A high-efficiency power adapter rapid assembly device
By using a cutter and a limiting plate assembly to remove burrs from the power adapter housing, combined with an electric suction cup, the housing cover can be tightly secured, solving the problem of existing equipment being unable to handle burrs and improving assembly efficiency and quality.
Patent Information
- Application Number
- CN202311085368.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-28
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2043-08-28
AI Technical Summary
Existing assembly equipment cannot effectively handle the rough edges of the power adapter casing, resulting in the casing cover being unable to be fastened or not being able to be tightly closed.
The burrs on the power adapter housing are removed by a cutter, and the burrs are prevented from falling off by a limiting plate and a rubber ring assembly. An electric suction cup is used to secure the housing cover tightly, and an automated assembly is achieved by combining a telescopic cylinder and a drive assembly.
It effectively removes burrs from the power adapter housing, ensuring a tight fit between the cover and the casing, improving assembly efficiency and avoiding issues such as incomplete burr removal and burr falling off.
Smart Images

Figure CN117182204B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of power adapter production. More particularly, the present application relates to a high-efficiency power adapter rapid assembly device. BACKGROUND
[0002] The power adapter is a power supply conversion device for small portable electronic devices and electronic appliances, which is generally composed of a shell, a transformer, an inductor, a capacitor, a control IC, a PCB and other components. The shell is usually composed of a body and a cover. In the assembly process, the PCB and various electronic components thereon are first inserted into the shell body, and then the shell cover is fixed on the shell body to complete the assembly operation. The shell is made by injection molding. After long-term use of the injection mold, the injection molded shell edge will have loose phenomenon, resulting in burr on the edge of the injection molded shell. The existing assembly equipment does not have the function of processing burr, resulting in the problem of unable to be tightly buckled during fixing the shell cover on the shell body. SUMMARY
[0003] The present application provides a high-efficiency power adapter rapid assembly device, which aims to overcome the shortcomings of the existing assembly equipment that does not have the function of processing burr, resulting in the problem of unable to be tightly buckled during fixing the shell cover on the shell body.
[0004] In order to achieve the above purpose, the technical scheme of the present application is as follows:
[0005] A high-efficiency power adapter rapid assembly device, comprising a base plate, a shell and an electric door; the shell is fixedly connected to the base plate; the electric door is installed on the shell; further comprising a first telescopic cylinder, a first connecting block, a first connecting rod, a second connecting block, a cylindrical body, a cutter, a rotating assembly, a driving assembly and an assembly assembly; the first telescopic cylinder is fixedly connected to the shell; the first telescopic cylinder is fixedly connected to the first connecting block at the telescopic end; the first connecting block is fixedly connected to the first connecting rod; the first connecting rod is fixedly connected to the second connecting block at the lower end; the second connecting block is rotatably connected to the cylindrical body at the middle part, and the cylindrical body is rotatably connected to the first connecting rod; the cutter is connected to the cylindrical body; the rotating assembly is connected to the first connecting rod; the rotating assembly is used to drive the cylindrical body; the driving assembly is connected to the base plate; the burr at the opening of the power adapter shell is cut off from the inside of the power adapter shell by the rotating cutter; the driving assembly is used to drive the power adapter shell to move horizontally; the assembly assembly is connected to the shell; the assembly assembly is used to assemble the power adapter shell cover on the upper side of the power adapter shell.
[0006] Further, the elongated assembly is further included; the first connecting block is connected with the elongated assembly; the elongated assembly includes the elastic telescopic rod, the third connecting block, the first electric push rod, the first ring and the round rod; the elastic telescopic rod is fixedly connected to the cylinder; the telescopic end of the elastic telescopic rod is fixedly connected with the third connecting block; the third connecting block slides on the surface of the second connecting block; the third connecting block is detachably connected with the cutter; the first connecting block is fixedly connected with at least two first electric push rods; the telescopic ends of all the first electric push rods are fixedly connected with the first ring; the lower side of the first ring is provided with an annular inclined surface; the cutter is fixedly connected with the round rod; and the round rod is in contact with the first ring.
[0007] Further, the elongated assembly further includes the second ring; the lower side of the first ring is rotatably connected with the second ring.
[0008] Further, the limiting plate is further included; the lower side of the second connecting block is fixedly connected with the limiting plate.
