CN113500083B - Waste rubber efficient treatment recovery unit that machine part processing was used - Google Patents

Waste rubber efficient treatment recovery unit that machine part processing was used Download PDF

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Publication number
CN113500083B
CN113500083B CN202110801511.3A CN202110801511A CN113500083B CN 113500083 B CN113500083 B CN 113500083B CN 202110801511 A CN202110801511 A CN 202110801511A CN 113500083 B CN113500083 B CN 113500083B
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limiting
water
water containing
containing tank
rods
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CN113500083A (en
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张丽
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Shandong Bangrui Industrial Co ltd
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Individual
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B09DISPOSAL OF SOLID WASTE; RECLAMATION OF CONTAMINATED SOIL
    • B09BDISPOSAL OF SOLID WASTE
    • B09B3/00Destroying solid waste or transforming solid waste into something useful or harmless

Abstract

The invention relates to a recovery device, in particular to a high-efficiency waste rubber treatment and recovery device for machining mechanical parts. The invention provides a high-efficiency waste rubber treatment and recovery device for machining mechanical parts, which saves water resources and reduces human body injury. In order to solve the technical problems, the invention provides an efficient waste rubber treatment and recovery device for machining mechanical parts, which comprises: the device comprises a main supporting frame and an auxiliary supporting frame, wherein the auxiliary supporting frame is arranged on the main supporting frame; the upper part of the inner side of the auxiliary supporting frame is provided with a water containing tank; the baffle is arranged at the top of the water containing tank in a sliding manner; the feeding mechanism is arranged on the upper side of the main support frame; the upper side of the water containing tank is provided with a swing mechanism. According to the invention, the feeding mechanism is arranged, people start the feeding mechanism, and the feeding mechanism moves to drive the melted waste rubber to be conveyed into the water containing tank for cooling, so that the feeding effect is realized.

Description

Waste rubber efficient treatment recovery unit that machine part processing was used
Technical Field
The invention relates to a recovery device, in particular to a high-efficiency waste rubber treatment and recovery device for machining mechanical parts.
Background
At present, a KKF filter and a plate frame filter in the production process of viscose both generate a large amount of waste glue, if the waste glue is directly discharged, the environment is polluted and the waste of the viscose is caused, so that the recycling of the glue is indispensable, domestic and foreign glue has more recycling methods, in the process of recycling the glue, people collect the waste glue and melt the waste glue, and then cool the melted glue, however, in the process of processing the waste glue, the waste glue is usually manually processed, in the process of processing, people suck too much glue gas and can hurt the body, and meanwhile, people need to uniformly stir the melted glue and then perform solidification treatment, in the stirring process, because the waste glue is manually stirred, the phenomenon of insufficient stirring can be caused, and people utilize cold water to solidify the melted glue, the clear water after the cooling needs to be changed, and then leads to the water resource to cause the waste phenomenon.
In view of the above, it is desirable to design an efficient waste glue treatment and recovery device for machining mechanical parts, which can save water resources and reduce human body injuries.
Disclosure of Invention
In order to overcome the defects of high harm to human bodies and water resource waste in the prior art, the technical problem to be solved is as follows: the high-efficiency waste glue treatment and recovery device for machining the mechanical parts saves water resources and reduces human body injury.
The technical scheme is as follows: the utility model provides a scrap rubber high-efficiency processing recovery unit that machine part processing used, including:
the device comprises a main supporting frame and an auxiliary supporting frame, wherein the auxiliary supporting frame is arranged on the main supporting frame;
the upper part of the inner side of the auxiliary supporting frame is provided with a water containing tank;
the baffle is arranged at the top of the water containing tank in a sliding manner;
the feeding mechanism is arranged on the upper side of the main support frame;
the upper side of the water containing tank is provided with a swing mechanism.
