CN109849316B - Plastic surface embossing equipment - Google Patents

Plastic surface embossing equipment Download PDF

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Publication number
CN109849316B
CN109849316B CN201910253465.0A CN201910253465A CN109849316B CN 109849316 B CN109849316 B CN 109849316B CN 201910253465 A CN201910253465 A CN 201910253465A CN 109849316 B CN109849316 B CN 109849316B
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China
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embossing
transposition
cavity
clamping
shaft
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CN109849316A (en
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许锡娥
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Tongxiang Zhimeng Intellectual Property Operation Co ltd
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Zhejiang Maizhi Network Technology Co ltd
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Abstract

The invention discloses plastic surface embossing equipment which comprises a wall body and an embossing device arranged in the wall body, wherein the embossing device comprises an embossing cavity arranged in the wall body, a sector gear is arranged in the embossing cavity, an embossing block matched with a gear rack of the sector gear is arranged in the embossing cavity, and when the sector gear rotates, the gear rack moves to drive the embossing block to move up and down to emboss a washbasin; this device mechanism is simple, and is simple and convenient to use, can emboss the washbasin through the rack and pinion cooperation to the washbasin that needs the knurling is heated through the effect of hinge bar, very big increase the convenience to the washbasin knurling, can be automatic break away from and cool down heating mechanism when the high temperature, very big reduction the damage of heating time overlength to the plastics washbasin, and can be automatic take out the washbasin that finishes the knurling, very big increase the security of washbasin knurling.

Description

Plastic surface embossing equipment
Technical Field
The invention relates to the technical field of industry, in particular to a plastic surface embossing device.
Background
At present to the heating knurling in-process of washbasin, can not realize washbasin self-heating and knurling, the convenience is lower, and can not the complete control heated temperature, appears the washbasin superheating that needs the knurling easily and makes the condition that the washbasin warp, takes out the washbasin that finishes with embossing just moreover and has great danger, has great drawback, needs the improvement.
Disclosure of Invention
Aiming at the defects of the technology, the invention provides a plastic surface embossing device.
The invention relates to plastic surface embossing equipment which comprises a wall body and an embossing device arranged in the wall body, wherein the embossing device comprises an embossing cavity arranged in the wall body, a sector gear is arranged in the embossing cavity, an embossing block matched with a gear rack of the sector gear is arranged in the embossing cavity, and when the sector gear rotates, the gear rack moves to drive the embossing block to move up and down to emboss a washbasin;
the washbasin embossing device comprises a wall body, and is characterized by further comprising a transposition device matched with the embossing device, wherein the transposition device comprises a heating cavity arranged in the wall body, a transposition shaft is arranged in the heating cavity, a transposition rod is arranged on the transposition shaft, a clamping rod is arranged in the embossing cavity, when the embossing device finishes embossing, the clamping rod clamps the embossed washbasin and takes out the embossed washbasin, and the transposition rod rotates to enable the washbasin which is not embossed to rotate to a position matched with the embossing block;
the heating device comprises a heating block arranged in the heating cavity, the heating block is electrified to heat the washbasin to be embossed, and the washbasin is matched with the embossing device after being transposed by the transposition device;
in addition, the washbasin comprises a transmission device arranged in the wall body, the transmission device comprises a motor arranged in the embossing cavity, a transposition transmission shaft in power connection with the motor is arranged in the embossing cavity, the transposition transmission shaft drives the sector gear to rotate through belt and gear transmission, the sector gear drives the embossing block to emboss, the transposition transmission shaft drives a transposition shaft to rotate through belt transmission, and the transposition shaft drives the heated washbasin to rotate to a position where the washbasin can be matched with the embossing shaft.
Preferably, the embossing device comprises an embossing cavity arranged in the wall body, the back wall of the embossing cavity is rotatably provided with an embossing transmission shaft, an embossing transmission bevel gear positioned on the embossing cavity is fixedly arranged in the embossing cavity, the sector gear is arranged at the front end of the embossing transmission shaft, the back wall of the embossing cavity is provided with an embossing rod chute, a rack connecting rod is arranged in the embossing rod chute in a sliding way, a descending rack which is positioned at the right end of the rack connecting rod and can be matched with the gear teeth of the sector gear is fixedly arranged in the embossing cavity, an ascending rack which is positioned at the left end of the rack connecting rod and can be matched with the gear teeth of the sector gear is fixedly arranged in the embossing cavity, the lower end of the rack connecting rod is connected with the top end of the embossing block, the back wall of the embossing cavity is rotationally provided with a clamping driving shaft, and a clamping driving gear which is positioned on the clamping driving shaft and is matched with the descending rack gear and the descending rack is fixedly arranged in the embossing cavity.
