Special-shaped automobile sealing strip auxiliary vulcanization shaping device
Technical Field
The utility model belongs to the technical field of processing of special-shaped automobile sealing strips, and particularly relates to an auxiliary vulcanization shaping device for a special-shaped automobile sealing strip.
Background
The special-shaped automobile sealing strip is a strip-shaped material for sealing treatment of various parts of an automobile, is usually made of elastic and weather-resistant materials such as rubber, plastic and foam, has a specific shape in shape or structural design, and is suitable for different gaps and contact parts outside or inside the automobile.
After the special-shaped automobile sealing strip is processed, the special-shaped automobile sealing strip auxiliary vulcanization shaping device is high in temperature, and is easy to deform under the action of external force, so that the sealing strip needs to be cooled rapidly in time.
Therefore, in view of the above, the present invention provides an auxiliary vulcanization shaping device for a special-shaped automobile sealing strip, which aims to achieve the purpose of higher practical value.
Disclosure of utility model
In order to solve the technical problems, the utility model provides an auxiliary vulcanization shaping device for a special-shaped automobile sealing strip, which is realized by the following specific technical means:
The utility model provides an supplementary vulcanization setting device of dysmorphism car sealing strip, includes the cooling tank, be equipped with the water catch bowl in the cooling tank, one side of water catch bowl is connected with raceway one, the water pump is installed to the up end of cooling tank, raceway one's the other end is connected with the water pump, the output of water pump is connected with raceway two, the top that the other end of raceway two runs through the cooling tank is connected with spraying mechanism, the one-level filter screen is installed to the below of spraying mechanism in the cooling tank, the second grade filter screen is installed to the below of cooling tank, the both sides inner wall of cooling tank is close to one-level filter screen and second grade filter screen's position is equipped with a pair of "匚" type groove, a pair of scraper blade is installed to between the "匚" type inslot swing joint has "匚" type piece, a pair of scraper blade respectively with the laminating of one-level filter screen and second grade filter screen's surface, the one end of cooling tank is equipped with the entry, the other end of cooling tank is equipped with the export, the one end of cooling tank installs traction mechanism in the position of export.
Further, a plurality of auxiliary rollers are arranged above the primary filter screen in the cooling box.
Further, a sliding groove is formed in one side of the 匚 -shaped groove, a screw rod is connected to the sliding groove in a rotating mode, a sliding block is connected to the periphery of the screw rod in a threaded mode, and one side of the sliding block is connected with the 匚 -shaped block.
Further, one end of the cooling box, which is close to the inlet, is provided with a pair of first motors, and one end of the pair of screw rods penetrates through the cooling box and is respectively connected with the output ends of the pair of first motors.
Further, the traction mechanism comprises mounting blocks, traction rollers, a first gear and a second gear, a pair of mounting blocks are mounted on two sides, close to an outlet, of one end of the cooling box, a pair of traction rollers are rotatably connected between the mounting blocks, one pair of traction rollers penetrate through one side of one mounting block, the first gear is mounted on one side of the mounting block, the second gear is mounted between the first gears, and the first gears are meshed with the second gears.
Further, a second motor is installed on one side of the installation block, and one end of one traction roller penetrates through one side of the installation block and is connected with the output end of the second motor.
Further, a pair of discharge ports are arranged at the two ends of the cooling box and close to the first-stage filter screen and the second-stage filter screen.
Further, a pair of collecting boxes are arranged below the discharge hole at two ends of the cooling box.
Compared with the prior art, the utility model has the following beneficial effects:
Through the cooperation of water pump, raceway one, raceway two and spraying mechanism use, after the sealing strip enters into the cooler bin, start the water pump, the water pump carries the water in the water catch bowl to raceway two in through raceway one, raceway two carries water to spraying mechanism in, spraying mechanism sprays water to the sealing strip surface and cools down to the sealing strip, can rinse the granule debris that the sealing strip surface is attached simultaneously, and then improved the result of use of product, then sewage falls into first order filter screen and second grade filter screen and filters, the water after the filtration reentry uses in the water catch bowl, thereby can improve the utilization ratio of water resource, help energy-concerving and environment-protective.
Through the cooperation of motor one, the lead screw, the slider, "匚" type piece and scraper blade, start a pair of motor one, a pair of motor one drives a pair of lead screw and rotates, the lead screw drives a pair of slider through the rotation and removes to one side, the slider drives "匚" type piece and removes to one side, "匚" type piece drives a pair of scraper blade and removes to one side, a pair of scraper blade can clear up the debris on one-level filter screen and second grade filter screen surface at the in-process that removes, the debris of being cleared up falls into the collection box through the bin outlet and collects.
Drawings
Fig. 1 is a schematic perspective view of the present utility model.
Fig. 2 is a schematic perspective view of the present utility model.
Fig. 3 is an internal perspective view of the present utility model.
Fig. 4 is a schematic perspective view of a part of the structure of the present utility model.
Fig. 5 is an enlarged schematic view of the utility model of fig. 1 a.
Fig. 6 is an enlarged schematic view of the utility model B of fig. 3.
In the figure, the correspondence between the component names and the drawing numbers is:
1. The device comprises a cooling box, 101, a water collecting tank, 102, a '匚' type tank, 103, an inlet, 104, an outlet, 105, a sliding chute, 106, a discharge hole, 2, a water pump, 201, a first water pipe, 202, a second water pipe, 3, a spraying mechanism, 4, a '匚' type block, 401, a scraping plate, 5, a traction mechanism, 501, a mounting block, 502, a traction roller, 503, a first gear, 504, a second gear, 6, a screw rod, 601, a sliding block, 7, a first motor, 8, a second motor, 9, a collecting box, 10, a first filter screen, 11, a second filter screen and 12, an auxiliary roller.
