CN221249547U - Efficient vulcanizing equipment for producing silica gel sealing rings - Google Patents

Efficient vulcanizing equipment for producing silica gel sealing rings Download PDF

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Publication number
CN221249547U
CN221249547U CN202323002202.3U CN202323002202U CN221249547U CN 221249547 U CN221249547 U CN 221249547U CN 202323002202 U CN202323002202 U CN 202323002202U CN 221249547 U CN221249547 U CN 221249547U
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China
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vulcanizing
worm
driven wheel
silica gel
sliding
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CN202323002202.3U
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Chinese (zh)
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支青
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Suzhou Weizhong Hydraulic Technology Co ltd
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Suzhou Weizhong Hydraulic Technology Co ltd
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Abstract

The utility model discloses efficient vulcanizing equipment for producing a silica gel sealing ring, which comprises a base, wherein guide rods are arranged at four corners of the top of the base, sliding plates are sleeved on the outer surfaces of the two guide rods in a sliding way, which are in front-back symmetry, a mounting box is connected between opposite side ends of the two sliding plates, a vulcanizing template is arranged on the mounting box, a circular vulcanizing groove is formed in the upper surface of the vulcanizing template, a limit rod is arranged on the middle surface of the bottom end inside the circular vulcanizing groove, a groove is formed in the middle surface of the bottom end of the vulcanizing template, a transverse plate is arranged in the groove, a lifting structure and a pushing structure are arranged on the transverse plate, top seats are connected with the tops of the four guide rods together, a vulcanizing electric heating plate is arranged on the middle surface of the bottom end of the top seat, and a hydraulic cylinder connected with the bottom surface of the mounting box is arranged on the base, so that vulcanizing efficiency of the silica gel sealing ring can be improved.

Description

Efficient vulcanizing equipment for producing silica gel sealing rings
Technical Field
The utility model relates to the technical field of production of sealing rings, in particular to efficient vulcanizing equipment for producing a silica gel sealing ring.
Background
The silica gel sealing ring is the sealing ring of silica gel material, and silica gel sealing ring vulcanization treatment just is putting the silica gel sealing ring that the shaping is good into the curing plant, heats and the curing plant, but can set up the sealing ring shaping groove on the mould of some curing plant among the prior art, and the curing plant is in the back of carrying out the curing plant to the silica gel sealing ring, and the sealing ring in all shaping grooves can not take out simultaneously to reduced the efficiency of curing plant vulcanization, for this reason, we provide the high-efficient curing plant for the production of silica gel sealing ring.
Disclosure of utility model
The utility model aims to provide efficient vulcanizing equipment for producing a silica gel sealing ring, so as to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a high-efficient vulcanization equipment is used in production of silica gel sealing washer, includes the base, the four corners department at base top all is equipped with the guide bar, is the outer surface of two guide bars of fore-and-aft symmetry and has slided jointly and cup jointed the slide, and is connected with the mounting box jointly between two slide opposite one side ends, be equipped with the vulcanization template on the mounting box, a plurality of evenly distributed's circular vulcanization groove has been seted up to the upper surface of vulcanization template, and the middle part surface of the inside bottom of circular vulcanization groove is equipped with the gag lever post, the recess has been seted up to the middle part surface of vulcanization template bottom, be equipped with the diaphragm in the recess, and be equipped with elevation structure and propelling movement structure on the diaphragm, the top of four guide bars is connected with the footstock jointly, the middle part surface of footstock bottom is equipped with the electrical heating board, the middle part surface at base top is equipped with the pneumatic cylinder, and the output at pneumatic cylinder top is connected with the bottom surface of mounting box.
Further, the lifting structure comprises three thread cylinders, wherein the three thread cylinders are all connected to the bottom end surface of the transverse plate, the three thread cylinders are distributed in an equidistant transverse arrangement mode, the other ends of the three thread cylinders are all connected with the top end surface of the installation box in a sliding and penetrating mode, a first sliding hole matched with the thread cylinders is formed in the installation box, a screw is connected with the thread cylinder in a threaded mode, a rotating rod is connected to the bottom end of the screw, a first bearing is connected to the other end of the rotating rod in a rotating mode, the first bearing is connected to the bottom end surface of the installation box in a penetrating mode, and a passive assembly is arranged on the rotating rod.