As a further preferable mode, the feeding mechanism includes:
the material containing barrel is arranged on the upper side of the main support frame;
the water containing tank is provided with three supporting rods;
a motor is arranged among the three support rods;
the extension power rod is arranged on an output shaft of the motor and is rotatably connected with the material containing barrel;
the two sides of the interior of the material containing barrel are provided with first limiting frames;
the feeding screw is rotatably arranged between the two first limiting frames;
the material containing barrel is connected with a flexible connecting pipe;
the discharging pipe is arranged on the soft connecting pipe;
and a belt pulley component is connected between the extension power rod and the feeding spiral.
As a further preferable mode, the swing mechanism includes:
the top of the water containing tank is symmetrically provided with a second limiting frame;
the two second limiting frames are both provided with a first connecting block in a sliding manner, and the first connecting blocks are connected with the discharge pipe;
the motor output shaft is provided with a gear lack;
the discharge pipe is provided with a connecting frame;
the long rack is arranged on the lower side of the connecting frame and is intermittently meshed with the gear lacking wheel;
the top of the long rack is provided with a first limiting rod which is connected with the water containing tank in a sliding way;
first reset spring, first gag lever post is gone up around there being first reset spring, and first reset spring's both ends are connected with flourishing water tank and first gag lever post respectively.
As a further preferable mode, the device further comprises an opening and closing mechanism, and the opening and closing mechanism comprises:
the bottom of the water containing tank is symmetrically provided with first connecting pipes;
the upper sides of the two first connecting pipes are respectively provided with four second limiting rods, and the number of the second limiting rods is eight;
the round head sliding plates are arranged between the four adjacent second limiting rods in a sliding manner and are connected with the first connecting pipes in a sliding manner;
the top parts of the inner sides of the two first connecting pipes are respectively provided with a first isolation net;
the round head sliding plates are connected with the round connecting rod;
the eight second limiting rods are respectively wound with a second return spring, and two ends of each second return spring are respectively connected with the first connecting pipe and the round head sliding plate;
the middle part of the connecting round rod of the hand lever is provided with the hand lever, and the hand lever is connected with the water containing tank in a sliding way.
As a further preferable mode, the water circulation device further comprises a water circulation mechanism, and the water circulation mechanism comprises:
the water storage box is arranged at the bottom of the water containing tank and is connected with the first connecting pipe;
the cover plate is arranged at the top of the water storage box;
the two sides of the water containing tank are both provided with second connecting pipes;
the water raisers are arranged on the lower sides of the two second connecting pipes and matched with the water storage box;
and the tops of the two water raisers are respectively provided with a second isolation net.
As a further preferable mode, the apparatus further comprises a switch mechanism, and the switch mechanism comprises:
the bottom of the water storage box is transversely and symmetrically provided with second connecting blocks;
the two sides of the two second connecting blocks are provided with three limiting rods, and the number of the three limiting rods is four;
the long sliding plates are arranged between the adjacent third limiting rods in a sliding manner;
the four third limiting rods are wound with third return springs, and two ends of each third return spring are respectively connected with the third limiting rods and the long sliding plate;
the first connecting rod is connected between the two long sliding plates;
the upper side of the water storage box is transversely and symmetrically provided with a third limiting frame;
the outer sides of the two connecting round rods are provided with swing plates which are rotatably connected with a third limiting frame, and the swing plates are connected with the first connecting rod in a sliding manner.
As a further preferable scheme, the device further comprises a material cleaning mechanism, wherein the material cleaning mechanism comprises:
the middle part of the inner side of the water containing tank is provided with a partition board in a sliding way;
the lower side inside the water containing tank is provided with a material receiving box in a sliding manner;
the handle frame is arranged on the material receiving box;
the two sides of the water containing tank are provided with the slideways;
the opening blocking sliding plate is arranged between the two slide ways in a sliding manner;
the middle part of the water containing tank is uniformly provided with six limiting plates;
the second connecting rods are uniformly arranged on the blocking opening sliding plate, the number of the second connecting rods is six, and the second connecting rods are connected with the limiting plate in a sliding mode;
and the six second connecting rods are wound with fourth reset springs, and two ends of each fourth reset spring are respectively connected with the limiting plate and the blocking opening sliding plate.
