CN212385872U - Foil scrap removing mechanism of automatic feeding, trimming and water gap shearing machine for in-mold decoration injection molding parts - Google Patents

Foil scrap removing mechanism of automatic feeding, trimming and water gap shearing machine for in-mold decoration injection molding parts Download PDF

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Publication number
CN212385872U
CN212385872U CN202021990013.5U CN202021990013U CN212385872U CN 212385872 U CN212385872 U CN 212385872U CN 202021990013 U CN202021990013 U CN 202021990013U CN 212385872 U CN212385872 U CN 212385872U
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driving module
linear driving
module
trimming
automatic feeding
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CN202021990013.5U
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Chinese (zh)
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璧靛嘲
赵峰
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Alma Technology Co.,Ltd.
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Dongguan Imr Technology Co ltd
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Abstract

The utility model discloses a foil scrap removing mechanism of an automatic feeding, trimming and water shearing machine for in-mold decoration injection molding parts, which comprises a frame, a feeding module, a blanking module, a third portal frame, a fourth linear driving module, a slide rail, a fifth linear driving module, a sixth linear driving module, a motor fixing seat, a driving motor, a brush wheel, a second static pressure blowing device, a supporting platform, a clamping cylinder and a second scrap collecting box; the brush wheel is of a ventilating structure full of ventilating holes; outside getter device of inside intercommunication of second sweeps collecting box, the utility model discloses a plastic shell automatic feeding, automatic remove the foil scrap and the complete function of automatic unloading, it has the advantage that degree of automation is high, when having improved the production efficiency of product, has still guaranteed the production quality of product.

