inner side of the two long side walls 12. Each first support column 31 can be detachably installed with a support block 32 that can adjust the installation height. The specific installation method of the support block 32 on the first support column 31 is the same as the installation method of the support body 22 on the support bar 21.

[0060] The second support rod 5 is set horizontally, with its two ends movably placed on two support blocks 32 respectively. Multiple hook assemblies 6 are fitted on the second support rod 5.

[0061] The top surface of the support block 32 is provided with an arc-shaped groove for placing the second support rod 5.

[0062] In this second embodiment, the width of the main body 1 is adapted to the diameter of the steel wheel 7, and the length of the main body 1 is adapted to the length of the protective cover 8.

[0063] In this second embodiment, a through hole can be provided at the bottom of the side wall of the main body 1 to install a valve for discharging silane reagent solution.

[0064] In this second embodiment, the support body 22 can be connected to the second mounting holes 25 at different heights via pins, thereby accommodating parts of different specifications, ensuring that the parts do not touch the bottom, and saving silane reagent solution. Similarly, the support block 32 can also be adjusted in height to achieve the same function as the support body 22.

[0065] The working process of this embodiment 2 for soaking the steel wheel 7 or the protective cover 8 is the same as that in embodiment 1.

[0066] Example 3

[0067] like Figure 7 As shown, the present invention provides a silane processing container, comprising a main body 1, a first support assembly 2, a second support assembly 3, a first strut 4, a second strut 5, and a hook assembly 6. The main body 1 is a rectangular box with an open top, comprising two short sidewalls 11 in the width direction and two long sidewalls 12 in the length direction.

[0068] The first support assembly 2 includes two support bars 21 and two support bodies 22. The two support bars 21 are vertically arranged and fixed to the inner sides of the two short side walls 11. The two support bars 21 have multiple sets of first mounting holes 23 at different heights on their opposite surfaces. Each set of first mounting holes 23 includes two threaded holes. The lower part of the support body 22 has two through holes. The connecting bolts 24 pass through the through holes to detachably install the support body 22 onto the corresponding support bar 21.

[0069] The first support rod 4 is set horizontally, with its two ends movably placed on the two support bodies 22 respectively;

[0070] The top surface of the support 22 is provided with an arc-shaped groove for placing the first support rod 4;

[0071] The second support assembly 3 includes two second support columns 33 that are fixed relative to each other on the outer sides of the two long side walls, and the top surface of the second support column 33 is higher than the top surface of the main body 1;

[0072] The second support rod 5 is horizontally set, with both ends movably placed on the top surface of the second support column 33. Multiple hook assemblies 6 are fitted on the second support rod 5.

[0073] like Figure 8 As shown, the hook assembly 6 includes a hanger 61, a pin 62 and a hook 63. The hanger 61 is inverted U-shaped and has multiple pin holes 64 of different heights on both sides. The pin 62 passes through the corresponding pin holes 64 and can be detachably installed on the hanger 61. The upper part of the hook 63 is slidably fitted on the middle part of the pin 62.

[0074] The top surface of the second support column 33 is provided with an arc-shaped groove for placing the second support rod 5.

[0075] In this third embodiment, the width of the main body 1 is adapted to the diameter of the steel wheel 7, and the length of the main body 1 is adapted to the length of the protective cover 8.

[0076] In this third embodiment, a through hole can be provided at the bottom of the side wall of the main body 1 to install a valve for discharging silane reagent solution.

[0077] In this third embodiment, the support body 22 can be connected to the first mounting holes 23 at different heights by connecting bolts 24, thereby adapting to parts of different specifications, ensuring that the parts do not touch the bottom, and saving silane reagent solution.

[0078] In the hook assembly 6, the pin 62 can be inserted into the pin holes 64 of different heights to adjust the height of the hook 63, thereby adapting to parts of different specifications, ensuring that the parts do not touch the bottom, and saving silane reagent solution.

[0079] like Figure 9 As shown, the working process of soaking the steel wheel 7 in this embodiment 3 is the same as that in embodiment 1.

[0080] like Figure 10 As shown, in this embodiment, when soaking the protective cover 8, the first support rod 4 is removed, the height of the hook 63 is adjusted according to the height of the protective cover 8, the protective cover 8 is hung on the hook 63, the second support rod 5 is hoisted and placed on the second support column 33, an appropriate amount of silane reagent solution is added to the main body 1 to ensure that the top of the protective cover 8 is submerged, the protective cover 8 is removed after soaking for 10 minutes, and then dried with compressed air before powder coating is applied to the protective cover 8.