As a further preferred option, the pulley assembly consists of two pulleys, one on the elongate power rod and the other on the loading screw, and a belt wound between the two pulleys.
The invention has the following advantages:
1. according to the invention, the feeding mechanism is arranged, people start the feeding mechanism, and the feeding mechanism moves to drive the melted waste rubber to be conveyed into the water containing tank for cooling, so that the feeding effect is realized;
2. according to the invention, the swinging mechanism is arranged, and the feeding mechanism operates to drive the swinging mechanism to operate, so that the swinging mechanism operates to drive the feeding mechanism to swing left and right, and the feeding mechanism is prevented from being blocked during feeding;
3. according to the invention, the opening and closing mechanism is arranged, so that people can pull the opening and closing mechanism to enable water after glue treatment to flow downwards, and further convenience is brought to people for water treatment;
4. the water circulation mechanism is arranged, and water runs through the water circulation mechanism, so that the water is rapidly cooled, and the effect of recycling the water is achieved;
5. the switch mechanism is arranged, and the switch mechanism can be driven to operate by the operation of the switch mechanism, so that the effect of controlling the water to automatically flow downwards is realized;
6. according to the invention, the material cleaning mechanism is arranged, so that people pull the material cleaning mechanism to operate, the solidified glue is collected through the material cleaning mechanism, and the glue after treatment is taken out conveniently.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of the present invention without the sub-bracket and the water tank.
Fig. 3 is a schematic perspective view of the feeding mechanism of the present invention.
Fig. 4 is a schematic side view of the feeding mechanism of the present invention.
Fig. 5 is a schematic perspective view of the swing mechanism of the present invention.
Fig. 6 is a partial perspective view of the swing mechanism of the present invention.
Fig. 7 is a schematic perspective view of the opening and closing mechanism of the present invention.
Fig. 8 is a partial perspective view of the opening and closing mechanism of the present invention.
Fig. 9 is a schematic perspective view of part a of the present invention.
Fig. 10 is a first-view perspective view of the water circulation mechanism of the present invention.
Fig. 11 is a perspective view of a second view of the water circulation mechanism of the present invention.
Fig. 12 is a first-view perspective view of the switch mechanism of the present invention.
Fig. 13 is a second perspective view of the switch mechanism of the present invention.
Fig. 14 is a schematic perspective view of part B of the present invention.
Fig. 15 is a schematic perspective view of the material cleaning mechanism of the present invention.
Fig. 16 is a schematic perspective view of part C of the present invention.
Wherein: 1-a main supporting frame, 2-an auxiliary supporting frame, 3-a water containing tank, 4-a baffle, 5-a feeding mechanism, 51-a material containing barrel, 52-a supporting rod, 53-a motor, 54-an extension power rod, 55-a first limiting frame, 56-a feeding screw, 57-a flexible connecting pipe, 58-a discharging pipe, 59-a belt pulley component, 6-a swinging mechanism, 61-a second limiting frame, 62-a first connecting block, 63-a missing gear, 64-a long rack, 65-a first limiting rod, 66-a first return spring, 67-a connecting frame, 7-an opening and closing mechanism, 71-a first connecting pipe, 72-a round head sliding plate, 73-a second limiting rod, 74-a first isolating net, 75-a connecting round rod and 76-a second return spring, 77-hand lever, 8-water circulation mechanism, 81-water storage box, 82-cover plate, 83-second isolation net, 84-water raiser, 85-second connecting pipe, 9-switch mechanism, 91-second connecting block, 92-long sliding plate, 93-third limiting rod, 94-third return spring, 95-first connecting rod, 96-third limiting frame, 97-swinging plate, 10-material cleaning mechanism, 101-isolating plate, 102-material receiving box, 103-handle frame, 104-slideway, 105-blocking sliding plate, 106-limiting plate, 107-second connecting rod and 108-fourth return spring.
