Rotary structure of mold frame and mold shaking frame
By setting a rotating structure and adjustment mechanism on the support base of the sway mold frame, the problems of uneven single-axis rotation and high energy consumption of the existing sway mold frame are solved, and the uniform distribution of materials in the mold and the effects of energy saving and labor saving are achieved.
Patent Information
- Application Number
- CN202520238736.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-02-14
AI Technical Summary
Existing shaking mold frames suffer from uneven single-axis rotation, time-consuming and labor-intensive rotation, and high cost. In particular, they cannot meet the shaking requirements of different products during the foaming process.
A rotating structure is installed on the support base of the mold maker. Through the cooperation of the rotating base and the bearing, the mold can rotate after reaching the required angle. Combined with the adjustment mechanism and the drive device, the material inside the mold is evenly distributed.
It achieves uniform material distribution within the mold, improves product quality, reduces energy consumption and costs, adapts to different mold specifications, and improves mold efficiency.
Smart Images

Figure CN223790884U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of shake mould frame, in particular to a rotation structure of mould frame and shake mould frame. BACKGROUND
[0002] Because of the need of foaming product technology, after foaming raw material is injected into the mould, the mould needs to be shaken according to different product requirements during the foaming process, and the shaking mode is different due to different products, the mould needs to be shaken to the required angle during the foaming process, for example, some products need to be shaken forward by 45 degrees during the foaming process, then the mould is placed flat, some products need to be shaken backward by 45 degrees during the foaming process, then the mould is placed flat, some moulds also need to be shaken forward by 45 degrees and backward by 45 degrees during the foaming process, then the mould is placed flat, and some products need to be shaken by 360 degrees during the foaming process, and the shaking mode of the current shake mould frame has the following shortcomings:
[0003] First, the current shake mould frame mostly only has single shaft rotation, and the material cannot be uniformly distributed by single shaft rotation.
[0004] Second, the required rotating force during the shaking process is large, if manual rotation is adopted, time and effort are consumed, and the distribution is uneven, if electric driving is adopted, a large power driving device is needed, the cost is high, and the energy consumption is large.
[0005] Therefore, the present application provides a rotation structure of mould frame and shake mould frame. CONTENT OF THE UTILITY MODEL
[0006] The utility model aims at solving one of the technical problems in the prior art. To this end, the utility model provides a rotation structure of mould frame, which is used for rotating the mould, and comprises a support seat, an axle sleeve, a rotating seat and a rotating mechanism.
[0007] The utility model further provides a shake mould frame.
[0008] According to the rotation structure of the mould frame, the mould can be rotated.
[0009] The support seat is used for supporting the axle sleeve.
[0010] The axle sleeve is arranged on the support seat.
[0011] The rotating seat is arranged in the axle sleeve and is rotationally connected with the axle sleeve.
[0012] The rotating seat comprises a rotating part arranged in the axle sleeve and a mounting part arranged at one end of the rotating part and used for mounting the mould.
[0013] The utility model discloses a rotating structure is set up on the support seat of the swing mould frame, when swing mould frame swings to the angle required, can utilize the rotating structure to rotate the mould, and the material in the mould can be distributed more evenly after rotating, improves the quality of product.
[0014] In some embodiments of the utility model, the bearing is arranged between the inner side wall of the shaft sleeve and the outer side wall of the rotating seat.
[0015] In some embodiments of the utility model, the bearing is located between the rotating part and the shaft sleeve, so that the rotating seat rotates more smoothly, achieving the effect of saving effort.
[0016] In some embodiments of the utility model, the rotating seat can be manually or electrically driven to rotate.
[0017] In some embodiments of the utility model, the bearing is at least one, the shaft sleeve is hollow inside for the rotating part to pass through, and the bearing is located between the outer side wall of the rotating part and the inner side wall of the shaft sleeve.
[0018] In some embodiments of the utility model, the rotating seat further comprises a driving shaft, and the driving shaft drives the rotating shaft to rotate.
[0019] According to the utility model provides a kind of swing mould frame, adopt the structure of rotating structure;The swing mould frame further includes rack, is set up in rack and is connected with the rotating rack of rack, and the swing mould support of the rotating rack, the swing mould support includes with the rotating connection of rack and is side by side arranged first side plate and second side plate, and the support seat, the first side plate and second side plate are set on support seat.
