A zeolite rotary wheel facilitating splicing and a method of using the same
The design of the zeolite rotor, which is easy to assemble, and the use of installation and locking components, solves the problem of inconvenient replacement of zeolite discs, and enables convenient assembly and disassembly of the zeolite rotor, thus improving ease of use.
Patent Information
- Application Number
- CN202410579431.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-11
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2044-05-11
AI Technical Summary
The existing zeolite rotor is inconvenient to replace and install during the zeolite disc replacement process, and the zeolite disc cannot be replaced separately, making it inconvenient to use.
A zeolite rotor that is easy to assemble is designed, which adopts an installation component, a rotary clutch locking component, and a pick-and-place locking component. The first locking component is locked by adjusting the rotary clutch component, which drives the zeolite rotor assembly to rotate. The pick-and-place locking component facilitates the assembly and disassembly of the zeolite rotor.
It enables convenient assembly and disassembly of zeolite rotors, simplifies the replacement process of zeolite discs, and improves ease of use.
Smart Images

Figure CN118479596B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of zeolite rotating wheel, in particular to a kind of zeolite rotating wheel convenient to splice and its use method. BACKGROUND
[0002] Zeolite rotating wheel is a kind of equipment for water treatment and wastewater treatment. It purifies water quality by using zeolite as adsorbent to adsorb harmful substances and impurities in water on the surface of zeolite. Zeolite rotating wheel is usually composed of a rotating wheel or disc, and the surface is coated with zeolite particles. When water passes through zeolite rotating wheel, zeolite particles will adsorb harmful substances in water, so that water quality is purified. Zeolite rotating wheel is a commonly used water treatment equipment, which can effectively remove odors, color, heavy metals and other substances in water, and improve water quality.
[0003] Among many prior arts, Chinese patent CN219804421U discloses a zeolite rotating wheel with adsorption and desorption functions, which comprises a frame, and the frame is rotationally connected with a zeolite rotating wheel. The zeolite rotating wheel comprises a rotating wheel ring and a rotating wheel shaft, and a zeolite disc filled between the rotating wheel ring and the rotating wheel shaft. A plurality of spokes are connected between one end of the rotating wheel ring and the rotating wheel shaft. The other end of the rotating wheel ring is connected with a plurality of fixing rods through screws, and the fixing rods are arranged one by one corresponding to the spokes, for fixing the position of the zeolite disc through the fixing rods. One end of the zeolite disc is provided with a limiting groove matched with the spoke, and the other end is provided with a fixing groove matched with the fixing rod. The zeolite disc is spliced by a plurality of zeolite core blocks. The zeolite core blocks can be disassembled and assembled one by one by filling the zeolite disc between the rotating wheel ring and the rotating wheel shaft, and splicing the zeolite disc by a plurality of zeolite core blocks, which solves the problem of inconvenient disassembly and assembly of the existing zeolite disc.
[0004] However, the patent is not convenient for replacing the zeolite disc, and the zeolite disc cannot be replaced alone, which makes it inconvenient to use.
[0005] Therefore, the present application designs a kind of zeolite rotating wheel convenient to splice and its use method to solve the above problems. SUMMARY
[0006] In view of the above shortcomings of the prior art, the present application provides a kind of zeolite rotating wheel convenient to splice and its use method.
[0007] To achieve the above purpose, the present application is realized by the following technical scheme:
[0008] A kind of zeolite rotating wheel convenient to splice, including installation component, the installation component is installed on splicing zeolite rotating wheel component, rotating clutch locking assembly and take and place locking assembly, the take and place locking assembly is set up on splicing zeolite rotating wheel component, the rotating clutch locking assembly is set up on splicing zeolite rotating wheel component;
[0009] The rotating clutch locking assembly comprises a first locking assembly and a rotating clutch assembly, the first locking assembly is arranged on the spliced zeolite runner assembly, the first locking assembly is connected with the rotating clutch assembly, and the first locking assembly and the rotating clutch assembly are connected with the mounting assembly.
[0010] Further, the mounting assembly comprises a runner mounting frame, a mounting table and rollers, the rollers are a plurality of and are rotatably arranged on the runner mounting frame, the rollers are connected with the spliced zeolite runner assembly, the rotating clutch assembly is connected with the mounting table, the first locking assembly is connected with the runner mounting frame, and the taking and placing locking assembly is connected with the runner mounting frame.
