Shock absorption device of plastic mixing machine

By combining horizontal and vertical damping components and utilizing the extrusion of movable push plates and arc-shaped columns, synchronous damping of the plastic mixing machine is achieved, solving the problem of independent damping in existing technologies and improving the stability and damping effect of the equipment.

CN224028056UActive Publication Date: 2026-03-24DALIAN YIZHENG PACKAGING MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing plastic mixing devices operate independently in vertical and horizontal vibration damping, which cannot be coordinated, resulting in poor vibration damping and easy damage.

Method used

The design combines horizontal and vertical damping components. Through the combined compression of the movable push plate and the arc-shaped column, the damping damper absorbs the vibration. Combined with the T-shaped slide and slider limit, it achieves synchronous absorption of horizontal and vertical vibration.

Benefits of technology

It effectively absorbs the horizontal and vertical vibrations of the plastic mixing machine, reduces equipment damage, and improves the shock absorption effect and equipment stability.

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Abstract

The utility model provides a damping device of a plastic mixing machine, which relates to the technical field of damping of mixing machines and comprises a mixing machine main body and a damping bottom box, and an upper movable plate is movably arranged at the top end in the damping bottom box; a rotating push plate is rotatably mounted at the top end of the movable push plate, a horizontal cambered surface column is movably arranged on the side, away from the upper movable plate, of the movable push plate, a plurality of horizontal damping shock absorbers are evenly and fixedly mounted on the side, away from the upper movable plate, of the movable push plate at equal intervals, and a vertical cambered surface column is movably arranged on the side, away from the movable push plate, of the horizontal cambered surface column. And a plurality of first vertical damping shock absorbers are uniformly and fixedly mounted on the top surface of the vertical cambered surface column at equal intervals. By arranging the horizontal damping assembly, the horizontal cambered surface column extrudes the vertical cambered surface column to move upwards, the first vertical damping shock absorber is extruded, when the upper movable plate vertically vibrates, the rotary push plate pushes the movable push plate, and vibration is absorbed under the action of the horizontal damping shock absorber and the first vertical damping shock absorber.
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Description

TECHNICAL FIELD

[0001] The utility model relates to mixing machine damping technical field especially relates to plastic mixing machine damping device. BACKGROUND

[0002] With the prosperity of economy, people's living standards continue to improve, production technology is developing better and better, plastic products are used very widely in life, a variety of raw materials need to be used in the process of plastic processing, in order to produce qualified plastic products, the raw materials of plastic need to be fully stirred between processing, the existing raw material stirring and mixing device for plastic master batch production still has some problems, the stirring device works, the motor drives the stirring assembly to rotate at high speed, thereby the whole device can produce violent vibration, and the existing stirring device has the deficiency of poor damping performance, therefore, cannot effectively dampen, thereby the device violent vibration is easy to damage.

[0003] Publication No. CN214716342U discloses a kind of raw material stirring and mixing device for plastic master batch production, including damping seat, base, stirring cylinder, stirring mechanism and damping limiting mechanism, the bottom end of damping seat is provided with first damping pad, the top of damping seat is provided with recess, base is set in recess, stirring cylinder is fixedly installed at the top of base, stirring mechanism is set in the inner chamber of stirring cylinder, damping limiting mechanism is set at the outer side of stirring cylinder four quarters;The middle part of the bottom end of stirring cylinder is provided with discharge port, the middle part of the top of stirring cylinder is provided with feeding hopper, stirring cylinder includes inner cylinder and outer cylinder, soundproof layer is arranged between inner cylinder and outer cylinder;Stirring mechanism includes first stirring assembly, second stirring assembly, first motor and second motor;Damping limiting mechanism includes L-shaped support, first damping limiting component and second damping limiting component.The utility model aims at solving the problems of poor damping performance of existing stirring device, large noise generated, low stirring efficiency and poor effect.