[0020] In some embodiments of the utility model, the first side plate, the support seat and the second side plate form a U-shaped swing mould support that can rotate.
[0021] In some embodiments of the utility model, the rack includes two side by side arranged first column and second column, first rotating seat arranged on the first column, second rotating seat arranged on the second column, first rotating shaft and second rotating shaft are arranged on the two sides of the swing mould support, the first rotating shaft is arranged on the first rotating seat and is connected with the rotating connection thereof, and the second rotating shaft is arranged on the second rotating seat and is connected with the rotating connection thereof.
[0022] In some embodiments of the utility model, the mold shaking frame further includes a driving device arranged on the rack and used for driving the mold shaking support to rotate, the driving device includes a driving mechanism arranged on the rack and a transmission mechanism arranged on the rack, the driving mechanism drives the mold shaking support to rotate through the transmission mechanism, the transmission mechanism includes a first gear and a second gear that mesh with each other, the driving mechanism drives the first gear to rotate, and the first gear drives the second gear to rotate.
[0023] In some embodiments of the utility model, the mold shaking support further includes a first adjusting mechanism arranged on the first side plate and a second adjusting mechanism arranged on the second side plate, the first adjusting mechanism and the second adjusting mechanism respectively adjust the positions of the first side plate and the second side plate to make the mold shaking process more labor-saving.
[0024] The first adjusting mechanism / second adjusting mechanism includes a guide seat, an adjusting seat fixedly arranged on the guide seat, and an adjusting rod rotationally connected with the adjusting seat, the first side plate or the second side plate is slidingly connected with the guide seat, the adjusting rod is rotated to drive the first side plate or the second side plate to move relative to the guide seat.
[0025] In some embodiments of the utility model, a first connecting step is arranged on the first side plate and used for connecting with the guide seat, a second connecting step is arranged on the second side plate and used for connecting with the guide seat, a connecting slot used for cooperating with the first connecting step / second connecting step is arranged on the guide seat, and the cross-sectional shape of the first connecting step / second connecting step and the connecting slot is matched dovetail shape or T-shaped.
[0026] The mold shaking frame of the utility model is provided with the first adjusting mechanism and the second adjusting mechanism, is used for realizing labor-saving adjustment, can simultaneously adapt to mold shaking frames of different specifications, improves the utilization rate of the mold shaking frame, therefore, one end of the first rotating shaft is directly fixed on the guide seat, a limiting block is embedded in the guide seat and used for improving the connecting strength, and the limiting block is fixedly arranged on the first rotating shaft.
[0027] In some embodiments of the utility model, the mold shaking frame further includes an anti-rotation device used for preventing the first side plate from rotating, the anti-rotation device includes a limiting piece arranged on the first rotating shaft and provided with a limiting hole and an anti-rotation column arranged on the rack, and the anti-rotation column cooperates with the limiting hole. BRIEF DESCRIPTION OF DRAWINGS
[0028] The drawings described herein are used to provide further understanding of the utility model, constitute a part of the utility model, and the illustrative embodiments of the utility model and the description thereof are used to explain the utility model and do not constitute improper limitation on the utility model.
[0029] Among them:
[0030] Figure 1 is the schematic view of the rotating structure of the utility model;
[0031] Figure 2 is the side view of the rotating structure of the utility model Figure 1 ;
[0032] Figure 3 is the sectional view A-A of the utility model Figure 2 ;
[0033] Figure 4 is the side view of the rotating structure of the utility model Figure 2 ;
[0034] Figure 5 is the sectional view B-B of the utility model Figure 4 ;
[0035] Figure 6 is the schematic view of the structure of the mold shaker frame of the utility model;
[0036] Figure 7 is the partial enlarged view of the utility model Figure 6 ;
[0037] Figure 8 is the side view of the mold shaker frame of the utility model;
[0038] Figure 9 is the partial enlarged view of the mold shaker frame of the utility model Figure 1 ;
[0039] Figure 10 is the partial schematic view of the mold shaker frame of the utility model;
[0040] Figure 11 is the partial enlarged view of figure 9 of the utility model;
[0041] Figure 12 is the partial enlarged view of the mold shaker frame of the utility model Figure 2 ;
[0042] Figure 13 is the partial schematic view of the mold shaker frame of the utility model Figure 1 ;
[0043] Figure 14 is the partial schematic view of the mold shaker frame of the utility model Figure 2 ;
[0044] Figure 15 is the partial schematic view of the mold shaker frame of the utility model Figure 3 .
