A deburring device for mobile phone case processing

By designing an automated deburring device for mobile phone cases, which utilizes a fan and a suction device to achieve efficient deburring, the problem of low efficiency and high cost in traditional methods has been solved, and efficient automated production has been realized.

CN119388276BActive Publication Date: 2025-11-14FOSHAN IDEX TECH CO LTD
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Patent Information

Application Number
CN202411788263.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-11-14
Estimated Expiration
2044-12-06

AI Technical Summary

Technical Problem

Traditional mobile phone case processing suffers from low efficiency and poor results in burr removal, leading to high labor intensity and costs for workers.

Method used

Design an automated deburring device that includes a blower, a feeding device, a suction device, and a flipping device. The blower blows hot air to remove burrs, the suction device moves the phone case for all-around cleaning, the feeding device positions the phone case, and the flipping device achieves double-sided deburring, realizing fully automated operation.

Benefits of technology

It improves deburring efficiency, reduces labor requirements, increases production capacity, meets the requirements of single-sided and double-sided deburring, has a high degree of automation, and saves a lot of labor costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention provides a deburring device for mobile phone case processing, comprising a housing and a worktable mounted on top of the housing. The worktable is equipped with a fan, a feeding device, a suction device, and a tilting device. The bottom of the fan is installed inside the housing, and its output end passes through the worktable and is located on one side of the feeding device's output end. The suction device contains an X-axis moving mechanism, a Y-axis moving mechanism, and a Z-axis moving mechanism. The output end of the suction device can move above the fan and the tilting device. An air source is located on one side of the housing. The suction device, feeding device, and tilting device are all equipped with suction cups and vacuum generators that cooperate with the suction cups. The suction cups are connected to the air source. This device operates fully automatically, requiring no manual correction. It has a high degree of automation and high efficiency, increasing production capacity while saving significant labor costs.
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Description

Technical Field

[0001] This invention relates to the field of mobile phone case processing, and more particularly to a deburring device for mobile phone case processing. Background Technology

[0002] With the continuous development of society, in order to improve production efficiency, the degree of mechanical automation is increasing, and its application in the production and processing of mobile phone parts is also growing. As competition in the mobile phone market intensifies, the processing requirements for mobile phone parts are also becoming more demanding. For example, tiny burrs may appear during the injection molding process of mobile phone casings. These burrs can affect the normal use of the phone and generally require deburring. Traditionally, deburring involves workers using brushes to remove burrs one by one. This method is often inefficient, produces poor deburring results, and leads to high labor intensity, a large workforce, and high costs.

[0003] Therefore, it is necessary to design a deburring device for mobile phone case processing. Summary of the Invention

[0004] To address the technical deficiencies in the background art, this invention proposes a deburring device for mobile phone case processing, which solves the aforementioned technical problems and meets practical needs. The specific technical solution is as follows:

[0005] A deburring device for processing mobile phone cases includes a housing and a worktable mounted on top of the housing. The worktable is equipped with a fan, a feeding device, a suction device, and a tilting device. The bottom of the fan is installed inside the housing, and its output end passes through the worktable and is located on one side of the output end of the feeding device. The suction device is equipped with an X-axis moving mechanism, a Y-axis moving mechanism, and a Z-axis moving mechanism. The output end of the suction device can move above the fan and above the tilting device. An air source is located on one side of the housing. The suction device, feeding device, and tilting device are all equipped with suction cups and vacuum generators that cooperate with the suction cups. The suction cups are connected to the air source.

[0006] Furthermore, the Y-axis moving mechanism includes a Y-axis cylinder, a Y-axis L-shaped fixing plate, and a suction cup fixing plate. The Y-axis cylinder is fixedly connected to the driving end of the X-axis moving mechanism through the Y-axis L-shaped fixing plate. The driving end of the Y-axis cylinder can move along the Y-axis and is fixedly connected to the suction cup fixing plate. The suction cup fixing plate is provided with a plurality of mounting holes for mounting suction cups.

