Processing equipment
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-06
- Publication Date
- 2026-08-14
AI Technical Summary
然而,人工清除的作业方式容易损坏主体的结构,使得劳动强度大,导致加工的效率低
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Figure CN224631209U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of cleaning equipment technology, and more specifically to a processing apparatus. Background Technology
[0002] For main bodies containing injection-molded parts, manual removal is currently the most common method for eliminating the injection-molded parts. However, manual removal can easily damage the structure of the main body, resulting in high labor intensity and low processing efficiency. Utility Model Content
[0003] In view of the above, it is necessary to provide a processing device to improve processing efficiency.
[0004] This application provides a processing apparatus for processing a product, the product including a main body and an injection-molded body connected to the main body, the processing apparatus including:
[0005] The machine includes a worktable, a support member, and a carrier member. The support member is disposed on the worktable, and the carrier member is rotatably connected to the end of the support member away from the worktable. The carrier member has multiple carrier grooves, which are spaced apart along the circumference of the carrier member. Each carrier groove is used to accommodate the main body, and each carrier groove has a limiting through hole for accommodating the injection molded body.
[0006] A rotary drive mechanism is provided on the worktable and connected to the carrier, for driving the carrier to rotate;
[0007] The pressing mechanism includes a lifting drive assembly and a pressing member. The lifting drive assembly is disposed on the worktable and connected to the pressing member, and is used to drive the pressing member to press the main body.
[0008] The processing mechanism includes a translation component, a transmission component, and a removal component. The translation component is disposed on the worktable and located between the worktable and the carrier. The transmission component is disposed on the translation component to move closer to or away from the carrier under the drive of the translation component. The removal component is disposed on the transmission component and is used to extend into the limiting through hole to remove the injection molded body.
[0009] When the above-mentioned processing device processes a product, the main body is first placed in the bearing groove and the injection molded body is accommodated in the limiting through hole; then, the rotary drive mechanism drives the bearing component to move the product to below the holding component, and the lifting drive assembly drives the holding component to hold the main body in the vertical direction to achieve product positioning; subsequently, the removal component extends into the limiting through hole to remove the injection molded body under the combined action of the translation component and the transmission component; finally, the lifting drive assembly drives the holding component away from the main body, the removal component returns to its original state under the combined action of the translation component and the transmission component, and the rotary drive mechanism drives the bearing component to rotate the main body to facilitate the removal of the main body and placement of the next product.
[0010] Therefore, the above-mentioned processing device can continuously complete the positioning of products and the removal of injection molded parts, reducing labor intensity and thus improving processing efficiency.
[0011] In some embodiments, the support includes a mounting platform and a plurality of pillars, the plurality of pillars being spaced apart circumferentially along the worktable, and each pillar having its two ends connected to the worktable and the mounting platform, respectively. The carrier includes a rotating body, a carrier body, and a plurality of carriers, the rotating body being rotatably connected to the mounting platform, the carrier body being disposed on the rotating body, and the plurality of carriers being respectively embedded in the carrier body and spaced apart circumferentially along the carrier body, each carrier having a carrier groove and a limiting through hole.
[0012] In some embodiments, the rotary drive mechanism includes:
[0013] A rotating support is provided on the worktable;
[0014] A rotary drive component is provided on the rotary support;
[0015] The drive wheel is connected to the rotary drive component;
[0016] Driven wheel, connected to the rotating body;
[0017] The drive belt is connected to the driving pulley and the driven pulley respectively.
[0018] In some embodiments, the support groove includes:
[0019] A base groove is formed on the surface of the carrier opposite to the worktable and is used to accommodate the main body;
[0020] A limiting groove extends through the bottom wall of the base groove along the rotation axis of the rotating body to support the main body, and a limiting through hole extends through the side wall of the limiting groove along the rotation axis of the rotating body.
[0021] In some embodiments, the lifting drive assembly includes:
[0022] A lifting support is provided on the workbench;
[0023] A lifting drive component is provided on the lifting bracket;
[0024] A fixing member is connected to the lifting drive member and located on the side of the support member away from the worktable, so as to move closer to or away from the support member under the drive of the lifting drive member;
[0025] The holding member is connected to the side of the fixing member facing the bearing member.
[0026] In some embodiments, the carrier member has a plurality of positioning holes, and the plurality of positioning holes are respectively provided with a plurality of bearing grooves. The pressing mechanism further includes:
[0027] A positioning element, connected to the side of the fixing element facing the carrier, is used to insert into the positioning hole.