[0081] Example 4

[0082] like Figure 11 As shown, the present invention provides a silane processing container, comprising a main body 1, a first support assembly 2, a second support assembly 3, a first strut 4, a second strut 5, and a hook assembly 6. The main body 1 is a rectangular box with an open top, comprising two short sidewalls 11 in the width direction and two long sidewalls 12 in the length direction.

[0083] The first support assembly 2 includes two support bars 21 and two support bodies 22. The two support bars 21 are vertically arranged and fixed to the inner sides of the two short side walls 11. The two support bars 21 have multiple sets of first mounting holes 23 at different heights on their opposite surfaces. Each set of first mounting holes 23 includes two threaded holes. The lower part of the support body 22 has two through holes. The connecting bolts 24 pass through the through holes to detachably install the support body 22 onto the corresponding support bar 21.

[0084] The first support rod 4 is set horizontally, with its two ends movably placed on the two support bodies 22 respectively;

[0085] The top surface of the support 22 is provided with an arc-shaped groove for placing the first support rod 4;

[0086] The second support component 3 includes two first support columns 31 and two support blocks 32. The two first support columns 31 are vertically arranged and fixed to the inner side of the two long side walls 12. Each first support column 31 can be detachably installed with a support block 32 that can adjust the installation height. The specific installation method of the support block 32 on the first support column 31 is the same as the installation method of the support body 22 on the support bar 21.

[0087] The second support rod 5 is set horizontally, with its two ends movably placed on two support blocks 32 respectively. Multiple hook assemblies 6 are fitted on the second support rod 5.

[0088] The top surface of the support block 32 is provided with an arc-shaped groove for placing the second support rod 5.

[0089] The first support component 2 has two sets, which are spaced apart on the two short side walls 11. Each set of the first support component 2 is movably supported by a first strut 4.

[0090] The second support assembly 3 has two sets, which are spaced apart on the two long side walls 12. Each set of the second support assembly 3 is movably supported by a second strut 5, and each second strut 5 is fitted with multiple hook assemblies 6.

[0091] In this fourth embodiment, the width of the main body 1 is adapted to twice the diameter of the steel wheel 7, and the length of the main body 1 is adapted to twice the length of the protective cover 8.

[0092] In this fourth embodiment, a through hole can be provided at the bottom of the side wall of the main body 1 to install a valve for discharging silane reagent solution.

[0093] Compared with Embodiment 1, Embodiment 4 has a basically the same structure, except that the main body 1 is larger and there is one more set of the first support component 2 and the second support component 3. Thus, the working process of soaking the steel wheel 7 and the protective cover 8 in Embodiment 4 is the same as in Embodiment 1. However, Embodiment 4 can process more steel wheels 7 or protective covers 8 at the same time, and the efficiency is higher.

[0094] Similarly, more sets of first support components 2 and second support components 3 can be set inside the main body 1 as needed, so as to handle more steel wheels 7 or protective covers 8 at the same time.

[0095] Example 5

[0096] like Figure 12 As shown, the present invention provides a silane processing container, comprising a main body 1, a first support assembly 2, a second support assembly 3, a first strut 4, a second strut 5, and a hook assembly 6. The main body 1 is a rectangular box with an open top, comprising two short sidewalls 11 in the width direction and two long sidewalls 12 in the length direction.

[0097] The first support assembly 2 includes two support bars 21 and two support bodies 22. The two support bars 21 are vertically arranged and fixed to the inner sides of the two short side walls 11. The two support bars 21 have multiple sets of first mounting holes 23 at different heights on their opposite surfaces. Each set of first mounting holes 23 includes two threaded holes. The lower part of the support body 22 has two through holes. The connecting bolts 24 pass through the through holes to detachably install the support body 22 onto the corresponding support bar 21.

[0098] The first support rod 4 is set horizontally, with its two ends movably placed on the two support bodies 22 respectively;

[0099] The top surface of the support 22 is provided with an arc-shaped groove for placing the first support rod 4;

[0100] The second support assembly 3 includes two second support columns 33 that are fixed relative to each other on the outer sides of the two long side walls, and the top surface of the second support column 33 is higher than the top surface of the main body 1;

[0101] The second support rod 5 is horizontally set, with both ends movably placed on the top surface of the second support column 33. Multiple hook assemblies 6 are fitted on the second support rod 5.

[0102] like Figure 8 As shown, the hook assembly 6 includes a hanger 61, a pin 62 and a hook 63. The hanger 61 is inverted U-shaped and has multiple pin holes 64 of different heights on both sides. The pin 62 passes through the corresponding pin holes 64 and can be detachably installed on the hanger 61. The upper part of the hook 63 is slidably fitted on the middle part of the pin 62.

[0103] The top surface of the second support column 33 is provided with an arc-shaped groove for placing the second support rod 5.

[0104] The first support component 2 has two sets, which are spaced apart on the two short side walls 11. Each set of the first support component 2 is movably supported by a first strut 4.