[0007] Furthermore, the X-axis moving mechanism includes an X-axis motor, an X-axis driving wheel, an X-axis driven wheel, an X-axis guide rail, an X-axis synchronous belt, and an X-axis L-shaped slider. The X-axis motor is fixedly connected to one side of the X-axis guide rail via an X-axis guide rail plate. The X-axis driven wheel is installed on the other side of the X-axis guide rail. The drive end of the X-axis motor passes through the X-axis guide rail plate and is connected to the X-axis driving wheel. The X-axis driving wheel is connected to the X-axis driven wheel via an X-axis synchronous belt. The X-axis L-shaped slider is slidably connected to the X-axis guide rail and its top is fixedly connected to the Y-axis L-shaped fixing plate. The front end of the X-axis L-shaped slider is connected to the X-axis synchronous belt via a belt pressure block. A proximity switch is provided on the bottom of the X-axis guide rail near the X-axis motor. The X-axis guide rail is connected to the drive end of the Z-axis moving mechanism via the X-axis L-shaped fixing plate.

[0008] Furthermore, the Z-axis moving mechanism includes a base plate, a Z-axis motor, a Z-axis guide rail, a Z-axis drive wheel, a Z-axis driven wheel, and a Z-axis synchronous belt. The base plate is mounted on the upper surface of the worktable. The Z-axis motor is mounted on one side of the base plate via a motor plate, and the Z-axis driven wheel is mounted on the other side of the base plate. The drive end of the Z-axis motor passes through the motor plate and is connected to the Z-axis drive wheel. The Z-axis drive wheel is connected to the Z-axis driven wheel via the Z-axis synchronous belt. The Z-axis guide rail is mounted on the upper surface of the base plate, and a Z-axis slider is movably connected inside the Z-axis guide rail. The top of the Z-axis slider is fixedly connected to an X-axis L-shaped fixed plate.

[0009] Furthermore, the feeding device includes a phone case receiving plate, a receiving mechanism, a first pushing mechanism, and a second pushing mechanism. The phone case receiving plate is connected to the upper surface of the workbench via several connecting columns. The receiving mechanism is installed on one side of the housing, and its driving end passes through the workbench and the phone case receiving plate respectively. The first pushing mechanism is installed on one side of the phone case receiving plate and can push the phone case to move along the Z-axis. The second pushing mechanism is installed on the other side of the phone case receiving plate and can push the phone case to move along the X-axis. Several cooperating baffles are provided on the side of the phone case receiving plate near the fan.

[0010] Furthermore, the receiving mechanism includes a receiving rotary cylinder, a swing table air pump, two receiving fixing plates, and a docking plate. The two receiving fixing plates are fixedly installed on the bottom of the workbench, and an mounting plate is provided between the two receiving fixing plates. The receiving rotary cylinder is installed on the upper surface of the mounting plate, and its driving end is connected to the swing table air pump through the swing table connecting plate. The driving end of the swing table air pump is fixedly connected to the docking plate through several cylinders. A suction cup and a vacuum generator are respectively installed in the middle part of the docking plate.

[0011] Furthermore, the first pushing mechanism includes a first pushing air pump and a first positioning pushing plate. The first pushing air pump is installed on the upper surface of the mobile phone case receiving plate and its driving end is connected to the first positioning pushing plate. The position of the first positioning pushing plate corresponds to the position of the docking plate.

[0012] Furthermore, the second pushing mechanism includes a second pushing air pump and a second positioning pushing plate. The second pushing air pump is installed on the upper surface of the workbench and located on one side of the mobile phone case receiving plate. The driving end of the second pushing air pump is connected to the second positioning pushing plate. The position of the second positioning pushing plate corresponds to the position of the docking plate and cooperates with the first positioning pushing plate.

[0013] Furthermore, the flipping device includes a top-feeding mechanism and a flipping mechanism. The top-feeding mechanism includes a top-feeding cylinder and a top-feeding plate. The top-feeding cylinder is installed at the bottom of the workbench via a top-feeding fixing block. The driving end of the top-feeding cylinder passes through the workbench and is fixedly connected to the top-feeding plate. The flipping mechanism includes a flipping cylinder and an L-shaped suction cup fixing block. The flipping cylinder is installed on the surface of the workbench via the flipping fixing block, and its driving end is connected to the L-shaped suction cup fixing block. The L-shaped suction cup fixing block is located directly above the top-feeding plate and is equipped with a suction cup and a vacuum generator.