Detailed Description
The invention is further illustrated by the following specific examples in which, unless otherwise explicitly stated and limited, terms such as: the arrangement, installation, connection are to be understood broadly, for example, they may be fixed, detachable, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Example 1
The utility model provides a waste rubber high efficiency processing recovery unit of machine part processing usefulness, as shown in fig. 1-6, including main tributary strut 1, auxiliary stay frame 2, flourishing water tank 3, baffle 4, feeding mechanism 5 and swing mechanism 6, main tributary strut 1 front side is equipped with auxiliary stay frame 2, flourishing water tank 3 is installed on 2 inboard upper portions of auxiliary stay frame, 3 tops front sides of flourishing water tank sideslip the formula and be equipped with baffle 4, 1 upside of main tributary strut is equipped with feeding mechanism 5, 3 upsides of flourishing water tank are equipped with swing mechanism 6.
When people need to recycle the waste rubber, people can use the waste rubber high-efficiency processing and recycling device for machining mechanical parts, firstly, the waste rubber is filled into the feeding mechanism 5 to be heated and melted, then, people pour clear water into the water containing tank 3, then, people start the feeding mechanism 5, the feeding mechanism 5 uniformly stirs the waste rubber, meanwhile, the feeding mechanism 5 drives the swinging mechanism 6 to operate, the swinging mechanism 6 swings left and right to drive the waste rubber water to move left and right and flow forwards, so that the waste rubber water flows into the water containing tank 3, the waste rubber water is solidified, when the waste rubber water is solidified, people pull the baffle 4 forwards, the water containing tank 3 is opened, at the moment, people can collect the melted rubber, when people finish collecting the rubber, people push the baffle 4 backwards, the water containing tank 3 is closed, then, the next waste rubber is processed, when people do not need to process the waste rubber, one can close the feeding mechanism 5.
The feeding mechanism 5 comprises a material containing barrel 51, support rods 52, a motor 53, an extension power rod 54, a first limiting frame 55, feeding screws 56, a flexible connecting pipe 57, a discharging pipe 58 and a belt pulley assembly 59, the material containing barrel 51 is installed on the upper side of a main support frame 1, the three support rods 52 are arranged on the rear wall of a water containing tank 3, the motor 53 is installed between the three support rods 52, the extension power rod 54 is arranged on an output shaft of the motor 53, the extension power rod 54 is rotatably connected with the material containing barrel 51, the first limiting frames 55 are respectively arranged on the front side and the rear side of the interior of the material containing barrel 51, the feeding screws 56 are rotatably arranged between the two first limiting frames 55, the front wall of the material containing barrel 51 is connected with the flexible connecting pipe 57, the discharging pipe 58 is arranged on the front side of the flexible connecting pipe 57, the belt pulley assembly 59 is connected between the extension power rod 54 and the feeding screws 56, the belt pulley assembly 59 is composed of two belt pulleys and a belt pulley, one belt pulley is arranged on the extension power rod 54, the other pulley is provided on the loading screw 56, and the belt is wound between the two pulleys.
At first people pack the waste rubber into containing bucket 51 and heat and melt, people start motor 53 afterwards, motor 53 output shaft rotates and drives extension power rod 54 and rotate, thereby drive belt pulley assembly 59 transmission, and then drive material loading spiral 56 and rotate, make material loading spiral 56 stir the waste rubber after melting, simultaneously will melt the waste rubber after promote forward to flexible coupling pipe 57 in, and then carry to flowing forward in discharging pipe 58, flow into containing water tank 3 then and solidify, and then realized the effect of handling the waste rubber, when people need not to handle the waste rubber, people close motor 53 can.