[0028] In some embodiments, the holding mechanism further includes:
[0029] A sensing element is disposed on the side of the fixing member facing the bearing member, and is used to detect whether the main body is present in the bearing groove.
[0030] In some embodiments, the translation component includes:
[0031] A translational support is provided on the worktable and located between the support member and the worktable;
[0032] A translation drive component is disposed on the translation bracket and connected to the transmission assembly, and is used to drive the transmission assembly to drive the removal component to extend into or disengage from the limiting through hole.
[0033] In some embodiments, the processing mechanism further includes:
[0034] A limiting bracket is provided on the worktable and located on the side of the translation bracket away from the pressing member;
[0035] A stop is connected to the end of the limiting bracket away from the worktable and is used to stop the transmission assembly.
[0036] In some embodiments, the transmission assembly includes:
[0037] Mounting base, connected to the translation component;
[0038] A processing drive component is disposed on the mounting base and connected to the removal component, used to drive the removal component to move along a preset trajectory to remove the injection molded body. Attached Figure Description
[0039] Figure 1 This is a schematic diagram of the structure of a product applicable to embodiments of this application.
[0040] Figure 2 This is a schematic diagram of the processing apparatus according to an embodiment of this application.
[0041] Figure 3 for Figure 2 A partial structural schematic diagram of the processing device shown.
[0042] Figure 4 for Figure 3 An exploded view of the rotary drive mechanism and machine base in the processing device shown.
[0043] Figure 5 for Figure 4 The diagram shows the structure of the carrier in the machine.
[0044] Figure 6 for Figure 3 A schematic diagram of the holding mechanism in the processing device shown.
[0045] Figure 7 for Figure 3 The diagram shows the structure of the processing mechanism in the processing device.
[0046] Key component symbols: Processing device 100, machine base 110, worktable 111, support 112, mounting platform 1121, support column 1122, bearing 113, bearing groove 113a, limiting through hole 113b, base groove 113c, limiting groove 113d, positioning hole 113e, rotating body 1131, bearing 1132, carrier 1133, rotary drive mechanism 120, rotary support 121, rotary drive component 122, driving wheel 123, driven wheel 124, transmission belt 125, pressing mechanism 130, lifting mechanism. Drive assembly 131, lifting bracket 1311, lifting drive component 1312, fixing component 1313, pressing component 132, positioning component 133, sensing component 134, processing mechanism 140, translation assembly 141, translation bracket 1411, translation drive component 1412, transmission assembly 142, mounting base 1421, processing drive component 1422, removal component 143, limit bracket 144, stop component 145, protective cover 150, protective cover 150a, product 200, main body 210, hollow groove 210a, injection molded body 220. Detailed Implementation
[0047] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.
[0048] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the term "connection" should be interpreted broadly. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or a connection that allows communication between the two; it can be a direct connection or an indirect connection through an intermediate medium; it can be the internal communication of two elements or the interaction between two elements. In the description of this application, it should be noted that "multiple" means two or more, unless otherwise expressly and specifically limited. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0049] The embodiments of this application will be described in detail below with reference to the accompanying drawings.
[0050] Please see Figure 1 , Figure 1 This is a schematic diagram of the structure of a product applicable to the embodiments of this application. Specifically, product 200 includes a main body 210 and an injection-molded body 220 connected to the main body 210. The main body 210 is generally conical and has an open hollow groove 210a in the middle. The injection-molded body 220 is generally strip-shaped and connected to the bottom wall of the hollow groove 210a.
[0051] Please see Figure 2 This application provides a processing apparatus 100, including a machine base 110, a rotary drive mechanism 120, a holding mechanism 130, and a processing mechanism 140, for removing an injection-molded body 220. Exemplarily, the end of the injection-molded body 220 furthest from the hollow groove 210a is removed by the processing apparatus 100.