[0014] Furthermore, the bottom of the housing is provided with several foot cups, the interior of the housing is provided with an electrical component mounting plate for mounting electrical components, and the surface of the housing is also provided with several reserved holes for mounting operating components.

[0015] Compared with the prior art, the deburring device for mobile phone case processing provided by the present invention has the following beneficial effects:

[0016] This invention discloses a deburring device for mobile phone case processing. It includes a fan that blows hot air to remove burrs generated during processing, a suction device that holds the phone case above the fan and moves it back and forth to remove debris and burrs from all corners, a feeding device that delivers the processed phone case to a predetermined position on the worktable for easy holding and movement by the suction device, and a flipping device that flips the phone case so that both sides can be placed above the fan for deburring. This device can meet the requirements for single-sided and double-sided deburring of mobile phone cases. Furthermore, the entire process is automated, requiring no manual correction, exhibiting high automation and efficiency, increasing production capacity while saving significant labor costs. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the deburring device for processing mobile phone cases according to the present invention.

[0018] Figure 2 This is a schematic diagram of the material suction device in this invention.

[0019] Figure 3 This is a schematic diagram of the Y-axis moving mechanism in this invention.

[0020] Figure 4 This is a schematic diagram of the Z-axis moving mechanism in this invention.

[0021] Figure 5 This is a schematic diagram of the feeding device in this invention.

[0022] Figure 6 This is a schematic diagram of the material receiving structure, the first material pushing mechanism, and the second material pushing mechanism in this invention.

[0023] Figure 7 This is a schematic diagram of the flipping device in this invention.

[0024] The components include: 1. Box body; 2. Workbench; 201. Fan; 3. Feeding device; 31. Mobile phone case receiving plate; 32. Receiving mechanism; 321. Receiving rotary cylinder; 322. Tabletop air pump; 323. Receiving fixing plate; 324. Docking plate; 325. Mounting plate; 326. Tabletop connecting plate; 33. First pushing mechanism; 331. First pushing air pump; 332. First positioning pushing plate; 34. Second pushing mechanism; 341. Second pushing air pump; 342. Second positioning pushing plate; 35. Connecting column; 36. Baffle plate; 4. Suction device; 5. Tilting device; 51. Top material mechanism; 511. Top material cylinder; 512. Top material plate; 513. Top material fixing block; 52. Tilting mechanism; 521. Tilting cylinder; 522. L-shaped suction cup fixing block. 523. Flipping fixing block; 6. X-axis moving mechanism; 601. X-axis motor; 602. X-axis driving wheel; 603. X-axis driven wheel; 604. X-axis guide rail; 605. X-axis synchronous belt; 606. X-axis L-shaped slider; 607. X-axis guide rail plate; 608. Belt pressure block; 609. Proximity switch; 610. X-axis L-shaped fixing plate; 7. Y-axis moving mechanism; 701. Y-axis cylinder; 702. Y-axis L-shaped fixing plate; 703. Suction cup fixing plate; 704. Mounting hole; 8. Z-axis moving mechanism; 801. Base plate; 802. Z-axis motor; 803. Z-axis guide rail; 804. Z-axis driving wheel; 805. Z-axis driven wheel; 806. Z-axis slider; 9. Air source; 10. Foot cup; 11. Electrical component mounting plate; 12. Reserved hole. Detailed Implementation

[0025] In the description of this invention, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "middle," and "inner," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first," "second," etc., may explicitly or implicitly include one or more of that feature. In the description of this invention, it should be noted that unless otherwise explicitly specified and limited, the terms "installed," "connected," and "joined" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention through specific circumstances.

[0026] The embodiments of the present invention will be described below with reference to the accompanying drawings and related examples. The embodiments of the present invention are not limited to the following examples, and the present invention relates to the relevant necessary components in this technical field, which should be regarded as well-known technology in this technical field and can be known and mastered by those skilled in this technical field.

