CN220409479U - A mould for making remote controller shell - Google Patents

A mould for making remote controller shell Download PDF

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Publication number
CN220409479U
CN220409479U CN202321031688.0U CN202321031688U CN220409479U CN 220409479 U CN220409479 U CN 220409479U CN 202321031688 U CN202321031688 U CN 202321031688U CN 220409479 U CN220409479 U CN 220409479U
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China
Prior art keywords
guide
guide table
outer frame
plate
fixedly connected
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Active
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CN202321031688.0U
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Chinese (zh)
Inventor
李孟棒
张永红
郑波
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Jiangxi Youkong Electronics Co ltd
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Jiangxi Youkong Electronics Co ltd
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Priority to CN202321031688.0U priority Critical patent/CN220409479U/en
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Abstract

The utility model provides a die for manufacturing a remote controller shell, which comprises an outer frame, side plates, a first protective shell, a second protective shell, an upper die and a lower die, wherein the side plates are fixedly connected with the outer frame, the first protective shell and the second protective shell are respectively and fixedly arranged at the top and the bottom of the front surface of the outer frame, the upper die and the lower die are oppositely arranged, the top of the outer frame is fixedly connected with a hydraulic cylinder, the bottom end of the hydraulic cylinder is fixedly connected with a hydraulic rod, and the inner side of the outer frame is fixedly connected with a guide rod. When the first guide table is lifted, the connecting arm is driven to move at the moment, the guide plate is integrally rotated and adjusted by the movement of the connecting arm, the connecting arm which is arranged in a staggered mode is simultaneously self-adaptively adjusted by the rotation of the guide plate, and the effect of driving the third guide table to lift and adjust is achieved due to the fact that the other group of connecting arms are connected with the third guide table, and the upper die and the lower die are synchronously pressed under the driving of the same power source in the process.