[0011] Further, the spliced zeolite runner assembly comprises fan-shaped zeolite blocks, first locking holes, mounting sleeves, mounting plates, rotating rings, arc-shaped cover plates, slide rails, first slide grooves and second slide grooves, the fan-shaped zeolite blocks, the mounting plates and the arc-shaped cover plates are a plurality of, the mounting plates are fixedly arranged at equal intervals on the outer end of the mounting sleeve, the fan-shaped zeolite blocks are embedded in the cavity formed between the adjacent two mounting plates and the mounting sleeve and the arc-shaped cover plate, the first locking holes are arranged on the fan-shaped zeolite blocks and are used for locking connection with the first locking assembly, the rotating ring is fixedly arranged on the front end of the mounting plate, the annular groove is arranged on the rotating ring and is used for rolling connection with the roller, the arc-shaped cover plate is arranged between the two mounting plates, the slide rails are fixedly arranged on the two sides of the arc-shaped cover plate, the first slide grooves are arranged on the two sides of the mounting plate and are used for sliding connection with the slide rails, the second slide groove is arranged on the rear end of the arc-shaped cover plate and is connected with the taking and placing locking assembly, and the first locking assembly is arranged on the mounting sleeve.
[0012] Further, the first locking assembly comprises a slide rod, an annular groove, a first locking rod, a first locking groove, a first spring, a sleeve and a second spring, the slide rod is slidingly connected with the inner end of the mounting sleeve, the slide rod is connected with the rotating clutch assembly, the rear end of the slide rod is limitingly and slidingly connected with the inner end of the sleeve, the sleeve is fixedly arranged on the rear end of the mounting sleeve and is arranged concentrically with the mounting sleeve, the second spring is arranged between the slide rod and the sleeve, the annular groove is arranged on the slide rod, one end of the first locking rod is slidingly connected with the slide rod, one end of the first locking rod is clamped with the annular groove, the first locking groove is arranged on the mounting sleeve and is used for sliding connection with the first locking rod, the other end of the first locking rod is inserted into the first locking hole, the first spring is arranged between the first locking rod and the first locking groove, and the sleeve is rotatably connected with the runner mounting frame.
[0013] Further, the rotating clutch assembly comprises a motor, a spline rotating rod, a double-stroke cylinder, an adjusting frame, a spline sleeve, a first clamping block and a second clamping block, the motor is fixedly installed on the mounting table, the output end of the motor is fixedly connected with the spline rotating rod, the spline rotating rod is limitingly and slidably connected with the spline sleeve, the spline sleeve is rotationally connected with the adjusting frame, the adjusting frame is fixedly connected with the output end of the double-stroke cylinder, the double-stroke cylinder is fixedly connected with the mounting table, the first clamping block is fixedly installed on the spline sleeve, the first clamping block is clamped with the second clamping block, and the second clamping block is fixedly connected with the front end of the slide rod.
[0014] Further, the taking and placing locking assembly comprises a taking and placing assembly and a second locking assembly, both of which are installed on the rotating wheel mounting frame, the taking and placing assembly is connected with the second sliding groove, and the second locking assembly is arranged on the mounting plate.
[0015] Further, the taking and placing assembly comprises a cylinder and a circular slide block, the cylinder is fixedly installed on the rotating wheel mounting frame, and the circular slide block is fixedly installed on the output end of the cylinder and is limitingly and slidably connected with the second sliding groove.
[0016] Further, the second locking assembly comprises a limiting rod, a limiting groove, a limiting block, a second locking rod, a second locking hole, a third spring and a groove, the limiting rod is arranged in two groups and is symmetrically fixedly installed on the rotating wheel mounting frame, the limiting groove is arranged at one end of the mounting plate away from the mounting sleeve, the limiting block is slidably installed in the limiting groove, one end of the third spring is fixedly connected with the limiting groove, the other end of the third spring is fixedly connected with the limiting block, the limiting block is in contact connection with the limiting rod, the second locking rod is elastically and slidably connected in the through groove communicated between the limiting groove and the first sliding groove, one end of the second locking rod is slidably connected with the limiting block, the second locking hole is arranged on the slide rail and is used in insertion connection with the other end of the second locking rod, and the groove is arranged on the limiting block and is used in sliding connection with one end of the second locking rod.
[0017] Further, the included angle between the axis of the two limiting rods and the axis of the mounting sleeve is the same as the included angle between two adjacent mounting plates.
[0018] In order to better achieve the purpose of the present application, the present application also provides a use method of the zeolite rotating wheel convenient for splicing, comprising the following steps:
[0019] Step one, the double-stroke cylinder is started, the first stroke of the output end of the double-stroke cylinder drives the adjusting frame to move, the adjusting frame drives the spline sleeve to slide on the spline rotating rod, the spline sleeve drives the first clamping block to be clamped with the second clamping block, the motor is started, the motor drives the spline rotating rod to rotate, the spline rotating rod drives the spline sleeve to rotate, the spline sleeve drives the first clamping block to rotate, and the first clamping block drives the second clamping block to rotate.