[0004] The above device can reduce the horizontal vibration and vertical vibration of the plastic mixing machine through multiple horizontally arranged and vertically arranged functional springs, but the vertical damping and horizontal damping of the above device work independently and cannot be coordinated. Therefore, a plastic mixing machine damping device is needed. UTILITY MODEL CONTENTS

[0005] The utility model solves the technical problems of overcoming the defects that vertical damping and horizontal damping work independently and cannot be coordinated in the prior art, and provides a plastic mixing machine damping device.

[0006] To solve the above technical problems, the utility model adopts the technical scheme: plastic mixing machine damping device, include: mixing machine main part and damping bottom box, mixing machine main part sets up on damping bottom box top, the movable plate is symmetrically provided with horizontal damping component on the both sides of the movable plate, the movable plate below is provided with vertical damping component,

[0007] Horizontal damping component includes movable push plate, movable push plate top end rotationally installed has rotation push plate, rotation push plate other end with movable plate outer side wall rotationally connected, movable push plate far from movable plate one side movable set has horizontal cambered surface column, movable push plate far from movable plate one side equidistance even fixed installation has a plurality of horizontal damping shock absorber, a plurality of horizontal damping shock absorber other end with horizontal cambered surface column outer side wall fixed connection, horizontal cambered surface column far from movable push plate one side movable set has vertical cambered surface column, vertical cambered surface column top even fixed installation has a plurality of first vertical damping shock absorber, a plurality of first vertical damping shock absorber top fixed installation is in damping bottom box top.

[0008] When the mixing machine main body drives the movable plate to vibrate horizontally, the movable plate drives the rotation push plate to move synchronously through the movable push plate, the rotation push plate cooperates with the horizontal cambered surface column to extrude the horizontal damping shock absorber and push the horizontal cambered surface column, so that the horizontal cambered surface column extrudes the vertical cambered surface column, the vertical cambered surface column moves upward, and the vertical cambered surface column extrudes the first vertical damping shock absorber, and the horizontal damping shock absorber and the first vertical damping shock absorber absorb the horizontal vibration.

[0009] Preferably, the adjacent side surfaces of the horizontal cambered surface column and the vertical cambered surface column are arc surfaces, the adjacent side surfaces of the horizontal cambered surface column and the vertical cambered surface column are abutted, a plurality of T-shaped sliding grooves are evenly provided in the inner side wall of the damping bottom box, a plurality of T-shaped sliding blocks are evenly fixedly installed on the side of the vertical cambered surface column away from the horizontal cambered surface column, the plurality of T-shaped sliding grooves correspond to the plurality of T-shaped sliding blocks one by one, and the T-shaped sliding blocks are slidingly arranged in the corresponding T-shaped sliding grooves.

[0010] The horizontal cambered surface column and the vertical cambered surface column are both quarter cylinders, and the outer arc surfaces of the horizontal cambered surface column and the vertical cambered surface column are abutted, when the vertical cambered surface column vibrates vertically, the T-shaped sliding blocks slide in the T-shaped sliding grooves to limit the movement of the vertical cambered surface column.

[0011] Preferably, a pair of sliding rods are symmetrically provided on the both sides of the movable plate, the movable push plate is slidingly sleeved on the pair of sliding rods, a plurality of horizontal sliding grooves are evenly provided in the bottom end of the damping bottom box, a plurality of first sliding support blocks are fixedly installed on the bottom surface of the movable push plate, the plurality of first sliding support blocks correspond to the plurality of horizontal sliding grooves one by one, and the plurality of first sliding support blocks are slidingly arranged in the corresponding horizontal sliding grooves.

[0012] When the upper movable plate moves horizontally, the second vertical damping shock absorber drives the lower movable plate to move synchronously, and the fixed slide bar slides in the horizontal sliding groove to limit the movement of the lower movable plate.