[0009] Further, the adaptive assembly is further included; the limiting plate is connected with the adaptive assembly; the adaptive assembly includes the first rubber ring, the air pump, the first pipeline, the second pipeline and the air release valve; the outer side of the limiting plate is fixedly connected with the first rubber ring; the inner side of the first rubber ring is formed with the first cavity; the air pump is installed on the lower side of the limiting plate; the output end of the air pump is communicated with the first pipeline; the first pipeline is communicated with the second pipeline; the second pipeline passes through the limiting plate and is communicated with the first cavity; and the air release valve is installed on the second pipeline.
[0010] Further, the cleaning assembly is further included; the second connecting block is connected with the cleaning assembly; the cleaning assembly includes the third pipeline and the electromagnetic valve; the lower side of the cutter is provided with a plurality of brown hairs; the inner side of the second connecting block is provided with the third cavity; the inner side of the second connecting block is provided with a plurality of first channels, the first channels are communicated with the third cavity; the output end of the air pump is communicated with the third pipeline; the third pipeline passes through the limiting plate and is communicated with the third cavity; and the electromagnetic valve is installed on the third pipeline.
[0011] Further, the auxiliary assembly is further included; the limiting plate is connected with the auxiliary assembly; the auxiliary assembly includes the first connecting ring, the second rubber ring, the fourth pipeline and the air exhaust unit; the outer side of the limiting plate is fixedly connected with the first connecting ring; the lower side of the first connecting ring is fixedly connected with the first rubber ring; the upper side of the first connecting ring is fixedly connected with the second rubber ring; the upper side of the second rubber ring is fixedly connected with the limiting plate; the inner side of the second rubber ring is formed with the second cavity; the fourth pipeline is communicated with and fixedly connected to the first pipeline; the fourth pipeline passes through the limiting plate and is communicated with the second cavity; a plurality of second channels are formed on the first connecting ring, the second channels are communicated with the second cavity; and the air exhaust unit is connected to the limiting plate.
[0012] Further, the exhaust unit comprises a second electric push rod, a first connecting frame, a second connecting rod, a second connecting ring and a third rubber ring; the lower side of the limiting plate is fixedly connected with the second electric push rod; the telescopic end of the second electric push rod is fixedly connected with the first connecting frame; at least four second connecting rods are fixedly connected to the first connecting frame; the second connecting rods are slidingly connected with the limiting plate and the first connecting ring; the upper ends of all the second connecting rods are fixedly connected with the second connecting ring; the lower side of the second connecting ring is fixedly connected with the third rubber ring; and the third rubber ring is in contact with the first connecting ring.
[0013] Further, the assembly component comprises a second telescopic cylinder, a second connecting frame, an electric suction disc and a driving unit; the driving unit is connected to the shell; the second telescopic cylinder is connected to the driving unit; the driving unit is used to drive the second telescopic cylinder to move horizontally; the telescopic end of the second telescopic cylinder is fixedly connected with the second connecting frame; and the electric suction disc is fixedly connected to the second connecting frame.
[0014] Further, the assembly component further comprises positioning blocks; four positioning blocks are fixedly connected to the second connecting frame, and the lower side of each positioning block is inclined.
[0015] The power adapter shell cover cannot be tightly buckled or fails to be buckled, the first circular ring and the circular rod are matched to enable the cutter to be transversely inserted into the burr of the power adapter shell and then cut, the burr cutting is not complete due to the fact that the burr is bent by the cutter, the first circular ring is also used to press the cutter on the power adapter shell, the burr cutting is not complete due to the fact that the end of the cutter is raised, the second circular ring is used to limit the end of the cutter instead of the first circular ring, the cutter drives the first circular ring to rotate through friction, and the limiting problem caused by the fact that the cutter slides on the lower side of the first circular ring is avoided;
[0016] During the cutting process, the burr material generated by cutting is intercepted through the cooperation of the limiting plate and the second rubber ring, the burr material on the upper side of the limiting plate is blown clean through the first channel, self-cleaning is achieved, the long burr material stuck in the gap between the second rubber ring and the power adapter shell is brushed out through the sliding of the brown hair arranged below the cutter during the rotation of the cutter, the cleaning effect is improved, the air in the second cavity is discharged through the second channel during the resetting process, the second rubber ring rebounds, the small burr material stuck in the gap between the second rubber ring and the power adapter shell is blown out through the discharged air, and the small burr material is prevented from falling into the power adapter shell after the second rubber ring rebounds and resets;
[0017] When assembling, the power adapter shell cover is fixed on the power adapter shell body through the electric suction cup, and the electric suction cup is quickly positioned on the power adapter shell cover through the positioning block during suction of the power adapter shell cover, and the efficiency is high. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 A first structure schematic view of the efficient power adapter quick assembling equipment is shown.