[0020] Step two, the second clamping block drives the sliding rod to rotate, the sliding rod drives the sleeve to rotate, the sleeve drives the mounting sleeve to rotate, the mounting sleeve drives the mounting plate, the rotating ring and the arc-shaped cover plate to rotate as a whole, the rollers roll on the rotating ring, and a group of two adjacent mounting plates on the upper side are rotated to the left-right symmetrical position, at this time, the limiting block is in contact with the limiting rod, the limiting rod drives the limiting block to slide in the limiting groove and compresses the third spring, one end of the second lock rod slides along the limiting block, the circular slider slides in the second sliding groove, when one end of the second lock rod slides to the groove, one end of the second lock rod slides into the groove under the action of the elastic force, at this time, the other end of the second lock rod is separated from the second lock hole, and the slide rail is unlocked;
[0021] Step three, the air cylinder is started, the air cylinder drives the circular slider to move, the circular slider drives the arc-shaped cover plate to move, and the arc-shaped cover plate slides in the first sliding groove through the slide rail and opens the cavity;
[0022] Step four, the fan-shaped zeolite block is placed in the cavity composed of the two mounting plates, the mounting sleeve and the arc-shaped cover plate through hoisting equipment;
[0023] Step five, the arc-shaped cover plate is reset by starting the air cylinder, and the fan-shaped zeolite block is covered in the cavity composed of the two mounting plates, the mounting sleeve and the arc-shaped cover plate;
[0024] Step six, another group of two adjacent mounting plates are rotated to be left-right symmetrical by starting the motor, and the above-mentioned installation steps of the fan-shaped zeolite block are repeated;
[0025] Step seven, when all the fan-shaped zeolite blocks are installed, the second stroke of the double-stroke air cylinder is started at this time, the double-stroke air cylinder drives the first lock groove to push the spline sleeve to slide on the spline rotating rod, the spline sleeve drives the first clamping block to push the second clamping block, the second clamping block drives the sliding rod to slide in the inner end of the mounting sleeve, the first lock rod slides out of the ring groove and slides along the sliding rod, the other end of the first lock rod is inserted into the first lock hole at this time, and the sliding rod is limited to slide in the sleeve and compresses the second spring;
[0026] Step eight, when the runner is used, the sliding rod is started, the sliding rod drives the locked fan-shaped zeolite block to rotate and operate.
[0027] The present application has the following technical effects:
[0028] When the present application is used, the first locking assembly is adjusted by the rotary clutch assembly to realize the locking of the spliced zeolite runner assembly, the rotary clutch assembly drives the first locking assembly to drive the spliced zeolite runner assembly to rotate on the mounting assembly to realize the operation of the runner, and the zeolite of the spliced zeolite runner assembly is taken out and spliced conveniently by the taking and placing locking assembly, without the need to disassemble other parts.
[0029] The fan-shaped zeolite block is embedded in the cavity formed between the two adjacent installation plates, the mounting sleeve and the arc-shaped cover plate, so that the fan-shaped zeolite block is easily spliced.
[0030] When the application is used, the second lock rod is inserted into the second lock hole, and the first lock rod is inserted into the first lock hole, so that the fan-shaped zeolite block is stably locked in the cavity during the operation of the runner.
[0031] When the application is used, the circular slider is limited to slide in the second sliding groove, so that the cylinder can control the opening and closing of the cavity of the arc-shaped cover plate. BRIEF DESCRIPTION OF DRAWINGS
[0032] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.
[0033] Figure 1 It is a perspective view of the zeolite runner convenient for splicing.
[0034] Figure 2 It is a front view of the zeolite runner convenient for splicing.
[0035] Figure 3 It is a left view of the zeolite runner convenient for splicing.
[0036] Figure 4 It is a sectional view along the A-A direction of Figure 2 .
[0037] Figure 5 It is a sectional view along the B-B direction of Figure 2 .
[0038] Figure 6 It is an enlarged view of C in Figure 4 .
[0039] Figure 7 It is an enlarged view of D in Figure 5 .