Description

A mould for making remote controller shell
Technical Field
The utility model relates to the technical field of remote controller manufacturing, in particular to a die for manufacturing a remote controller shell.
Background
Along with the interdigitation and fusion of the multidisciplinary of modern information electronic technology, power electronic technology, microcomputer control technology, modern sensor technology, digital communication technology and computer network technology, various intelligent electric appliances are developed gradually, and can be controlled in an external remote control mode when the intelligent electric appliances develop, and when the whole remote controller is produced and processed, a corresponding injection molding manufacturing die is needed when a shell component in the remote controller is manufactured.
The remote controller casing is one kind of common and widely used injection molding, and is one method of stirring molten plastic material at certain temperature with screw rod, injecting into mold cavity with high pressure, cooling and solidifying to obtain the molded product. The method can be suitable for mass production of parts with complex shapes, and is one of the most important methods for producing the remote controller shell.
Existing injection molds typically include a stationary mold and a movable mold that are mounted to a stationary platen and a movable platen, respectively, of an injection molding machine. The movable mould and the fixed mould are closed to form a cavity, the shape of the designed cavity is consistent with that of the remote controller shell, and the mould is opened after injection molding is completed, so that the movable mould and the fixed mould are separated, and the formed remote controller shell is taken out.
When the existing remote controller shell mould is specifically operated, the upper mould and the lower mould respectively correspond to one power source at first, when the processing is carried out, two groups of moulds form a sealing cavity under the drive of the corresponding power sources, and when the closing is carried out, the closing synchronization and the external pressure synchronization are difficult to keep, so that obvious die difference exists in a processed shell, and meanwhile, the structure cost of the unsynchronized mould structure is higher.
The utility model mainly solves the problems that when the existing remote controller shell mould is specifically operated, the closing synchronization and the external pressure synchronization are difficult to keep, so that a processed shell body has obvious die difference, and meanwhile, the unsynchronized mould structure has higher structure cost.
Disclosure of Invention
In order to solve the above technical problems, the present utility model provides a mold for manufacturing a remote control housing, so as to solve the problems described in the background art.
The utility model discloses a mould for manufacturing a remote controller shell, which is characterized by comprising the following specific technical means: the utility model provides a mould for making remote controller shell, which comprises an outer frame, the curb plate, first protecting crust, the second protecting crust, go up mould and lower mould, curb plate and outer frame fixed connection, first protecting crust and second protecting crust are fixed respectively and are set up in the front top and the bottom position of outer frame, go up mould and lower mould and set up relatively, the top fixedly connected with pneumatic cylinder of outer frame, the bottom fixedly connected with hydraulic stem of pneumatic cylinder, the inboard fixedly connected with guide bar of outer frame, the inboard embedding of outer frame is provided with first guide table, second guide table and third guide table, first guide table, second guide table and third guide table three are arranged in proper order from last to setting, the embedding is provided with first guide cylinder in first guide table, second guide cylinder and third guide cylinder in second guide table respectively, the outside fixedly connected with first butt plate of first guide table, the outside fixedly connected with second butt plate of third guide table, the surface fixedly connected with mounting panel of curb plate, the surface is provided with guide disc, the both ends swing joint has the arm of guide disc, the surface embedding of guide disc is provided with the axle body.
Further, the guide rod is integrally provided with two groups, the two groups are vertically positioned at the inner side of the outer frame, the two end positions are fixedly connected with the inner side of the outer frame, and the first guide table, the second guide table and the third guide table are respectively sleeved with the guide rod in a sliding manner through the corresponding first guide cylinder, second guide cylinder and third guide cylinder.
Further, the hydraulic cylinder and the hydraulic rod are arranged in a matched mode, and the hydraulic rod is fixedly connected with the first guide table.
Further, the spring rods are arranged in two groups, vertically penetrate through the first guide table, are connected with the second guide table at the bottom, and are sleeved with compression spring sleeves at the positions of the spring rods between the first guide table and the second guide table.
Furthermore, the first guide table and the second guide table are both arranged in a matched mode, and the third guide table is arranged independently.
Further, the guide disc is movably connected with the mounting plate through the shaft body, the connecting arms are distributed at two ends of the guide disc in a staggered mode, the guide disc is movably connected with the connecting arms through the shaft body, and the connecting arms arranged in a staggered mode are fixedly connected with the first butt joint plate and the second butt joint plate respectively.
Further, the first guide table is connected with the connecting arm through a first butt joint plate at the outer side position, and the third guide table is connected with the other group of connecting arms through a second butt joint plate at the outer side position.
Furthermore, the mounting plate, the guide plate, the connecting arm and the shaft body are arranged in a linkage matching way and distributed on the surface of the inner side plate of the outer frame, and two groups of the mounting plate, the guide plate, the connecting arm and the shaft body are arranged.
The beneficial effects are that:
1. through hydraulic stem cooperation pneumatic cylinder, reach the effect that drives the first guide table that corresponds the connection and go up and down along the guide bar, and three guide cylinder structures that three group's guide table structures correspond the setting reach the effect that keeps three group's guide table structure lifting stability when the guide table structure goes up and down along the guide bar.