The swing mechanism 6 comprises second limiting frames 61, first connecting blocks 62, gear lacking 63, long racks 64, first limiting rods 65, first reset springs 66 and connecting frames 67, the second limiting frames 61 are symmetrically arranged on the rear side of the top of the water containing tank 3 in a front-back mode, the first connecting blocks 62 are arranged on the left sides of the two second limiting frames 61 in a sliding mode, the first connecting blocks 62 are connected with the discharging pipes 58, the gear lacking 63 is arranged on the output shaft of the motor 53, the connecting frames 67 are arranged on the left wall of the rear side of the discharging pipes 58, the long racks 64 are arranged on the lower sides of the connecting frames 67, the long racks 64 are intermittently meshed with the gear lacking 63, the first limiting rods 65 are arranged on the tops of the long racks 64, the first limiting rods 65 are connected with the water containing tank 3 in a sliding mode, the first reset springs 66 are wound on the first limiting rods 65, and two ends of the first reset springs 66 are connected with the water containing tank 3 and the first limiting rods 65 respectively.
When people start the motor 53, the rotation of the output shaft of the motor 53 drives the gear wheel 63 to rotate, the gear wheel 63 is intermittently meshed with the long rack 64, so that the long rack 64 is driven to move rightwards, the first return spring 66 is compressed, the connecting frame 67 is driven to move rightwards, the discharging pipe 58 is driven to move rightwards, the first connecting block 62 is driven to slide rightwards, the flexible connecting pipe 57 is deformed, when the gear wheel 63 continues to rotate, the gear wheel 63 is not meshed with the long rack 64, the first return spring 66 is reset, the long rack 64 is driven to move leftwards to reset, the connecting frame 67 is driven to move leftwards to reset, the discharging pipe 58 is driven to move leftwards to reset, the first connecting block 62 is driven to slide leftwards to reset, the flexible connecting pipe 57 is reset, the effect of driving the waste glue to shake leftwards and rightwards is realized, the melted waste glue is prevented from being accumulated in the discharging pipe 58, when the user does not need to use the electric tool, the user turns off the motor 53.
Example 2
On the basis of embodiment 1, as shown in fig. 1, 2 and 7-16, the device further includes an opening and closing mechanism 7, the opening and closing mechanism 7 includes a first connecting pipe 71, round-head sliding plates 72, second limiting rods 73, first separation nets 74, connecting round rods 75, second return springs 76 and a hand lever 77, the first connecting pipes 71 are transversely and symmetrically arranged on the rear side of the bottom of the water containing tank 3, four second limiting rods 73 are respectively arranged on the upper sides of the two first connecting pipes 71, the number of the second limiting rods 73 is eight, the round-head sliding plates 72 are slidably arranged between the adjacent four second limiting rods 73, the round-head sliding plates 72 are slidably connected with the first connecting pipes 71, the first separation nets 74 are respectively arranged on the tops of the inner sides of the two first connecting pipes 71, the connecting round rods 75 are connected between the two round-head sliding plates 72, the second return springs 76 are respectively wound on the rear sides of the eight second limiting rods 73, both ends of the second return springs 76 are respectively connected with the first connecting pipes 71 and the round-head sliding plates 72, the middle part of the connecting round rod 75 is provided with a hand lever 77, and the hand lever 77 is connected with the water containing tank 3 in a sliding way.
People can spur hand lever 77 forward, thereby drive and connect pole 75 forward motion, and then drive button head sliding plate 72 and slide forward, second reset spring 76 is stretched, flourishing water tank 3 is opened, the water after the solidification glue flows downwards this moment, thereby flow into and filter on the first separation net 74, and then can guarantee that the glue can not fall out, and then flow into in first connecting pipe 71, people can handle water this moment, after people accomplish the processing water, people loosen hand lever 77, because second reset spring 76 resets, so can drive button head sliding plate 72 and slide backward and reset, thereby it resets to drive and connect pole 75 backward motion, and then drive hand lever 77 and move backward and reset, flourishing water tank 3 is closed.
Still including water circulation mechanism 8, water circulation mechanism 8 is including water storage box 81, apron 82, second separation net 83, water raiser 84 and second connecting pipe 85, 3 bottoms in containing water tank are equipped with water storage box 81, water storage box 81 is connected with first connecting pipe 71, water storage box 81 top is equipped with apron 82, the 3 antetheca left and right sides in containing water tank all are equipped with second connecting pipe 85, water raiser 84 is all installed to two second connecting pipe 85 downside, water raiser 84 and water storage box 81 cooperation, two water raiser 84 tops all are equipped with second separation net 83.
