CN211621084U - Prefabricated self-knotting track and seaming device thereof - Google Patents

Prefabricated self-knotting track and seaming device thereof Download PDF

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Publication number
CN211621084U
CN211621084U CN202020028943.6U CN202020028943U CN211621084U CN 211621084 U CN211621084 U CN 211621084U CN 202020028943 U CN202020028943 U CN 202020028943U CN 211621084 U CN211621084 U CN 211621084U
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hot
rubber
runway
roller
sealing
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CN202020028943.6U
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任海增
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Hebei Jianuo Plastic Products Co ltd
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Hebei Jianuo Plastic Products Co ltd
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Abstract

The utility model relates to a technical field is laid to the rubber track, especially relates to prefabricated type from knot line runway and linking device thereof. The hot-melt type edge sealing device has the advantages that the sealing groove is formed above the abutted seam of the rubber track, rubber lines can be hot-melted by the hot-melt type edge sealing device and then filled and pressed into the sealing groove and the abutted seam, two rubber plates are effectively fused and connected together, the joint strength of the joint position of the rubber track is high, and the phenomena of edge warping and fracture cannot occur; the design of hot melt formula banding device, in thrust unit forward motion process, the front side hot-rolling can carry out the hot melt to the rubber lines to with it the piece of impressing and seal the slot inside, the rear side chill roll can cool off and flatten the hot melt rubber after caulking, thereby realizes the effect of quick hot melt concatenation flattening, the design easy operation of whole device is used very conveniently.