[0013] Preferably, the horizontal arc surface column bottom surface is uniformly and equidistantly fixed with a plurality of second sliding support blocks, the plurality of second sliding support blocks correspond to the plurality of horizontal sliding grooves one by one, and the plurality of second sliding support blocks are slidingly arranged in the corresponding horizontal sliding grooves.

[0014] When the movable push plate drives the horizontal arc surface column to move, the second sliding support block slides in the horizontal sliding groove to limit the movement of the horizontal arc surface column.

[0015] Preferably, the vertical damping assembly comprises a lower movable plate, a plurality of second vertical damping shock absorbers are uniformly and equidistantly fixed at the top end of the lower movable plate, the top end of the plurality of second vertical damping shock absorbers is fixedly installed on the bottom surface of the upper movable plate, a plurality of fixed slide bars are uniformly and equidistantly fixed on the bottom surface of the lower movable plate, the plurality of fixed slide bars correspond to the plurality of horizontal sliding grooves one by one, the plurality of fixed slide bars are slidingly arranged in the corresponding horizontal sliding grooves, a plurality of rotating support balls are uniformly and equidistantly fixed on the bottom surface of the lower movable plate, and the outer side wall of the plurality of rotating support balls is attached to the inner bottom surface of the damping bottom box.

[0016] When the main body of the mixer drives the upper movable plate to vibrate vertically, the upper movable plate cooperates with the lower movable plate to extrude the second vertical damping shock absorber, and the vertical vibration is processed under the action of the second vertical damping shock absorber, and when the upper movable plate vibrates vertically, the upper movable plate pushes the movable push plate through the rotating push plate, and the vertical vibration is absorbed under the action of the horizontal damping shock absorber and the first vertical damping shock absorber.

[0017] When the upper movable plate moves horizontally, the upper movable plate drives the lower movable plate to move synchronously through the plurality of second vertical damping shock absorbers, the fixed slide bar slides in the horizontal sliding groove to limit the movement of the lower movable plate when the lower movable plate moves, and the rotating support ball rotates to facilitate the movement of the lower movable plate and support the lower movable plate.

[0018] Preferably, an active port is formed in the top end of the damping bottom box, a fixed support block is movably arranged in the active port, the bottom end of the fixed support block is fixedly installed on the top surface of the upper movable plate, an installation plate is fixedly installed on the top surface of the fixed support block, and the main body of the mixer is fixedly installed on the top surface of the installation plate.

[0019] The movable horizontal distance of the fixed support block in the active port is greater than the horizontal movement distance of the upper movable plate, so as to avoid the impact between the fixed support block and the inner side wall of the active port, and the height of the fixed support block is greater than the vertical movement distance of the upper movable plate, so as to avoid the impact between the installation plate and the top surface of the damping bottom box.

[0020] Compared with the prior art, the beneficial effects of the utility model include: through setting up horizontal damping assembly, when the upper movable plate is horizontally vibrated under the driving of the mixer main body, the upper movable plate moves synchronously through the driving of the movable push plate, the movable push plate cooperates with the horizontal cambered column to extrude the horizontal damping shock absorber and push the horizontal cambered column, so that the horizontal cambered column extrudes the vertical cambered column, the vertical cambered column moves upward, and at the same time, the vertical cambered column extrudes the first vertical damping shock absorber, under the action of the horizontal damping shock absorber and the first vertical damping shock absorber, horizontal vibration is absorbed, and at the same time, when the upper movable plate is vertically vibrated under the driving of the mixer main body, the upper movable plate pushes the movable push plate through the driving of the movable push plate, under the action of the horizontal damping shock absorber and the first vertical damping shock absorber, vertical vibration is absorbed. BRIEF DESCRIPTION OF DRAWINGS

[0021] The disclosure of the utility model will be explained with reference to the drawings. It should be appreciated that the drawings are merely for illustrative purposes and are not intended to limit the scope of protection of the utility model. In the drawings, the same reference numerals are used to refer to the same parts. Among them:

[0022] Figure 1 The utility model discloses a plastic mixer damping device's three -dimensional structure schematic diagram is shown schematically Figure One .