Preferably, the transposition device comprises a transposition cavity arranged on the right side of the embossing cavity, a clamping transmission shaft connected with a clamping driving shaft belt is arranged on the rear wall of the transposition cavity in a rotating mode, a clamping first bevel gear positioned on the clamping transmission shaft is fixedly arranged in the transposition cavity, a clamping driving rod is hinged to the front end face of the clamping first bevel gear in a hinged mode, a clamping transmission rod is hinged to the front end face of the clamping driving rod in a hinged mode, a clamping transmission shaft is arranged on the bottom wall of the transposition cavity in a rotating mode, a clamping second bevel gear positioned at the upper end of the clamping transmission shaft and meshed with the clamping first bevel gear in a fixed mode, a clamping third gear positioned on the clamping transmission shaft is fixedly arranged in the transposition cavity, a clamping gear shaft sliding groove is arranged on the bottom wall of the transposition cavity, a clamping gear shaft bearing block is slidably arranged in the clamping gear shaft sliding groove, and a clamp fixedly connected with the right wall of the clamping gear shaft sliding groove is fixedly arranged on the right end face of the clamping gear shaft bearing block A clamping gear shaft is rotatably arranged in the clamping gear shaft bearing block, a torsion spring positioned on the clamping gear shaft is fixedly arranged in the transposition cavity, a rotating sleeve positioned at the upper end of the clamping gear shaft and hinged with the clamping transmission rod is rotatably arranged in the transposition cavity, a clamping rod sector gear positioned on the clamping gear shaft and meshed with the clamping third gear is fixedly arranged in the transposition cavity, and the right end of the clamping rod extends into the transposition cavity and is connected with the left end of the clamping rod sector gear;
wherein, the heating chamber roof rotates and is equipped with the transposition axle, it is located to fix being equipped with in the heating chamber the epaxial transposition axle drive gear that replaces, it is in to fix being equipped with even subsection in the heating chamber the pole that replaces of transposition axle surface, it is located to fix being equipped with in the heating chamber the vent on the pole that replaces.
Preferably, the heating device comprises a heating block chute arranged on the rear wall of the heating cavity, a heating rod is arranged in the heating block chute in a sliding manner, a heating block spring rod is arranged at the lower end of the heating rod, a heating block supporting spring fixedly connected with the top wall of the heating block spring rod is fixedly arranged in the heating block spring rod, a heating block is fixedly arranged at the lower end of the heating block spring rod, an embossing washbasin positioned on the upper end surface of the transposition rod is placed in the heating cavity, a heating cavity matched with the embossing rod is arranged on the lower end surface of the heating block, a hydraulic cavity is arranged in the washbasin inner wall of the heating cavity, a temperature control rod which extends upwards into the heating cavity and can be matched with the heating cavity is fixedly arranged in the hydraulic cavity, and a separation piston which extends upwards into the heating cavity and is fixedly connected with the upper end surface of the heating block is arranged in the hydraulic cavity in a sliding manner, the heating intracavity be equipped with separation piston articulated lever, the heating chamber diapire rotates and is equipped with the cooling impeller axle, the fixed being equipped with in the heating chamber is located the cooling impeller of cooling impeller epaxial end, the heating chamber diapire slide be equipped with can with cooling impeller axle complex belt sleeve, belt sleeve with press from both sides tight transmission shaft and pass through the cooling belt and connect, the fixed being equipped with in the heating chamber is located the taut spout of cooling belt on the belt sleeve, the fixed taut hinge bar spout that is equipped with of heating chamber diapire, slide in the taut hinge bar spout be equipped with the lever is articulated and with the taut hinge bar of the taut spout sliding connection of cooling belt, the fixed being equipped with of taut hinge bar spout right side wall with taut hinge bar right-hand member face fixed connection's taut hinge bar return spring.