[0040] The labels in the figure respectively represent: 1. mounting assembly 11. rotating wheel mounting rack 12. mounting table 13. roller 2. spliced zeolite rotating wheel assembly 21. fan-shaped zeolite block 22. first lock hole 23. mounting sleeve 24. mounting plate 25. rotating ring 26. arc cover plate 27. slide rail 28. first sliding groove 29. second sliding groove 3. rotating clutch locking assembly 31. first locking assembly 311. slide rod 312. ring groove 313. first locking rod 314. first lock groove 315. first spring 316. sleeve 317. second spring 32. rotating clutch assembly 321. motor 322. spline rotating rod 323. double-stroke cylinder 324. adjusting rack 325. spline sleeve 326. first clamping block 327. second clamping block 4. taking and placing locking assembly 41. taking and placing assembly 411. cylinder 412. circular slider 42. second locking assembly 421. limiting rod 422. limiting groove 423. limiting block 424. second locking rod 425. second lock hole 426. third spring 427. groove. DETAILED DESCRIPTION
[0041] To make the purposes, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some but not all of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.
[0042] The present application will be further described below with reference to the embodiments.
[0043] In the following description, "left", "right", "front", "rear", "upper", and "lower" are oriented in the perspective view.
[0044] Embodiment 1: Please refer to the description attached Figures 1-7 A zeolite rotating wheel convenient to splice and a use method thereof, comprising a mounting assembly 1, the mounting assembly 1 is provided with a spliced zeolite rotating wheel assembly 2, a rotating clutch locking assembly 3 and a taking and placing locking assembly 4, the taking and placing locking assembly 4 is arranged on the spliced zeolite rotating wheel assembly 2, and the rotating clutch locking assembly 3 is arranged on the spliced zeolite rotating wheel assembly 2.
[0045] The rotating clutch locking assembly 3 comprises a first locking assembly 31 and a rotating clutch assembly 32, the first locking assembly 31 is arranged on the spliced zeolite rotating wheel assembly 2, the first locking assembly 31 is connected with the rotating clutch assembly 32, and the first locking assembly 31 and the rotating clutch assembly 32 are both connected with the mounting assembly 1.
[0046] When using this invention, the first locking component 31 is adjusted by rotating the clutch component 32 to lock the splicing zeolite wheel assembly 2. At the same time, rotating the clutch component 32 drives the first locking component 31 to rotate the splicing zeolite wheel assembly 2 on the mounting component 1 to realize the operation of the wheel. The zeolite removal and splicing of the splicing zeolite wheel assembly 2 is facilitated by taking out and putting in the locking component 4.
[0047] Example 2: As Figures 1-7 As shown, in a preferred embodiment of the present invention, the mounting assembly 1 includes a rotating wheel mounting frame 11, a mounting platform 12, and rollers 13. There are multiple rollers 13, which are rotatably mounted on the rotating wheel mounting frame 11. The rollers 13 are connected to the spliced zeolite rotating wheel assembly 2. The rotary clutch assembly 32 is connected to the mounting platform 12. The first locking assembly 31 is connected to the rotating wheel mounting frame 11. The pick-and-place locking assembly 4 is connected to the rotating wheel mounting frame 11.
[0048] The spliced zeolite rotor assembly 2 includes fan-shaped zeolite blocks 21, a first locking hole 22, a mounting sleeve 23, a mounting plate 24, a rotating ring 25, an arc-shaped cover plate 26, a slide rail 27, a first slide groove 28, and a second slide groove 29. Multiple fan-shaped zeolite blocks 21, mounting plates 24, and arc-shaped cover plates 26 are provided. The mounting plates 24 are fixedly installed at equal intervals on the outer end of the mounting sleeve 23. The fan-shaped zeolite blocks 21 are embedded in the cavity formed between two adjacent mounting plates 24, the mounting sleeve 23, and the arc-shaped cover plate 26. A lock is provided on the fan-shaped zeolite block 21 to engage with the first locking component 31. The first locking hole 22 is used for fixed connection. The rotating ring 25 is fixedly installed on the front end of the mounting plate 24. The rotating ring 25 has an annular groove for rolling connection with the roller 13. The arc-shaped cover plate 26 is located between the two mounting plates 24. The two sides of the arc-shaped cover plate 26 are fixedly installed with slide rails 27. The two sides of the mounting plate 24 are provided with a first slide groove 28 for sliding connection with the slide rail 27. The second slide groove 29 is located at the rear end of the arc-shaped cover plate 26. The second slide groove 29 is connected to the pick-and-place locking component 4. The first locking component 31 is set on the mounting sleeve 23.
[0049] When the present invention is used, the fan-shaped zeolite blocks 21 are embedded in the cavity formed between two adjacent mounting plates 24, mounting sleeves 23 and arc-shaped cover plates 26, which facilitates the splicing of the fan-shaped zeolite blocks 21.
[0050] When the present invention is used, the fan-shaped zeolite blocks 21 are embedded in the cavity formed between two adjacent mounting plates 24, mounting sleeves 23 and arc-shaped cover plates 26, which facilitates the splicing of the fan-shaped zeolite blocks 21.