Further, the passive component comprises three worm wheels, the three worm wheels are fixedly sleeved on the outer surfaces of the three rotating rods respectively, a first worm, a second worm and a third worm are respectively connected to the rear side walls of the three worm wheels in a transmission mode, one opposite side ends of the first worm and the third worm are connected with the second worm through supporting rods, one of the opposite side ends of the first worm and the third worm is provided with a driving component, one side end, far away from the first worm and the third worm, of each of the first worm is rotatably connected with a second bearing, and the second bearings are respectively connected with left side walls and right side walls of the installation box in a penetrating mode.
Further, the driving assembly comprises a driven wheel II, the driven wheel II is fixedly sleeved on the outer surface of the supporting rod, a driven wheel I which is identical to the driven wheel I is arranged under the driven wheel II, an avoidance groove which is formed in the bottom end surface of the mounting box is formed between the driven wheel II and the driven wheel I, a transmission belt is arranged in the avoidance groove, the transmission belt is connected to the outer surfaces of the driven wheel I and the driven wheel II, the right end of the driven wheel I is connected with the output end of the motor, and the upper surface of the motor is connected with the bottom end surface of the mounting box through a bearing plate.
Further, the propelling movement structure includes a plurality of evenly distributed's annular piece, and a plurality of annular pieces cup joint respectively in the external surface of a plurality of gag lever posts, and the lower surface of annular piece contacts with the bottom surface in the circular vulcanizing tank, both ends surface all is equipped with the push rod about the annular piece bottom, the other end slip of push rod runs through vulcanizing the template and is connected with the top surface of diaphragm, vulcanizing the slide hole second of having offered with push rod looks adaptation on the template, the height of screw thread section of thick bamboo is greater than the height of push rod.
Further, the height of the push rod is larger than the inner height of the circular vulcanizing tank, and the outer wall and the inner wall of the push rod are respectively in sliding connection with the inner wall of the circular vulcanizing tank and the outer wall of the limiting rod.
Further, the middle surfaces of the left end and the right end of the transverse plate are respectively provided with a sliding block, the other ends of the sliding blocks are connected with the inner walls of the grooves in a sliding and penetrating mode, and sliding grooves matched with the sliding blocks are formed in the vulcanizing templates.
Compared with the prior art, the utility model has the beneficial effects that:
1. Through setting up this high-efficient vulcanization equipment is used in silica gel sealing washer production, through setting up circular vulcanizing tank and gag lever post, can be with the sealing ring cover spacing in circular vulcanizing tank, then promote the installation case upward movement through the output at pneumatic cylinder top, can drive the vulcanization form and remove and be close to the vulcanization electrical heating board and closely laminate together with it, thereby can heat and vulcanize the sealing washer, after the processing work, drive installation case and vulcanization form downwardly moving through the pneumatic cylinder and reset, then through motor, follow driving wheel one, follow driving wheel two, the drive belt, first worm, the second worm, third worm and the joint action of two bracing pieces, can drive bull stick and screw rod rotation, thereby can drive the screw cylinder upward or down motion with screw rod threaded connection, thereby can drive push rod and annular piece through the diaphragm and carry out upward or decurrent mobile motion, simultaneously upwards move can push out together the silica gel sealing washer in all circular vulcanizing tank through all annular pieces, thereby great improvement silica gel sealing washer vulcanization's efficiency.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
in the figure: 1. a slide plate; 7. vulcanizing the electric heating plate; 8. a hydraulic cylinder;
FIG. 2 is an enlarged schematic view of the structure of FIG. 1A according to the present utility model;
In the figure: 1. a slide plate; 2. a mounting box; 3. vulcanizing the template; 4. a circular vulcanizing tank; 5. a groove; 6. a cross plate; 8. a hydraulic cylinder; 9. a thread cylinder; 10. a screw; 11. a rotating rod; 12. a worm wheel; 13. a first worm; 14. a second worm; 15. a third worm; 16. a driven wheel II; 17. a driven wheel I; 18. an avoidance groove; 19. a motor; 20. an annular block; 21. a push rod; 22. a slide block; 23. a chute; 24. and a limit rod.