Description

Foil scrap removing mechanism of automatic feeding, trimming and water gap shearing machine for in-mold decoration injection molding parts
Technical Field
The utility model relates to an automated processing field of plastic part especially relates to a mouth of a river machine's that removes paper tinsel bits mechanism is cut in interior decoration injection molding automatic feeding deburring of mould.
Background
There are many products that require higher to the outward appearance in the market, especially domestic appliance, like intelligent sweeper, the appearance profile limit after its shell injection moulding is all comparatively crude, because the precision of moulding plastics is general relatively poor for shell assembly precision electricity is very poor, the problem of often appearing interfering or cutting one's hand after the assembly, the outward appearance of the product of serious influence, consequently the shell all often need carry out secondary operation, the profile limit of plastic shell needs the deburring promptly, if have higher requirement to the outward appearance after finishing, then still need carry out the secondary finishing processing that removes the paper tinsel bits to the appearance profile. In the prior art, most of the manual trimming and foil scrap removing operations are performed by manual operation, and the manual foil scrap removing operation has the technical problems of poor trimming quality, low trimming efficiency and unstable trimming qualification rate.
SUMMERY OF THE UTILITY MODEL
The utility model discloses an above-mentioned defect among the prior art is overcome in daily, provides a mould interior decoration injection molding automatic feeding deburring is cut mouth of a river machine remove paper tinsel bits mechanism, and it can carry out the automation to the plastic shell and remove paper tinsel bits operation, improves the production efficiency of product, guarantees the production quality of product.
To achieve the above, the present invention provides a foil scrap removing mechanism for an in-mold decoration injection molding automatic feeding, trimming and water gap shearing machine, comprising a frame, a feeding module, a discharging module, a third portal frame and a fourth portal frame which are respectively arranged on the frame, a fourth linear driving module arranged on the third portal frame, a slide rail arranged on the fourth portal frame, a fifth linear driving module which is connected with the fourth linear driving module in a transmission way and is connected with the slide rail in a sliding way, a sixth linear driving module which is arranged on the fifth linear driving module in a transmission way and is longitudinally arranged, a motor fixing seat which is arranged on the sixth linear driving module in a transmission way, a driving motor arranged on the motor fixing seat, a brush wheel arranged on an output shaft of the driving motor, a second static pressure blowing device arranged above the driving motor, and a support platform arranged on the frame, the clamping cylinder is arranged on the supporting platform, and the second scrap collecting box is arranged below the supporting platform; the brush wheel is of a ventilating structure full of ventilating holes; the inside of the second scrap collecting box is communicated with an external air suction device; the feeding module and the discharging module respectively comprise a seventh linear driving module arranged on the rack and a material taking assembly in transmission connection with the seventh linear driving module; get the material subassembly and include the actuating cylinder that drives who is connected with the transmission of seventh straight line drive module, with the keysets that drives actuating cylinder transmission and be connected, install at least one sucking disc fixed block at keysets one side fixed connection, install at least one sucking disc on the sucking disc fixed block, be provided with first waist type hole on the keysets, be provided with second waist type hole on the sucking disc fixed block, the length direction in first waist type hole is mutually perpendicular with the length direction in second waist type hole, the sucking disc is fixed at the second waist type downthehole.
Preferably, the fourth linear driving module, the fifth linear driving module, the sixth linear driving module and the seventh linear driving module are all screw rod transmission linear modules, synchronous belt transmission linear modules or linear motor modules.
Preferably, the supporting platform comprises a bottom plate fixedly connected to the frame, supporting columns fixedly connected to the periphery of the top of the bottom plate, a cylinder mounting plate fixedly connected to the top of the supporting columns, a first supporting block arranged on one side of the cylinder mounting plate and a second supporting block arranged on the other side of the cylinder mounting plate, and the clamping cylinder is arranged on the cylinder mounting plate and located between the first supporting block and the second supporting block.
Preferably, two fixedly connected sucker fixing blocks are arranged on one side of the adapter plate.
Preferably, two suckers are arranged on the sucker fixing block.
Preferably, the third straight-line driving device further comprises a fourth drag chain arranged on one side of the fourth straight-line driving module, one end of the fourth drag chain is fixedly connected with the third portal frame, and the other end of the fourth drag chain is fixedly connected with the fifth straight-line driving module.
Preferably, the drag chain device further comprises a fifth drag chain arranged on one side of the fifth linear driving module, one end of the fifth drag chain is relatively fixed with the fifth linear driving module, and the other end of the fifth drag chain is relatively fixed with the sixth linear driving module.