Preferably, the transmission device comprises an embossing shaft rotatably arranged on the top wall of the embossing cavity, an embossing drive bevel gear which is positioned at the lower end of the embossing shaft and is meshed with the embossing drive bevel gear is fixedly arranged in the embossing cavity, a transposition drive shaft sliding chute is arranged on the top wall of the heating cavity, a transposition drive shaft bearing block is slidably arranged in the transposition drive shaft sliding chute, a transposition drive shaft return spring fixedly connected with the left wall of the transposition drive shaft sliding chute is fixedly arranged on the left wall of the transposition drive shaft bearing block, a transposition drive shaft is rotatably arranged in the transposition drive shaft bearing block, the lower end of the transposition drive shaft is hinged with the heating rod, a transposition drive gear which can be meshed with the transposition drive gear is arranged on the transposition drive shaft, the transposition drive gear is connected with the embossing shaft through a transposition belt, a motor slide block groove is arranged on the top wall of the embossing cavity, and a motor slide block is slidably arranged in the motor slide groove, the motor slider right-hand member face be fixed be equipped with motor slider return spring of motor slider groove right side wall fixed connection, the motor slider is equipped with the motor, motor power is connected with transposition transmission shaft, transposition transmission shaft lower extreme with down the rack is articulated and with the knurling axle passes through the transposition belt is connected.
To sum up, this device mechanism is simple, and is easy and simple to handle, can emboss the washbasin through the rack and pinion cooperation to the washbasin that needs the knurling heats through the effect of hinge bar, very big increase the convenience to the washbasin knurling, can be automatic break away from and cool down heating mechanism when the high temperature, very big reduction the damage of heating time overlength to the plastics washbasin, and can be automatic take out the washbasin that finishes with the knurling, very big increase the security that the washbasin was embossed.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings 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 only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.
FIG. 1 is a schematic view of the overall structure of a plastic surface embossing apparatus of the present invention;
FIG. 2 is a schematic view of the structure at A in FIG. 1;
FIG. 3 is a schematic view of the structure at B-B in FIG. 1;
FIG. 4 is a schematic view of the structure at C-C in FIG. 1.
Detailed Description
All of the features disclosed in this specification, or all of the steps in any method or process so disclosed, may be combined in any combination, except combinations of features and/or steps that are mutually exclusive.
Any feature disclosed in this specification (including any accompanying claims, abstract and drawings), may be replaced by alternative features serving equivalent or similar purposes, unless expressly stated otherwise. That is, unless expressly stated otherwise, each feature is only an example of a generic series of equivalent or similar features.
As shown in fig. 1-4, the device of the present invention is a plastic surface embossing apparatus, comprising a wall 10 and an embossing device disposed in the wall 10, wherein the embossing device includes an embossing cavity 23 disposed in the wall 10, a sector gear 58 is disposed in the embossing cavity 23, an embossing block 38 engaged with a rack and pinion of the sector gear 58 is disposed in the embossing cavity 23, and when the sector gear 58 rotates, the rack and pinion moves to drive the embossing block 38 to move up and down, so as to emboss a washbasin;
the washbasin embossing device comprises a wall body 10, and is characterized by further comprising a transposition device matched with the embossing device, wherein the transposition device comprises a heating cavity 18 arranged in the wall body 10, a transposition shaft 15 is arranged in the heating cavity 18, a transposition rod 41 is arranged on the transposition shaft 15, a clamping rod 39 is arranged in the embossing cavity 23, when the embossing device finishes embossing, the clamping rod 39 clamps and takes out an embossed washbasin, and the transposition rod 41 rotates to rotate the washbasin which is not embossed to a position matched with the embossing block 38;
the heating device is arranged in the wall body 10 and comprises a heating block 56 arranged in the heating cavity 18, the heating block 56 is electrified to heat the washbasin to be embossed, and the washbasin is matched with the embossing device after being transposed by the transposition device;
in addition, the washbasin further comprises a transmission device arranged in the wall body 10, the transmission device comprises a motor 22 arranged in the embossing cavity 23, a transposition transmission shaft 24 in power connection with the motor 22 is arranged in the embossing cavity 23, the transposition transmission shaft 24 drives the sector gear 58 to rotate through belt and gear transmission, the sector gear 58 drives the embossing block 38 to emboss, the transposition transmission shaft 24 drives the transposition shaft 15 to rotate through a belt, and the transposition shaft drives the heated washbasin shaft to rotate to a position where the washbasin shaft 38 can be matched.