FIG. 3 is an enlarged schematic view of the structure of FIG. 2B according to the present utility model;
In the figure: 3. vulcanizing the template; 4. a circular vulcanizing tank; 20. an annular block; 24. and a limit rod.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Example 1
Referring to fig. 1-3, the efficient vulcanizing device for producing the silica gel sealing ring comprises a base, guide rods (not shown in the drawing) are arranged at four corners of the top of the base, two guide rods which are symmetrical front and back are sleeved on the outer surfaces of the guide rods in a sliding mode, a sliding plate 1 is sleeved on the outer surfaces of the guide rods in a sliding mode, guide holes (not shown in the drawing) which are matched with the guide rods are formed in the sliding plate 1, an installation box 2 is connected between one opposite side ends of the two sliding plates 1 in a sliding mode, a vulcanizing template 3 is arranged on the installation box 2, a plurality of uniformly distributed circular vulcanizing grooves 4 are formed in the upper surface of the vulcanizing template 3, a limit rod 24 is arranged on the middle surface of the inner bottom end of the circular vulcanizing groove 4, the limit rod 24 is fixed on the inner bottom end of the circular vulcanizing groove 4, the limit rod 24 is identical to the inner height of the circular vulcanizing groove 4, a groove 5 is formed in the middle surface of the bottom end of the vulcanizing template 3, a transverse plate 6 is formed in the transverse plate 6, a lifting structure and a pushing structure are formed in the middle of the top of the four guide rods, a top seat is connected with a top seat in a common mode, the middle surface of the bottom end of the top seat is provided with a vulcanizing electric 7, the middle surface of the top seat is provided with a hydraulic pressure plate 8, the top 8 is arranged on the middle surface of the top of the base, the top 8 is connected with the output end of the heating plate 8 and the top 8 and can move with the heating plate 8 or move down to the electric pressure cylinder 7, the top 7, the heating plate 8 can move or move down, and the top 7 can move down, and the heating plate 7 is far away from the top 7, and move, so as to move down, and can move down, and move.
Referring to fig. 2, the lifting structure comprises three screw thread cylinders 9, wherein the three screw thread cylinders 9 are all connected to the bottom end surface of the transverse plate 6, the three screw thread cylinders 9 are distributed in equidistant transverse arrangement, the other ends of the three screw thread cylinders 9 are all connected with the top end surface of the installation box 2 in a sliding and penetrating manner, a sliding hole I matched with the screw thread cylinder 9 is formed in the installation box 2, a screw 10 is connected with the inner screw thread of the screw thread cylinder 9, the bottom end of the screw 10 is connected with a rotating rod 11, the other end of the rotating rod 11 is rotationally connected with a bearing I, the bearing I is connected with the bottom end surface in the installation box 2 in a penetrating manner, a driven component is arranged on the rotating rod 11, the driven component comprises three worm gears 12, the three worm gears 12 are fixedly sleeved on the outer surfaces of the three rotating rods 11 respectively, a first worm 13, a second worm 14 and a third worm 15 are respectively connected to the rear side walls of the three worm gears 12 in a driving manner, the opposite side ends of the first worm 13 and the third worm 15 are connected with the second worm 14 through supporting rods, one supporting rod is provided with a driving component, one side end, far away from the first worm 13 and the third worm 15, of each supporting rod is rotationally connected with a bearing II, the two bearings II are respectively connected with the left side wall and the right side wall in the installation box 2 in a penetrating way, the driving component comprises a driven wheel II 16, the driven wheel II 16 is fixedly sleeved on the outer surface of the supporting rod, a driven wheel I17 which is the same as the driven wheel II is arranged under the driven wheel II 16, an avoidance groove 18 which is arranged on the bottom end surface of the installation box 2 is arranged between the driven wheel II 16 and the driven wheel I17, a transmission belt is arranged in the avoidance groove 18, the transmission belt is connected to the outer surfaces of the driven wheel I17 and the driven wheel II 16, the inner wall of the avoidance groove 18 cannot contact with the transmission belt, and the right end of the driven wheel I17 is connected with the output end of a motor 19, the upper surface of motor 19 passes through the acceptor plate and links to each other with the bottom surface of mounting box 2, through the output rotation of motor 19, can drive from driving wheel two 16 rotations, thereby can make from driving wheel one 17 through the drive belt and carry out synchronous motion, thereby can drive first worm 13 through the bracing piece, second worm 14 and third worm 15 carry out equidirectional rotation motion simultaneously, thereby can drive three worm wheel 12 and rotate simultaneously, thereby can drive screw rod 10 rotation through bull stick 11, thereby can drive the screw section of thick bamboo 9 with screw 10 threaded connection and upwards or move down, thereby can drive push structure through diaphragm 6 and carry out upwards or downward movement.