Preferably, the feeding module and the discharging module further comprise a seventh drag chain arranged on the seventh linear driving module, one end of the seventh drag chain is fixedly connected with the frame, and the other end of the seventh drag chain is relatively fixed with the driving cylinder.
Compared with the prior art, the beneficial effects of the utility model reside in that:
during operation, the material taking assembly on the material feeding module absorbs the plastic shell, then the seventh linear driving module on the material feeding module drives the material taking assembly to move right above the supporting platform, then the driving cylinder on the material taking assembly drives the sucker to descend and place the plastic shell on the supporting platform, then the fourth linear driving module, the fifth linear driving module and the sixth linear driving module are linked to drive the brush wheel on the driving motor to move along the outline of the plastic shell, and meanwhile, the driving motor drives the brush wheel to rotate, so that automatic foil scrap removing operation is performed, gas is pumped into the brush wheel with a ventilating structure during operation, waste scraps discharged from the scraps can be synchronously and directionally blown away by the gas, the appearance of the plastic shell cannot be damaged by the waste scraps, and the requirement of a product on the appearance is met, in addition, the second static pressure blowing device continuously blows air to the plastic shell product, so that the scraps from the scraps can be ensured to fall into the second scrap collecting box, the second scrap collecting box is communicated with an external air suction device, the scraps can be automatically collected to the outside, and the influence of the accumulation of the scraps on the movement stability of the mechanism is avoided; treat to remove the back that the operation of paper tinsel bits is accomplished, drive actuating cylinder drive sucking disc on the unloading module descends and absorb the plastic shell, then the plastic shell that seventh linear drive module drive on the unloading module got on the material subassembly leaves, the utility model discloses a plastic shell automatic feeding, automatic remove paper tinsel bits and the complete function of automatic unloading, it has the advantage that degree of automation is high, when having improved the production efficiency of product, has still guaranteed the production quality of product.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a schematic structural view of a foil scrap removing mechanism of an in-mold decoration injection molding automatic feeding, trimming and water gap shearing machine provided by the utility model;
FIG. 2 is an enlarged view of a portion of FIG. 1 at A;
fig. 3 is a partially enlarged view at B in fig. 1.
Detailed Description
In order to make the embodiments of the present invention, technical solutions and advantages clearer, the drawings in the embodiments of the present invention are combined below to clearly and completely describe the technical solutions in the embodiments of the present invention, and obviously, the described embodiments are some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
As shown in FIGS. 1 and 2, the present invention provides a foil scrap removing mechanism for an automatic feeding, trimming and water cutting machine of an in-mold decoration injection molding part, which comprises a frame 10, a feeding module 31, a discharging module 32, a third portal frame 33 and a fourth portal frame 34 which are respectively arranged on the frame 10, a fourth linear driving module 35 arranged on the third portal frame 33, a slide rail 36 arranged on the fourth portal frame 34, a fifth linear driving module 37 connected with the fourth linear driving module 35 in a transmission manner and slidably connected with the slide rail 36, a sixth linear driving module 38 arranged on the fifth linear driving module 37 in a transmission manner and longitudinally arranged, a motor fixing seat 39 arranged on the sixth linear driving module 38 in a transmission manner, a driving motor 40 arranged on the motor fixing seat 39, a brush wheel 41 arranged on an output shaft of the driving motor 40, a second static pressure air blowing device 42 arranged above the driving motor 40, a support platform 43 mounted on the frame 10, a clamping cylinder 44 mounted on the support platform 43, and a second scrap collecting box 45 mounted below the support platform 43.
Wherein the brush wheel 41 is a ventilation structure with ventilation holes; wherein the interior of the second scrap collecting box 45 is communicated with an external suction device.
The feeding module 31 and the discharging module 32 both comprise a seventh linear driving module 311 mounted on the frame 10, and a material taking assembly 312 in transmission connection with the seventh linear driving module 311; the material taking assembly 312 comprises a driving cylinder 3121 in transmission connection with the seventh linear driving module 311, an adapter plate 3122 in transmission connection with the driving cylinder 3121, at least one suction cup fixing block 3123 installed on one side of the adapter plate 3122 in fixed connection, and at least one suction cup 3124 installed on the suction cup fixing block 3123, the adapter plate 3122 is provided with a first waist-shaped hole 31221, the suction cup fixing block 3123 is provided with a second waist-shaped hole 31222, the length direction of the first waist-shaped hole 31221 is perpendicular to the length direction of the second waist-shaped hole 31222, and the suction cup 3124 is fixed in the second waist-shaped hole 31222. Specifically, in this embodiment, two fixed suction cup fixing blocks 3123 are installed at one side of the transfer plate 3122. In this embodiment, two suckers 3124 are installed on the sucker fixing block 3123. Use the screw