Advantageously, the embossing device comprises an embossing cavity 23 arranged in the wall body 10, an embossing transmission shaft 28 is rotatably arranged on the rear wall of the embossing cavity 23, an embossing transmission bevel gear 19 positioned on the embossing cavity 23 is fixedly arranged in the embossing cavity 23, the sector gear 58 is arranged at the front end of the embossing transmission shaft 28, an embossing rod chute 37 is arranged on the rear wall of the embossing cavity 23, a rack connecting rod 36 is slidably arranged in the embossing rod chute 37, a down rack 32 positioned at the right end of the rack connecting rod 36 and capable of being in rack and pinion fit with the sector gear 58 is fixedly arranged in the embossing cavity 23, an up rack 29 positioned at the left end of the rack connecting rod 36 and capable of being in rack and pinion fit with the sector gear 58 is fixedly arranged in the embossing cavity 23, the lower end of the rack connecting rod 36 is connected with the top end of the embossing block 38, a clamping driving shaft 33 is rotatably arranged on the rear wall of the embossing cavity 23, a clamping driving gear 34 which is positioned on the clamping driving shaft 33 and is matched with the gear rack of the descending gear rack 32 is fixedly arranged in the embossing cavity 23.
Advantageously, the transposition device comprises a transposition cavity 75 arranged at the right side of the embossing cavity 23, the rear wall of the transposition cavity 75 is rotatably provided with a clamping transmission shaft 45 in belt connection with the clamping driving shaft 33, a clamping first bevel gear 44 positioned on the clamping transmission shaft 45 is fixedly arranged in the transposition cavity 75, the front end surface of the clamping first bevel gear 44 is hinged with a clamping driving rod 74, the front end surface of the clamping driving rod 74 is hinged with a clamping transmission rod 73, the bottom wall of the transposition cavity 75 is rotatably provided with a clamping transmission shaft 48, a clamping second bevel gear 46 positioned at the upper end of the clamping transmission shaft 48 and meshed with the clamping first bevel gear 44 is fixedly arranged in the transposition cavity 75, a clamping third gear 47 positioned on the clamping transmission shaft 48 is fixedly arranged in the transposition cavity 75, the bottom wall of the transposition cavity 75 is provided with a clamping gear shaft sliding groove 51, and a clamping gear shaft bearing block 49 is slidably arranged in the clamping gear shaft sliding groove 51, a clamping gear shaft return spring 50 fixedly connected with the right wall of the clamping gear shaft sliding groove 51 is fixedly arranged on the right end face of the clamping gear shaft bearing block 49, a clamping gear shaft 43 is arranged in the clamping gear shaft bearing block 49 in a rotating mode, a torsion spring 35 positioned on the clamping gear shaft 43 is fixedly arranged in a transposition cavity 75, a rotating sleeve 72 positioned at the upper end of the clamping gear shaft 43 and hinged to the clamping transmission rod 73 is arranged in the transposition cavity 75 in a rotating mode, a clamping rod sector gear 42 positioned on the clamping gear shaft 43 and capable of being meshed with the clamping third gear 47 is fixedly arranged in the transposition cavity 75, and the right end of the clamping rod 39 extends into the transposition cavity 75 and is connected with the left end of the clamping rod sector gear 42;
the top wall of the heating cavity 18 is provided with a transposition shaft 15 in a rotating manner, a transposition shaft driving gear 70 positioned on the transposition shaft 15 is fixedly arranged in the heating cavity 18, a transposition rod 41 uniformly distributed on the outer surface of the transposition shaft 15 is fixedly arranged in the heating cavity 18, and a ventilation opening 40 positioned on the transposition rod 41 is fixedly arranged in the heating cavity 18.
Beneficially, the heating device includes a heating block sliding chute 20 disposed on the rear wall of the heating cavity 18, a heating rod 21 is slidably disposed in the heating block sliding chute 20, a heating block spring rod 54 is disposed at the lower end of the heating rod 21, a heating block supporting spring 53 fixedly connected to the top wall of the heating block spring rod 54 is fixedly disposed in the heating block spring rod 54, a heating block 56 is fixedly disposed at the lower end of the heating block spring rod 54, an embossing washbasin 57 located on the upper end surface of the index rod 41 is disposed in the heating cavity 18, a heating cavity 55 cooperating with the embossing washbasin 57 is disposed on the lower end surface of the heating block 56, a hydraulic cavity 66 is disposed in the inner wall of the heating cavity 18, a temperature control rod 69 extending upward into the heating cavity 18 and cooperating with the heating cavity 55 is fixedly disposed in the hydraulic cavity 66, a separation piston 67 extending upward into the heating cavity 18 and fixedly connected to the lower end surface of the heating block 56 at the upper end is slidably disposed in the hydraulic cavity 66, a lever 71 hinged with the separating piston 67 is arranged in the heating cavity 18, a cooling impeller shaft 60 is rotatably arranged on the bottom wall of the heating cavity 18, a cooling impeller 59 is fixedly arranged in the heating cavity 18 and positioned at the upper end of the cooling impeller shaft 60, the bottom wall of the heating chamber 18 is slidably provided with a belt sleeve 62 which can be engaged with the cooling impeller shaft 60, the belt sleeve 62 is connected with the clamping transmission shaft 48 through a cooling belt 52, a cooling belt tensioning sliding groove 61 positioned on the belt sleeve 62 is fixedly arranged in the heating cavity 18, the bottom wall of the heating cavity 18 is fixedly provided with a tensioning hinge rod sliding chute 63, a tensioning hinge rod 65 which is hinged with the lever 71 and is in sliding connection with the cooling belt tensioning sliding chute 61 is arranged in the tensioning hinge rod sliding chute 63 in a sliding manner, and a tensioning hinge rod return spring 64 fixedly connected with the right end face of the tensioning hinge rod 65 is fixedly arranged on the right wall of the tensioning hinge rod sliding groove 63.