[0105] The second support assembly 3 has two sets, which are spaced apart on the two long side walls 12. Each set of the second support assembly 3 is movably supported by a second strut 5, and each second strut 5 is fitted with multiple hook assemblies 6.

[0106] In this fifth embodiment, the width of the main body 1 is adapted to twice the diameter of the steel wheel 7, and the length of the main body 1 is adapted to twice the length of the protective cover 8.

[0107] In this fifth embodiment, a through hole can be provided at the bottom of the side wall of the main body 1 to install a valve for discharging silane reagent solution.

[0108] Compared with Embodiment 3, Embodiment 5 has a basically the same structure, except that the main body 1 is larger and there is one more set of the first support component 2 and the second support component 3. Thus, the working process of soaking the steel wheel 7 and the protective cover 8 in Embodiment 5 is the same as in Embodiment 3. However, Embodiment 5 can process more steel wheels 7 or protective covers 8 at the same time, and the efficiency is higher.

[0109] Similarly, more sets of first support components 2 and second support components 3 can be set inside the main body 1 as needed, so as to handle more steel wheels 7 or protective covers 8 at the same time.

[0110] The above description is merely a preferred embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.

Claims

1. A silane treatment container, characterized in that: It includes a main body (1), a first support assembly (2), a second support assembly (3), a first strut (4), a second strut (5), and a hook assembly (6). The main body (1) is a rectangular box with an open top, including two short sidewalls (11) in the width direction and two long sidewalls (12) in the length direction. The first support component (2) includes two support bars (21) and two support bodies (22). The two support bars (21) are vertically arranged and fixed to the inner side of the two short side walls (11). Each support bar (21) can be detachably installed with a support body (22) that can adjust the installation height. The first strut (4) is set horizontally, with its two ends movably placed on two support bodies (22); The second strut (5) is horizontally positioned and supported by a second support assembly (3) fixed on two long side walls (12). Multiple hook assemblies (6) are fitted on the second strut (5).

2. The silane treatment container according to claim 1, characterized in that: The two support bars (21) have multiple sets of first mounting holes (23) of different heights on their opposite surfaces. Each set of first mounting holes (23) includes two threaded holes. The lower part of the support body (22) has two through holes. The connecting bolts (24) pass through the through holes to detachably install the support body (22) onto the corresponding support bar (21).

3. A silane treatment container according to claim 1, characterized in that: The side of the support bar (21) has multiple sets of second mounting holes (25) at different heights. Each set of second mounting holes (25) includes two through holes. The lower part of the support body (22) is groove-shaped and has two sets of through holes on the groove side. The lower part of the support body (22) is fastened to the corresponding support bar (21). The pin passes through the through hole to detachably install the support body (22) on the support bar (21).

4. A silane treatment container according to claim 2 or 3, characterized in that: The top surface of the support (22) is provided with an arc-shaped groove for placing the first support rod (4).

5. A silane treatment container according to claim 1, characterized in that: The second support assembly (3) includes two first support columns (31) and two support blocks (32). The two first support columns (31) are vertically arranged and fixed to the inner side of the two long side walls (12). Each first support column (31) can be detachably installed with a support block (32) that can adjust the installation height. The two ends of the second strut (5) are respectively movably placed on the two support blocks (32).

6. A silane treatment container according to claim 5, characterized in that: The top surface of the support block (32) is provided with an arc-shaped groove for placing the second support rod (5).

7. A silane treatment container according to claim 1, characterized in that: The second support assembly (3) includes two second support columns (33) that are fixed to the outside of the two long side walls. The top surface of the second support column (33) is higher than the top surface of the main body (1). The two ends of the second strut (5) are respectively movably placed on the top surface of the second support column (33). The hook assembly (6) includes a hanger (61), a pin (62) and a hook (63). The hanger (61) is inverted U-shaped and has multiple pin holes (64) of different heights on both sides. The pin (62) passes through the corresponding pin hole (64) and is detachably installed on the hanger (61). The upper part of the hook (63) is slidably fitted on the middle part of the pin (62).

8. A silane treatment container according to claim 7, characterized in that: The top surface of the second support column (33) is provided with an arc-shaped groove for placing the second support rod (5).

9. A silane treatment container according to claim 1 or 2, characterized in that: The first support assembly (2) has multiple sets, which are spaced apart on the two short sidewalls (11). Each set of the first support assembly (2) is movably supported by a first strut (4).

10. A silane treatment container according to claim 5 or 7, characterized in that: There are multiple sets of the second support components (3), which are spaced apart on the two long side walls (12). Each set of the second support components (3) is movably supported by a second strut (5), and each second strut (5) is fitted with multiple hook components (6).