Description

Prefabricated self-knotting track and seaming device thereof
Technical Field
The utility model relates to a technical field is laid to the rubber track, especially relates to prefabricated type from knot line runway and linking device thereof.
Background
The rubber runway comprises friction surface course, elastic layer and the adhesive layer of setting between elastic layer and ground, characterized by: its elastic layer is the panel of a solid plain type structure, because of the elastic layer is solid planar structure, elastic layer and bottom adhesive area are limited, and elastic layer connection intensity receives the limitation, and its piece department has not been connected the processing, and rubber runway live time is long after, often appears bulging even stick up limit fracture phenomenon, not only influences beautifully but also influences the use.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is to the technical insufficiency, a prefabricated self-knotting track and a seaming device thereof are provided, a sealing groove is arranged above the seaming part of the rubber track, the rubber lines can be hot-melted by a hot-melting type edge sealing device and then filled and pressed into the sealing groove and the seaming part, two rubber plates are effectively fused and connected together, the joint position of the rubber track has higher connecting strength, and the phenomena of edge warping and fracture can not occur; the design of hot melt formula banding device, in thrust unit forward motion process, the front side hot-rolling can carry out the hot melt to the rubber lines to with it the piece of impressing and seal the slot inside, the rear side chill roll can cool off and flatten the hot melt rubber after caulking, thereby realizes the effect of quick hot melt concatenation flattening, the design easy operation of whole device is used very conveniently.
In order to solve the technical problem, the utility model discloses the technical scheme who adopts is: comprises a rubber track, a sealing edge spool and a hot-melt type sealing edge device; a gap is formed at the splicing position of the rubber track; a sealing groove is arranged above the gap; the hot-melt type edge sealing device is arranged on the rubber track above the sealing groove; the hot-melting type edge sealing device comprises a support frame, a hot roller, a cold roller, a control box and an electric wire; the control box is fixedly arranged above the left side of the support frame; a switch is arranged on the control box; the top of the support frame is provided with a handle.
Further optimizing the technical scheme, the lower parts of two sides of the supporting frame are provided with the fixed frames; the front side and the rear side of the fixing frame are both provided with a fixing seat; the hot roller bearing is connected between the two fixed seats on the left side.
The technical scheme is further optimized, and heat conducting oil is filled in the hot roller; a rotary joint is arranged at the connecting position of the hot roller and the bearing of the fixed seat; one rotary joint is provided with an electric heating rod, and the other rotary joint is provided with a temperature sensor; the electric heating rod and the temperature sensor are respectively connected with the control box through electric wires.
Further optimize this technical scheme, cold roll bearing connect between two fixing bases on the right side.
Further optimize this technical scheme, hot-rolling and cold roll periphery all be provided with the teflon coating.
Further optimizing the technical scheme, the two sides of the middle position below the left side fixing frame are symmetrically provided with fixing rods; tiles are arranged outside the hot roller below the fixing rods; a guide rod is arranged below the left side of the tile.
Further optimizing the technical scheme, a pay-off rack is arranged below the middle part of the support frame; the edge sealing spool is arranged on the pay-off rack; and rubber lines are wound on the edge sealing spool.
Further optimize this technical scheme, rubber lines one end set up inside sealing the slot after running through two dead lever middle parts and two guide bar middle parts.
Compared with the prior art, the utility model has the advantages of it is following:
1. set up above the piece of rubber runway and seal the slot, accessible hot melt formula banding device fills and impresses behind the hot melt rubber lines and seals slot and piece inside, effectually fuse two rubber slabs and link together, the seam position joint strength of rubber runway is higher, limit and the phenomenon of rupture can not appear sticking up, the piece department of having solved the rubber runway has not been connected the processing, rubber runway live time is after a long time, often appear bulging even stick up limit phenomenon of rupture, not only influence pleasing to the eye but also influence the problem of use.
2. The design of hot melt formula banding device, in thrust unit forward motion in-process, the front side hot-rolling can carry out the hot melt to the rubber lines to it is impressed the piece and is sealed inside the slot.
3. The rear cold roll can cool and flatten the hot-melt rubber after filling joints, thereby realizing the effect of quick hot-melt splicing and leveling.
4. The whole device is simple in design and operation and convenient to use.
Drawings
Fig. 1 is a schematic view of the working state of the prefabricated self-grain-bonding runway and the seaming device thereof.
Fig. 2 is a perspective view of a hot-melt type edge sealing device of the prefabricated self-grain-bonding runway and a seaming device thereof.
FIG. 3 is a partial enlarged view of the splicing hot-melting position structure of the prefabricated self-grained runway and the seaming device thereof.
In the figure: 1. a rubber track; 101. a gap; 102. sealing the groove; 2. sealing the edge of the bobbin; 201. rubber lines; 3. a hot-melt edge sealing device; 301. a support frame; 302. a hot roller; 303. a cold roll; 304. a control box; 305. an electric wire; 306. a switch; 307. a handle; 308. a fixed mount; 309. a fixed seat; 310. a rotary joint; 311. an electrical heating rod; 312. a temperature sensor; 313. fixing the rod; 314. a tile; 315. a guide bar; 316. and (4) a pay-off rack.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in detail with reference to the accompanying drawings. It should be understood that the description is intended to be illustrative only and is not intended to limit the scope of the present invention. Moreover, in the following description, descriptions of well-known structures and techniques are omitted so as to not unnecessarily obscure the concepts of the present invention.