Advantageously, the transmission device comprises an embossing shaft 30 rotatably arranged on the top wall of the embossing cavity 23, an embossing driving bevel gear 31 which is positioned at the lower end of the embossing shaft 30 and is engaged with the embossing driving bevel gear 19 is fixedly arranged in the embossing cavity 23, a transposition driving shaft sliding chute 11 is arranged on the top wall of the heating cavity 18, a transposition driving shaft bearing block 14 is slidably arranged in the transposition driving shaft sliding chute 11, a transposition driving shaft return spring 12 fixedly connected with the left wall of the transposition driving shaft sliding chute 11 is fixedly arranged on the left wall of the transposition driving shaft bearing block 14, a transposition driving shaft 13 is rotatably arranged in the transposition driving shaft bearing block 14, the lower end of the transposition driving shaft bearing block is hinged with the heating rod 21, a transposition driving gear 16 which can be engaged with the transposition driving gear 70 is arranged on the transposition driving shaft 13, and the transposition driving gear 16 is connected with the embossing shaft 30 through a transposition belt 17, the top wall of the embossing cavity 23 is provided with a motor slide block groove 27, a motor slide block 25 is arranged in the motor slide block groove 27 in a sliding mode, a motor slide block return spring 26 fixedly connected with the right wall of the motor slide block groove 27 is fixedly arranged on the right end face of the motor slide block 25, the motor slide block 25 is provided with a motor 22, the motor 22 is in power connection with a transposition transmission shaft 24, and the lower end of the transposition transmission shaft 24 is hinged to the descending rack 32 and is connected with the embossing shaft 30 through the transposition belt 17.
The applicant will now specifically describe a plastic surface embossing apparatus of the application with reference to the accompanying figures 1 to 4 and the description above:
in an initial state, the transposition driving gear 16 is disengaged from the transposition shaft driving gear 70, the clamping third gear 47 is disengaged from the clamping rod sector gear 42, the heating block 56 is disengaged from the embossing washbasin 57, the belt sleeve 62 is disengaged from the cooling impeller shaft 60, the temperature control rod 69 is disengaged from the heating cavity 55, and the transposition driving shaft return spring 12 is in a stretching state;
when the automatic embossing device starts to work, the motor 22 is started, the motor 22 drives the transposition transmission shaft 24 to rotate, the transposition transmission shaft 24 drives the transposition embossing shaft 30 to rotate through the transposition belt 17, the embossing shaft 30 drives the embossing driving bevel gear 31 to rotate, the embossing driving bevel gear 31 drives the embossing driving bevel gear 19 to rotate, the embossing driving bevel gear 19 drives the embossing transmission shaft 28 to rotate, the embossing transmission shaft 28 drives the sector gear 58 to rotate, the sector gear 58 drives the descending rack 32 to descend, the descending rack 32 drives the rack connecting rod 36 to descend, the rack connecting rod 36 drives the embossing block 38 to descend to be matched with the embossing washbasin 57 to emboss the embossing washbasin 57, and the transposition transmission shaft 24 is driven to move leftwards through the hinge rod effect when the descending rack 32 descends, the transposition driving shaft return spring 12 pulls the transposition driving shaft bearing block 14 to the left, the transposition driving shaft bearing block 14 drives the transposition driving shaft 13 to move to the left, the transposition driving shaft 13 presses the heating rod 21 downwards through the action of a hinged rod, the heating rod 21 drives the heating block 56 to press downwards, the heating block 56 drives the heating cavity 55 to be matched with the embossing washbasin 57, the heating cavity 55 is matched with the temperature control rod 69, the heating block 56 heats the heating cavity 55, and the heating cavity 55 softens the embossing washbasin 57;