to pass first waist type hole 31221 and can be with adapter plate 3122 and sucking disc fixed block 3123 fixed connection, through set up first waist type hole 31221 on adapter plate 3122, make it to be convenient for adjust sucking disc fixed block 3123Y axial position on adapter plate 3122, thereby be convenient for adjust sucking disc 3124Y axial relative position on frame 10, through be provided with second waist type hole 31222 on sucking disc fixed block 3123, make it to be convenient for adjust sucking disc 3124X axial relative position on frame 10, material loading module 31 and unloading module 32 of above structure are adopted, make sucking disc 3124 on material loading module 31 and the unloading module 32 all have the convenient advantage of regulation, make material loading module 31 and unloading module 32 can compatible many sizes of plastic shell's the operation of getting the material, the advantage that has the compatibility, satisfy the demand of customer to low in production cost.
During operation, the material taking component 312 on the material feeding module 31 sucks the plastic casing 101, then the seventh linear driving module 311 on the material feeding module 31 drives the material taking component 312 to move right above the supporting platform 43, then the driving cylinder 3121 on the material taking component 312 drives the suction cup 3124 to descend and place the plastic casing 101 on the supporting platform 43, then the brush wheel 41 on the driving motor 40 is driven to move along the outline of the plastic casing 101 through the linkage of the fourth linear driving module 35, the fifth linear driving module 37 and the sixth linear driving module 38, meanwhile the driving motor 40 drives the brush wheel 41 to rotate, so as to perform automatic chip removing operation, in the operation process, gas is pumped into the inside of the brush wheel 41 with a gas permeable structure, so that the chips discharged from the gas can be synchronously and directionally blown away, and the appearance of the plastic casing 101 cannot be damaged by the chips, the requirement of the product on the appearance is met, in addition, the second static pressure blowing device 42 continuously blows air to the plastic shell 101 product, the situation that the scraps discharged from the scraps can fall into the second scrap collecting box 45 is ensured, the second scrap collecting box 45 is communicated with an external air suction device, the scraps can be automatically collected to the outside, and the phenomenon that the scraps are accumulated to influence the stability of the mechanism movement is avoided; treat to remove the back that the operation of paper tinsel bits is accomplished, drive actuating cylinder 3121 drive sucking disc 3124 on the unloading module 32 descends and absorb plastic shell 101, then the seventh linear drive module 311 drive on the unloading module 32 gets plastic shell 101 on the material subassembly 312 and leaves, the utility model discloses a plastic shell 101 automatic feeding, automatic remove paper tinsel bits and the complete function of automatic unloading, it has the advantage that degree of automation is high, when having improved the production efficiency of product, has still guaranteed the production quality of product.
In this embodiment, the fourth linear driving module 35, the fifth linear driving module 37, the sixth linear driving module 38, and the seventh linear driving module 311 are all screw rod transmission linear modules, synchronous belt transmission linear modules, or linear motor modules.
In this embodiment, as shown in fig. 3, the supporting platform 43 includes a bottom plate 431 fixedly connected to the frame 10, a supporting column 432 fixedly connected to the periphery of the bottom plate 431, a cylinder mounting plate 433 fixedly connected to the top of the supporting column 432, a first supporting block 434 mounted on one side of the cylinder mounting plate 433, and a second supporting block 435 mounted on the other side of the cylinder mounting plate 433, and the clamping cylinder 44 is mounted on the cylinder mounting plate 433 and located between the first supporting block 434 and the second supporting block 435. The supporting platform 43 with the above structural design has the advantages of simple structure, compactness, reasonableness, convenience in assembly and lower cost.
In this embodiment, the present invention further includes a fourth drag chain 46 installed at one side of the fourth linear driving module 35, a fifth drag chain 47 installed at one side of the fifth linear driving module 37, and a seventh drag chain 313 installed at the seventh linear driving module 311. One end of the fourth drag chain 46 is fixedly connected with the third portal frame 33, and the other end of the fourth drag chain 46 is fixedly connected with the fifth linear driving module 37. One end of the fifth drag chain 47 is fixed to the fifth linear driving module 37, and the other end of the fifth drag chain 47 is fixed to the sixth linear driving module 38. One end of the seventh drag chain 313 is fixedly connected with the frame 10, and the other end of the seventh drag chain 313 is fixed opposite to the driving cylinder 3121. Through setting up this fourth tow chain 46, fifth tow chain 47 and seventh tow chain 313 for fourth linear drive module 35, fifth linear drive module 37 and seventh linear drive module 311 can play good guard action to the cable when the drive, guarantee the stability of mechanism's operation.
The above embodiments are preferred embodiments of the present invention, but the embodiments of the present invention are not limited to the above embodiments, and any other changes, modifications, substitutions, combinations, and simplifications which do not depart from the spirit and principle of the present invention should be equivalent replacement modes, and all are included in the scope of the present invention.

