CN213890871U - Novel vulcanizer sheave slotted plate structure - Google Patents

Novel vulcanizer sheave slotted plate structure Download PDF

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Publication number
CN213890871U
CN213890871U CN202022347871.4U CN202022347871U CN213890871U CN 213890871 U CN213890871 U CN 213890871U CN 202022347871 U CN202022347871 U CN 202022347871U CN 213890871 U CN213890871 U CN 213890871U
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China
Prior art keywords
sheave
groove
plate
groove plate
fixed
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CN202022347871.4U
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陈洪
江云灼
朱开华
范良喜
陈美娇
陈辉
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FUJIAN SANMING DONGCHEN MACHINERY MANUFACTURING CO LTD
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FUJIAN SANMING DONGCHEN MACHINERY MANUFACTURING CO LTD
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Abstract

The utility model relates to a novel vulcanizer sheave groove plate structure, which comprises a frame, a groove plate, a first sheave and a second sheave, wherein the frame is provided with a chute, the groove plate is fixed with a base, the base is fixed with a slide block, the outer side of a deep groove ball bearing is connected with the inner side of the bearing sleeve, the joint of one side of the first sheave and the groove plate is provided with an expansion sleeve, the inner side of the expansion sleeve is matched with the first sheave, the outer side of the expansion sleeve is matched with the groove plate, the other side of the first sheave is provided with a needle bearing, one side of the second sheave is connected with the first sheave through the needle bearing, the novel vulcanizer sheave groove plate structure has thinner groove plate, can produce V belts with smaller specifications, has simple structure, can adjust height, has long service life, and is provided with two groups of sheaves, and is convenient for production, the supporting effect between the grooved wheels is good.