The first embodiment is as follows: with reference to fig. 1-3, the prefabricated self-knotting track and its stitching device are characterized in that: comprises a rubber track 1, a sealing edge spool 2 and a hot-melt type sealing edge device 3; a gap 101 is formed at the splicing position of the rubber track 1; a sealing groove 102 is arranged above the gap 101; the hot-melt type edge sealing device 3 is arranged on the rubber track 1 above the sealing groove 102; the hot melt type edge sealing device 3 comprises a support frame 301, a hot roller 302, a cold roller 303, a control box 304 and an electric wire 305; the control box 304 is fixedly arranged above the left side of the support frame 301; a switch 306 is arranged on the control box 304; the top of the supporting frame 301 is provided with a handle 307.
Preferably, the fixing frames 308 are arranged below two sides of the supporting frame 301; the front side and the rear side of the fixing frame 308 are both provided with fixing seats 309; the hot roller 302 is bearing-coupled between two fixed bases 309 on the left side.
Preferably, the heat roller 302 is filled with heat conducting oil; a rotary joint 310 is arranged at the bearing connecting position of the hot roller 302 and the fixed seat 309; one of the rotary joints 310 is provided with an electric heating rod 311, and the other rotary joint 310 is provided with a temperature sensor 312; the electric heating rod 311 and the temperature sensor 312 are connected to the control box 304 through electric wires 305, respectively.
Preferably, the cold roll 303 is bearing-connected between two fixed seats 309 on the right side.
Preferably, the peripheries of the hot roller 302 and the cold roller 303 are both provided with Teflon coatings.
Preferably, fixing rods 313 are symmetrically arranged on both sides of the middle position below the left fixing frame 308; a tile 314 is arranged outside the hot roller 302 below the fixing lever 313; a guide rod 315 is arranged below the left side of the tile 314.
Preferably, a pay-off rack 316 is arranged below the middle part of the support frame 301; the edge sealing spool 2 is arranged on a pay-off rack 316; the edge sealing spool 2 is wound with rubber lines 201.
Preferably, one end of the rubber line 201 penetrates through the middle parts of the two fixing rods 313 and the two guide rods 315 and is arranged inside the sealing groove 102.
When in use, step one, as shown in fig. 1-3, when the rubber coiled plate is produced, half sealing grooves 102 are respectively arranged above two sides, a gap 101 exists at the splicing position of two rubber plates during laying, and the two half sealing grooves 102 above the gap 101 form a whole sealing groove 102; when the splicing seams are subjected to hot melting connection, the hot-melting type edge sealing device 3 is placed at the position of the splicing seams above the rubber track 1, the edge sealing spool 2 is inserted into the pay-off rack 316, and the edge sealing spool 2 can freely rotate on the pay-off rack 316; the rubber lines 201 on the edge sealing spool 2 are round bars, the cross section of the whole sealing groove 102 is semicircular, one end of the rubber lines 201 on the edge sealing spool 2 is wound above the tile 314, the rubber lines 201 penetrate through the two fixing rods 313 and the guide rod 315, the guide rod 315 and the fixing rod 313 are arranged to locate the rubber lines 201, and one end of the rubber lines 201 penetrates through the middle of the two fixing rods 313 and the middle of the two guide rods 315 and then is arranged inside the sealing groove 102.
A switch 306 on a control box 304 is turned on, and the heat roller 302 is filled with heat conducting oil; a rotary joint 310 is arranged at the bearing connecting position of the hot roller 302 and the fixed seat 309; one of the rotary joints 310 is provided with an electric heating rod 311, and the other rotary joint 310 is provided with a temperature sensor 312; the electric heating rod 311 and the temperature sensor 312 are respectively connected with the control box 304 through the electric wire 305, so that when the control box 304 is powered on, the electric heating rod 311 starts to heat the heat conducting oil in the hot roller 302, and meanwhile, the temperature sensor 312 monitors the temperature of the heat conducting oil in real time; the temperature of the heat conducting oil can be controlled to be constant by the temperature sensor 312.
And step two, as shown in fig. 1-3, when the heat conduction oil reaches a certain temperature, the hot roller 302 starts to melt the rubber line 201, the whole device is pushed forward through the handle 307 above, the hot roller 302 starts to roll forward, and the hot melted rubber line 201 is pressed into the sealing groove 102 and the gap 101 when the hot roller 302 rolls forward, so that the sealing groove 102 and the gap 101 can be connected through the hot melted rubber line 201, and the rubber plates on two sides of the gap 101 are heated simultaneously in the movement process of the hot roller 302, which is beneficial to the effective connection of the rubber plates and the rubber plates in a hot melting state.
The rubber line 201 is continuously pressed into the sealing groove 102 in the process that the hot roller 302 pushes forwards, so that the action of automatic line feeding is realized; because the cold roll 303 is in bearing connection between the two right fixed seats 309', the cold roll 303 at the rear side can cool and flatten the hot-melt rubber after filling the gaps, thereby realizing the effect of quick hot-melt splicing and leveling.
The peripheries of the hot roller 302 and the cold roller 303 are both provided with Teflon coatings, so that the hot melt rubber can be prevented from being adhered to the hot melt rubber of the hot roller 302 and the cold roller 303.
The utility model discloses a control mode comes automatic control through the controller, and the control circuit of controller can realize through the simple programming of technical staff in this field, belongs to the common general knowledge in this field, and the utility model discloses mainly be used for protecting mechanical device, so the utility model discloses no longer explain control mode and circuit connection in detail.
It is to be understood that the above-described embodiments of the present invention are merely illustrative of or explaining the principles of the invention and are not to be construed as limiting the invention. Therefore, any modification, equivalent replacement, improvement and the like made without departing from the spirit and scope of the present invention should be included in the protection scope of the present invention. Further, it is intended that the appended claims cover all such variations and modifications as fall within the scope and boundaries of the appended claims or the equivalents of such scope and boundaries.