[0027] See Figure 1-7A deburring device for processing mobile phone cases includes a housing 1 and a worktable 2 installed above the housing 1. The worktable 2 is equipped with a fan 201, a feeding device 3, a suction device 4, and a flipping device 5. The temperature of the hot air blown by the fan 201 can be adjusted to remove burrs from the mobile phone case. The feeding device 3 is used to feed the freshly processed mobile phone case into a preset position on the worktable 2. The suction device 4 sucks up the mobile phone case from the preset position and moves it above the fan 201 for deburring. The device can move the mobile phone case above the fan 201 in the X, Y, and Z axis directions. The flipping device 5 is used to flip the phone case to facilitate deburring on the other side. The bottom of the blower 201 is installed inside the housing 1, and its output end passes through the workbench 2 and is located on one side of the output end of the feeding device 3. The suction device 4 is equipped with an X-axis moving mechanism 6, a Y-axis moving mechanism 7, and a Z-axis moving mechanism 8, which are used to move the phone case in the X, Y, and Z axis directions. The output end of the suction device 4 can move above the blower 201 and the flipping device 5. An air source 9 is provided on one side of the housing 1. The suction device 4, the feeding device 3, and the flipping device 5 are all equipped with suction cups and vacuum generators that cooperate with the suction cups. The suction cups are connected to the air source 9. The vacuum generator and the suction cups work together to allow the suction cups to hold the phone case, thereby moving and flipping the phone case. After moving to a preset position, the air source 9 vents air to disconnect the suction cups from the phone case.

[0028] In one embodiment of the present invention, the Y-axis moving mechanism 7 includes a Y-axis cylinder 701, a Y-axis L-shaped fixing plate 702, and a suction cup fixing plate 703. The Y-axis cylinder 701 is fixedly connected to the driving end of the X-axis moving mechanism 6 via the Y-axis L-shaped fixing plate 702. The driving end of the Y-axis cylinder 701 can move along the Y-axis and is fixedly connected to the suction cup fixing plate 703. The suction cup fixing plate 703 is provided with a plurality of mounting holes 704 for mounting suction cups. The Y-axis cylinder 701 drives the suction cup fixing plate 703 to move along the Y-axis. The suction cup fixing plate 703 drives the suction cup to approach the phone case, thereby adhering to the phone case and also driving the phone case to move along the Y-axis. The Y-axis moving mechanism 7 is connected to the Y-axis L-shaped fixing plate 702 and the X-axis moving mechanism 6, thus enabling it to move along the X-axis.

[0029] In one embodiment of the present invention, the X-axis moving mechanism 6 includes an X-axis motor 601, an X-axis driving wheel 602, an X-axis driven wheel 603, an X-axis guide rail 604, an X-axis synchronous belt 605, and an X-axis L-shaped slider 606. The X-axis motor 601 is fixedly connected to one side of the X-axis guide rail 604 via an X-axis guide rail plate 607. The X-axis driven wheel 603 is mounted on the other side of the X-axis guide rail 604. The driving end of the X-axis motor 601 passes through the X-axis guide rail plate 607 and is connected to the X-axis driving wheel 602. The X-axis driving wheel 602 is connected to the X-axis synchronous belt 605. The X-axis driven wheel 603 is connected to the X-axis L-shaped slider 606, which is slidably connected to the X-axis guide rail 604 and whose top is fixedly connected to the Y-axis L-shaped fixing plate 702. The front end of the X-axis L-shaped slider 606 is connected to the X-axis synchronous belt 605 through the belt pressure block 608. A proximity switch 609 is provided on the bottom side of the X-axis guide rail 604 near the X-axis motor 601. The proximity switch 609 can be used to determine the distance the phone case has moved and its current position. The X-axis guide rail 604 is connected to the drive end of the Z-axis moving mechanism 8 through the X-axis L-shaped fixing plate 610. The X-axis motor 601 drives the X-axis drive wheel 602 to rotate. The X-axis drive wheel 602 and the X-axis driven wheel 603 cooperate to enable the X-axis synchronous belt 605 to move on the X-axis. The X-axis L-shaped slider 606 moves along the X-axis on the guide rail through the belt pressure block 608 along with the X-axis synchronous belt 605, and at the same time drives the Y-axis L-shaped fixing plate 702, thereby indirectly driving the phone case to move on the X-axis.