[0052] Please see Figure 3 , Figure 4 and Figure 5In some embodiments, the machine tool 110 includes a worktable 111, a support member 112, and a carrier member 113. The support member 112 is disposed on the worktable 111, and the carrier member 113 is rotatably connected to the end of the support member 112 away from the worktable 111. The carrier member 113 has multiple carrier grooves 113a, which are spaced apart circumferentially along the carrier member 113. Each carrier groove 113a is used to accommodate the main body 210, and each carrier groove 113a has a limiting through hole 113b for accommodating the injection molded body 220. A rotary drive mechanism 120 is disposed on the worktable 111 and connected to the carrier member 113, and is used to drive the carrier member 113 to rotate. A pressing mechanism 130 includes a lifting drive assembly 131 and a pressing member 132. The lifting drive assembly 131 is disposed on the worktable 111 and connected to the pressing member 132, and is used to drive the pressing member 132 to press the main body 210. The processing mechanism 140 includes a translation component 141, a transmission component 142, and a removal component 143. The translation component 141 is disposed on the worktable 111 and located between the worktable 111 and the carrier 113. The transmission component 142 is disposed on the translation component 141 so as to move closer to or away from the carrier 113 under the drive of the translation component 141. The removal component 143 is disposed on the transmission component 142 and is used to extend into the limiting through hole 113b to remove the injection molded body 220.
[0053] Please see Figure 4 In some embodiments, the support member 112 includes a mounting platform 1121 and a plurality of pillars 1122. The plurality of pillars 1122 are spaced apart circumferentially along the worktable 111, and the two ends of each pillar 1122 are respectively connected to the worktable 111 and the mounting platform 1121. The carrier member 113 includes a rotating body 1131, a carrier body 1132, and a plurality of carriers 1133. The rotating body 1131 is rotatably connected to the mounting platform 1121. The carrier body 1132 is disposed on the rotating body 1131. The plurality of carriers 1133 are respectively embedded in the carrier body 1132 and spaced apart circumferentially along the carrier body 1132. Each carrier 1133 is provided with a bearing groove 113a and a limiting through hole 113b.
[0054] Therefore, the multiple support columns 1122 and the worktable 111 form an installation space for the rotary drive mechanism 120 and the processing mechanism 140, which facilitates the reasonable layout of the processing device 100 and helps to realize the miniaturization of the processing device 100.
[0055] Please see Figure 4In some embodiments, the rotary drive mechanism 120 includes a rotary support 121, a rotary drive component 122, a drive wheel 123, a driven wheel 124, and a transmission belt 125. The rotary support 121 is disposed on the worktable 111, the rotary drive component 122 is disposed on the rotary support 121, the drive wheel 123 is connected to the rotary drive component 122, the driven wheel 124 is connected to the rotating body 1131, and the transmission belt 125 is respectively connected to the drive wheel 123 and the driven wheel 124 for transmission. Exemplarily, the rotary drive component 122 can be a rotary motor.
[0056] Therefore, the above-mentioned settings can improve the stability of the rotation of the bearing component 113.
[0057] Please see Figure 4 and Figure 5 In some embodiments, the support groove 113a includes a base groove 113c and a limiting groove 113d. The base groove 113c is formed on the surface of the carrier 1133 opposite to the worktable 111 and is used to accommodate the main body 210. The limiting groove 113d penetrates the bottom wall of the base groove 113c along the rotation axis of the rotating body 1131 and is used to support the main body 210. The limiting through hole 113b penetrates the side wall of the limiting groove 113d along the rotation axis of the rotating body 1131.
[0058] Therefore, through the above-mentioned arrangement, the bearing groove 113a forms a stepped structure, which can both support the main body 210 and position the main body 210, which is conducive to improving the stability of the product 200 placed on the bearing 113.
[0059] Please see Figure 3 and Figure 6 In some embodiments, the lifting drive assembly 131 includes a lifting bracket 1311, a lifting drive component 1312, and a fixing component 1313. The lifting bracket 1311 is disposed on the worktable 111, the lifting drive component 1312 is disposed on the lifting bracket 1311, and the fixing component 1313 is connected to the lifting drive component 1312 and located on the side of the support component 113 facing away from the worktable 111, so as to move closer to or away from the support component 113 under the drive of the lifting drive component 1312. A holding component 132 is connected to the fixing component 1313 on the side facing the support component 113. Exemplarily, the lifting drive component 1312 can be a telescopic cylinder.
[0060] Please see Figure 3 and Figure 6 In some embodiments, the carrier 113 has a plurality of positioning holes 113e, and the plurality of positioning holes 113e are respectively provided with a plurality of carrier grooves 113a. The pressing mechanism 130 also includes a positioning member 133. The positioning member 133 is connected to the side of the fixing member 1313 facing the carrier 113 and is used to insert into the positioning hole 113e.