the sector gear 58 rotates to the left, the sector gear 58 drives the uplink rack 29 to uplink, the uplink rack 29 drives the rack connecting rod 36 to uplink, the rack connecting rod 36 drives the embossing block 38 to uplink, the downlink rack 32 drives the transposition transmission shaft 24 to move rightwards through the action of the hinge rod, the transposition transmission shaft 24 drives the transposition drive gear 16 to move rightwards through the transposition belt 17, the transposition drive gear 16 drives the transposition drive shaft 13 to move rightwards, the transposition drive shaft 13 drives the heating rod 21 to uplink through the hinge rod, the heating rod 21 drives the heating block 56 to be disengaged from the embossing washbasin 57, the transposition belt 17 drives the transposition drive gear 16 to rotate, the transposition drive gear 16 is engaged with the transposition shaft drive gear 70 and drives the transposition shaft drive gear 70 to rotate, the shifting shaft driving gear 70 drives the shifting shaft 15 to rotate, the shifting shaft 15 drives the shifting rod 41 to rotate, the shifting rod 41 rotates the heated embossing washbasin 57 to the lower side of the embossing block 38, the descending rack 32 drives the clamping driving gear 34 to rotate through rack-and-pinion transmission when ascending, the clamping driving gear 34 drives the clamping driving shaft 33 to rotate, the clamping driving shaft 33 drives the clamping transmission shaft 45 to rotate through belt transmission, the clamping transmission shaft 45 drives the clamping first bevel gear 44 to rotate, the clamping first bevel gear 44 drives the clamping second bevel gear 46 to rotate, the clamping second bevel gear 46 drives the clamping transmission shaft 48 to rotate, the clamping transmission shaft 48 drives the clamping third gear 47 to rotate, and the clamping first bevel gear 44 drives the clamping driving rod 74 to rotate, the clamping driving rod 74 drives the clamping driving rod 73 to move left and right, the clamping driving rod 73 drives the rotating sleeve 72 to move left and right, the rotating sleeve 72 drives the clamping gear shaft 43 to move left and right, the clamping gear shaft 43 drives the clamping rod sector gear 42 to move left and right, the clamping rod sector gear 42 drives the clamping rod 39 to be matched with the embossed washbasin 57 which is embossed, the clamping rod 39 clamps the embossed washbasin 57 and moves right, the clamping rod sector gear 42 is meshed with the clamping third gear 47 when moving to the rightmost end, the clamping driving shaft 48 drives the clamping rod sector gear 42 to rotate forward, the clamping rod sector gear 42 drives the torsion spring 35 to compress, the clamping rod sector gear 42 drives the clamping rod 39 to rotate forward, so that the clamping rod 39 drives the embossed washbasin 57 to rotate forward, when the clamping rod sector gear 42 is meshed with the clamping third gear 47, the torsion spring 35 is loosened and the clamping gear shaft 43 is rotated to an initial state, so that the purpose of taking out the embossed washbasin 57 after embossing is completed;
when the temperature of the heating cavity 55 is too high, the heating cavity 55 heats the temperature control rod 69, the temperature control rod 69 heats the hydraulic oil in the hydraulic cavity 66, so that the hydraulic oil expands, the hydraulic oil pushes the separation piston 67 upwards, the separation piston 67 pushes the heating block 56 upwards, so that the heating cavity 55 is disengaged from the embossing washbasin 57, the separation piston 67 drives the lower end of the lever 71 to move rightwards through the hinge rod, the lever 71 drives the hydraulic cavity 66 to push rightwards, the hydraulic cavity 66 pushes the belt sleeve 62 rightwards and is engaged with the cooling impeller shaft 60, the clamping transmission shaft 48 drives the belt sleeve 62 to rotate through the cooling belt 52, the belt sleeve 62 drives the cooling impeller shaft 60 to rotate, and the cooling impeller shaft 60 drives the cooling impeller 59 to rotate, wind is blown towards the embossed washbasin 57 through the ventilation opening 40, thereby achieving the purpose of cooling the overheated embossed washbasin 57.