[0019] Figure 2 A second structure schematic view of the efficient power adapter quick assembling equipment is shown.
[0020] Figure 3 A partial structure schematic view of the efficient power adapter quick assembling equipment is shown.
[0021] Figure 4 A first structure schematic view of the elongated assembly is shown.
[0022] Figure 5 A second structure schematic view of the elongated assembly is shown.
[0023] Figure 6 A structure schematic view of the driving assembly is shown.
[0024] Figure 7 A first partial structure schematic view of the adaptive assembly is shown.
[0025] Figure 8 A second partial structure schematic view of the adaptive assembly is shown.
[0026] Figure 9 A first partial structure schematic view of the auxiliary assembly is shown.
[0027] Figure 10 A second partial structure schematic view of the auxiliary assembly is shown.
[0028] Figure 11 A structure schematic view of the assembling assembly is shown.
[0029] REFERENCE NUMERALS:
[0030] 1-Base plate, 2-Outer shell, 3-Electric door, 4-First telescopic cylinder, 5-First connecting block, 6-First connecting rod, 7-Second connecting block, 8-Cylinder, 9-Cutter, 10-Power adapter shell, 11-Power adapter shell cover, 201-Elastic telescopic rod, 202-Third connecting block, 203-First electric push rod, 204-First ring, 205-Round rod, 206-Second ring, 207-Motor, 208-First spur gear, 209-Second spur gear, 2010-Support, 2011-Electric conveyor belt, 2012-Partition block, 2013-Limiting plate, 2014-First rubber ring, 2015-Air pump, 2016-First... Pipeline 1, Pipeline 2 (2017), Vent Valve (2018), Pipeline 3 (2019), Solenoid Valve (2020), First Connecting Ring (2021), Second Rubber Ring (2022), Pipeline 4 (2023), Electric Push Rod (2024), First Connecting Frame (2025), Second Connecting Rod (2026), Second Connecting Ring (2027), Third Rubber Ring (2028), Electric Slide Rail (301), Electric Slider (302), Second Telescopic Cylinder (303), Second Connecting Frame (304), Electric Suction Cup (305), Positioning Block (306), First Cavity (91), Second Cavity (92), Third Cavity (93), First Channel (94), Second Channel (95). Detailed Implementation
[0031] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0032] Implementation Plan 1
[0033] A high-efficiency power adapter rapid assembly device, such as Figures 1-6 As shown, the device includes a base plate 1, a housing 2, and an electric door 3; the housing 2 is bolted to the base plate 1; the electric door 3 is mounted on the housing 2; it also includes a first telescopic cylinder 4, a first connecting block 5, a first connecting rod 6, a second connecting block 7, a cylinder 8, a cutter 9, a rotating assembly, a driving assembly, and an assembly assembly; the first telescopic cylinder 4 is bolted to the housing 2; the first connecting block 5 is fixedly connected to the telescopic end of the first telescopic cylinder 4, and the first connecting block 5 is made of alloy material; the first connecting rod 6 is welded to the middle of the first connecting block 5; the second connecting rod 6 is welded to the lower end of the first connecting rod 6. Block 7; A cylinder 8 is rotatably connected to the middle of the second connecting block 7, and the cylinder 8 is rotatably connected to the first connecting rod 6; A cutter 9 is connected to the cylinder 8; A rotating assembly is connected to the first connecting rod 6; The rotating assembly is used to drive the cylinder 8; A driving assembly is connected to the base plate 1; The cutting blade 9, rotating, removes the burrs at the opening of the power adapter housing 10 from the inside; The driving assembly is used to drive the power adapter housing 10 to move horizontally; An assembly assembly is connected to the outer shell 2; The assembly assembly is used to assemble the power adapter cover 11 onto the upper side of the power adapter housing 10.