[0030] In one embodiment of the present invention, the Z-axis moving mechanism 8 includes a base plate 801, a Z-axis motor 802, a Z-axis guide rail 803, a Z-axis drive wheel 804, a Z-axis driven wheel 805, and a Z-axis synchronous belt (similar to the X-axis synchronous belt, both serving to drive the drive wheel and the driven wheel, not shown in the figure). The base plate 801 is mounted on the upper surface of the worktable 2. The Z-axis motor 802 is mounted on one side of the base plate 801 via a motor plate. The Z-axis driven wheel 805 is mounted on the other side of the base plate 801. The drive end of the Z-axis motor 802 passes through the motor plate and is connected to the Z-axis drive wheel 804. The Z-axis drive wheel 804 is connected to the Z-axis driven wheel 805 via the Z-axis synchronous belt. The Z-axis guide rail 803 is mounted on the upper surface of the base plate 801. A Z-axis slider 806 is movably connected inside the Z-axis guide rail 803. The top of the Z-axis slider 806 is fixedly connected to the X-axis L-shaped fixing plate 610. Z-axis motor 802 drives Z-axis drive wheel 804. Z-axis drive wheel 804, Z-axis driven wheel 805 and Z-axis synchronous belt work together to make Z-axis slider 806 move along Z-axis on Z-axis guide rail 803. Z-axis slider 806 drives X-axis L-shaped fixing plate 610 to move on Z-axis, thereby indirectly driving the mobile phone case to move on Z-axis.

[0031] In one embodiment of the present invention, the feeding device 3 includes a mobile phone case receiving plate 31, a receiving mechanism 32, a first pushing mechanism 33, and a second pushing mechanism 34. The mobile phone case receiving plate 31 is connected to the upper surface of the workbench 2 through a plurality of connecting columns 35. The receiving mechanism 32 is installed on one side of the housing 1 and its driving end passes through the workbench 2 and the mobile phone case receiving plate 31 respectively. The first pushing mechanism 33 is installed on one side of the mobile phone case receiving plate 31 and can push the mobile phone case to move along the Z-axis. The second pushing mechanism 34 is installed on the other side of the mobile phone case receiving plate 31 and can push the mobile phone case to move along the X-axis. A plurality of mutually cooperating baffles 36 are provided on the side of the mobile phone case receiving plate 31 near the fan 201. The baffle plate 36 is used to limit the position of the mobile phone case. The baffle plate 36 includes baffle plates 36 on the left and right sides and one side near the blower 201, for a total of three baffle plates 36 in different directions, which can stably limit the position of the mobile phone case. The receiving mechanism 32 receives the processed mobile phone case from the previous working device into the mobile phone case receiving plate 31. The first pushing mechanism 33 and the second pushing mechanism 34 cooperate to send the mobile phone case into the pre-set position on the mobile phone case receiving plate 31, so that the suction device 4 can move the mobile phone case to perform deburring operation.

[0032] In one embodiment of the present invention, the receiving mechanism 32 includes a receiving rotary cylinder 321, a swing table air pump 322, two receiving fixing plates 323 and a docking plate 324. The two receiving fixing plates 323 are fixedly installed on the bottom of the workbench 2, and an mounting plate 325 is provided between the two receiving fixing plates 323. The receiving rotary cylinder 321 is installed on the upper surface of the mounting plate 325 and its driving end is connected to the swing table air pump 322 through a swing table connecting plate 326. The driving end of the swing table air pump 322 is fixedly connected to the docking plate 324 through several cylinders. A suction cup and a vacuum generator are respectively installed in the middle part of the docking plate 324. The receiving rotary cylinder 321 can rotate the docking plate 324. The swing table air pump 322 is used to lift the docking plate 324 to receive the mobile phone case. The suction cup and vacuum generator on the docking plate 324 are used to stabilize the mobile phone case on the docking plate 324 and prevent the mobile phone case from falling off the docking plate 324. After the docking plate 324 transports the mobile phone case to the mobile phone case receiving plate 31, it inflates the suction cup, thereby causing the suction cup to release the mobile phone case.