To sum up, this device mechanism is simple, and is easy and simple to handle, can emboss the washbasin through the rack and pinion cooperation to the washbasin that needs the knurling heats through the effect of hinge bar, very big increase the convenience to the washbasin knurling, can be automatic break away from and cool down heating mechanism when the high temperature, very big reduction the damage of heating time overlength to the plastics washbasin, and can be automatic take out the washbasin that finishes with the knurling, very big increase the security that the washbasin was embossed.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are merely illustrative of the principles of the invention, but that various changes and modifications may be made without departing from the spirit and scope of the invention, which fall within the scope of the invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (1)

1. A plastic surface embossing apparatus comprising a wall and an embossing device arranged in the wall, characterized in that: the embossing device comprises an embossing cavity arranged in the wall body, a sector gear is arranged in the embossing cavity, an embossing block matched with a gear rack of the sector gear is arranged in the embossing cavity, and when the sector gear rotates, the gear rack moves to drive the embossing block to move up and down to emboss the washbasin;
the washbasin embossing device comprises a wall body, and is characterized by further comprising a transposition device matched with the embossing device, wherein the transposition device comprises a heating cavity arranged in the wall body, a transposition shaft is arranged in the heating cavity, a transposition rod is arranged on the transposition shaft, a clamping rod is arranged in the embossing cavity, when the embossing device finishes embossing, the clamping rod clamps the embossed washbasin and takes out the embossed washbasin, and the transposition rod rotates to enable the washbasin which is not embossed to rotate to a position matched with the embossing block;
the heating device comprises a heating block arranged in the heating cavity, the heating block is electrified to heat the washbasin to be embossed, and the washbasin is matched with the embossing device after being transposed by the transposition device;
in addition, the washbasin comprises a transmission device arranged in the wall body, the transmission device comprises a motor arranged in the embossing cavity, a transposition transmission shaft in power connection with the motor is arranged in the embossing cavity, the transposition transmission shaft drives the sector gear to rotate through belt and gear transmission, the sector gear drives the embossing block to emboss, the transposition transmission shaft drives a transposition shaft to rotate through belt, and the transposition shaft drives the heated washbasin to rotate to a position where the washbasin can be matched with the embossing shaft;
the embossing device comprises an embossing cavity arranged in the wall body, the back wall of the embossing cavity is rotatably provided with an embossing transmission shaft, an embossing transmission bevel gear positioned on the embossing cavity is fixedly arranged in the embossing cavity, the sector gear is arranged at the front end of the embossing transmission shaft, the back wall of the embossing cavity is provided with an embossing rod chute, a rack connecting rod is arranged in the embossing rod chute in a sliding way, a descending rack which is positioned at the right end of the rack connecting rod and can be matched with the gear teeth of the sector gear is fixedly arranged in the embossing cavity, an ascending rack which is positioned at the left end of the rack connecting rod and can be matched with the gear teeth of the sector gear is fixedly arranged in the embossing cavity, the lower end of the rack connecting rod is connected with the top end of the embossing block, the back wall of the embossing cavity is rotationally provided with a clamping driving shaft, a clamping driving gear which is positioned on the clamping driving shaft and matched with the descending rack gear rack is fixedly arranged in the embossing cavity;
the transposition device comprises a transposition cavity arranged on the right side of the embossing cavity, the rear wall of the transposition cavity is rotatably provided with a clamping transmission shaft connected with a clamping driving shaft belt, a clamping first bevel gear positioned on the clamping transmission shaft is fixedly arranged in the transposition cavity, a clamping driving rod is hinged to the front end face of the clamping first bevel gear, a clamping transmission rod is hinged to the front end face of the clamping driving rod, a clamping transmission shaft is rotatably arranged on the bottom wall of the transposition cavity, a clamping second bevel gear positioned on the upper end of the clamping transmission shaft and meshed with the clamping first bevel gear is fixedly arranged in the transposition cavity, a clamping third gear positioned on the clamping transmission shaft is fixedly arranged in the transposition cavity, a clamping gear shaft sliding groove is formed in the bottom wall of the transposition cavity, a clamping gear shaft bearing block is slidably arranged in the clamping gear shaft sliding groove, and the right end face of the clamping gear shaft bearing block is fixedly connected with the right wall of the clamping gear shaft sliding groove A clamping gear shaft is rotatably arranged in the clamping gear shaft bearing block, a torsion spring positioned on the clamping gear shaft is fixedly arranged in the transposition cavity, a rotating sleeve positioned at the upper end of the clamping gear shaft and hinged with the clamping transmission rod is rotatably arranged in the transposition cavity, a clamping rod sector gear which is positioned on the clamping gear shaft and can be meshed with the clamping third gear is fixedly arranged in the transposition cavity, and the right end of the clamping rod extends into the transposition cavity and is connected with the left end of the clamping rod sector gear;