[0023] Figure 2 The utility model discloses a plastic mixer damping device's three -dimensional structure schematic diagram is shown schematically Figure Two .

[0024] Figure 3 The utility model discloses a plastic mixer damping device's three -dimensional structure schematic diagram is shown schematically

[0025] Figure 4 The utility model discloses a plastic mixer damping device's three -dimensional structure schematic diagram is shown schematically.

[0026] Figure 5 The utility model discloses a plastic mixer damping device's three -dimensional structure schematic diagram is shown schematically Figure One .

[0027] Figure 6 The utility model discloses a plastic mixer damping device's three -dimensional structure schematic diagram is shown schematically Figure Two .

[0028] Figure 7 The utility model discloses a plastic mixer damping device's three -dimensional structure schematic diagram is shown schematically.

[0029] The figure label: 1, the mixer main body; 2, the shock absorbing bottom box; 21, the movable mouth; 22, the fixed support block; 23, the mounting plate; 3, the upper movable plate; 4, the horizontal shock absorbing assembly; 41, the movable push plate; 411, the first sliding support block; 42, the rotating push plate; 43, the horizontal cambered column; 431, the second sliding support block; 44, the horizontal damping shock absorber; 45, the vertical cambered column; 451, the T-shaped sliding groove; 452, the T-shaped sliding block; 46, the first vertical damping shock absorber; 47, the sliding rod; 48, the horizontal sliding groove; 5, the vertical shock absorbing assembly; 51, the lower movable plate; 52, the second vertical damping shock absorber; 53, the fixed sliding bar; 54, the rotating support ball. DETAILED DESCRIPTION

[0030] It is easy to understand that according to the technical scheme of the utility model, a person skilled in the art can propose a plurality of structure modes and implementation modes that can be replaced with each other without changing the essential spirit of the utility model. Therefore, the following specific embodiments and drawings are only exemplary descriptions of the technical scheme of the utility model, and should not be regarded as the whole of the utility model or as a limitation or restriction on the technical scheme of the utility model.

[0031] According to an embodiment of the utility model Figures 1 to 3 The plastic mixer shock absorbing device is shown. The plastic mixer shock absorbing device comprises a mixer main body 1 and a shock absorbing bottom box 2, the mixer main body 1 is arranged above the shock absorbing bottom box 2, a movable upper movable plate 3 is movably arranged at the top end in the shock absorbing bottom box 2, horizontal shock absorbing assemblies 4 are symmetrically arranged at the two sides of the upper movable plate 3, and vertical shock absorbing assemblies 5 are arranged below the upper movable plate 3.

[0032] The horizontal shock absorbing assembly 4 comprises a movable push plate 41, a rotating push plate 42 is rotatably installed at the top end of the movable push plate 41, the other end of the rotating push plate 42 is rotatably connected with the outer side wall of the upper movable plate 3, a horizontal cambered column 43 is movably arranged at the side, away from the upper movable plate 3, of the movable push plate 41, a plurality of horizontal damping shock absorbers 44 are equidistantly and uniformly fixedly installed at the side, away from the upper movable plate 3, of the movable push plate 41, the other end of the plurality of horizontal damping shock absorbers 44 is fixedly connected with the outer side wall of the horizontal cambered column 43, a vertical cambered column 45 is movably arranged at the side, away from the movable push plate 41, of the horizontal cambered column 43, a plurality of first vertical damping shock absorbers 46 are equidistantly and uniformly fixedly installed at the top face of the vertical cambered column 45, and the top end of the plurality of first vertical damping shock absorbers 46 is fixedly installed at the top end in the shock absorbing bottom box 2.