[0034] The extension assembly is connected to the first connecting block 5, and comprises an elastic telescopic rod 201, a third connecting block 202, a first electric push rod 203, a first circular ring 204 and a circular rod 205. The elastic telescopic rod 201 is fixed to the cylindrical body 8. The telescopic end of the elastic telescopic rod 201 is fixed with the third connecting block 202, which is made of alloy. The third connecting block 202 slides on the surface of the second connecting block 7. The third connecting block 202 is detachably connected with the cutter 9. Two first electric push rods 203 are fixed to the first connecting block 5. The telescopic ends of all the first electric push rods 203 are fixed with the first circular ring 204. An annular inclined surface is formed on the lower side of the first circular ring 204. The circular rod 205 is welded to the cutter 9. The circular rod 205 is in contact with the first circular ring 204. The position of the cutter 9 is adjusted by cooperation of the elastic telescopic rod 201, the first circular ring 204 and the circular rod 205, so that the cutter 9 can cut from the inside to the outside of the power adapter shell 10.
[0035] The extension assembly further comprises a second circular ring 206. The second circular ring 206 is rotatably connected to the lower side of the first circular ring 204. The first circular ring 204 and the second circular ring 206 limit the end of the cutter 9 on the upper side edge of the power adapter shell 10, so as to avoid the end of the cutter 9 from being warped and affecting the cutting operation. When the cutter 9 rotates, the second circular ring 206 is driven to rotate by friction, so as to avoid the cutter 9 from sliding on the lower side of the first circular ring 204 and being worn.
[0036] The rotating assembly comprises a motor 207, a first spur gear 208 and a second spur gear 209. The motor 207 is bolted to the first connecting rod 6. The output shaft of the motor 207 is fixed with the first spur gear 208. The second spur gear 209 is fixed to the cylindrical body 8. The first spur gear 208 is engaged with the second spur gear 209.
[0037] The driving assembly comprises a support 2010, an electric conveyor belt 2011 and a spacer block 2012. The bottom plate 1 is fixed with a plurality of supports 2010. All the supports 2010 are fixed with an electric conveyor belt 2011. A plurality of spacer blocks 2012 are fixed to the belt of the electric conveyor belt 2011.
[0038] Firstly, the external conveying mechanism puts the power adapter shell 10 into the motorized conveyor 2011 and clamps it between two partition blocks 2012, then the motorized conveyor 2011 drives the power adapter shell 10 to move rightwards to the position directly below the second connecting block 7, then the first telescopic cylinder 4 drives the first connecting block 5 and the parts thereon to move downwards, so that the cutter 9 moves downwards to contact the upper edge of the power adapter shell 10, the motor 207 is started, the motor 207 drives the first spur gear 208 to rotate, the first spur gear 208 drives the second spur gear 209 to rotate, the second spur gear 209 drives the cylinder 8 to rotate, and the cylinder 8 drives the cutter 9 to rotate, so that the cutter 9 cuts off the burrs on the upper edge of the power adapter shell 10, then the first telescopic cylinder 4 drives the first connecting block 5 and the parts thereon to move back to the original position, the motorized conveyor 2011 drives the power adapter shell 10 to move rightwards to the position below the left side of the assembly component, then the external mechanical hand installs the electrical elements into the power adapter shell 10, the motorized conveyor 2011 drives the power adapter shell 10 to continue moving rightwards to the position directly below the assembly component, then the assembly component fixes the power adapter shell cover 11 on the power adapter shell 10, and the assembly operation is completed, when in use, the burrs on the edge of the power adapter shell 10 are cut off by the cutter 9, and then the power adapter shell cover 11 is fixed on the power adapter shell 10, thereby avoiding the problem that the power adapter shell cover 11 cannot be tightly buckled or fails to be buckled.