[0045] Mark explanation:
[0046] 001, mold; 10, support seat; 11, first side plate; 111, first sliding groove; 112, first connecting step; 12, second side plate; 121, second sliding groove; 122, second connecting step; 20, shaft sleeve; 21, first recess; 22, second recess; 23, bearing; 24, end cover; 25, fixing ring; 30, rotating seat; 31, rotating part; 32, mounting part; 40, driving shaft; 50, rack; 51, first vertical column; 511, first rotating seat; 512, first rotating shaft; 52, second vertical column; 521, second rotating seat; 53, first cross plate; 60, driving device; 61, driving mechanism; 611, driving motor; 62, transmission mechanism; 621, first gear; 622, second gear; 70, first adjusting mechanism; 71, guide seat; 711, connecting slot; 72, adjusting seat; 73, adjusting rod; 74, limiting block; 80, anti-rotation device; 81, limiting piece; 811, limiting hole; 82, cylinder seat; 83, anti-rotation cylinder; 84, anti-rotation column; 90, second adjusting mechanism. DETAILED DESCRIPTION
[0047] In order to make the technical problems, technical solutions and beneficial effects of the utility model clearer and more apparent, the utility model will be further described in detail below in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the utility model and do not limit the utility model. EMBODIMENT
[0048] Please refer to Figures 1 to 5 It is a rotating structure of a mold frame, used for rotating the mold 001, comprising a support seat 10, a shaft sleeve 20 and a rotating seat 30. The shaft sleeve 20 is arranged on the support seat 10. The rotating seat 30 is arranged in the shaft sleeve 20 and is rotationally connected with the shaft sleeve 20. The rotating seat 30 comprises a rotating part 31 arranged inside the shaft sleeve 20 and a mounting part 32 arranged at one end of the rotating part 31 and used for mounting the mold 001. The central shaft of the shaft sleeve 20 is perpendicular to the support seat 10. A first through hole is arranged on the support seat 10 and used for mounting the shaft sleeve 20. The rotating structure is arranged on the support seat 10 of the mold frame. After the mold frame is swung to the required angle, the mold 001 can be rotated by using the rotating structure. After rotation, the materials in the mold 001 can be distributed more uniformly, and the quality of the product is improved.
[0049] Please refer to Figure 3, the bearing 23 is arranged between the outer side wall of the rotating seat 30 and the inner side wall of the shaft sleeve 20. Specifically, the bearing 23 is arranged between the rotating part 31 and the shaft sleeve 20, so that the rotating seat 30 rotates more smoothly during rotation, and the effect of saving effort is achieved. The rotating seat 30 of the utility model can be manually or electrically driven to rotate. When manually rotating, time and effort are saved. When electrically driven rotation is required, a high-power motor is not required, cost is saved, and energy saving is achieved. The bearing 23 is arranged at least one, the shaft sleeve 20 is internally hollow for the rotating part 31 to pass through, and the bearing 23 is arranged between the outer side wall of the rotating part 31 and the inner side wall of the shaft sleeve 20; in the embodiment, the bearing 23 is arranged two, the shaft sleeve 20 is internally hollow, and the first recess 21 and the second recess 22 are arranged at the two end openings respectively for mounting the bearing 23.
[0050] Specifically, please refer to Figures 2-5 When the bearing 23 is installed in the second recess 22, the end cover 24 is used for limiting, and the end cover 24 is sleeved on one end of the shaft sleeve 20 after passing through the rotating shaft. Specifically, please refer to 4 and 5, when the end cover 24 is installed in place, the fixing ring 25 limits the rotating seat 30 on the shaft sleeve 20. Specifically, the rotating part 31 is in a stepped shape, the fixing ring 25 is sleeved on the rotating part 31 after passing through the shaft sleeve 20 with the bearing 23 and the end cover 24, and then welding can be used for fixation, or a bolt is used for threadedly connecting the fixing ring 25 and the rotating part 31, or the bolt is screwed and locked with the fixing ring 25 and abuts against the outer side wall of the rotating part 31.