People start the water raiser 84, when water flows downwards through the first connecting pipe 71, water can flow into the water storage box 81, thereby flow into the water raiser 84, the water raiser 84 moves to upwards convey water to the second connecting pipe 85, and then the water is flowed into the water holding tank 3 to cool water in the conveying process, and then the water is utilized again to solidify and glue, and then the effect of recycling water is realized, when people need not to use, people close the water raiser 84.
The water storage box further comprises a switch mechanism 9, the switch mechanism 9 comprises a second connecting block 91, long sliding plates 92, third limiting rods 93, third reset springs 94, first connecting rods 95, third limiting frames 96 and swinging plates 97, the second connecting blocks 91 are transversely and symmetrically arranged at the bottom of the water storage box 81, the third limiting rods 93 are respectively arranged at the left side and the right side of each of the two second connecting blocks 91, the number of the third limiting rods 93 is four, the long sliding plates 92 are slidably arranged between the adjacent third limiting rods 93, the third reset springs 94 are wound on the four third limiting rods 93, two ends of each of the third reset springs 94 are respectively connected with the third limiting rods 93 and the long sliding plates 92, the first connecting rods 95 are connected between the two long sliding plates 92, the third limiting frames 96 are transversely and symmetrically arranged on the upper side of the rear wall of the water storage box 81, the swinging plates 97 are respectively arranged at the outer sides of the two connecting round rods 75, and the swinging plates 97 are rotatably connected with the third limiting frames 96, the swing plate 97 is slidably connected to the first connecting rod 95.
When the connecting rod 75 moves forward, the connecting rod 75 moves forward to drive the upper side of the swinging plate 97 to swing forward, so as to drive the lower side of the swinging plate 97 to swing backward, and further drive the first connecting rod 95 to move backward, the first connecting rod 95 moves backward to drive the long sliding plate 92 to slide backward, the third return spring 94 is compressed, the water storage box 81 is opened, so that water flows downward into the water raiser 84, and further the effect of controlling the water to flow downward is realized, when the connecting rod 75 moves backward, the connecting rod 75 moves backward to drive the upper side of the swinging plate 97 to swing backward and reset, so as to drive the lower side of the swinging plate 97 to swing forward and reset, and because the third return spring 94 resets, the connecting rod 92 can be driven to slide forward and reset, and further the first connecting rod 95 is driven to move forward and reset, and then the water discharge is stopped.
Also comprises a material cleaning mechanism 10, the material cleaning mechanism 10 comprises a separation plate 101, a material receiving box 102, a handle frame 103 and a slideway 104, keep off a mouthful sliding plate 105, limiting plate 106, second connecting rod 107 and fourth reset spring 108, flourishing water tank 3 inboard middle part slidingtype is equipped with division board 101, flourishing water tank 3 inside downside slidingtype is equipped with connects workbin 102, connect workbin 102 rear wall to be equipped with handle frame 103, flourishing water tank 3 rear wall left and right sides all is equipped with slide 104, slidingtype is equipped with keeps off a mouthful sliding plate 105 between two slide 104, flourishing water tank 3 rear wall middle part evenly is equipped with limiting plate 106, the quantity of limiting plate 106 is six, evenly be equipped with second connecting rod 107 on keeping off mouthful sliding plate 105, the quantity of second connecting rod 107 is six, second connecting rod 107 and limiting plate 106 slidingtype are connected, all around having fourth reset spring 108 on six second connecting rod 107, the both ends of fourth reset spring 108 are connected with limiting plate 106 and fender mouthful sliding plate 105 respectively.