[0039] When the cutter 9 moves downwards to the upper side of the power adapter shell 10, the burrs on the upper side of the power adapter shell 10 will be bent, and the bent burrs will be attached to the upper edge of the power adapter shell 10, so that the cutter 9 cannot completely cut off the burrs, therefore, the initial position of the cutter 9 is set closer to the first connecting rod 6, so that after the cutter 9 moves downwards to align with the upper edge of the power adapter shell 10, the cutter 9 is located inside the power adapter shell 10, then the first electric push rod 203 drives the first ring 204 to move downwards, and since the inclined surface of the first ring 204 is in contact with the cylindrical rod 205, the cylindrical rod 205 moves away from the first connecting rod 6 during the downward movement of the first ring 204, until the cylindrical rod 205 moves to the outside of the first ring 204, during this process, the cylindrical rod 205 drives the cutter 9 to move, the cutter 9 drives the third connecting block 202 to move, and the third connecting block 202 stretches the elastic telescopic rod 201, so that the cutter 9 is inserted into the burrs of the power adapter shell 10 in the transverse direction, then the motor 207 is started, and the cutter 9 cuts off the burrs of the power adapter shell 10, thereby avoiding the problem that the burrs cannot be completely cut off due to the bending of the burrs by the cutter 9, and during the cutting process, the first ring 204 moves downwards to contact the end of the cutter 9, so that the cutter 9 is pressed tightly on the power adapter shell 10, thereby avoiding the problem that the burrs cannot be completely cut off due to the end of the cutter 9 being raised.
[0040] When the first circular ring 204 limits the end of the cutter 9, the cutter 9 will slide on the lower side of the first circular ring 204, which will cause wear and tear, and thus affect the limiting function. Therefore, the second circular ring 206 is used to limit the end of the cutter 9 instead of the first circular ring 204. The cutter 9 drives the first circular ring 204 to rotate through friction, avoiding the problem of wear and tear caused by the cutter 9 sliding on the lower side of the first circular ring 204.
[0041] Embodiment 2
[0042] On the basis of Embodiment 1, as shown in Figures 1-2 and Figures 7-10 It also includes a limiting plate 2013. The limiting plate 2013 is bolted to the lower side of the second connecting block 7, preventing the cut-off edge material from falling into the power adapter shell 10.
[0043] It also includes an adaptive assembly. The adaptive assembly is connected to the limiting plate 2013. The adaptive assembly includes a first rubber ring 2014, an air pump 2015, a first pipeline 2016, a second pipeline 2017, and a deflation valve 2018. The first rubber ring 2014 is fixed to the outside of the limiting plate 2013. The first rubber ring 2014 has a first cavity 91 formed on the inside. The air pump 2015 is installed on the lower side of the limiting plate 2013. The first pipeline 2016 is connected and screwed to the output end of the air pump 2015. The first pipeline 2016 can be a circular tube or a square tube. The second pipeline 2017 is connected and welded to the first pipeline 2016. The second pipeline 2017 passes through the limiting plate 2013 and is connected to the first cavity 91. The deflation valve 2018 is installed on the second pipeline 2017. The size of the limiting plate 2013 is smaller than the size of the opening of the power adapter shell 10. The first rubber ring 2014 cooperates with the limiting plate 2013 to block the opening of the power adapter shell 10, avoiding the limiting plate 2013 of the same size as the opening of the power adapter shell 10 from bending and clamping the edge, thus avoiding affecting the edge removal operation.
[0044] It also includes a cleaning assembly. The cleaning assembly is connected to the second connecting block 7. The cleaning assembly includes a third pipeline 2019 and a solenoid valve 2020. The cutter 9 has a plurality of brown hairs on the lower side. The second connecting block 7 has a third cavity 93 formed on the inside. The second connecting block 7 has twelve first channels 94 formed on the inside, which are connected to the third cavity 93. The first channels 94 spray air to blow away the edge material remaining on the surface of the limiting plate 2013. The third pipeline 2019 is connected to the output end of the air pump 2015. The third pipeline 2019 passes through the limiting plate 2013 and is connected to the third cavity 93. The solenoid valve 2020 is installed on the third pipeline 2019.
[0045] The auxiliary assembly is connected to the limiting plate 2013, and the auxiliary assembly comprises a first connecting ring 2021, a second rubber ring 2022, a fourth pipeline 2023 and an exhaust unit. The first connecting ring 2021 is welded to the outer side of the limiting plate 2013 and is made of an alloy material. The first connecting ring 2021 is fixedly connected to the first rubber ring 2014 at the lower side. The second rubber ring 2022 is fixedly connected to the upper side of the first connecting ring 2021, and the upper side of the second rubber ring 2022 is fixedly connected to the limiting plate 2013. The second rubber ring 2022 is internally formed with a second cavity 92. The fourth pipeline 2023 is communicated with and welded to the first pipeline 2016. The fourth pipeline 2023 penetrates through the limiting plate 2013 and is communicated with the second cavity 92. A plurality of second channels 95 are formed in the first connecting ring 2021 and are communicated with the second cavity 92. The impurities remaining in the gap between the second rubber ring 2022 and the power adapter shell 10 are blown away through the second channels 95. The exhaust unit is connected to the limiting plate 2013.