the heating cavity is fixedly provided with a transposition shaft, a transposition shaft driving gear positioned on the transposition shaft is fixedly arranged in the heating cavity, transposition rods uniformly distributed on the outer surface of the transposition shaft are fixedly arranged in the heating cavity, and a ventilation opening positioned on the transposition rod is fixedly arranged in the heating cavity;
the heating device comprises a heating block sliding groove arranged on the rear wall of the heating cavity, a heating rod is arranged in the heating block sliding groove in a sliding manner, a heating block spring rod is arranged at the lower end of the heating rod, a heating block supporting spring fixedly connected with the top wall of the heating block spring rod is fixedly arranged in the heating block spring rod, a heating block is fixedly arranged at the lower end of the heating block spring rod, an embossing washbasin positioned on the upper end surface of the transposition rod is placed in the heating cavity, a heating cavity matched with the embossing washbasin is arranged on the lower end surface of the heating block, a hydraulic cavity is arranged in the inner wall of the heating cavity, a temperature control rod which extends upwards into the heating cavity and can be matched with the heating cavity is fixedly arranged in the hydraulic cavity, a separation piston which extends upwards into the heating cavity and is fixedly connected with the upper end surface of the heating block is arranged in the hydraulic cavity in a sliding manner, and a lever hinged with the separation piston is arranged in the heating cavity, the cooling impeller shaft is rotationally arranged on the bottom wall of the heating cavity, the cooling impeller positioned at the upper end of the cooling impeller shaft is fixedly arranged in the heating cavity, a belt sleeve capable of being matched with the cooling impeller shaft is arranged on the bottom wall of the heating cavity in a sliding manner, the belt sleeve is connected with the clamping transmission shaft through a cooling belt, a cooling belt tensioning sliding chute positioned on the belt sleeve is fixedly arranged in the heating cavity, a tensioning hinge rod sliding chute is fixedly arranged on the bottom wall of the heating cavity, a tensioning hinge rod hinged with the lever and slidably connected with the cooling belt tensioning sliding chute is slidably arranged in the tensioning hinge rod sliding chute, and a tensioning hinge rod return spring fixedly connected with the right end face of the tensioning hinge rod is fixedly arranged on the right wall of the tensioning hinge rod sliding chute;
the transmission device comprises an embossing shaft rotatably arranged on the top wall of the embossing cavity, an embossing drive bevel gear which is positioned at the lower end of the embossing shaft and is meshed with the embossing drive bevel gear is fixedly arranged in the embossing cavity, a transposition drive shaft sliding chute is arranged on the top wall of the heating cavity, a transposition drive shaft bearing block is slidably arranged in the transposition drive shaft sliding chute, a transposition drive shaft return spring fixedly connected with the left wall of the transposition drive shaft sliding chute is fixedly arranged on the left wall of the transposition drive shaft bearing block, a transposition drive shaft is rotatably arranged in the transposition drive shaft bearing block, the lower end of the transposition drive shaft is hinged with the heating rod, a transposition drive gear which is meshed with the transposition drive gear is arranged on the transposition drive shaft, the transposition drive gear is connected with the embossing shaft through a transposition belt, a motor slide block groove is formed in the top wall of the embossing cavity, and a motor slide block is slidably arranged in the motor slide groove, the motor slider right-hand member face be fixed be equipped with motor slider return spring of motor slider groove right side wall fixed connection, the motor slider is equipped with the motor, motor power is connected with transposition transmission shaft, transposition transmission shaft lower extreme with down the rack is articulated and with the knurling axle passes through the transposition belt is connected.
CN201910253465.0A 2019-03-29 2019-03-29 Plastic surface embossing equipment Active CN109849316B (en)

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CN111361340B (en) * 2020-04-07 2020-12-11 泰州远大休闲用品有限公司 Aluminum alloy material compression molding printing device
CN111923643A (en) * 2020-07-09 2020-11-13 柳艳姣 Aluminum plate heating embossing device

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US3411438A (en) * 1966-09-16 1968-11-19 United States Steel Corp Hot stamping press
US6705853B1 (en) * 2000-10-20 2004-03-16 Durakon Industries, Inc. Six station rotary thermoforming machine
WO2016095892A1 (en) * 2014-12-17 2016-06-23 Kiefel Gmbh Method for producing a thermoformed product, and installation and machine therefor
CN205522857U (en) * 2015-10-18 2016-08-31 杭州珂瑞特机械制造有限公司 Three -dimensional knurling device of health supplies

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Denomination of invention: A plastic surface embossing device

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