Movable multifunctional machining workbench for basket production
By designing a mobile, multi-functional processing workbench, the problems of inconvenient material storage and high labor intensity in basket production were solved, enabling rapid classification and retrieval of materials and convenient operation, thereby improving production efficiency and quality.
Patent Information
- Application Number
- CN202520121955.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-01-20
AI Technical Summary
The existing basket workbench has limited functionality and a simple material storage structure, making it inconvenient for categorizing and storing materials and for quick retrieval. Furthermore, the workbench is fixed to the ground, resulting in high labor intensity, low efficiency, and easy damage to the basket workpieces.
A movable, multifunctional processing workbench was designed, comprising a column and a tabletop. The tabletop is equipped with multiple storage bins and workpiece platforms, and features a pulley system and hydraulic rods to enable the tabletop to be raised, lowered, and moved. Combined with a rotating hopper, tilting shelves, adaptive clamps, and pressure sensors, it enhances the convenience of material classification, storage, and operation.
It enables rapid classification and retrieval of materials, reduces labor intensity, improves production efficiency and quality, reduces damage to workpieces in the basket, adapts to different operational needs, and enhances operational comfort and safety.
Smart Images

Figure CN223812062U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of basket production, in particular to a movable multifunctional processing workbench for basket production. BACKGROUND
[0002] The basket is a kind of container installed on bicycle, electric vehicle or other similar vehicle, usually located in the front or rear of vehicle, for carrying goods, such as shopping bag, backpack, books, tools, etc., basket is generally made of metal, plastic or other materials, with certain strength and carrying capacity, its shape is mostly rectangular, square or circular, with open or semi-open structure, convenient for user to place and take out goods.
[0003] In the production process of basket, in order to ensure the quality and performance of basket, especially its carrying capacity, compression resistance and appearance, it needs to be detected, in order to effectively complete these detections and other production operations, it is necessary to use special equipment, among which processing workbench plays an important role, as the carrying platform of various processing tools, it is convenient for workers to take at any time during operation.
[0004] The inventor found that the prior art has the following problems in the process of realizing the utility model: 1, the existing basket workbench has single function, only has simple material storage structure, such as simple drawer or plane storage rack, which is inconvenient for material classification and quick access; 2, the traditional basket workbench is usually fixed on the ground, without movable function, usually needs to transfer basket workpiece between different work areas, which leads to manual mass handling of workpiece, high labor intensity, low efficiency, and also easy to cause damage to basket workpiece. CONTENT OF THE UTILITY MODEL
[0005] The utility model discloses a movable multifunctional processing workbench for basket production, which solves the problem of single function of the workbench in the prior art, and facilitates the classified storage and quick taking of materials. To achieve the above object, the utility model provides the following technical scheme: a movable multifunctional processing workbench for basket production, comprising a stand column and a table plate, wherein the table plate is located above the stand column, the surface of the table plate is sequentially provided with a first storage bin, a second storage bin and a display device from left to right, one side of the second storage bin is rotatably connected with a workpiece platform, the lower portion of the table plate is respectively provided with a first pulley seat and a second pulley seat, the stand columns are distributed at the corner positions of the bottom of the table plate in the form of two-by-two, the first pulley seat is rotatably connected with the outer wall of one side stand column through a hinge, the second pulley seat is rotatably connected with the outer wall of the other side stand column through a hinge, the upper portion of the outer wall of the stand column corresponding to the first pulley seat and the second pulley seat is rotatably connected with a hydraulic rod, the outer wall of the second pulley seat is rotatably connected with a limiting block at one side, the inside of the stand column is slidably connected with a jacking assembly, and the jacking assembly is distributed at the corner positions of the bottom of the table plate, the inside of the stand column is rotatably connected with a worm, and the outer wall of one of the stand columns is rotatably connected with a synchronizing element.
[0006] The first storage bin is composed of a strip-shaped support and a cross-shaped turntable, and the strip-shaped support is fixed to the surface of the table plate through bolts.
[0007] The inside of the workpiece platform is rotatably connected with a reverse lead screw, the workpiece platform is slidably connected with a clamp through a sliding groove formed in the surface of the workpiece platform, and the bottom of the clamp extends to the sliding groove on the surface of the workpiece platform and is threadedly connected with the outer wall of one end of the reverse lead screw corresponding to the sliding groove.
[0008] The jacking assembly is composed of a connecting bearing, a convex ring, a worm wheel and a lead screw, the outer ring of the connecting bearing is fixed to the inner wall of the stand column, the bottom of the convex ring is integrally connected with the top of the inner ring of the connecting bearing, the top of the convex ring is integrally connected with the bottom of the worm wheel, one end of the lead screw penetrates through the shaft center of the worm wheel and is threadedly connected with the inner wall of the shaft center of the worm wheel, the top of the lead screw extends to the corner positions of the bottom of the table plate and is fixedly connected therewith, and the bottom of the lead screw is slidably connected in the limiting sliding grooves formed in the inner wall of the stand column through a sliding block.
[0009] Further preferably, the second storage bin is composed of a strip-shaped support and a rectangular storage rack, the storage rack is fixedly inclined at an angle of 15° on the top of the strip-shaped support, and the bottom of the strip-shaped support is fixed to the surface of the table plate through bolts.