[0051] The first locking assembly 31 comprises a slide rod 311, a ring groove 312, a first locking rod 313, a first locking groove 314, a first spring 315, a sleeve 316 and a second spring 317, the slide rod 311 is in sliding connection with the inner end of the mounting sleeve 23, the slide rod 311 is connected with the rotary clutch assembly 32, the rear end of the slide rod 311 is in limiting sliding connection with the inner end of the sleeve 316, the sleeve 316 is fixedly installed on the rear end of the mounting sleeve 23 and is arranged concentrically with the mounting sleeve 23, the second spring 317 is arranged between the slide rod 311 and the sleeve 316, the ring groove 312 is arranged on the slide rod 311, one end of the first locking rod 313 is in sliding connection with the slide rod 311, one end of the first locking rod 313 is clamped with the ring groove 312, the first locking groove 314 is arranged on the mounting sleeve 23 and is used in cooperation with the sliding connection of the first locking rod 313, the other end of the first locking rod 313 is inserted into the first locking hole 22, the first spring 315 is arranged between the first locking rod 313 and the first locking groove 314, and the sleeve 316 is in rotary connection with the rotating wheel mounting frame 11.
[0052] The rotary clutch assembly 32 comprises a motor 321, a spline rotating rod 322, a double-stroke cylinder 323, an adjusting frame 324, a spline sleeve 325, a first clamping block 326 and a second clamping block 327, the motor 321 is fixedly installed on the mounting table 12, the output end of the motor 321 is fixedly connected with the spline rotating rod 322, the spline rotating rod 322 is in limiting sliding connection with the spline sleeve 325, the spline sleeve 325 is in rotary connection with the adjusting frame 324, the adjusting frame 324 is fixedly connected with the output end of the double-stroke cylinder 323, the double-stroke cylinder 323 is fixedly connected with the mounting table 12, the first clamping block 326 is fixedly installed on the spline sleeve 325, the first clamping block 326 is clamped with the second clamping block 327, and the second clamping block 327 is fixedly connected with the front end of the slide rod 311.
[0053] The taking and placing locking assembly 4 comprises a taking and placing assembly 41 and a second locking assembly 42, the taking and placing assembly 41 and the second locking assembly 42 are both installed on the rotating wheel mounting frame 11, the taking and placing assembly 41 is connected with the second sliding groove 29, and the second locking assembly 42 is arranged on the mounting plate 24.
[0054] The taking and placing assembly 41 comprises a cylinder 411 and a circular slide block 412, the cylinder 411 is fixedly installed on the rotating wheel mounting frame 11, the circular slide block 412 is fixedly installed on the output end of the cylinder 411, and the circular slide block 412 is in limiting sliding connection with the second sliding groove 29.
[0055] The second locking assembly 42 includes a limiting rod 421, a limiting groove 422, a limiting block 423, a second locking rod 424, a second locking hole 425, a third spring 426, and a groove 427. Two sets of limiting rods 421 are symmetrically fixedly mounted on the rotating wheel mounting bracket 11. The limiting groove 422 is located at the end of the mounting plate 24 away from the mounting sleeve 23. The limiting block 423 is slidably mounted within the limiting groove 422. One end of the third spring 426 is fixedly connected to the limiting groove 422. The other end is fixedly connected to the limiting block 423. The limiting block 423 is in contact with the limiting rod 421. The second locking rod 424 is elastically slidably connected in the through groove between the limiting groove 422 and the first sliding groove 28. One end of the second locking rod 424 is in close contact with the limiting block 423. The slide rail 27 is provided with a second locking hole 425 for inserting the other end of the second locking rod 424. The limiting block 423 is provided with a groove 427 for sliding connection of one end of the second locking rod 424.
[0056] When the present invention is used, the second locking rod 424 is inserted into the second locking hole 425, and the first locking rod 313 is inserted into the first locking hole 22, so that the fan-shaped zeolite block 21 is stably locked in the chamber during the operation of the wheel, thereby ensuring stable operation.
[0057] When the present invention is used, the circular slider 412 slides within the second slide groove 29 to limit the movement, thereby enabling the cylinder 411 to control the opening and closing of multiple arc-shaped cover plates 26 chambers.
[0058] Example 3: As Figures 1-7 As shown, in a preferred embodiment of the present invention, preferably, the initial position of one end of the first locking rod 313 is engaged in the annular groove 312;
[0059] Preferably, the initial position of the other end of the second locking rod 424 is engaged within the second locking hole 425.