2. When the first guide table is lifted, the effect of driving the second guide table to lift simultaneously according to the first guide table is achieved through the spring rod, and meanwhile, the movable compression of the spring rod is beneficial to the lamination stability between two groups of die structures.
3. When the first guide table is lifted, the connecting arm is driven to move at the moment, the guide plate is integrally rotated and adjusted by the movement of the connecting arm, the connecting arm which is arranged in a staggered mode is simultaneously self-adaptively adjusted by the rotation of the guide plate, and the effect of driving the third guide table to lift and adjust is achieved due to the fact that the other group of connecting arms are connected with the third guide table, and the upper die and the lower die are synchronously pressed under the driving of the same power source in the process.
Drawings
Fig. 1 is a front view of the overall structure of the present utility model.
Fig. 2 is a front view showing the connection of the internal structure of the outer frame of the present utility model.
Fig. 3 is a top view of the guide plate connection structure of the present utility model.
In fig. 1 to 3, the correspondence between the component names and the reference numerals is:
the device comprises a 1-outer frame, a 2-side plate, a 3-first protective shell, a 4-upper die, a 5-lower die, a 6-second protective shell, a 7-hydraulic cylinder, an 8-guide rod, a 9-hydraulic rod, a 10-first guide table, a 11-first guide cylinder, a 12-spring rod, a 13-second guide table, a 14-second guide cylinder, a 15-third guide table, a 16-third guide cylinder, a 17-mounting plate, a 18-guide disc, a 19-shaft body, a 20-connecting arm, a 21-first butt joint plate and a 22-second butt joint plate.
Description of the embodiments
The technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, but not all embodiments, and all other embodiments obtained by those skilled in the art without making any inventive effort based on the embodiments of the present utility model are within the scope of protection of the present utility model.
Examples
As shown in fig. 1 to 3:
example 1: the utility model provides a mould for making remote controller shell, including outer frame 1, curb plate 2, first protecting crust 3, second protecting crust 6, go up mould 4 and lower mould 5, curb plate 2 and outer frame 1 fixed connection, first protecting crust 3 and second protecting crust 6 are fixed respectively and are set up in the front top and the bottom position of outer frame 1, go up mould 4 and lower mould 5 and set up relatively, the top fixedly connected with pneumatic cylinder 7 of outer frame 1, the bottom fixedly connected with hydraulic stem 9 of pneumatic cylinder 7, the inboard fixedly connected with guide bar 8 of outer frame 1, the inboard embedding of outer frame 1 is provided with first guide table 10, second guide table 13 and third guide table 15, first guide table 10, second guide table 13 and third guide table 15 three are arranged in proper order from top to bottom, first guide table 10, second guide table 13 and third guide table 15 are embedded respectively and are provided with first guide cylinder 11, second guide cylinder 14 and third guide cylinder 16, the outside fixedly connected with first pair of fishplate bars 21 of first guide table 10, the outside fixedly connected with guide arm 17 of third guide table 15 has the mounting panel 18, the mounting panel 18 is connected with the both ends of the fixed surface mounting panel 18, the mounting panel is connected with surface mounting panel 18.
Wherein: the guide rods 8 are integrally provided with two groups and are vertically positioned at the inner side of the outer frame 1, the two end positions are fixedly connected with the inner side of the outer frame 1, and the first guide table 10, the second guide table 13 and the third guide table 15 are respectively in sliding sleeve joint with the guide rods 8 through corresponding first guide cylinders 11, second guide cylinders 14 and third guide cylinders 16;
wherein: the hydraulic cylinder 7 and the hydraulic rod 9 are arranged in a matched mode, and the hydraulic rod 9 is fixedly connected with the first guide table 10;
through hydraulic stem 9 cooperation pneumatic cylinder 7, reach and drive the effect that first guide table 10 that corresponds the connection goes up and down along guide bar 8, and three guide table structures of three groups correspond the three guide cylinder structures that set up, when guide table structure goes up and down along guide bar 8, reach the effect of keeping three guide table structure stability of going up and down.
Wherein: the spring rods 12 are arranged in two groups and vertically penetrate through the first guide table 10, the bottoms of the spring rods are simultaneously connected with the second guide table 13, and compression spring sleeves are sleeved at the positions of the spring rods 12 between the first guide table 10 and the second guide table 13;
when the first guide table 10 is lifted, the effect of driving the second guide table 13 to lift simultaneously according to the first guide table 10 is achieved through the spring rod 12, and meanwhile, the movable compression of the spring rod 12 is beneficial to the lamination stability between two groups of die structures.
Wherein: the first guide table 10 and the second guide table 13 are arranged in a matched mode, and the third guide table 15 is arranged independently;
wherein: the guide plate 18 is movably connected with the mounting plate 17 through the shaft body 19, the connecting arms 20 are distributed at two ends of the guide plate 18 in a staggered manner, the guide plate 18 is movably connected with the connecting arms 20 through the shaft body, and the connecting arms 20 arranged in a staggered manner are fixedly connected with the first butt joint plate 21 and the second butt joint plate 22 respectively;
wherein: the first guide table 10 is connected with the connecting arms 20 through a first butt plate 21 at an outer side position, and the third guide table 15 is connected with the other group of connecting arms 20 through a second butt plate 22 at an outer side position;
wherein: the mounting plate 17, the guide plate 18, the connecting arm 20 and the shaft body 19 are arranged in a linkage matching way and distributed on the surface position of the inner side plate 2 of the outer frame 1, and two groups are arranged;
when the first guide table 10 is lifted, the connecting arm 20 is driven to move at the moment, the guide disc 18 is integrally rotated and adjusted due to the movement of the connecting arm 20, the connecting arm 20 of the other group of dislocation sets is simultaneously self-adaptively adjusted due to the rotation of the guide disc 18, and the effect of lifting and adjusting the third guide table 15 is achieved due to the fact that the other group of connecting arms 20 are connected with the third guide table 15, and the upper die 4 and the lower die 5 are synchronously pressed under the driving of the same power source in the process.