[0046] The exhaust unit comprises a second electric push rod 2024, a first connecting frame 2025, a second connecting rod 2026, a second connecting ring 2027 and a third rubber ring 2028. The second electric push rod 2024 is fixedly connected to the lower side of the limiting plate 2013. The first connecting frame 2025 is fixedly connected to the extension end of the second electric push rod 2024. Four second connecting rods 2026 are welded to the first connecting frame 2025. The second connecting rods 2026 are slidingly connected to the limiting plate 2013 and the first connecting ring 2021. The second connecting ring 2027 is fixedly connected between the upper ends of all the second connecting rods 2026. The third rubber ring 2028 is fixedly connected to the lower side of the second connecting ring 2027. The third rubber ring 2028 is in contact with the first connecting ring 2021.
[0047] The cutting edge material generated by cutting will fall into the power adapter shell 10, therefore, when the cutter 9 is aligned with the upper edge of the power adapter shell 10, the limiting plate 2013 is located inside the power adapter shell 10, the air pump 2015 is started, the air pump 2015 delivers air to the first pipeline 2016, the air flows into the first cavity 91 from the first pipeline 2016 and the second pipeline 2017, forcing the first rubber ring 2014 to expand and contact the power adapter shell 10, at the same time, the air flows into the second cavity 92 from the first pipeline 2016 and the fourth pipeline 2023, forcing the second rubber ring 2022 to expand and contact the power adapter shell 10, the cutting edge material generated by cutting is intercepted by the limiting plate 2013 and the second rubber ring 2022, avoiding falling into the power adapter shell 10, then the air pump 2015 delivers air to the third pipeline 2019, opens the electromagnetic valve 2020, the air flows into the third cavity 93 through the third pipeline 2019, and then is sprayed out from the first channel 94, blowing away the cutting edge material remaining on the upper side of the limiting plate 2013, realizing self-cleaning, when the cutter 9 rotates, the brown hair arranged below it slides at the gap between the second rubber ring 2022 and the power adapter shell 10, brushing out the long cutting edge material stuck in the gap, which is beneficial to improve the cleaning effect.
[0048] During the process of cleaning the cutting edge material, part of the small cutting edge material will be stuck in the gap between the second rubber ring 2022 and the power adapter shell 10, the brown hair on the cutter 9 cannot brush it out, at this time, the second electric push rod 2024 drives the first connecting frame 2025 to move upward, the first connecting frame 2025 drives the second connecting rod 2026 to move upward, the second connecting rod 2026 drives the second connecting ring 2027 to move upward, the second connecting ring 2027 drives the third rubber ring 2028 to move upward, so that the third rubber ring 2028 stops blocking the second channel 95, the high-pressure air in the second cavity 92 flows out from the second channel 95, the second channel 95 guides the air to be sprayed upward, and as the air in the second cavity 92 flows out, the second rubber ring 2022 will gradually rebound, thereby blowing away the small cutting edge material stuck in the gap between the second rubber ring 2022 and the power adapter shell 10, and avoiding the air and small cutting edge material flowing into the power adapter shell 10 through the first rubber ring 2014 below, then the air in the first cavity 91 is discharged through the air release valve 2018, so that the first rubber ring 2014 rebounds, and in use, the air in the second cavity 92 is discharged through the second channel 95 during the resetting process, so that the second rubber ring 2022 rebounds, and the air discharged blows away the small cutting edge material stuck in the gap between the second rubber ring 2022 and the power adapter shell 10, avoiding the small cutting edge material falling into the power adapter shell 10 after the second rubber ring 2022 rebounds and resets.
[0049] Embodiment 3
[0050] On the basis of embodiment 2, as shown in Figures 1-2 and Figure 11 The assembly assembly includes a second telescopic cylinder 303, a second connecting frame 304, an electric suction cup 305 and a driving unit; the driving unit is connected to the shell 2; the driving unit is connected to the second telescopic cylinder 303; the driving unit is used to drive the second telescopic cylinder 303 to move horizontally; the second telescopic cylinder 303 is fixedly connected with the second connecting frame 304 at the telescopic end; the second connecting frame 304 is fixedly connected with the electric suction cup 305 at the middle part.