[0060] Example 4: Figures 1-7 As shown, in a preferred embodiment of the present invention, a method for using a zeolite rotor that is easy to assemble is provided, comprising the following steps:
[0061] Step 1: Start the double-stroke cylinder 323. The first stroke of the output end of the double-stroke cylinder 323 pushes the adjusting frame 324 to move. The adjusting frame 324 drives the spline sleeve 325 to slide on the spline rotating rod 322. The spline sleeve 325 drives the first locking block 326 to engage with the second locking block 327. Start the motor 321. The motor 321 drives the spline rotating rod 322 to rotate. The spline rotating rod 322 drives the spline sleeve 325 to rotate. The spline sleeve 325 drives the first locking block 326 to rotate. The first locking block 326 drives the second locking block 327 to rotate.
[0062] Step two, the second block 327 drives the slide rod 311 to rotate, the slide rod 311 drives the sleeve 316 to rotate, the sleeve 316 drives the mounting sleeve 23 to rotate, the mounting sleeve 23 drives the mounting plate 24, the rotating ring 25, and the arc cover plate 26 to rotate as a whole, the roller 13 rolls on the rotating ring 25, and a group of two adjacent mounting plates 24 moving to the upper side are rotated to the left-right symmetrical position. At this time, the limiting block 423 is in contact with the limiting rod 421, the limiting rod 421 drives the limiting block 423 to slide in the limiting groove 422 and compresses the third spring 426. One end of the second lock rod 424 slides along the limiting block 423, the circular slide block 412 slides in the second sliding groove 29, and when one end of the second lock rod 424 slides to the groove 427, one end of the second lock rod 424 slides into the groove 427 under the action of the elastic force. At this time, the other end of the second lock rod 424 is separated from the second lock hole 425, and the slide rail 27 is unlocked.
[0063] Step three, start the air cylinder 411, the air cylinder 411 drives the circular slide block 412 to move, the circular slide block 412 drives the arc-shaped cover plate 26 to move, and the arc-shaped cover plate 26 slides in the first sliding groove 28 through the slide rail 27 and opens the cavity;
[0064] Step four, place the fan-shaped zeolite block 21 in the cavity composed of two mounting plates 24, a mounting sleeve 23, and an arc-shaped cover plate 26 through hoisting equipment;
[0065] Step five, start the air cylinder 411 to drive the arc-shaped cover plate 26 to reset, and the arc-shaped cover plate 26 covers the fan-shaped zeolite block 21 in the cavity composed of two mounting plates 24, a mounting sleeve 23, and an arc-shaped cover plate 26;
[0066] Step six, start the motor 321 to rotate another group of two adjacent mounting plates 24 to the left-right symmetrical position, and repeat the above installation steps of the fan-shaped zeolite block 21;
[0067] Step seven, when all the fan-shaped zeolite blocks 21 are installed, start the second stroke of the double-stroke air cylinder 323 at this time, the double-stroke air cylinder 323 drives the first lock slot 314 to push the spline sleeve 325 to slide on the spline rotating rod 322, the spline sleeve 325 drives the first block 326 to push the second block 327, the second block 327 drives the slide rod 311 to slide at the inner end of the mounting sleeve 23, the first lock rod 313 slides out of the ring slot 312 and slides along the slide rod 311, the other end of the first lock rod 313 is inserted into the first lock hole 22 at this time, and the slide rod 311 is limited to slide in the sleeve 316 and compresses the second spring 317;
[0068] Step eight, when the runner is used, start the slide rod 311, the slide rod 311 drives the locked fan-shaped zeolite block 21 to rotate and operate.