Waste rubber is solidified in the material receiving box 102, people pull the second connecting rod 107 upwards, the fourth reset spring 108 is compressed, so as to drive the blocking opening sliding plate 105 to move upwards, at the same time, people put the isolating plate 101 into the water containing tank 3, so that the isolating plate 101 isolates water, then people loosen the second connecting rod 107, as the fourth reset spring 108 resets, the second connecting rod 107 is driven to move downwards to reset, so as to drive the blocking opening sliding plate 105 to move downwards to reset, people pull the handle frame 103 backwards, so as to drive the material receiving box 102 to move backwards, so as to facilitate people to collect waste rubber, when people finish collecting waste rubber, people push the handle frame 103 forwards, so as to drive the material receiving box 102 to move forwards to reset, at the same time, people pull the second connecting rod 107 upwards again, so as to drive the blocking opening sliding plate 105 to move upwards, at the same time, people take out the isolating plate 101, so that the isolating plate 101 does not block water, and then the waste glue is continuously cooled.
The embodiments described above are provided to enable persons skilled in the art to make or use the invention and that modifications or variations can be made to the embodiments described above by persons skilled in the art without departing from the inventive concept of the present invention, so that the scope of protection of the present invention is not limited by the embodiments described above but should be accorded the widest scope consistent with the innovative features set forth in the claims.

Claims (6)

1. The utility model provides a scrap rubber high efficiency processing recovery unit that machine part processing used, characterized by, including:
the device comprises a main support frame (1) and an auxiliary support frame (2), wherein the auxiliary support frame (2) is arranged on the main support frame (1);
the upper part of the inner side of the auxiliary supporting frame (2) is provided with a water containing tank (3);
the baffle (4) is arranged at the top of the water containing tank (3) in a sliding way;
the feeding mechanism (5) is arranged on the upper side of the main support frame (1);
the upper side of the water containing tank (3) is provided with the swinging mechanism (6);
the feeding mechanism (5) comprises:
the material containing barrel (51) is arranged on the upper side of the main support frame (1);
the water containing tank (3) is provided with three support rods (52);
the motor (53) is arranged among the three support rods (52);
an extension power rod (54), wherein an output shaft of the motor (53) is provided with the extension power rod (54), and the extension power rod (54) is rotatably connected with the material containing barrel (51);
the first limiting frames (55) are arranged on two sides inside the material containing barrel (51);
the feeding screw (56) is rotatably arranged between the two first limiting frames (55);
the soft connecting pipe (57) is connected to the material containing barrel (51);
a discharge pipe (58) is arranged on the soft connecting pipe (57);
a belt pulley assembly (59), wherein the belt pulley assembly (59) is connected between the extension power rod (54) and the feeding spiral (56);
the swing mechanism (6) comprises:
the top of the water containing tank (3) is symmetrically provided with the second limiting frame (61);
the two second limiting frames (61) are both provided with a first connecting block (62) in a sliding manner, and the first connecting blocks (62) are connected with the discharge pipe (58);
a gear lack (63) is arranged on the output shaft of the motor (53);
the connecting frame (67) is arranged on the discharge pipe (58);
the long rack (64) is arranged on the lower side of the connecting frame (67), and the long rack (64) is intermittently meshed with the gear lack (63);
the top of the long rack (64) is provided with a first limiting rod (65), and the first limiting rod (65) is connected with the water containing tank (3) in a sliding manner;
the first reset spring (66) is wound on the first limiting rod (65), and two ends of the first reset spring (66) are respectively connected with the water containing tank (3) and the first limiting rod (65).
2. The high-efficiency waste rubber treatment and recovery device for machining mechanical parts as claimed in claim 1, wherein the device further comprises an opening and closing mechanism (7), and the opening and closing mechanism (7) comprises:
the bottom of the water containing tank (3) is symmetrically provided with first connecting pipes (71);
the upper sides of the two first connecting pipes (71) are respectively provided with four second limiting rods (73), and the number of the second limiting rods (73) is eight;
the round head sliding plates (72) are arranged between four adjacent second limiting rods (73) in a sliding mode, and the round head sliding plates (72) are connected with the first connecting pipes (71) in a sliding mode;
the tops of the inner sides of the two first connecting pipes (71) are respectively provided with a first isolation net (74);
a connecting round rod (75) is connected between the two round head sliding plates (72);
the eight second limiting rods (73) are respectively wound with a second reset spring (76), and two ends of each second reset spring (76) are respectively connected with the first connecting pipe (71) and the round head sliding plate (72);
the middle part of the hand lever (77) is provided with the hand lever (77) which is connected with the round rod (75), and the hand lever (77) is connected with the water containing tank (3) in a sliding way.