Description

Novel vulcanizer sheave slotted plate structure
Technical Field
The utility model relates to a vulcanizer technical field specifically is a novel vulcanizer sheave groove plate structure.
Background
As is known, the existing vulcanizer trough plate is an auxiliary device for a vulcanizer, which is widely used in the field of vulcanizers.
For example, the patent publication "CN 103331851B" is named as: the invention discloses an E-shaped winding rubber track vulcanizing device, which comprises a vulcanizing main machine, a tensioning device and an auxiliary trolley device, wherein the vulcanizing main machine consists of an upper layer hot plate, a middle layer hot plate and a lower layer hot plate; the upper control oil cylinders are respectively arranged on the left and the right of the upper layer hot plate and used for controlling the upper and the lower hot plates to move up and down, and the lower part of the upper layer hot plate is connected with an upper layer cover mold of a crawler; the rear end of the middle-layer hot plate is fixed with a vulcanizing host, an upper-layer bottom die of the crawler is connected to the upper surface of the middle-layer hot plate, the vulcanizing of the crawler with the length of 1/4 is completed by matching with an upper-layer cover die, a lower-layer bottom die of the crawler is connected to the lower surface of the middle-layer hot plate, and the vulcanizing of the crawler with the length of 1/4 can be completed by matching with a lower-layer cover die; the upper surface of the lower-layer hot plate is connected with a lower-layer cover die, and the lower surfaces of the lower-layer hot plate and the lower-layer hot plate are respectively provided with a lower control oil cylinder at the left and right sides and are used for controlling the upper and lower movement of the lower-layer hot plate; the equipment can complete the molding and vulcanizing work of the rubber track through secondary molding and vulcanizing, and improve the production efficiency and the product quality of the rubber track.
The existing E-shaped winding rubber track vulcanizing equipment is found in use that the groove plates are arranged into multiple layers, so that a V belt with a small standard cannot be obtained in V belt production, the specification of the produced V belt is easily limited, and the supporting effect between grooved wheels is poor, so that the use limitation is high.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
To prior art not enough, the utility model provides a support stable novel vulcanizer sheave slotted plate structure, its DCE1610X950X3000 type vulcanizer can vulcanize the shortest V and take 2500 millimeters.
(II) technical scheme
In order to achieve the above object, the utility model provides a following technical scheme: a novel grooved pulley groove plate structure of a vulcanizing machine comprises a frame, a grooved plate, a first grooved pulley and a second grooved pulley, wherein a chute is arranged on the frame, a base is fixed on the grooved plate, a sliding block is fixed on the base and matched with the chute, the grooved plate is fixed on the base, a convex block is fixed on the side surface of the frame, a cooling hole is arranged on the convex block, a steam hole is arranged on the frame, an electric thermocouple hole is arranged in the center of the grooved plate, a plate groove is arranged on the grooved plate, a first grooved pulley is arranged at the end part of the grooved plate, support frames are fixed at two ends of the grooved plate, a mounting groove is arranged on each support frame, a bearing sleeve is fixed in the mounting groove, the outer part of the bearing sleeve is matched with the mounting groove, a deep groove ball bearing is fixed in the bearing sleeve, the outer side of the deep groove ball bearing is connected with the inner side of the bearing sleeve, an expansion sleeve is arranged at the joint of one side of the first grooved pulley and the grooved plate, the inner side of the expansion sleeve is matched with the first grooved pulley, the outer side of the expansion sleeve is matched with the grooved plate, a needle bearing is arranged on the other side of the first grooved pulley, and one side of the second grooved pulley is connected with the first grooved pulley through the needle bearing.
In order to fix deep groove ball bearing conveniently, the utility model discloses the improvement has, the deep groove ball bearing outside is provided with the outer lane, the outer lane with the bearing housing phase-match.
In order to increase the cooling effect, the utility model discloses the improvement has, cooling hole, steam hole and lug set up to two sets of symmetrical arrangement and are in the frame both sides.
In order to conveniently produce the V area, the utility model discloses the improvement has, first sheave and second sheave set up to two sets of symmetrical arrangement and are in the frid both sides.
In order to facilitate the production and processing of multiple batches, the utility model discloses the improvement has, the board groove sets up to the multiunit, the board groove level is arranged on the frid.
In order to realize fixing to the V area, the utility model discloses the improvement has, second sheave opposite side is provided with the flange.
In order to assemble the second grooved wheel conveniently, the utility model discloses the improvement has, second grooved wheel other side tip is provided with the matching groove.
(III) advantageous effects
Compared with the prior art, the utility model provides a novel vulcanizer sheave groove plate structure possesses following beneficial effect:
this novel vulcanizer sheave frid, frid and hot plate adopt integral type structure, can produce the V area of littleer specification, and device simple structure can the height-adjusting, and device life is high, and the sheave sets up to two sets of, convenient production, and support effect is good between the sheave, and equipment has vulcanizes and loads and unloads and takes the duplex position, and the host computer adopts two-column hubei province formula components of a whole that can function independently integrated configuration.
Drawings
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic view of the first sheave and the second sheave of the structure of the present invention;
fig. 3 is a schematic diagram of the structure of fig. 2 according to the present invention.