[0061] Therefore, the accuracy of the pressing member 132 pressing the main body 210 can be improved by using multiple positioning holes 113e and positioning member 133.
[0062] In some embodiments, the holding mechanism 130 further includes a sensing element 134. The sensing element 134 is disposed on the side of the fixing member 1313 facing the bearing member 113 and is used to detect whether the main body 210 is present in the bearing groove 113a.
[0063] For example, the sensor 134 is electrically connected to the rotary drive 122 and the lifting drive 1312 respectively. When the sensor 134 detects the main body 210, the rotary drive 122 stops driving the drive wheel 123, the carrier 113 drives the product 200 to be fixed relative to the worktable 111, and the lifting drive 1312 drives the fixing member 1313 to move the pressing member 132 downward to press the main body 210 to the carrier 1133.
[0064] Therefore, the positioning accuracy of the processing device 100 for the product 200 can be improved by the sensor 134.
[0065] Please see Figure 7 In some embodiments, the translation assembly 141 includes a translation bracket 1411 and a translation drive 1412. The translation bracket 1411 is disposed on the worktable 111 and located between the support member 113 and the worktable 111. The translation drive 1412 is disposed on the translation bracket 1411 and connected to the transmission assembly 142, and is used to drive the transmission assembly 142 to cause the removal member 143 to extend into or disengage from the limiting through hole 113b. Exemplarily, the translation drive 1412 can be a telescopic cylinder.
[0066] Please see Figure 3 and Figure 7 In some embodiments, the processing mechanism 140 further includes a limiting bracket 144 and a stop member 145. The limiting bracket 144 is disposed on the worktable 111 and located on the side of the translation bracket 1411 away from the pressing member 132, and the stop member 145 is connected to the end of the limiting bracket 144 away from the worktable 111 and is used to stop the transmission assembly 142.
[0067] Therefore, the stop 145 can limit the path of the transmission assembly 142, which helps to improve the accuracy of the transmission path of the transmission assembly 142.
[0068] In some embodiments, the transmission assembly 142 includes a mounting base 1421 and a processing drive 1422. The mounting base 1421 is connected to the translation assembly 141, and the processing drive 1422 is disposed on the mounting base 1421 and connected to the removal member 143, for driving the removal member 143 to move along a preset trajectory to remove the injection molded body 220. Exemplarily, the processing drive 1422 may be a rotary motor.
[0069] For example, the mounting base 1421 is slidably connected to the translation bracket 1411 of the translation assembly 141, which can improve the stability of the mounting base 1421 driven by the translation drive member 1412.
[0070] Please see Figure 1 In some embodiments, the processing device 100 further includes a protective cover 150, which is disposed on the worktable 111 and has a processing window 150a. The support member 112, the carrier member 113, the pressing mechanism 130, the rotary drive mechanism 120 and the processing mechanism 140 are all housed in the protective cover 150, and the product 200 can be placed in the carrier groove 113a from the processing window 150a.
[0071] Therefore, the protective cover 150 can prevent external components from colliding with the rotary drive mechanism 120, the holding mechanism 130 and the processing mechanism 140, which is beneficial to improving the service life of the rotary drive mechanism 120, the holding mechanism 130 and the processing mechanism 140.
[0072] The working process of the above-mentioned processing device 100 processing product 200 is roughly as follows:
[0073] First, the main body 210 is placed in the bearing groove 113a through the processing window 150a and the injection molded body 220 is accommodated in the limiting through hole 113b.
[0074] Then, the rotary drive mechanism 120 drives the carrier 113 to move the product 200 to below the holding member 132. The sensor 1315 detects the main body 210, the rotary drive mechanism 122 stops driving the drive wheel 123, the carrier 113 drives the product 200 to be fixed relative to the worktable 111, and the lifting drive assembly 131 drives the holding member 132 to hold the main body 210 in the vertical direction to achieve the positioning of the product 200.
[0075] Subsequently, the removal part 143 extends into the limiting through hole 113b under the combined action of the translation assembly 141 and the transmission assembly 142 to remove the injection molded body 220.
[0076] Finally, the lifting drive assembly 131 drives the holding member 132 away from the main body 210, and the removal member 143 returns to its original state under the combined action of the translation assembly 141 and the transmission assembly 142. The rotation drive mechanism 120 drives the bearing member 113 to rotate the main body 210 so as to remove the main body 210 and place the next product 200.