[0051] The driving unit includes an electric sliding rail 301 and an electric sliding block 302; the electric sliding rail 301 is bolted to the shell 2; the electric sliding block 302 is slidingly connected to the electric sliding rail 301; the electric sliding block 302 is fixedly connected with the second telescopic cylinder 303.
[0052] The assembly assembly further includes a positioning block 306; four positioning blocks 306 are bolted to the second connecting frame 304, the lower side of the positioning block 306 is beveled, and the positioning block 306 is used for positioning the power adapter shell cover 11.
[0053] The specific operation of the assembly assembly in embodiment 1 for fixing the power adapter shell cover 11 on the power adapter shell 10 is as follows: start the electric sliding rail 301 and the electric sliding block 302, the electric sliding block 302 drives the second telescopic cylinder 303 to move, the second telescopic cylinder 303 drives the second connecting frame 304 to move, the second connecting frame 304 drives the electric suction cup 305 to move, so that the electric suction cup 305 moves to the power adapter shell cover 11 above the external conveying mechanism, then the second telescopic cylinder 303 drives the second connecting frame 304 to move downward, the second connecting frame 304 drives the positioning block 306 to move downward, so that the beveled surface of the positioning block 306 contacts the edge of the power adapter shell cover 11, the positioning block 306 continues to move downward to force the power adapter shell cover 11 to move, thereby positioning the power adapter shell cover 11 to the middle part of the second connecting frame 304, then the second connecting frame 304 drives the electric suction cup 305 to move downward to contact the power adapter shell cover 11, so that the electric suction cup 305 tightly fixes the power adapter shell cover 11, then the electric suction cup 305 drives the power adapter shell cover 11 to move above the power adapter shell 10, then the second telescopic cylinder 303 drives the second connecting frame 304 to move downward, so that the electric suction cup 305 drives the power adapter shell cover 11 to move downward, thereby fixing the power adapter shell cover 11 on the power adapter shell 10, completing the assembly operation.
[0054] The above merely illustrates the specific embodiments of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can easily think of the changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A high-efficient power adapter fast assembly device, comprising a base plate (1); a shell (2) is fixed on the base plate (1); an electric door (3) is installed on the shell (2); characterized in that, The first telescopic air cylinder (4) is fixedly connected to the shell (2); the first connecting block (5) is fixedly connected to the telescopic end of the first telescopic air cylinder (4); the first connecting rod (6) is fixedly connected to the first connecting block (5); the second connecting block (7) is fixedly connected to the lower end of the first connecting rod (6); the cylindrical body (8) is rotatably connected to the middle part of the second connecting block (7) and is rotatably connected with the first connecting rod (6); the cutter (9) is connected to the cylindrical body (8); the rotating assembly is connected to the first connecting rod (6); the rotating assembly is used for driving the cylindrical body (8); the driving assembly is connected to the bottom plate (1); the burrs at the opening of the power adapter shell (10) are cut from the inside of the power adapter shell (10) by the rotating cutter (9); the driving assembly is used for driving the power adapter shell (10) to move horizontally; the assembling assembly is connected to the shell (2); the assembling assembly is used for assembling the power adapter shell cover (11) to the upper side of the power adapter shell (10); the elongation assembly is further included; the elongation assembly is connected to the first connecting block (5); the elongation assembly includes the elastic telescopic rod (201); the elastic telescopic rod (201) is fixedly connected to the cylindrical body (8); the telescopic end of the elastic telescopic rod (201) is fixedly connected to the third connecting block (202); the third connecting block (202) slides on the surface of the second connecting block (7); the third connecting block (202) is detachably connected with the cutter (9); at least two first electric push rods (203) are fixedly connected to the first connecting block (5); the telescopic ends of all the first electric push rods (203) are fixedly connected with the first circular ring (204); the lower side of the first circular ring (204) is provided with an annular inclined surface; the circular rod (205) is fixedly connected to the cutter (9); the circular rod (205) is in contact with the first circular ring (204).