[0069] The above examples are only used to illustrate the technical solutions of the present application, and are not intended to limit the present application; although the present application has been described in detail with reference to the foregoing examples, those skilled in the art should understand that the technical solutions recorded in the foregoing examples can be modified, or some technical features can be replaced by equivalent features; and these modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A zeolite rotary wheel for facilitating splicing comprising a mounting assembly (1) characterized in that: The mounting assembly (1) is provided with a spliced zeolite runner assembly (2), a rotary clutch locking assembly (3) and a taking and placing locking assembly (4), the taking and placing locking assembly (4) is arranged on the spliced zeolite runner assembly (2), and the rotary clutch locking assembly (3) is arranged on the spliced zeolite runner assembly (2); the rotary clutch locking assembly (3) comprises a first locking assembly (31) and a rotary clutch assembly (32), the first locking assembly (31) is arranged on the spliced zeolite runner assembly (2), the first locking assembly (31) is connected with the rotary clutch assembly (32), and the first locking assembly (31) and the rotary clutch assembly (32) are connected with the mounting assembly (1); The mounting assembly (1) comprises a runner mounting frame (11), a mounting table (12) and rollers (13), the rollers (13) are arranged in a plurality of and rotatably arranged on the runner mounting frame (11), the rollers (13) are connected with the spliced zeolite runner assembly (2), the rotary clutch assembly (32) is connected with the mounting table (12), the first locking assembly (31) is connected with the runner mounting frame (11), and the taking and placing locking assembly (4) is connected with the runner mounting frame (11); The spliced zeolite runner assembly (2) comprises fan-shaped zeolite blocks (21), first locking holes (22), mounting sleeves (23), mounting plates (24), rotating rings (25), arc-shaped cover plates (26), sliding rails (27), first sliding grooves (28) and second sliding grooves (29), the fan-shaped zeolite blocks (21), the mounting plates (24) and the arc-shaped cover plates (26) are arranged in a plurality of, the mounting plates (24) are fixedly arranged at equal intervals on the outer end of the mounting sleeve (23), the fan-shaped zeolite blocks (21) are embedded in cavities formed between two adjacent mounting plates (24), the mounting sleeve (23) and the arc-shaped cover plate (26), the first locking holes (22) are arranged on the fan-shaped zeolite blocks (21) and are used in cooperation with the first locking assembly (31) for locking connection, the rotating rings (25) are fixedly arranged on the front end of the mounting plate (24), the rotating rings (25) are provided with annular grooves and are used in cooperation with the rollers (13) for rolling connection, the arc-shaped cover plates (26) are arranged between the two mounting plates (24), the two sides of the arc-shaped cover plate (26) are fixedly provided with the sliding rails (27), the two sides of the mounting plate (24) are provided with the first sliding grooves (28) and are used in cooperation with the sliding rails (27) for sliding connection, the second sliding grooves (29) are arranged at the rear end of the arc-shaped cover plate (26) and are connected with the taking and placing locking assembly (4), and the first locking assembly (31) is arranged on the mounting sleeve (23). The first locking assembly (31) comprises a slide rod (311), a ring groove (312), a first locking rod (313), a first locking groove (314), a first spring (315), a sleeve (316) and a second spring (317), the slide rod (311) is in sliding connection with the inner end of the mounting sleeve (23), the slide rod (311) is connected with the rotary clutch assembly (32), the rear end of the slide rod (311) is in limiting sliding connection with the inner end of the sleeve (316), the sleeve (316) is fixedly installed at the rear end of the mounting sleeve (23) and is arranged concentrically with the mounting sleeve (23), the second spring (317) is arranged between the slide rod (311) and the sleeve (316), the ring groove (312) is formed in the slide rod (311), one end of the first locking rod (313) is in sliding connection with the slide rod (311), one end of the first locking rod (313) is clamped with the ring groove (312), the first locking groove (314) is formed in the mounting sleeve (23) and is used in sliding connection with the first locking rod (313), the other end of the first locking rod (313) is inserted into the first locking hole (22), the first spring (315) is arranged between the first locking rod (313) and the first locking groove (314), and the sleeve (316) is in rotary connection with the rotary wheel mounting frame (11); The rotary clutch assembly (32) comprises a motor (321), a spline rotating rod (322), a double-stroke cylinder (323), an adjusting frame (324), a spline sleeve (325), a first clamping block (326) and a second clamping block (327), the motor (321) is fixedly installed on the mounting table (12), the output end of the motor (321) is fixedly connected with the spline rotating rod (322), the spline rotating rod (322) is in limiting sliding connection with the spline sleeve (325), the spline sleeve (325) is in rotary connection with the adjusting frame (324), the adjusting frame (324) is fixedly connected with the output end of the double-stroke cylinder (323), the double-stroke cylinder (323) is fixedly connected with the mounting table (12), the first clamping block (326) is fixedly installed on the spline sleeve (325), the first clamping block (326) is clamped with the second clamping block (327), and the second clamping block (327) is fixedly connected with the front end of the slide rod (311); The taking and placing locking assembly (4) comprises a taking and placing assembly (41) and a second locking assembly (42), the taking and placing assembly (41) and the second locking assembly (42) are both installed on the rotary wheel mounting frame (11), the taking and placing assembly (41) is connected with the second sliding groove (29), and the second locking assembly (42) is arranged on the mounting plate (24); The taking and placing assembly (41) comprises a cylinder (411) and a circular slide block (412), the cylinder (411) is fixedly installed on the rotary wheel mounting frame (11), and the circular slide block (412) is fixedly installed on the output end of the cylinder (411) and is in limiting sliding connection with the second sliding groove (29). The second locking assembly (42) comprises limiting rods (421), limiting grooves (422), limiting blocks (423), second locking rods (424), second locking holes (425), third springs (426) and grooves (427), the two limiting rods (421) are symmetrically fixed on the rotating wheel mounting frame (11), the limiting grooves (422) are formed in one end of the mounting plate (24) away from the mounting sleeve (23), the limiting blocks (423) are slidably installed in the limiting grooves (422), one end of the third spring (426) is fixedly connected with the limiting groove (422), the other end of the third spring (426) is fixedly connected with the limiting block (423), the limiting block (423) is in contact with the limiting rod (421), the second locking rod (424) is elastically and slidably connected in the through groove communicated between the limiting groove (422) and the first sliding groove (28), one end of the second locking rod (424) is slidably connected with the limiting block (423), the second locking hole (425) is formed in the slide rail (27) and used for inserting the other end of the second locking rod (424), and the groove (427) is formed in the limiting block (423) and used for slidably connecting one end of the second locking rod (424).