[0033] When the main body 1 of the mixer drives the upper movable plate 3 to horizontally vibrate, the upper movable plate 3 drives the rotating push plate 42 to move synchronously through the movable push plate 41, the rotating push plate 42 cooperates with the horizontal cambered column 43 to extrude the horizontal damping shock absorber 44 and push the horizontal cambered column 43, so that the horizontal cambered column 43 extrudes the vertical cambered column 45, the vertical cambered column 45 moves upward, and the vertical cambered column 45 extrudes the first vertical damping shock absorber 46, and the horizontal damping shock absorber 44 and the first vertical damping shock absorber 46 absorb the horizontal vibration.

[0034] According to an embodiment of the utility model Figures 4 to 6 It is shown that the adjacent side surfaces of the horizontal cambered column 43 and the vertical cambered column 45 are provided with cambered surfaces, the adjacent side surfaces of the horizontal cambered column 43 and the vertical cambered column 45 are provided with a matching arrangement, a plurality of T-shaped sliding grooves 451 are uniformly and equidistantly arranged on the inner side wall of the damping bottom box 2, a plurality of T-shaped sliding blocks 452 are uniformly and equidistantly fixedly installed on the side of the vertical cambered column 45 away from the horizontal cambered column 43, the plurality of T-shaped sliding grooves 451 correspond to the plurality of T-shaped sliding blocks 452 one by one, and the T-shaped sliding blocks 452 are slidingly arranged in the corresponding T-shaped sliding grooves 451.

[0035] The horizontal cambered column 43 and the vertical cambered column 45 are both quarter cylinders, and the outer cambered surfaces of the horizontal cambered column 43 and the vertical cambered column 45 are matched, when the vertical cambered column 45 vertically vibrates, the T-shaped sliding block 452 slides in the T-shaped sliding groove 451 to limit the movement of the vertical cambered column 45.

[0036] A pair of sliding rods 47 are symmetrically arranged on both sides of the upper movable plate 3, the movable push plate 41 is slidingly sleeved on the pair of sliding rods 47 at both ends, a plurality of horizontal sliding grooves 48 are uniformly and equidistantly arranged at the bottom end of the damping bottom box 2, a plurality of first sliding support blocks 411 are uniformly and equidistantly fixedly installed on the bottom surface of the movable push plate 41, the plurality of first sliding support blocks 411 correspond to the plurality of horizontal sliding grooves 48 one by one, and the plurality of first sliding support blocks 411 are slidingly arranged in the corresponding horizontal sliding grooves 48.

[0037] When the upper movable plate 3 drives the movable push plate 41 to move through the rotating push plate 42, the movable push plate 41 slides on the sliding rod 47, and the first sliding support block 411 slides in the horizontal sliding groove 48 to limit the movement of the movable push plate 41.

[0038] A plurality of second sliding support blocks 431 are uniformly and equidistantly fixedly installed on the bottom surface of the horizontal cambered column 43, the plurality of second sliding support blocks 431 correspond to the plurality of horizontal sliding grooves 48 one by one, and the plurality of second sliding support blocks 431 are slidingly arranged in the corresponding horizontal sliding grooves 48.

[0039] When the horizontal arc surface column 43 is moved by the movable push plate 41, the second sliding support block 431 slides in the horizontal sliding groove 48 to limit the movement of the horizontal arc surface column 43.

[0040] According to an embodiment of the present application Figures 4 to 7 The plastic mixing machine damping device is shown. The vertical damping assembly 5 comprises a lower movable plate 51, a plurality of second vertical damping shock absorbers 52 are fixedly installed on the top end of the lower movable plate 51 at equal intervals, the top end of the second vertical damping shock absorbers 52 is fixedly installed on the bottom surface of the upper movable plate 3, a plurality of fixed sliding strips 53 are fixedly installed on the bottom surface of the lower movable plate 51 at equal intervals, the plurality of fixed sliding strips 53 correspond to the plurality of horizontal sliding grooves 48 one by one, the plurality of fixed sliding strips 53 are slidingly arranged in the corresponding horizontal sliding grooves 48, and a plurality of rotating support balls 54 are fixedly installed on the bottom surface of the lower movable plate 51 at equal intervals.