In the figure: 1. a frame; 2. a groove plate; 3. a first sheave; 4. a second sheave; 5. a base; 6. a slider; 7. a bump; 8. a cooling hole; 9. a steam vent; 10. a thermocouple hole; 11. a plate groove; 12. a support frame; 13. mounting grooves; 14. a bearing housing; 15. a deep groove ball bearing; 16. expanding the sleeve; 17. a needle bearing; 18. an outer ring; 19. a flange; 20. a matching groove; 21. a chute.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, a novel sheave groove plate structure of a vulcanizing machine comprises a frame 1, a groove plate 2, a first sheave 3 and a second sheave 4, wherein a sliding groove 21 is arranged on the frame 1, a base 5 is fixed on the groove plate 2, a sliding block 6 is fixed on the base 5, the sliding block 6 is matched with the sliding groove 21, the groove plate 2 is fixed on the base 5, a convex block 7 is fixed on the side surface of the frame 1, a cooling hole 8 is arranged on the convex block 7, a steam hole 9 is arranged on the frame 1, a thermocouple hole 10 is arranged in the center of the groove plate 2, a plate groove 11 is arranged on the groove plate 2, the first sheave 3 is arranged at the end of the groove plate 2, support frames 12 are fixed at two ends of the groove plate 2, a mounting groove 13 is arranged on the support frames 12, a bearing sleeve 14 is fixed in the mounting groove 13, the outer portion of the bearing sleeve 14 is matched with the mounting groove 13, a deep groove ball bearing 15 is fixed inside the bearing sleeve 14, the outer side of the deep groove ball bearing 15 is connected with the inner side of the bearing sleeve 14, an expansion sleeve 16 is arranged at the joint of one side of the first sheave 3 and the groove plate 2, the inner side of the expansion sleeve 16 is matched with the first sheave 3, the outer side of the expansion sleeve 16 is matched with the groove plate 2, a needle bearing 17 is arranged at the other side of the first sheave 3, and one side of the second sheave 4 is connected with the first sheave 3 through the needle bearing 17.
An outer ring 18 is arranged on the outer side of the deep groove ball bearing 15, the outer ring 18 is matched with the bearing sleeve 14, and the deep groove ball bearing 15 is fixed conveniently.
The cooling holes 8, the steam holes 9 and the lugs 7 are arranged in two groups and are symmetrically arranged on two sides of the frame 1, so that the cooling effect is increased.
The first grooved pulley 3 and the second grooved pulley 4 are arranged in two groups which are symmetrically arranged at two sides of the groove plate 2, so that a V belt is conveniently produced.
The plate grooves 11 are arranged in multiple groups, and the plate grooves 11 are horizontally arranged on the groove plate 2, so that the multi-batch production and processing are facilitated.
The other side of the second sheave 4 is provided with a flange 19 for fixing the V-belt.
The other side end of the second sheave 4 is provided with a matching groove 20 to facilitate the assembly of the second sheave 4.
In the embodiment, the main machine adopts a double-upright-column jaw-type split combined structure, the width of the groove plate is 1610 mm, 80B-type V-shaped belts with the number of the vulcanizable V-shaped belts are vulcanized at one time, the equipment has double stations for vulcanizing and assembling and disassembling the belts, and the groove plate and the hot plate adopt an integrated structure.
To sum up, this novel vulcanizer sheave frid, when using, frid 2 directly is connected with board groove 11, the structure is inseparable, fix frid 2 on base 5, set up slider 6 on base 5, set up spout 21 in frame 1, slider 6 can slide on spout 21, adjust frid 2 is high, be provided with cooling hole 8 and steam hole in frame 1, make things convenient for the manufacturing of V area, first sheave 3 is fixed firm with support frame 12, adopt bearing 17 to connect between first sheave 3 and the second sheave 4, and convenient assembling, and is simple to use, and the support nature is good, has improved the support intensity of sheave, and convenient for have the assembly groove at the end fixing of second sheave 4, simple to operate.
The electrical components presented in the document are all electrically connected with an external master controller and 220V mains, and the master controller can be a conventional known device controlled by a computer or the like.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a novel vulcanizer sheave frid, includes frame (1), frid (2), first sheave (3) and second sheave (4), its characterized in that: the improved steam cooling device is characterized in that a sliding groove (21) is formed in the rack (1), a base (5) is fixed on the groove plate (2), a sliding block (6) is fixed on the base (5), the sliding block (6) is matched with the sliding groove (21), the groove plate (2) is fixed on the base (5), a convex block (7) is fixed on the side surface of the rack (1), a cooling hole (8) is formed in the convex block (7), a steam hole (9) is formed in the rack (1), an electric thermocouple hole (10) is formed in the center of the groove plate (2), a plate groove (11) is formed in the groove plate (2), a first grooved pulley (3) is arranged at the end of the groove plate (2), support frames (12) are fixed at two ends of the groove plate (2), a mounting groove (13) is formed in the support frames (12), a bearing sleeve (14) is fixed in the mounting groove (13), and the outer portion of the bearing sleeve (14) is matched with the mounting groove (13), the inner part of the bearing sleeve (14) is fixedly provided with a deep groove ball bearing (15), the outer side of the deep groove ball bearing (15) is connected with the inner side of the bearing sleeve (14), the joint of one side of the first grooved pulley (3) and the groove plate (2) is provided with an expansion sleeve (16), the inner side of the expansion sleeve (16) is matched with the first grooved pulley (3), the outer side of the expansion sleeve (16) is matched with the groove plate (2), the other side of the first grooved pulley (3) is provided with a needle bearing (17), and one side of the second grooved pulley (4) is connected with the first grooved pulley (3) through the needle bearing (17).
2. The novel vulcanizer sheave channel plate structure of claim 1, wherein: an outer ring (18) is arranged on the outer side of the deep groove ball bearing (15), and the outer ring (18) is matched with the bearing sleeve (14).
3. The novel vulcanizer sheave channel plate structure of claim 1, wherein: the cooling holes (8), the steam holes (9) and the lugs (7) are arranged in two groups and are symmetrically arranged on two sides of the rack (1).
4. The novel vulcanizer sheave channel plate structure of claim 1, wherein: the first grooved pulley (3) and the second grooved pulley (4) are arranged in two groups and are symmetrically arranged on two sides of the groove plate (2).
5. The novel vulcanizer sheave channel plate structure of claim 1, wherein: the plate grooves (11) are arranged into a plurality of groups, and the plate grooves (11) are horizontally arranged on the groove plate (2).
6. The novel vulcanizer sheave channel plate structure of claim 1, wherein: and a flange (19) is arranged on the other side of the second grooved wheel (4).
7. The novel vulcanizer sheave channel plate structure of claim 1, wherein: the other side end of the second grooved wheel (4) is provided with a matching groove (20).
CN202022347871.4U 2020-10-21 2020-10-21 Novel vulcanizer sheave slotted plate structure Active CN213890871U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022347871.4U CN213890871U (en) 2020-10-21 2020-10-21 Novel vulcanizer sheave slotted plate structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022347871.4U CN213890871U (en) 2020-10-21 2020-10-21 Novel vulcanizer sheave slotted plate structure

Publications (1)

Publication Number Publication Date
CN213890871U true CN213890871U (en) 2021-08-06

Family

ID=77113817

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022347871.4U Active CN213890871U (en) 2020-10-21 2020-10-21 Novel vulcanizer sheave slotted plate structure

Country Status (1)

Country Link
CN (1) CN213890871U (en)

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