[0033] In one embodiment of the present invention, the first pushing mechanism 33 includes a first pushing air pump 331 and a first positioning pushing plate 332. The first pushing air pump 331 is mounted on the upper surface of the phone case receiving plate 31 and its driving end is connected to the first positioning pushing plate 332. The position of the first positioning pushing plate 332 corresponds to the position of the docking plate 324. The first pushing air pump 331 drives the first positioning pushing plate 332 to move on the Z-axis, thereby calibrating the position of the phone case on the Z-axis.

[0034] In one embodiment of the present invention, the second pushing mechanism 34 includes a second pushing air pump 341 and a second positioning pushing plate 342. The second pushing air pump 341 is mounted on the upper surface of the worktable 2 and located on one side of the phone case receiving plate 31. The driving end of the second pushing air pump 341 is connected to the second positioning pushing plate 342. The position of the second positioning pushing plate 342 corresponds to the position of the docking plate 324 and cooperates with the first positioning pushing plate 332. The second pushing air pump 341 drives the second positioning pushing plate 342 to push the phone case, thereby calibrating the position of the phone case on the X-axis.

[0035] In one embodiment of the present invention, the flipping device 5 includes a top-feeding mechanism 51 and a flipping mechanism 52. The top-feeding mechanism 51 includes a top-feeding cylinder 511 and a top-feeding plate 512. The top-feeding cylinder 511 is installed at the bottom of the workbench 2 through a top-feeding fixing block 513. The driving end of the top-feeding cylinder 511 passes through the workbench 2 and is fixedly connected to the top-feeding plate 512. The flipping mechanism 52 includes a flipping cylinder 521 and an L-shaped suction cup fixing block 522. The flipping cylinder 521 is installed on the surface of the workbench 2 through the flipping fixing block 523 and its driving end is connected to the L-shaped suction cup fixing block 522. The L-shaped suction cup fixing block 522 is located directly above the top-feeding plate 512 and is respectively equipped with a suction cup and a vacuum generator. After removing burrs from one side of the phone case, when it is necessary to remove burrs from the other side of the phone case, the suction device 4 sends the phone case above the L-shaped suction cup fixing block 522. The suction cup, with the help of a vacuum generator, holds the phone case. The flipping cylinder 521 starts to operate, flipping the L-shaped suction cup fixing block 522. The top material cylinder 511 drives the top material plate 512 to press against the side of the phone case that has not been deburred. At the same time, the suction cup on the L-shaped suction cup fixing block 522 releases the phone case. The suction device 4 moves above the top material plate 512 to re-suction the phone case and moves above the blower 201 to perform the deburring operation.

[0036] In one embodiment of the present invention, the bottom of the housing 1 is provided with a plurality of foot cups 10, and the interior of the housing 1 is provided with an electrical component mounting plate 11 for mounting electrical components. The surface of the housing 1 is also provided with a plurality of reserved holes 12 for mounting operating components. The reserved holes 12 can be used to mount an LCD screen, which can display the working quantity and the temperature of the fan 201 in real time. A temperature control system is also installed, allowing adjustment of the fan 201 temperature via the LCD screen. A manual switch is also included.

[0037] The operation process of the deburring device for mobile phone case processing according to the present invention is as follows:

[0038] The device is activated by pressing the operation button on housing 1 and the temperature of fan 201 is adjusted. The receiving mechanism 32 rises, receiving the processed phone case from the previous operating device. The suction cups and vacuum generator inside the receiving mechanism 32 firmly adhere the phone case to the docking plate 324. After the receiving mechanism 32 delivers the phone case to the phone case receiving plate 31, the suction cups inflate and release the phone case. The first pushing mechanism 33 and the second pushing mechanism 34 work together to push the phone case between multiple baffle plates 36. The suction device 4 starts operating, via the X-axis moving mechanism 6, Y-axis moving mechanism 7, and... The Z-axis moving mechanism 8 moves above the phone case. After the phone case is held by the suction cup and vacuum generator, it moves above the blower 201 to perform deburring. It moves above the blower 201 to perform deburring on all sides of the phone case. When only one side of the phone case needs deburring, the suction device 4 moves the phone case to the left conveyor belt after deburring one side. When both sides of the phone case need deburring, the suction device 4 moves the phone case to the flipping device 5 after deburring one side, flips it, and repeats the deburring operation to complete the deburring operation on both sides.