[0051] Specifically, please refer to Figures 2-5 The rotating seat 30 further comprises a driving shaft 40, the rotating shaft is driven to rotate through the driving shaft 40, a handle can be arranged on the driving shaft 40, the driving shaft 40 is driven to rotate through the handle, and then the rotating seat 30 is driven to rotate, the driving shaft 40 can be embedded in the inner side of the rotating part 31, and then fixed through a bolt, and the bolt can be threadedly connected with the driving shaft 40 through the rotating part 31. The mold 001 of the embodiment can be directly locked on the mounting part 32 through a bolt.
[0052] In summary, the utility model sets up the rotating structure on the support seat 10 of the mold shaking frame, when the mold shaking frame swings to the required angle, the mold 001 can be rotated through the rotating structure, the material in the mold 001 can be more evenly distributed after rotation, and the quality of products is improved. Embodiment
[0053] Please refer to Figures 1 to 15The utility model provides a kind of shake mould frame as embodiment 2 of the utility model, adopt the structure of rotating structure in embodiment 1;The shake mould frame further include rack 50, be set on rack 50 and be connected with the rotation of rack 50 shake mould support, shake mould support includes with the rotation of rack 50 and side by side setting first side plate 11 and second side plate 12, and support seat 10, first side plate 11 with second side plate 12 are set on support seat 10;First side plate 11, support seat 10 and second side plate 12 form the shake mould support of U type shape and rotatable, by manual or electric rotating shake mould support, to further drive the rotation of mould 001.
[0054] Rack 50 includes two side by side setting first column 51 and second column 52, first rotating seat 511 set on first column 51, second rotating seat 521 set on second column 52, first rotating shaft 512 and second rotating shaft are respectively set on the two sides of shake mould support, first rotating shaft 512 is set on first rotating seat 511 and is connected with its rotation, second rotating shaft is set on second rotating seat 521 and is connected with its rotation.
[0055] Further, the mold shaking support also comprises a first adjusting mechanism 70 arranged on the first side plate 11, a second adjusting mechanism 90 arranged on the second side plate 12, and the first adjusting mechanism 70 and the second adjusting mechanism 90 respectively adjust the positions of the first side plate 11 and the second side plate 12 to make the shaking process more labor-saving; specifically, the first rotating shaft 512 and the second rotating shaft are coaxially arranged, and the center axes of the two form a horizontal center line, and after the first side plate 11 and the second side plate 12 are adjusted, the center of gravity of the overall structure (including the weight of the formed material) formed by the first side plate 11, the support seat 10, the second side plate 12 and the mold 001 on the support seat 10 coincides with the center line, so that the shaking process is more labor-saving, and even manual shaking can be easily rotated. The first adjusting mechanism 70 / second adjusting mechanism 90 comprises a guide seat 71, an adjusting seat 72 fixedly arranged on the guide seat 71, and an adjusting rod 73 rotationally connected with the adjusting seat 72, the first side plate 11 or the second side plate 12 is slidingly connected with the guide seat 71, and the adjusting rod 73 is rotated to drive the first side plate 11 or the second side plate 12 to move relative to the guide seat 71. Specifically, the first side plate 11 is provided with a first sliding groove 111 for embedding the adjusting seat 72, the second side plate 12 is provided with a second sliding groove 121 for embedding the adjusting seat 72, the middle part of the adjusting rod 73 is located in the first sliding groove 111 / second sliding groove 121 and is threadedly connected with the adjusting seat 72, and the two ends are respectively rotationally connected with the first side plate 11 / second side plate 12. That is, the adjusting rod 73 penetrates through the first side plate 11 / second side plate 12 and the adjusting seat 72, the adjusting seat 72 is fixed on the guide seat 71 and located in the first sliding groove 111 / second sliding groove 121, and since the adjusting rod 73 is threadedly connected with the sliding block adjusting seat 72, the first side plate 11 / second side plate 12 and the adjusting rod 73 can be simultaneously moved upward or downward by rotating the adjusting rod 73, thereby achieving the movement of the support seat 10. The first side plate 11 is provided with a first connecting step 112 for connecting with the guide seat 71, the second side plate 12 is provided with a second connecting step 122 for connecting with the guide seat 71, the guide seat 71 is provided with a connecting slot 711 for cooperating with the first connecting step 112 / second connecting step 122, and the cross-sectional shape of the first connecting step 112 / second connecting step 122 and the connecting slot 711 is matched dovetail shape or T shape. By the first connecting step 112 / second connecting step 122 and the connecting slot 711, not only stable movement is achieved, but also the rotating bracket is stable in rotation, avoiding shaking during the shaking process. At the same time, a limiting block 74 is embedded in the guide seat 71 to improve the connection strength, and the limiting block 74 is fixedly arranged on the first rotating shaft 512.