[0041] When the upper movable plate 3 is vertically vibrated by the mixing machine body 1, the upper movable plate 3 cooperates with the lower movable plate 51 to extrude the second vertical damping shock absorber 52, the vertical vibration is processed under the action of the second vertical damping shock absorber 52, and meanwhile, when the upper movable plate 3 is vertically vibrated, the upper movable plate 3 pushes the movable push plate 41 through the rotating push plate 42, and the vertical vibration is absorbed under the action of the horizontal damping shock absorber 44 and the first vertical damping shock absorber 46.

[0042] When the upper movable plate 3 moves horizontally, the upper movable plate 3 drives the lower movable plate 51 to move synchronously through the plurality of second vertical damping shock absorbers 52, when the lower movable plate 51 moves, the fixed sliding strip 53 slides in the horizontal sliding groove 48 to limit the movement of the lower movable plate 51, and meanwhile, the rotating support ball 54 rotates to facilitate the movement of the lower movable plate 51 and support the lower movable plate 51.

[0043] According to an embodiment of the present application Figures 1 to 4 The plastic mixing machine damping device is shown. The vertical damping assembly 5 comprises a lower movable plate 51, a plurality of second vertical damping shock absorbers 52 are fixedly installed on the top end of the lower movable plate 51 at equal intervals, the top end of the second vertical damping shock absorbers 52 is fixedly installed on the bottom surface of the upper movable plate 3, a plurality of fixed sliding strips 53 are fixedly installed on the bottom surface of the lower movable plate 51 at equal intervals, the plurality of fixed sliding strips 53 correspond to the plurality of horizontal sliding grooves 48 one by one, the plurality of fixed sliding strips 53 are slidingly arranged in the corresponding horizontal sliding grooves 48, and a plurality of rotating support balls 54 are fixedly installed on the bottom surface of the lower movable plate 51 at equal intervals.

[0044] The movable horizontal distance of the fixed support block 22 in the activity port 21 is greater than the horizontal movement distance of the upper movable plate 3, so that the fixed support block 22 and the inner wall of the activity port 21 are avoided from being impacted, and the height of the fixed support block 22 is greater than the vertical movement distance of the upper movable plate 3, so that the installation plate 23 and the top surface of the damping bottom box 2 are avoided from being impacted.

[0045] In the embodiment, when the upper movable plate 3 is horizontally vibrated by the mixer main body 1, the upper movable plate 3 drives the rotating push plate 42 to move synchronously through the movable push plate 41, the rotating push plate 42 cooperates with the horizontal cambered column 43 to extrude the horizontal damping shock absorber 44 and push the horizontal cambered column 43, so that the horizontal cambered column 43 extrudes the vertical cambered column 45, the vertical cambered column 45 moves upward, and the vertical cambered column 45 extrudes the first vertical damping shock absorber 46, the horizontal vibration is absorbed under the action of the horizontal damping shock absorber 44 and the first vertical damping shock absorber 46, when the upper movable plate 3 is vertically vibrated by the mixer main body 1, the upper movable plate 3 cooperates with the lower movable plate 51 to extrude the second vertical damping shock absorber 52, the vertical vibration is processed under the action of the second vertical damping shock absorber 52, and the vertical vibration is absorbed under the action of the horizontal damping shock absorber 44 and the first vertical damping shock absorber 46 when the upper movable plate 3 is vertically vibrated.

[0046] The technical scope of the utility model is not limited to the contents in the above description, and the person skilled in the art can make various deformations and modifications to the above embodiment without departing from the technical thought of the utility model, and these deformations and modifications should all belong to the protection scope of the utility model.