[0039] This invention discloses a deburring device for mobile phone case processing. A blower 201 blows hot air to remove burrs generated during processing. A suction device 4 holds the phone case above the blower 201 and moves it back and forth to remove debris and burrs from various corners of the phone case. A feeding device 3 delivers the processed phone case to a predetermined position on a worktable 2, allowing the suction device 4 to hold and move the phone case. A flipping device 5 flips the phone case, allowing the suction device 4 to place both sides of the phone case above the blower 201 for deburring. This device can meet the requirements of single-sided and double-sided deburring of mobile phone cases. Furthermore, the entire process is automated, requiring no manual correction, exhibiting a high degree of automation and efficiency, increasing production capacity while saving significant labor costs.

[0040] The above description is only a preferred embodiment of the present invention. It should be noted that those skilled in the art can make several improvements and modifications without departing from the principle of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.

Claims

1. A deburring device for processing mobile phone cases, characterized in that, Includes a housing (1) and a workbench (2) installed above the housing (1). The workbench (2) is equipped with a fan (201), a feeding device (3), a suction device (4) and a tilting device (5). The bottom of the fan (201) is installed inside the housing (1) and its output end passes through the workbench (2) and is located on one side of the output end of the feeding device (3). The suction device (4) is equipped with an X-axis moving mechanism (6), a Y-axis moving mechanism (7) and a Z-axis moving mechanism (8). The output end of the suction device (4) can move to the top of the fan (201) and the top of the tilting device (5). An air source (9) is provided on one side of the housing (1). The suction device (4), the feeding device (3) and the tilting device (5) are all equipped with suction cups and vacuum generators that cooperate with the suction cups. The suction cups are connected to the air source (9). The feeding device (3) includes a mobile phone case receiving plate (31), a receiving mechanism (32), a first pushing mechanism (33), and a second pushing mechanism (34). The mobile phone case receiving plate (31) is connected to the upper surface of the workbench (2) through several connecting columns (35). The receiving mechanism (32) is installed on one side of the housing (1) and the driving end passes through the workbench (2) and the mobile phone case receiving plate (31) respectively. The first pushing mechanism (33) is installed on one side of the mobile phone case receiving plate (31) and can push the mobile phone case to move along the Z-axis. The second pushing mechanism (34) is installed on the other side of the mobile phone case receiving plate (31) and can push the mobile phone case to move along the X-axis. Several mutually cooperating baffles (36) are provided on the side of the mobile phone case receiving plate (31) near the fan (201). The receiving mechanism (32) includes a receiving rotary cylinder (321), a swing table air pump (322), two receiving fixing plates (323) and a docking plate (324). The two receiving fixing plates (323) are fixedly installed at the bottom of the workbench (2). An installation plate (325) is provided between the two receiving fixing plates (323). The receiving rotary cylinder (321) is installed on the upper surface of the installation plate (325) and its driving end is connected to the swing table air pump (322) through the swing table connecting plate (326). The driving end of the swing table air pump (322) is fixedly connected to the docking plate (324) through several cylinders. A suction cup and a vacuum generator are respectively installed in the middle part of the docking plate (324). The flipping device (5) includes a top material mechanism (51) and a flipping mechanism (52). The top material mechanism (51) includes a top material cylinder (511) and a top material plate (512). The top material cylinder (511) is installed at the bottom of the workbench (2) through a top material fixing block (513). The driving end of the top material cylinder (511) passes through the workbench (2) and is fixedly connected to the top material plate (512). The flipping mechanism (52) includes a flipping cylinder (521) and an L-shaped suction cup fixing block (522). The flipping cylinder (521) is installed on the surface of the workbench (2) through a flipping fixing block (523) and its driving end is connected to the L-shaped suction cup fixing block (522). The L-shaped suction cup fixing block (522) is located directly above the top material plate (512) and is equipped with a suction cup and a vacuum generator.