[0056] When the shake mold support includes the first side plate 11, the second side plate 12 and the support seat 10, and does not include the first adjusting mechanism 70 and the second mechanism, one end of the first rotating shaft 512 is directly connected to the first side plate 11, and one end of the second rotating shaft is directly connected to the second side plate 12; when the shake mold support includes the first side plate 11, the second side plate 12, the support seat 10, the first adjusting mechanism 70 and the second adjusting mechanism 90, one end of the first rotating shaft 512 is directly connected to the guide seat 71 of the first adjusting mechanism 70, and one end of the second rotating shaft is directly connected to the guide seat 71 of the second adjusting mechanism.
[0057] In order to accurately control the shake mold speed and ensure that the shake mold is more uniform, the shake mold frame further includes a driving device 60 for driving the shake mold support to rotate, the driving device 60 drives the shake mold support to rotate and drives the rotating structure and the mold 001 to rotate; further, when the shake mold support has the first adjusting mechanism 70 and the second adjusting mechanism 90, the overall center of gravity can be adjusted, the driving device 60 used does not need too much driving force, the cost of the driving device 60 can be reduced, and the energy consumption is also reduced, and the driving device 60 is located above the first vertical column 51. The shake mold frame of the utility model rotates the mold 001 through the driving device 60, which can not only ensure the uniform speed of the shake mold and the shake mold angle, but also avoid the problems of time-consuming and labor-consuming caused by manual shake mold, improve the shake mold efficiency, and further match the first adjusting mechanism 70 and the second adjusting mechanism 90, which can not only save the cost but also reduce the energy consumption.
[0058] The driving device 60 includes a driving mechanism 61 arranged on the rack 50 and a transmission mechanism 62 arranged on the rack 50, the driving mechanism 61 drives the first side plate 11 or the first adjusting mechanism 70 to rotate through the transmission mechanism 62; the transmission mechanism 62 includes a first gear 621 and a second gear 622 that are engaged with each other, the driving mechanism 61 drives the first gear 621 to rotate, and the first gear 621 drives the second gear 622 to rotate. Specifically, the driving mechanism 61 is composed of a driving motor 611 and a gearbox, the driving motor 611 is arranged below the gearbox, the driving motor 611 adopts a servo motor, the rotation angle of the shake mold support can be accurately controlled, the first gear 621 is connected to the output end of the gearbox, the second gear 622 is used to drive the shake mold support to rotate, the driving motor 611 rotates, drives the first gear 621 to rotate through the gearbox, and since the first gear 621 and the second gear 622 are engaged, the second gear 622 is driven to rotate, and the shake mold support is further driven to rotate.
[0059] The utility model discloses a shake mould frame is provided with first adjusting mechanism 70 and second adjusting mechanism 90, is used for realizing the labor -saving adjustment, can adapt to different specifications shake mould frame simultaneously, improve the utilization of shake mould frame, therefore one end of first rotating shaft 512 is fixed on guide seat 71 directly, and the inside of guide seat 71 is embedded with a limit block 74 for improving the connecting strength, and the limit block 74 is fixedly arranged on the first rotating shaft 512.