Claims

1. Plastic mixer damping device, characterized in that The utility model relates to a mixing machine body and shock absorbing bottom box, the mixing machine body is set above shock absorbing bottom box, the upper movable plate is symmetrically provided with horizontal shock absorbing assembly in the top movable of shock absorbing bottom box, the lower portion of upper movable plate is provided with vertical shock absorbing assembly, the horizontal shock absorbing assembly includes movable push plate, the movable push plate top rotatory installation has rotatory push plate, the other end of rotatory push plate and upper movable plate outer side wall rotatory connection, the side away from upper movable plate of movable push plate is movably provided with horizontal cambered surface column, the side away from upper movable plate of movable push plate equidistantly and uniformly fixed installation has a plurality of horizontal damping shock absorber, a plurality of horizontal damping shock absorber other end and horizontal cambered surface column outer side wall fixed connection, the side away from movable push plate of horizontal cambered surface column is movably provided with vertical cambered surface column, the top surface equidistantly and uniformly fixed installation of vertical cambered surface column has a plurality of first vertical damping shock absorber, a plurality of first vertical damping shock absorber top fixed installation is in the top of shock absorbing bottom box. The adjacent side of horizontal cambered surface column and vertical cambered surface column is arc surface setting, the adjacent side of horizontal cambered surface column and vertical cambered surface column is set to fit, the inside wall of shock absorbing bottom box equidistantly and uniformly is provided with a plurality of T type sliding groove, the side away from horizontal cambered surface column of vertical cambered surface column equidistantly and uniformly fixed installation has a plurality of T type sliding block, a plurality of T type sliding groove and T type sliding block one to one correspondence, the T type sliding block is slidably arranged in the corresponding T type sliding groove. The upper movable plate is symmetrically provided with a pair of sliding rods on both sides, the ends of the movable push plate are respectively slidably sleeved on the pair of sliding rods, a plurality of horizontal sliding grooves are equidistantly and uniformly formed in the bottom of the shock absorbing bottom box, a plurality of first sliding support blocks are equidistantly and uniformly fixedly installed on the bottom surface of the movable push plate, a plurality of the first sliding support blocks correspond to a plurality of the horizontal sliding grooves, and a plurality of the first sliding support blocks are slidably arranged in the corresponding horizontal sliding grooves.

2. The plastic blender shock absorbing device of claim 1, wherein, A plurality of second sliding support blocks are equidistantly and uniformly fixedly installed on the bottom surface of the horizontal cambered surface column, a plurality of the second sliding support blocks correspond to a plurality of the horizontal sliding grooves, and a plurality of the second sliding support blocks are slidably arranged in the corresponding horizontal sliding grooves.

3. The plastic blender shock absorbing device of claim 1, wherein, The vertical shock absorbing assembly includes a lower movable plate, a plurality of second vertical damping shock absorbers are equidistantly and uniformly fixedly installed on the top end of the lower movable plate, the top ends of the plurality of second vertical damping shock absorbers are fixedly installed on the bottom surface of the upper movable plate, a plurality of fixed sliding strips are equidistantly and uniformly fixedly installed on the bottom surface of the lower movable plate, the plurality of fixed sliding strips correspond to the plurality of horizontal sliding grooves, and the plurality of fixed sliding strips are slidably arranged in the corresponding horizontal sliding grooves, a plurality of rotating support balls are equidistantly and uniformly fixedly installed on the bottom surface of the lower movable plate, and the outer side walls of the plurality of rotating support balls are attached to the inner bottom surface of the shock absorbing bottom box.

4. The plastic blender shock absorbing device of claim 3, wherein, An active port is formed in the top end of the shock absorbing bottom box, a fixed support block is movably arranged in the active port, the bottom end of the fixed support block is fixedly installed on the top surface of the upper movable plate, an installation plate is fixedly installed on the top surface of the fixed support block, and the mixing machine body is fixedly installed on the top surface of the installation plate.

5. The plastic blender shock absorber of claim 1, wherein, ​ 6. The plastic blender shock absorber of claim 1, wherein, ​

Citation Information

Patent Citations

  • Raw material stirring and mixing device for plastic master batch production

    CN214716342U