Claims (8)

1. A foil scrap removing mechanism of an automatic feeding, trimming and water gap shearing machine for in-mold decoration injection molded parts comprises a rack (10) and is characterized by further comprising a feeding module (31), a blanking module (32), a third portal frame (33) and a fourth portal frame (34) which are respectively arranged on the rack (10), a fourth linear driving module (35) arranged on the third portal frame (33), a sliding rail (36) arranged on the fourth portal frame (34), a fifth linear driving module (37) which is in transmission connection with the fourth linear driving module (35) and is in sliding connection with the sliding rail (36), a sixth linear driving module (38) which is arranged on the fifth linear driving module (37) in transmission connection and is longitudinally arranged, a motor fixing seat (39) which is arranged on the sixth linear driving module (38) in transmission connection, and a driving motor (40) arranged on the motor fixing seat (39), a brush wheel (41) arranged on an output shaft of the driving motor (40), a second static pressure blowing device (42) arranged above the driving motor (40), a supporting platform (43) arranged on the frame (10), a clamping cylinder (44) arranged on the supporting platform (43), and a second scrap collecting box (45) arranged below the supporting platform (43);
the brush wheel (41) is a ventilating structure full of ventilating holes; the interior of the second scrap collecting box (45) is communicated with an external air suction device;
the feeding module (31) and the blanking module (32) both comprise a seventh linear driving module (311) arranged on the rack (10) and a material taking assembly (312) in transmission connection with the seventh linear driving module (311); the material taking assembly (312) comprises a driving cylinder (3121) in transmission connection with a seventh linear driving module (311), a transfer plate (3122) in transmission connection with the driving cylinder (3121), at least one sucker fixing block (3123) installed on one side of the transfer plate (3122) in fixed connection, and at least one sucker (3124) installed on the sucker fixing block (3123), wherein a first waist-shaped hole (31221) is formed in the transfer plate (3122), a second waist-shaped hole (31222) is formed in the sucker fixing block (3123), the length direction of the first waist-shaped hole (31221) is perpendicular to the length direction of the second waist-shaped hole (31222), and the sucker (3124) is fixed in the second waist-shaped hole (31222).
2. The foil scrap removing mechanism of the automatic feeding, trimming and water shearing machine for the in-mold decoration injection molded parts as claimed in claim 1, wherein the fourth linear driving module (35), the fifth linear driving module (37), the sixth linear driving module (38) and the seventh linear driving module (311) are all screw rod transmission linear modules, synchronous belt transmission linear modules or linear motor modules.
3. The foil scrap removing mechanism of the automatic feeding, trimming and water shearing machine for the in-mold decoration injection molding parts as claimed in claim 1, wherein the supporting platform (43) comprises a base plate (431) fixedly connected to the frame (10), a supporting column (432) fixedly connected to the periphery of the base plate (431), a cylinder mounting plate (433) fixedly connected to the upper side of the supporting column (432), a first supporting block (434) mounted on one side of the cylinder mounting plate (433), and a second supporting block (435) mounted on the other side of the cylinder mounting plate (433), and the clamping cylinder (44) is mounted on the cylinder mounting plate (433) and located between the first supporting block (434) and the second supporting block (435).
4. The foil scrap removing mechanism of the automatic feeding, trimming and water shearing machine for the in-mold decoration injection molded parts as claimed in claim 1, wherein one side of the adapter plate (3122) is provided with two fixedly connected sucking disc fixing blocks (3123).
5. The foil scrap removing mechanism of the automatic feeding, trimming and water shearing machine for the in-mold decoration injection molding parts according to claim 1, wherein two suction cups (3124) are installed on the suction cup fixing block (3123).
6. The foil scrap removing mechanism of the automatic feeding, trimming and water shearing machine for the in-mold decoration injection molded parts is characterized by further comprising a fourth drag chain (46) arranged on one side of a fourth linear driving module (35), wherein one end of the fourth drag chain (46) is fixedly connected with a third portal frame (33), and the other end of the fourth drag chain (46) is fixedly connected with a fifth linear driving module (37).
7. The foil scrap removing mechanism of the automatic feeding, trimming and water shearing machine for the in-mold decoration injection molded parts is characterized by further comprising a fifth drag chain (47) arranged on one side of a fifth linear driving module (37), wherein one end of the fifth drag chain (47) is fixed relative to the fifth linear driving module (37), and the other end of the fifth drag chain (47) is fixed relative to a sixth linear driving module (38).
8. The foil scrap removing mechanism of the automatic feeding, trimming and water shearing machine for the in-mold decoration injection molded parts as claimed in claim 1, wherein the feeding module (31) and the discharging module (32) each further comprise a seventh drag chain (313) mounted on a seventh linear driving module (311), one end of the seventh drag chain (313) is fixedly connected with the frame (10), and the other end of the seventh drag chain (313) is relatively fixed with the driving cylinder (3121).
CN202021990013.5U 2020-09-11 2020-09-11 Foil scrap removing mechanism of automatic feeding, trimming and water gap shearing machine for in-mold decoration injection molding parts Active CN212385872U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021990013.5U CN212385872U (en) 2020-09-11 2020-09-11 Foil scrap removing mechanism of automatic feeding, trimming and water gap shearing machine for in-mold decoration injection molding parts

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021990013.5U CN212385872U (en) 2020-09-11 2020-09-11 Foil scrap removing mechanism of automatic feeding, trimming and water gap shearing machine for in-mold decoration injection molding parts

Publications (1)

Publication Number Publication Date
CN212385872U true CN212385872U (en) 2021-01-22

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Address after: 523000 No. 5, Guang'an Road, Chang'an Town, Dongguan City, Guangdong Province

Patentee after: Alma Technology Co.,Ltd.

Address before: Building zc04, Zhenan science and Technology Park, 9 Zhenan West Road, Chang'an Town, Dongguan City, Guangdong Province, 523000

Patentee before: DONGGUAN IMR TECHNOLOGY Co.,Ltd.