[0060] Before the mould 001 rotates, need to limit the mould 001 and prevent it from rotating by itself, therefore the shake mould frame still includes the anti -rotation device 80 for preventing the first side plate 11 from rotating, and the anti -rotation device 80 includes the limiting sheet 81 being set up on the first rotating shaft 512 and having the limit hole 811, the anti -rotation column 84 being set up on the rack 50, and the anti -rotation column 84 is matched with the limit hole 811, the limiting sheet 81 is fixedly sleeved on the first rotating shaft 512, and when the second gear 622 rotates, drives the limiting sheet 81 to rotate together, specifically, the anti -rotation column 84 can adopt manual or electric drive, when adopting manual, specifically please refer to Figure 9 , the rack 50 can set up a sliding seat corresponding to the limiting sheet 81, and the anti -rotation column 84 is slidably arranged on the sliding seat, and the anti -rotation column 84 is slidably connected with the sliding seat, when the first side plate 11 is to be limited to rotate, manually inserts the anti -rotation column 84 into the limit hole 811, when the mould is needed to shake, manually pulls out the anti -rotation column 84 from the limit hole 811, when adopting electric, specifically please refer to Figures 10-11 , the anti -rotation device 80 still includes the cylinder seat 82 being set up on the first stand 51, the anti -rotation cylinder 83 being set up on the cylinder seat 82, and the anti -rotation column 84 is set up on the output end of the anti -rotation cylinder 83, and the anti -rotation column 84 is matched with the limit hole 811, when the anti -rotation cylinder 83 drives the anti -rotation column 84 to embed in the limit hole 811, can prevent the first rotating shaft 512 from driving the first side plate 11 to rotate, when the mould is needed to shake, the anti -rotation cylinder 83 drives the anti -rotation column 84 to separate from the limit hole 811.
[0061] The upper end of the first stand 51 sets up the first horizontal plate 53 for installing the driving mechanism 61, the first rotating seat 511 and the anti -rotation device 80, and the upper end of the second stand 52 sets up the second horizontal plate for installing the second rotating seat 521, the first horizontal plate still sets up the first shell, and the second horizontal plate still sets up the second shell, and the first shell and the second shell can protect the internal parts, and can also improve the safety performance.
[0062] The shaking mold frame adjusts the positions of the first side plate 11, the second side wall and the support seat 10 according to the size of the mold 001, installs the mold 001 on the support seat 10 after adjustment, drives the anti-rotation cylinder 83 to drive the anti-rotation column 84 to separate from the limiting hole 811 after injecting the foaming raw material, and drives the cylinder to rotate along the central shaft of the first rotating shaft 512 according to preset parameters, and the mold 001 can be rotated along the central shaft direction of the rotating seat 30 by rotating the rotating seat 30 according to requirements after rotation.
[0063] In summary, the shaking mold frame drives the mold to rotate through the driving device, can not only ensure uniform shaking speed and shaking angle, but also can avoid time and labor consumption caused by manual shaking, improves the shaking efficiency, and simultaneously sets the first adjusting mechanism and the second adjusting mechanism to adapt to molds of different models, and improves the utilization rate of the shaking mold frame.
[0064] The utility model has been described above in combination with the drawings, and obviously, the specific implementation of the utility model is not limited by the above mode, as long as various non-essential improvements are adopted by using the method concept and technical scheme of the utility model, or the concept and technical scheme of the utility model are directly applied to other occasions without improvement, and all fall within the protection scope of the utility model.
Claims
1. A rotary structure of a mold frame for rotating a mold; characterized by, The utility model relates to a mold shaking frame, including: Supporting seat; Shaft sleeve, which is arranged on the supporting seat; Rotary seat, which is arranged in the shaft sleeve and rotationally connected with the shaft sleeve; The rotary seat includes a rotating part inside the shaft sleeve, a mounting part arranged at one end of the rotating part and used for mounting a mold.
2. A rotating structure of a mold frame according to claim 1, wherein A bearing is arranged between the inner side wall of the shaft sleeve and the outer side wall of the rotary seat.
3. A rotating structure of a mold frame according to claim 2, wherein The bearing is arranged at least one, and the shaft sleeve is hollow inside for the rotating part to pass through, and the bearing is located between the outer side wall of the rotating part and the inner side wall of the shaft sleeve.
4. The rotating structure of a mold frame according to claim 1, wherein The rotary seat further comprises a driving shaft, which drives the rotating shaft to rotate.