Detailed Description
Embodiments of the present utility model are described in further detail below with reference to the accompanying drawings and examples. The following examples are illustrative of the utility model but are not intended to limit the scope of the utility model.
Examples:
as shown in fig. 1 to 6:
The utility model provides an auxiliary vulcanization shaping device for special-shaped automobile sealing strips, which comprises a cooling box 1, wherein a water collecting tank 101 is arranged in the cooling box 1, one side of the water collecting tank 101 is connected with a water pipe I201, the upper end surface of the cooling box 1 is provided with a water pump 2, the other end of the water pipe I201 is connected with the water pump 2, the output end of the water pump 2 is connected with a water pipe II 202, the other end of the water pipe II 202 penetrates through the top of the cooling box 1 and is connected with a spraying mechanism 3, a first-stage filter screen 10 is arranged below the spraying mechanism 3 in the cooling box 1, a second-stage filter screen 11 is arranged below the first-stage filter screen 10 in the cooling box 1, a pair of 匚 type grooves 102 are formed in the inner walls of the two sides of the cooling box 1, which are close to the first-stage filter screen 10 and the second-stage filter screen 11, a pair of '匚' type blocks 4 are movably connected in the '匚' type grooves 102, a pair of scrapers 401 are arranged between the '匚' type blocks 4, the pair of scrapers 401 are respectively attached to the surfaces of the first-stage filter screen 10 and the second-stage filter screen 11, one end of the cooling box 1 is provided with an inlet 103, an outlet 104 is arranged at one end of the cooling box 1, a traction mechanism is arranged at the position of the outlet 104, and a traction mechanism is attached to 5.
Wherein, a plurality of auxiliary rollers 12 are installed above the first-stage filter screen 10 in the cooling box 1, and the auxiliary rollers 12 facilitate the movement of the sealing strips.
Wherein, one side of "匚" type groove 102 is equipped with spout 105, and spout 105 rotates and is connected with lead screw 6, and the peripheral threaded connection of lead screw 6 has slider 601, and one side of slider 601 is connected with "匚" type piece 4.
Wherein, a pair of motors 7 are installed to the one end that is close to entry 103 of cooling tank 1, and the one end of a pair of lead screw 6 runs through cooling tank 1 and is connected with the output of a pair of motors 7 respectively.
The traction mechanism 5 comprises mounting blocks 501, traction rollers 502, first gears 503 and second gears 504, a pair of mounting blocks 501 are mounted on two sides, close to the outlet 104, of one end of the cooling box 1, a pair of traction rollers 502 are rotatably connected between the pair of mounting blocks 501, first gears 503 are mounted on one side, penetrating through one mounting block 501, of one end of each traction roller 502, second gears 504 are mounted between the pair of first gears 503, and the pair of first gears 503 are in meshed connection with the second gears 504.
Wherein, motor two 8 is installed to one side of installation piece 501, and one end of one of them traction roller 502 runs through one side of installation piece 501 and is connected with motor two 8's output.
Wherein, the two ends of the cooling box 1 are respectively provided with a pair of discharge ports 106 near the first-stage filter screen 10 and the second-stage filter screen 11.
Wherein a pair of collecting boxes 9 are mounted at both ends of the cooling box 1 below the discharge port 106.
The working principle of the embodiment is as follows:
After the sealing strip enters the cooling box 1 through the inlet 103, the water pump 2 is started, the water pump 2 conveys water in the water collecting tank 101 to the water conveying pipe two 202 through the water conveying pipe one 201, the water conveying pipe two 202 conveys water to the spraying mechanism 3, the spraying mechanism 3 sprays water to the sealing strip surface to cool the sealing strip, meanwhile, particle impurities attached to the sealing strip surface can be cleaned, further the using effect of products is improved, then sewage falls into the first-stage filter screen 10 and the second-stage filter screen 11 to be filtered, the filtered water reenters the water collecting tank 101 to be used, and accordingly the utilization rate of water resources can be improved, energy conservation and environmental protection are facilitated, the first motor 7 is started, the first motor 7 drives the first screw 6 to rotate, the first screw 6 drives the first slider 601 to move to one side, the slider 601 drives the first slider 匚 to move to one side, the first slider 匚 4 drives the first scraper 401 to move to one side, the first filter screen 10 and the second filter screen 11 can be cleaned in the moving process, the impurities on the first filter screen 11 can be cleaned, the impurities can fall into the first motor 504 and the second filter screen 11 to be cleaned through the second motor 106 to be pulled into the second roller 502 through the first motor 9 to be pulled into the second roller 502, the second roller 502 drives the second roller 502 to rotate, the first roller 504 drives the second roller 504 to rotate, and the second roller 504 drives the second roller 504 to rotate, and one of the roller 504 can be pulled into the second roller 8 to rotate, and the roller 502 rotates the roller 8 to be driven to rotate the second roller 8 to be driven to rotate, and the roller 8.
The embodiments of the utility model have been presented for purposes of illustration and description, and are not intended to be exhaustive or limited to the utility model in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments were chosen and described in order to best explain the principles of the utility model and the practical application, and to enable others of ordinary skill in the art to understand the utility model for various embodiments with various modifications as are suited to the particular use contemplated.