2. The deburring device for mobile phone case processing according to claim 1, characterized in that, The Y-axis moving mechanism (7) includes a Y-axis cylinder (701), a Y-axis L-shaped fixing plate (702), and a suction cup fixing plate (703). The Y-axis cylinder (701) is fixedly connected to the driving end of the X-axis moving mechanism (6) through the Y-axis L-shaped fixing plate (702). The driving end of the Y-axis cylinder (701) can move along the Y-axis and is fixedly connected to the suction cup fixing plate (703). The suction cup fixing plate (703) is provided with a plurality of mounting holes (704) for mounting suction cups.

3. The deburring device for processing mobile phone cases according to claim 2, characterized in that, The X-axis moving mechanism (6) includes an X-axis motor (601), an X-axis drive wheel (602), an X-axis driven wheel (603), an X-axis guide rail (604), an X-axis synchronous belt (605), and an X-axis L-shaped slider (606). The X-axis motor (601) is fixedly connected to one side of the X-axis guide rail (604) via an X-axis guide rail plate (607). The X-axis driven wheel (603) is installed on the other side of the X-axis guide rail (604). The drive end of the X-axis motor (601) passes through the X-axis guide rail plate (607) and is connected to the X-axis drive wheel (602). The X-axis drive wheel (602)... The X-axis L-shaped slider (606) is connected to the X-axis driven wheel (603) via the X-axis synchronous belt (605). The X-axis L-shaped slider (606) is slidably connected to the X-axis guide rail (604) and its top is fixedly connected to the Y-axis L-shaped fixing plate (702). The front end of the X-axis L-shaped slider (606) is connected to the X-axis synchronous belt (605) via the belt pressure block (608). A proximity switch (609) is provided on the bottom side of the X-axis guide rail (604) near the X-axis motor (601). The X-axis guide rail (604) is connected to the drive end of the Z-axis moving mechanism (8) via the X-axis L-shaped fixing plate (610).

4. The deburring device for mobile phone case processing according to claim 3, characterized in that, The Z-axis moving mechanism (8) includes a base plate (801), a Z-axis motor (802), a Z-axis guide rail (803), a Z-axis drive wheel (804), a Z-axis driven wheel (805), and a Z-axis synchronous belt. The base plate (801) is mounted on the upper surface of the worktable (2). The Z-axis motor (802) is mounted on one side of the base plate (801) through a motor plate. The Z-axis driven wheel (805) is mounted on the other side of the base plate (801). The drive end of the Z-axis motor (802) passes through the motor plate and is connected to the Z-axis drive wheel (804). The Z-axis drive wheel (804) is connected to the Z-axis driven wheel (805) through a Z-axis synchronous belt. The Z-axis guide rail (803) is mounted on the upper surface of the base plate (801). A Z-axis slider (806) is movably connected inside the Z-axis guide rail (803). The top of the Z-axis slider (806) is fixedly connected to the X-axis L-shaped fixing plate (610).

5. The deburring device for processing mobile phone cases according to claim 1, characterized in that, The first pushing mechanism (33) includes a first pushing air pump (331) and a first positioning pushing plate (332). The first pushing air pump (331) is installed on the upper surface of the mobile phone case receiving plate (31) and its driving end is connected to the first positioning pushing plate (332). The position of the first positioning pushing plate (332) corresponds to the position of the docking plate (324).

6. The deburring device for processing mobile phone cases according to claim 5, characterized in that, The second pushing mechanism (34) includes a second pushing air pump (341) and a second positioning pushing plate (342). The second pushing air pump (341) is installed on the upper surface of the workbench (2) and located on one side of the mobile phone case receiving plate (31). The driving end of the second pushing air pump (341) is connected to the second positioning pushing plate (342). The position of the second positioning pushing plate (342) corresponds to the position of the docking plate (324) and cooperates with the first positioning pushing plate (332).

7. The deburring device for processing mobile phone cases according to claim 1, characterized in that, The bottom of the box (1) is provided with several foot cups (10), and the inside of the box (1) is provided with an electrical component mounting plate (11). The electrical component mounting plate (11) is used to install electrical components. The surface of the box (1) is also provided with several reserved holes (12) for installing operating components.

Citation Information

Patent Citations

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    CN103419310A

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