5. A shakeout frame characterized in that, The utility model relates to a mold shaking frame, including:
6. A shakeout frame according to claim 5, wherein, Supporting seat; 7. A shakeout frame according to claim 5, wherein Shaft sleeve, which is arranged on the supporting seat; 8. A shakeout frame according to claim 7, wherein Rotary seat, which is arranged in the shaft sleeve and rotationally connected with the shaft sleeve; 9. A shakeout frame according to claim 5, wherein, The rotary seat includes a rotating part inside the shaft sleeve, a mounting part arranged at one end of the rotating part and used for mounting a mold.
10. A shakeout frame according to claim 9, wherein A bearing is arranged between the inner side wall of the shaft sleeve and the outer side wall of the rotary seat. The bearing is arranged at least one, and the shaft sleeve is hollow inside for the rotating part to pass through, and the bearing is located between the outer side wall of the rotating part and the inner side wall of the shaft sleeve. The rotary seat further comprises a driving shaft, which drives the rotating shaft to rotate. The utility model relates to a mold shaking frame, including: Supporting seat; Shaft sleeve, which is arranged on the supporting seat; Rotary seat, which is arranged in the shaft sleeve and rotationally connected with the shaft sleeve; The rotary seat includes a rotating part inside the shaft sleeve, a mounting part arranged at one end of the rotating part and used for mounting a mold. A bearing is arranged between the inner side wall of the shaft sleeve and the outer side wall of the rotary seat. The bearing is arranged at least one, and the shaft sleeve is hollow inside for the rotating part to pass through, and the bearing is located between the outer side wall of the rotating part and the inner side wall of the shaft sleeve. The rotary seat further comprises a driving shaft, which drives the rotating shaft to rotate. The utility model relates to a mold shaking frame, including: Supporting seat; Shaft sleeve, which is arranged on the supporting seat; Rotary seat, which is arranged in the shaft sleeve and rotationally connected with the shaft sleeve; The rotary seat includes a rotating part inside the shaft sleeve, a mounting part arranged at one end of the rotating part and used for mounting a mold. A bearing is arranged between the inner side wall of the shaft sleeve and the outer side wall of the rotary seat. The bearing is arranged at least one, and the shaft sleeve is hollow inside for the rotating part to pass through, and the bearing is located between the outer side wall of the rotating part and the inner side wall of the shaft sleeve. The rotary seat further comprises a driving shaft, which drives the rotating shaft to rotate. The utility model relates to a mold shaking frame, including: Supporting seat; Shaft sleeve, which is arranged on the supporting seat; Rotary seat, which is arranged in the shaft sleeve and rotationally connected with the shaft sleeve; The rotary seat includes a rotating part inside the shaft sleeve, a mounting part arranged at one end of the rotating part and used for mounting a mold. A bearing is arranged between the inner side wall of the shaft sleeve and the outer side wall of the rotary seat. The bearing is arranged at least one, and the shaft sleeve is hollow inside for the rotating part to pass through, and the bearing is located between the outer side wall of the rotating part and the inner side wall of the shaft sleeve. The rotary seat further comprises a driving shaft, which drives the rotating shaft to rotate. The utility model relates to a mold shaking frame, including: Supporting seat; Shaft sleeve, which is arranged on the supporting seat; Rotary seat, which is arranged in the shaft sleeve and rotationally connected with the shaft sleeve; The rotary seat includes a rotating part inside the shaft sleeve, a mounting part arranged at one end of the rotating part and used for mounting a mold. A bearing is arranged between the inner side wall of the shaft sleeve and the outer side wall of the rotary seat. The bearing is arranged at least one, and the shaft sleeve is hollow inside for the rotating part to pass through, and the bearing is located between the outer side wall of the rotating part and the inner side wall of the shaft sleeve. The rotary seat further comprises a driving shaft, which drives the rotating shaft to rotate. The utility model relates to a mold shaking frame, including: Supporting seat; Shaft sleeve, which is arranged on the supporting seat; Rotary seat, which is arranged in the shaft sleeve and rotationally connected with the shaft sleeve; The rotary seat includes a rotating part inside the shaft sleeve, a mounting part arranged at one end of the rotating part and used for mounting a mold. A bearing is arranged between the inner side wall