Referring to fig. 2-3, the pushing structure includes a plurality of evenly distributed annular blocks 20, the plurality of annular blocks 20 are respectively sleeved on the outer surfaces of the plurality of limiting rods 24, the lower surfaces of the annular blocks 20 are contacted with the bottom end surfaces in the circular vulcanizing grooves 4, push rods 21 are respectively arranged on the left and right end surfaces of the bottoms of the annular blocks 20, the other ends of the push rods 21 slide through the vulcanizing templates 3 and are connected with the top surfaces of the transverse plates 6, sliding holes II matched with the push rods 21 are formed in the vulcanizing templates 3, the height of the threaded cylinders 9 is greater than that of the push rods 21, the height of the push rods 21 is greater than that of the inner surfaces of the circular vulcanizing grooves 4, the outer walls and the inner walls of the push rods 21 are respectively connected with the inner walls of the circular vulcanizing grooves 4 and the outer walls of the limiting rods 24 in a sliding manner, and upward or downward movement is performed through the transverse plates 6, so that the plurality of push rods 21 can move upward simultaneously, and all the annular blocks 20 on the vulcanizing templates 3 can be pushed upward simultaneously, and sealing rings in all the circular vulcanizing grooves 4 can be pushed out simultaneously, and the sealing rings are further improved.
Example 2
On the basis of embodiment 1, a sliding block 22 and a sliding groove 23 are added, and referring to fig. 2, the surfaces of the middle parts of the left and right ends of the transverse plate 6 are respectively provided with the sliding block 22, the other end of the sliding block 22 is connected with the inner wall of the groove 5 in a sliding and penetrating manner, the vulcanizing mold plate 3 is provided with the sliding groove 23 matched with the sliding block 22, and the sliding connection between the sliding block 22 and the sliding groove 23 is beneficial to improving the stability of the transverse plate 6 in the up-and-down movement process, so that the use effect of the lifting structure and the pushing structure is beneficial to being improved.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. Silica gel sealing washer production is with high-efficient vulcanization equipment, including the base, its characterized in that: the four corners department at base top all is equipped with the guide bar, and is the outer surface of two guide bars of fore-and-aft symmetry and has slided jointly and cup jointed slide (1), and is connected with install bin (2) jointly between the relative one side of two slide (1), be equipped with vulcanization template (3) on install bin (2), circular vulcanization groove (4) of a plurality of evenly distributed have been seted up to the upper surface of vulcanization template (3), and the middle part surface of the inside bottom of circular vulcanization groove (4) is equipped with gag lever post (24), fluted (5) are seted up on the middle part surface of vulcanization template (3) bottom, be equipped with diaphragm (6) in recess (5), and be equipped with elevation structure and propelling movement structure on diaphragm (6), the top of four guide bars is connected with the footstock jointly, the middle part surface of footstock bottom is equipped with vulcanization electrical heating board (7), the middle part surface at base top is equipped with pneumatic cylinder (8), and the output at pneumatic cylinder (8) top is connected with the bottom surface of install bin (2).