Claims (8)

1. A mold for manufacturing a remote control housing, characterized in that: including outer frame (1), curb plate (2), first protecting crust (3), second protecting crust (6), go up mould (4) and lower mould (5), curb plate (2) and outer frame (1) fixed connection, first protecting crust (3) and second protecting crust (6) are fixed respectively and are set up in the front top and the bottom position of outer frame (1), go up mould (4) and lower mould (5) and set up relatively, the top fixedly connected with pneumatic cylinder (7) of outer frame (1), the bottom fixedly connected with hydraulic stem (9) of pneumatic cylinder (7), the inboard fixedly connected with guide bar (8) of outer frame (1), the inboard embedding of outer frame (1) is provided with first guide table (10), second guide table (13) and third guide table (15), first guide table (10), second guide table (13) and third guide table (15) three are arranged from last to arranging down, first guide cylinder (11) are set up in first guide table (13) and third guide table (15) respectively, second guide cylinder (14) and third guide cylinder (15) are connected with first guide cylinder (22) and third guide plate (22) are connected with the outside of first guide cylinder (16) in proper order, the surface of the side plate (2) is fixedly connected with a mounting plate (17), the surface of the mounting plate (17) is provided with a guide disc (18), two ends of the guide disc (18) are movably connected with connecting arms (20), and the surface of the guide disc (18) is embedded with a shaft body (19).
2. The mold for manufacturing a remote controller case according to claim 1, wherein: the guide rods (8) are integrally arranged in two groups and vertically positioned at the inner side of the outer frame (1), the two end positions are fixedly connected with the inner side of the outer frame (1), and the first guide table (10), the second guide table (13) and the third guide table (15) are respectively sleeved with the guide rods (8) in a sliding manner through the corresponding first guide cylinder (11), second guide cylinder (14) and third guide cylinder (16).
3. The mold for manufacturing a remote controller case according to claim 1, wherein: the hydraulic cylinder (7) and the hydraulic rod (9) are arranged in a matched mode, and the hydraulic rod (9) is fixedly connected with the first guide table (10).
4. The mold for manufacturing a remote controller case according to claim 1, wherein: the spring rods (12) are arranged in two groups, vertically penetrate through the first guide table (10) and are simultaneously connected with the second guide table (13) at the bottom, and compression spring sleeves are sleeved at the positions of the spring rods (12) between the first guide table (10) and the second guide table (13).
5. The mold for manufacturing a remote controller case according to claim 1, wherein: the first guide table (10) and the second guide table (13) are arranged in a matched mode, and the third guide table (15) is arranged independently.
6. The mold for manufacturing a remote controller case according to claim 1, wherein: the guide plate (18) is movably connected with the mounting plate (17) through the shaft body (19), the connecting arms (20) are distributed at two ends of the guide plate (18) in a staggered mode, the guide plate (18) is movably connected with each other through the shaft body, and the connecting arms (20) which are arranged in a staggered mode are fixedly connected with the first butt joint plate (21) and the second butt joint plate (22) respectively.
7. The mold for manufacturing a remote controller case according to claim 5, wherein: the first guide table (10) is connected with the connecting arms (20) through a first butt joint plate (21) at the outer side position, and the third guide table (15) is connected with the other group of connecting arms (20) through a second butt joint plate (22) at the outer side position.
8. The mold for manufacturing a remote controller case according to claim 1, wherein: the mounting plate (17), the guide plate (18), the connecting arm (20) and the shaft body (19) are arranged in a linkage matching way and distributed on the surface position of the inner side plate (2) of the outer frame (1), and two groups of the connecting arms are arranged.
CN202321031688.0U 2023-05-04 2023-05-04 A mould for making remote controller shell Active CN220409479U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321031688.0U CN220409479U (en) 2023-05-04 2023-05-04 A mould for making remote controller shell

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321031688.0U CN220409479U (en) 2023-05-04 2023-05-04 A mould for making remote controller shell

Publications (1)

Publication Number Publication Date
CN220409479U true CN220409479U (en) 2024-01-30

Family

ID=89644412

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321031688.0U Active CN220409479U (en) 2023-05-04 2023-05-04 A mould for making remote controller shell

Country Status (1)

Country Link
CN (1) CN220409479U (en)

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