2. The high efficiency power adapter quick assembly apparatus of claim 1, wherein, The elongation assembly further includes the second circular ring (206); the second circular ring (206) is rotatably connected to the lower side of the first circular ring (204).
3. The high efficiency power adapter quick assembly apparatus of claim 1, wherein, The limiting plate (2013) is further included; the limiting plate (2013) is fixedly connected to the lower side of the second connecting block (7).
4. The high efficiency power adapter quick assembly apparatus of claim 3, wherein, The adaptation assembly is further included; the adaptation assembly is connected to the limiting plate (2013); the adaptation assembly includes the first rubber ring (2014); the first rubber ring (2014) is fixedly connected to the outer side of the limiting plate (2013); the first cavity (91) is formed in the inner side of the first rubber ring (2014); the air pump (2015) is installed on the lower side of the limiting plate (2013); the first pipeline (2016) is in communication with the output end of the air pump (2015); the second pipeline (2017) is in communication with the first pipeline (2016); the second pipeline (2017) passes through the limiting plate (2013) and is in communication with the first cavity (91); the air release valve (2018) is installed on the second pipeline (2017).
5. The high efficiency power adapter quick assembly apparatus of claim 4, wherein, The cleaning assembly is further included; the second connecting block (7) is connected with the cleaning assembly; the cleaning assembly includes a third pipeline (2019); the cutter (9) is provided with a plurality of brown hairs on the lower side; the second connecting block (7) is provided with a third cavity (93) on the inner side; a plurality of first channels (94) are provided on the inner side of the second connecting block (7), and the first channels (94) are communicated with the third cavity (93); the third pipeline (2019) is communicated with the output end of the air pump (2015); the third pipeline (2019) penetrates through the limiting plate (2013) and is communicated with the third cavity (93); and the electromagnetic valve (2020) is installed on the third pipeline (2019).
6. The high efficiency power adapter quick assembly apparatus of claim 5, wherein, The auxiliary assembly is further included; the limiting plate (2013) is connected with the auxiliary assembly; the auxiliary assembly includes a first connecting ring (2021); the first connecting ring (2021) is fixedly connected to the outer side of the limiting plate (2013); the first connecting ring (2021) is fixedly connected to the lower side of the first rubber ring (2014); the first connecting ring (2021) is fixedly connected to the upper side of the second rubber ring (2022), and the upper side of the second rubber ring (2022) is fixedly connected to the limiting plate (2013); the second rubber ring (2022) is formed with a second cavity (92) on the inner side; the fourth pipeline (2023) is communicated and fixedly connected to the first pipeline (2016); the fourth pipeline (2023) penetrates through the limiting plate (2013) and is communicated with the second cavity (92); a plurality of second channels (95) are provided on the first connecting ring (2021) and communicated with the second cavity (92); and the limiting plate (2013) is connected with an exhaust unit.
7. The high efficiency power adapter quick assembly apparatus of claim 6, wherein, The exhaust unit includes a second electric push rod (2024); the second electric push rod (2024) is fixedly connected to the lower side of the limiting plate (2013); the telescopic end of the second electric push rod (2024) is fixedly connected with a first connecting frame (2025); at least four second connecting rods (2026) are fixedly connected to the first connecting frame (2025), the second connecting rods (2026) are slidingly connected with the limiting plate (2013), the second connecting rods (2026) are slidingly connected with the first connecting ring (2021); a second connecting ring (2027) is fixedly connected between the upper ends of all the second connecting rods (2026); a third rubber ring (2028) is fixedly connected to the lower side of the second connecting ring (2027); and the third rubber ring (2028) is in contact with the first connecting ring (2021).
8. The high efficiency power adapter quick assembly apparatus of any one of claims 1-7, wherein, The assembling assembly includes a second telescopic cylinder (303); the housing (2) is connected with a driving unit; the driving unit is connected with the second telescopic cylinder (303); the driving unit is used for driving the second telescopic cylinder (303) to move horizontally; the telescopic end of the second telescopic cylinder (303) is fixedly connected with a second connecting frame (304); The second connecting frame (304) is fixedly connected with an electric suction cup (305).
9. The high efficiency power adapter quick assembly apparatus of claim 8, wherein, The assembling assembly further includes a positioning block (306); four positioning blocks (306) are fixedly connected to the second connecting frame (304), and the lower side of the positioning block (306) is inclined.
Citation Information
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