3. The high-efficiency waste glue treatment and recovery device for machining mechanical parts as claimed in claim 2, characterized by further comprising a water circulation mechanism (8), wherein the water circulation mechanism (8) comprises:
the water storage box (81) is arranged at the bottom of the water containing tank (3), and the water storage box (81) is connected with the first connecting pipe (71);
the cover plate (82) is arranged at the top of the water storage box (81);
the two sides of the water containing tank (3) are both provided with a second connecting pipe (85);
the water raisers (84) are respectively arranged at the lower sides of the two second connecting pipes (85), and the water raisers (84) are matched with the water storage box (81);
and the tops of the two water raisers (84) are respectively provided with a second isolation net (83).
4. The high-efficiency waste rubber treatment and recovery device for machining mechanical parts as claimed in claim 3, characterized by further comprising a switch mechanism (9), wherein the switch mechanism (9) comprises:
the bottom of the water storage box (81) is transversely and symmetrically provided with second connecting blocks (91);
the third limiting rods (93) are arranged on two sides of the two second connecting blocks (91), and the number of the third limiting rods (93) is four;
the long sliding plates (92) are arranged between the adjacent third limiting rods (93) in a sliding manner;
the third return springs (94) are wound on the four third limiting rods (93), and two ends of each third return spring (94) are respectively connected with the third limiting rod (93) and the long sliding plate (92);
a first connecting rod (95) is connected between the two long sliding plates (92);
the third limiting frame (96) is transversely and symmetrically arranged on the upper side of the water storage box (81);
the outer sides of the two connecting round rods (75) are provided with swing plates (97), the swing plates (97) are rotatably connected with a third limiting frame (96), and the swing plates (97) are slidably connected with a first connecting rod (95).
5. The high-efficiency waste rubber treatment and recovery device for machining mechanical parts as claimed in claim 4, wherein the device further comprises a material cleaning mechanism (10), and the material cleaning mechanism (10) comprises:
the middle part of the inner side of the water containing tank (3) is provided with a partition plate (101) in a sliding way;
the material receiving box (102) is arranged at the lower side inside the water containing box (3) in a sliding manner;
the handle frame (103) is arranged on the material receiving box (102);
the two sides of the water containing tank (3) are provided with the slide ways (104);
the opening blocking sliding plate (105) is arranged between the two sliding ways (104) in a sliding manner;
the limiting plates (106) are uniformly arranged in the middle of the water containing tank (3), and the number of the limiting plates (106) is six;
the second connecting rods (107) are uniformly arranged on the opening blocking sliding plate (105), the number of the second connecting rods (107) is six, and the second connecting rods (107) are connected with the limiting plate (106) in a sliding manner;
fourth reset spring (108), all around fourth reset spring (108) on six second connecting rods (107), the both ends of fourth reset spring (108) are connected with limiting plate (106) and fender mouthful sliding plate (105) respectively.
6. A high-efficiency waste rubber processing and recycling device for machine parts according to claim 5, wherein the pulley assembly (59) comprises two pulleys, one of which is provided on the extension power rod (54) and the other of which is provided on the feeding screw (56), and a belt wound between the two pulleys.
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Effective date of registration: 20231208

Address after: Comprehensive Service Building ZF02, No.15-1 Haibin North Road, Huancuilou Street, Huancuilou District, Weihai City, Shandong Province, 264200

Patentee after: Shandong Bangrui Industrial Co.,Ltd.

Address before: 518100 10g, tianxiangge, Buji Guodu, Longgang District, Shenzhen City, Guangdong Province

Patentee before: Zhang Li