Claims (8)

1. Prefabricated type is from knot line runway and linking device thereof, its characterized in that: comprises a rubber track (1), a sealing edge spool (2) and a hot-melt type sealing edge device (3); a gap (101) is arranged at the splicing position of the rubber track (1); a sealing groove (102) is arranged above the gap (101); the hot-melt type edge sealing device (3) is arranged on the rubber track (1) above the sealing groove (102); the hot-melt type edge sealing device (3) comprises a support frame (301), a hot roller (302), a cold roller (303), a control box (304) and an electric wire (305); the control box (304) is fixedly arranged above the left side of the support frame (301); a switch (306) is arranged on the control box (304); the top of the support frame (301) is provided with a handle (307).
2. The prefabricated self-knotting pattern runway and the seaming device thereof according to claim 1, characterized in that: the lower parts of two sides of the supporting frame (301) are respectively provided with a fixed frame (308); the front side and the rear side of the fixed frame (308) are provided with fixed seats (309); the hot roller (302) is connected between two fixed seats (309) on the left side through a bearing.
3. The prefabricated self-knotting pattern runway and the seaming device thereof according to claim 2, characterized in that: the heat roller (302) is filled with heat conduction oil; a rotary joint (310) is arranged at the bearing connecting position of the hot roller (302) and the fixed seat (309); one rotary joint (310) is provided with an electric heating rod (311), and the other rotary joint (310) is provided with a temperature sensor (312); the electric heating rod (311) and the temperature sensor (312) are respectively connected with the control box (304) through an electric wire (305).
4. The prefabricated self-knotting pattern runway and the seaming device thereof according to claim 2, characterized in that: the cold roll (303) is connected between the two right fixed seats (309) through a bearing.
5. The prefabricated self-knotting pattern runway and the seaming device thereof according to claim 1, characterized in that: the peripheries of the hot roller (302) and the cold roller (303) are both provided with Teflon coatings.
6. The prefabricated self-knotting pattern runway and the seaming device thereof according to claim 2, characterized in that: fixing rods (313) are symmetrically arranged on two sides of the middle position below the left side fixing frame (308); a tile (314) is arranged outside the hot roller (302) below the fixing rod (313); a guide rod (315) is arranged below the left side of the tile (314).
7. The prefabricated self-knotting pattern runway and the seaming device thereof according to claim 1, characterized in that: a pay-off rack (316) is arranged below the middle part of the support frame (301); the edge sealing spool (2) is arranged on the pay-off rack (316); and a rubber line (201) is wound on the edge sealing spool (2).
8. The prefabricated self-knotting pattern runway and the seaming device thereof according to claim 7, characterized in that: one end of the rubber line (201) penetrates through the middle parts of the two fixing rods (313) and the two guide rods (315) and then is arranged in the sealing groove (102).
CN202020028943.6U 2020-01-08 2020-01-08 Prefabricated self-knotting track and seaming device thereof Active CN211621084U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020028943.6U CN211621084U (en) 2020-01-08 2020-01-08 Prefabricated self-knotting track and seaming device thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020028943.6U CN211621084U (en) 2020-01-08 2020-01-08 Prefabricated self-knotting track and seaming device thereof

Publications (1)

Publication Number Publication Date
CN211621084U true CN211621084U (en) 2020-10-02

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ID=72636251

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020028943.6U Active CN211621084U (en) 2020-01-08 2020-01-08 Prefabricated self-knotting track and seaming device thereof

Country Status (1)

Country Link
CN (1) CN211621084U (en)

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