[0077] Therefore, the above-mentioned processing device 100 can continuously complete the positioning of the product 200 and the removal of the injection molded body 220, reducing labor intensity and thus improving processing efficiency.
[0078] It will be apparent to those skilled in the art that this application is not limited to the details of the exemplary embodiments described above, and that this application can be implemented in other specific forms without departing from the spirit or essential characteristics of this application. Therefore, the embodiments should be regarded as exemplary and non-limiting in all respects, and the scope of this application is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be embraced within this application.
[0079] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application and are not intended to limit it. Although this application has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this application without departing from the spirit and scope of the technical solutions of this application.
Claims
1. A processing apparatus for processing a product, the product comprising a main body and an injection molded body connected to the main body, characterized by, The processing apparatus includes: The machine includes a worktable, a support member, and a carrier member. The support member is disposed on the worktable, and the carrier member is rotatably connected to the end of the support member away from the worktable. The carrier member has multiple carrier grooves, which are spaced apart along the circumference of the carrier member. Each carrier groove is used to accommodate the main body, and each carrier groove has a limiting through hole for accommodating the injection molded body. A rotary drive mechanism is provided on the worktable and connected to the carrier, for driving the carrier to rotate; The pressing mechanism includes a lifting drive assembly and a pressing member. The lifting drive assembly is disposed on the worktable and connected to the pressing member, and is used to drive the pressing member to press the main body. The processing mechanism includes a translation component, a transmission component, and a removal component. The translation component is disposed on the worktable and located between the worktable and the carrier. The transmission component is disposed on the translation component to move closer to or away from the carrier under the drive of the translation component. The removal component is disposed on the transmission component and is used to extend into the limiting through hole to remove the injection molded body.
2. The processing apparatus as described in claim 1, characterized in that, The support includes a mounting platform and multiple support columns, which are spaced apart circumferentially along the worktable. Each support column is connected to the worktable and the mounting platform at both ends. The support component includes a rotating body, a support body, and multiple carriers. The rotating body is rotatably connected to the mounting platform. The support body is disposed on the rotating body. The multiple carriers are respectively embedded in the support body and are spaced apart along the circumference of the support body. Each carrier has the support groove and the limiting through hole.
3. The processing apparatus of claim 2, wherein The rotary drive mechanism includes: A rotating support is provided on the worktable; A rotary drive component is provided on the rotary support; The drive wheel is connected to the rotary drive component; Driven wheel, connected to the rotating body; The drive belt is connected to the driving pulley and the driven pulley respectively.
4. The processing apparatus of claim 2, wherein The bearing groove includes: A base groove is formed on the surface of the carrier opposite to the worktable and is used to accommodate the main body; A limiting groove extends through the bottom wall of the base groove along the rotation axis of the rotating body to support the main body, and a limiting through hole extends through the side wall of the limiting groove along the rotation axis of the rotating body.
5. The processing apparatus of claim 1, wherein The lifting drive component includes: A lifting support is provided on the workbench; A lifting drive component is provided on the lifting bracket; A fixing member is connected to the lifting drive member and located on the side of the support member away from the worktable, so as to move closer to or away from the support member under the drive of the lifting drive member; The holding member is connected to the side of the fixing member facing the bearing member.
6. The processing apparatus of claim 5, wherein The support member has multiple positioning holes, and each of the multiple positioning holes corresponds to one of the multiple support grooves. The pressing mechanism further includes: A positioning element, connected to the side of the fixing element facing the carrier, is used to insert into the positioning hole.
7. The processing apparatus of claim 5, wherein The pressing mechanism further includes: A sensing element is disposed on the side of the fixing member facing the bearing member, and is used to detect whether the main body is present in the bearing groove.
8. The processing apparatus of claim 1, wherein The translation component includes: A translational support is provided on the worktable and located between the support member and the worktable; A translation drive component is disposed on the translation bracket and connected to the transmission assembly, and is used to drive the transmission assembly to drive the removal component to extend into or disengage from the limiting through hole.
9. The processing apparatus of claim 8, wherein The processing mechanism also includes: A limiting bracket is provided on the worktable and located on the side of the translation bracket away from the pressing member; A stop is connected to the end of the limiting bracket away from the worktable and is used to stop the transmission assembly.
10. The processing apparatus of claim 1, wherein The transmission assembly includes: The mounting base is connected to the translation component; A processing drive component is disposed on the mounting base and connected to the removal component, used to drive the removal component to move along a preset trajectory to remove the injection molded body.