2. The zeolite rotary wheel for ease of splicing according to claim 1, characterized by, The included angle between the axis of the two limiting rods (421) and the axis of the mounting sleeve (23) is the same as the included angle between the two adjacent mounting plates (24).
3. A method of using a zeolite wheel for ease of splicing as claimed in claim 2, wherein, The method comprises the following steps: Step one, start the double-stroke cylinder (323), the first stroke of the output end of the double-stroke cylinder (323) drives the adjusting frame (324) to move, the adjusting frame (324) drives the spline sleeve (325) to slide on the spline rotating rod (322), the spline sleeve (325) drives the first clamping block (326) and the second clamping block (327) to be clamped, start the motor (321), the motor (321) drives the spline rotating rod (322) to rotate, the spline rotating rod (322) drives the spline sleeve (325) to rotate, the spline sleeve (325) drives the first clamping block (326) to rotate, and the first clamping block (326) drives the second clamping block (327) to rotate; Step two, the second block (327) drives the slide bar (311) to rotate, the slide bar (311) drives the sleeve (316) to rotate, the sleeve (316) drives the mounting sleeve (23) to rotate, the mounting sleeve (23) drives the mounting plate (24), the rotating ring (25), the arc cover plate (26) to rotate as a whole, the roller (13) rolls on the rotating ring (25), and the two adjacent mounting plates (24) on the upper side are rotated to the left-right symmetrical position. At this time, the limiting block (423) is in contact with the limiting rod (421), the limiting rod (421) drives the limiting block (423) to slide in the limiting groove (422) and compresses the third spring (426), one end of the second lock rod (424) slides along the limiting block (423), the circular block (412) slides in the second sliding groove (29), and when one end of the second lock rod (424) slides to the groove (427), one end of the second lock rod (424) slides into the groove (427) under the action of the elastic force. At this time, the other end of the second lock rod (424) is separated from the second lock hole (425), and the slide rail (27) is unlocked; Step three, start the air cylinder (411), the air cylinder (411) drives the circular block (412) to move, the circular block (412) drives the arc-shaped cover plate (26) to move, and the arc-shaped cover plate (26) slides in the first sliding groove (28) through the slide rail (27) and opens the cavity; Step four, place the fan-shaped zeolite block (21) in the cavity composed of two mounting plates (24), a mounting sleeve (23) and an arc-shaped cover plate (26) through hoisting equipment; Step five, start the air cylinder (411) to drive the arc-shaped cover plate (26) to reset, and the arc-shaped cover plate (26) covers the fan-shaped zeolite block (21) in the cavity composed of two mounting plates (24), a mounting sleeve (23) and an arc-shaped cover plate (26); Step six, start the motor (321), rotate another two adjacent mounting plates (24) to the left-right symmetrical position, and repeat the above installation steps of the fan-shaped zeolite block (21); Step seven, when all the fan-shaped zeolite blocks (21) are installed, start the second stroke of the double-stroke air cylinder (323) at this time, the double-stroke air cylinder (323) drives the first lock slot (314) to push the spline sleeve (325) to slide on the spline rotating rod (322), the spline sleeve (325) drives the first block (326) to push the second block (327), the second block (327) pushes the slide bar (311) to slide at the inner end of the mounting sleeve (23), the first lock rod (313) slides out of the ring groove (312) and slides along the slide bar (311), and the other end of the first lock rod (313) is inserted into the first lock hole (22) at this time. At the same time, the slide bar (311) is limited to slide in the sleeve (316) and compresses the second spring (317); Step eight, when the runner is used, start the slide bar (311), the slide bar (311) drives the locked fan-shaped zeolite block (21) to rotate and operate.
Citation Information
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