2. The efficient vulcanizing device for producing a silica gel sealing ring according to claim 1, wherein: the lifting structure comprises three thread cylinders (9), wherein the three thread cylinders (9) are connected to the bottom end surface of a transverse plate (6), the three thread cylinders (9) are distributed in an equidistant transverse arrangement mode, the other ends of the three thread cylinders (9) are connected with the top end surface of an installation box (2) in a sliding penetrating mode, sliding holes I matched with the thread cylinders (9) are formed in the installation box (2), a screw rod (10) is connected to the inner threads of the thread cylinders (9), a rotating rod (11) is connected to the bottom end of the screw rod (10), a bearing I is connected to the other end of the rotating rod (11) in a rotating mode, the bearing I is connected to the bottom end surface of the installation box (2) in a penetrating mode, and a passive component is arranged on the rotating rod (11).
3. The efficient vulcanizing device for producing the silica gel sealing ring according to claim 2, wherein: the passive component comprises three worm wheels (12), the three worm wheels (12) are fixedly sleeved on the outer surfaces of the three rotating rods (11) respectively, a first worm (13), a second worm (14) and a third worm (15) are respectively connected to the rear side walls of the three worm wheels (12) in a transmission mode, one opposite side ends of the first worm (13) and the third worm (15) are connected with the second worm (14) through supporting rods, one of the two opposite side ends is provided with a driving component, one side end, far away from the first worm (13) and the third worm (15), of each supporting rod is connected with a second bearing in a rotating mode, and the second bearings are respectively connected with left side walls and right side walls of the installation box (2) in a penetrating mode.
4. The efficient vulcanizing device for producing a silica gel sealing ring according to claim 3, wherein: the driving assembly comprises a driven wheel II (16), the driven wheel II (16) is fixedly sleeved on the outer surface of the supporting rod, a driven wheel I (17) identical to the driven wheel II is arranged under the driven wheel II (16), an avoidance groove (18) formed in the bottom end surface of the mounting box (2) is formed between the driven wheel II (16) and the driven wheel I (17), a transmission belt is arranged in the avoidance groove (18), the transmission belt is connected to the outer surfaces of the driven wheel I (17) and the driven wheel II (16), the right end of the driven wheel I (17) is connected with the output end of the motor (19), and the upper surface of the motor (19) is connected with the bottom end surface of the mounting box (2) through a bearing plate.
5. The efficient vulcanizing device for producing the silica gel sealing ring according to claim 2, wherein: the pushing structure comprises a plurality of evenly distributed annular blocks (20), the annular blocks (20) are sleeved on the outer surfaces of the limiting rods (24) respectively, the lower surfaces of the annular blocks (20) are in contact with the bottom end surfaces in the circular vulcanizing grooves (4), pushing rods (21) are arranged on the left end surface and the right end surface of the bottom of the annular blocks (20), the other ends of the pushing rods (21) penetrate through the vulcanizing templates (3) in a sliding mode and are connected with the top surfaces of the transverse plates (6), sliding holes II matched with the pushing rods (21) are formed in the vulcanizing templates (3), and the height of the threaded cylinders (9) is larger than that of the pushing rods (21).
6. The efficient vulcanizing device for producing the silica gel sealing ring according to claim 5, wherein: the height of the push rod (21) is larger than the inner height of the circular vulcanizing tank (4), and the outer wall and the inner wall of the push rod (21) are respectively connected with the inner wall of the circular vulcanizing tank (4) and the outer wall of the limiting rod (24) in a sliding mode.
7. The efficient vulcanizing device for producing a silica gel sealing ring according to claim 1, wherein: the middle surfaces of the left end and the right end of the transverse plate (6) are respectively provided with a sliding block (22), the other ends of the sliding blocks (22) are connected with the inner wall of the groove (5) in a sliding and penetrating mode, and sliding grooves (23) matched with the sliding blocks (22) are formed in the vulcanizing templates (3).
CN202323002202.3U 2023-11-07 Efficient vulcanizing equipment for producing silica gel sealing rings Active CN221249547U (en)

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CN221249547U true CN221249547U (en) 2024-07-02

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