of the shaft sleeve and the outer side wall of the rotary seat. The bearing is arranged at least one, and the shaft sleeve is hollow inside for the rotating part to pass through, and the bearing is located between the outer side wall of the rotating part and the inner side wall of the shaft sleeve. The rotary seat further comprises a driving shaft, which drives the rotating shaft to rotate. The utility model relates to a mold shaking frame, including: Supporting seat; Shaft sleeve, which is arranged on the supporting seat; Rotary seat, which is arranged in the shaft sleeve and rotationally connected with the shaft sleeve; The rotary seat includes a rotating part inside the shaft sleeve, a mounting part arranged at one end of the rotating part and used for mounting a mold. A bearing is arranged between the inner side wall of the shaft sleeve and the outer side wall of the rotary seat. The bearing is arranged at least one, and the shaft sleeve is hollow inside for the rotating part to pass through, and the bearing is located between the outer side wall of the rotating part and the inner side wall of the shaft sleeve. The rotary seat further comprises a driving shaft, which drives the rotating shaft to rotate. The utility model relates to a mold shaking frame, including: Supporting seat; Shaft sleeve, which is arranged on the supporting seat; Rotary seat, which is arranged in the shaft sleeve and rotationally connected with the shaft sleeve; The rotary seat includes a rotating part inside the shaft sleeve, a mounting part arranged at one end of the rotating part and used for mounting a mold. A bearing is arranged between the inner side wall of the shaft sleeve and the outer side wall of the rotary seat. The bearing is arranged at least one, and the shaft sleeve is hollow inside for the rotating part to pass through, and the bearing is located between the outer side wall of the rotating part and the inner side wall of the shaft sleeve. The rotary seat further comprises a driving shaft, which drives the rotating shaft to rotate. The utility model relates to a mold shaking frame, including: Supporting seat; Shaft sleeve, which is arranged on the supporting seat; Rotary seat, which is arranged in the shaft sleeve and rotationally connected with the shaft sleeve; The rotary seat includes a rotating part inside the shaft sleeve, a mounting part arranged at one end of the rotating part and used for mounting a mold. A bearing is arranged between the inner side wall of the shaft sleeve and the outer side wall of the rotary seat. The bearing is arranged at least one, and the shaft sleeve is hollow inside for the rotating part to pass through, and the bearing is located between the outer side wall of the rotating part and the inner side wall of the shaft sleeve. The rotary seat further comprises a driving shaft, which drives the rotating shaft to rotate. The utility model relates to a mold shaking frame, including: Supporting seat; Shaft sleeve, which is arranged on the supporting seat; Rotary seat, which is arranged in the shaft sleeve and rotationally connected with the shaft sleeve; The rotary seat includes a rotating part inside the shaft sleeve, a mounting part arranged at one end of the rotating part and used for mounting a mold. A bearing is arranged between the inner side wall of the shaft sleeve and the outer side wall of the rotary seat. The bearing is arranged at least one, and the shaft sleeve is hollow inside for the rotating part to pass through, and the bearing is located between the outer side wall of the rotating part and the inner side wall of the shaft sleeve. The rotary seat further comprises a driving shaft, which drives the rotating shaft to rotate. The utility model relates to a mold shaking frame, including: Supporting seat; Shaft sleeve, which is arranged on the supporting seat; Rotary seat, which is arranged in the shaft sleeve and rotationally connected with the shaft sleeve; The rotary seat includes a rotating part inside the shaft sleeve, a mounting part arranged at one end of the rotating part and used for mounting a mold. A bearing is arranged between the inner side wall of the shaft sleeve and the outer side wall of the rotary seat. The bearing is arranged at least one, and the shaft sleeve is hollow inside for the rotating part to pass through, and the bearing is located between the outer side wall of the rotating part and the inner side wall of the shaft sleeve. The rotary seat further comprises a driving shaft, which drives the rotating shaft to rotate. The utility model relates to a mold shaking frame, including: Supporting seat; Shaft sleeve, which is arranged on the supporting seat; Rotary seat, which is arranged in the shaft sleeve and rotationally connected with the shaft sleeve; The rotary seat includes a rotating part inside the shaft sleeve, a mounting part arranged at one end of