[0010] Further preferably, the rotating silo inner wall is provided with a partition, and the rotating silo bottom is fixed with a counterweight, and the first storage silo cross-shaped turntable is connected with the shaft rod to form an integral connection, and the rotating silos are equiangularly distributed along the shaft rod, and the cross-shaped turntable surface is respectively provided with a circular notch for embedding and rolling connection with a spherical connecting block.
[0011] Further preferably, the clamps are connected through the reverse screw rod to form relative motion on the workpiece platform surface, and the workpiece platform surface is provided with a clamping groove at one end, the clamping groove is used for clamping with the hook movably connected to the table plate surface through the spring, and the clamps are slidably connected with a plurality of equally spaced arrayed chucks through the through holes formed on the surface of the clamps, and the clamps are provided with springs inside the corresponding positions of the chucks, one end of the spring is fixedly connected with one end of the corresponding chuck, and the other end of the spring is integrally connected with the pressure sensor fixed in the cavity inner wall of the clamp, and the pressure sensor inside the clamp is electrically connected with the display device.
[0012] Further preferably, the first pulley seat and the second pulley seat are oppositely distributed, and the hydraulic rod is obliquely arranged at an angle of 30°, and the power output ends of the hydraulic rod are rotatably connected with the corresponding first pulley seat and second pulley seat, and the first pulley seat and the second pulley seat form a turnover structure through the hydraulic rod, and the second pulley seat is L-shaped, and one end of the second pulley seat is tightly attached to the top of the first pulley seat through the hydraulic rod.
[0013] Further preferably, the second pulley seat is rotatably connected with a spring at the position corresponding to the limiting block, and the limiting block forms an elastic reset structure through the spring, and the first pulley seat outer wall is fixedly connected with a circular columnar structure for clamping connection with the limiting block.
[0014] Further preferably, the worm is located at one end of the worm wheel and is meshingly connected therewith, the worms are distributed in pairs through the shaft rod penetrating the shaft center, and the synchronous member is composed of a synchronous pulley and a toothed belt, wherein the synchronous pulley is integrally connected with the corresponding worm at one end through the penetrating shaft rod, and the toothed belt is wrapped around and meshingly connected to the outer wall of the synchronous pulley, the screw rod forms a screw transmission structure through the worm wheel and the worm, and forms a sliding telescopic structure in the corresponding column inside the screw rod, and the table plate forms a lifting structure through the screw rod above the column.
[0015] Compared with the prior art, the utility model has the advantages of:
[0016] The utility model discloses, the rotary bin of first storage bin has baffle and counterweight, can store the nut, bolt and so on part by partition, and the convenience of rotating and taking things, the storage rack of second storage bin is 15 degree inclination, and it is favorable to view and take and measure tool, is equipped with positioning structure, and the fixture can be adaptive fixed basket, and its pressure sensor can transmit pressure data to display equipment, and it is convenient to carry out the monitoring evaluation of basket compression resistance, avoids the necessity of shifting basket to special equipment, improves production efficiency and quality, and simultaneously through worm, worm wheel and lead screw and so on linkage, can adjust the height of table board, satisfies the demand of different operating personnel, promotes the operation comfort.
[0017] The utility model discloses, through treading and pressing second pulley seat, utilizes hydraulic rod and limit block and so on component to realize pulley seat unfolding, and easily converts to mobile state with workbench, to shift workbench to processing butt joint area, effectively avoids the unnecessary of large -scale carrying basket, and after reaching position, simple operation can make pulley seat overturning and folding, and the column stands on the ground, ensures the workbench stability, guarantees the stability and safety of subsequent operation. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is first pulley seat and second pulley seat folding structure schematic diagram of the utility model;
[0019] Figure 2 It is first pulley seat and second pulley seat unfolding structure schematic diagram of the utility model;
[0020] Figure 3 It is limit block distribution structure schematic diagram of the utility model;
[0021] Figure 4 It is column internal structure schematic diagram of the utility model;
[0022] Figure 5 It is jacking assembly structure schematic diagram of the utility model;
[0023] Figure 6 It is workpiece platform structure schematic diagram of the utility model;
[0024] Figure 7 It is first storage bin structure schematic diagram of the utility model.
[0025] In the drawing: 1, column;2, table board;3, first storage bin;301, rotary bin;302, spherical connecting block;4, second storage bin;5, display equipment;6, workpiece platform;601, reverse lead screw;602, clamp;7, first pulley seat;8, second pulley seat;9, hydraulic rod;10, limit block;11, jacking assembly;1101, connecting bearing;1102, convex ring;1103, worm wheel;1104, lead screw;12, worm;13, synchronous piece. DETAILED DESCRIPTION
[0026] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary technical personnel in the field without creative labor are within the protection scope of the utility model.
[0027] Please refer to Figures 1 to 7 The utility model provides a kind of movable multifunctional processing workbench for basket production, including stand 1 and table plate 2, table plate 2 is located above stand 1, the surface of table plate 2 is sequentially provided with first storage bin 3, second storage bin 4 and display device 5 from left to right, the side of second storage bin 4 is rotatably connected with workpiece platform 6, the below of table plate 2 is respectively provided with first pulley seat 7 and second pulley seat 8, stand 1 is distributed in the corner position of the bottom of table plate 2 in the form of two two as a group, first pulley seat 7 is rotatably connected with the outer wall of one side stand 1 by hinge, second pulley seat 8 is rotatably connected with the outer wall of the other side stand 1 by hinge, the above of the outer wall of stand 1 corresponding first pulley seat 7 and second pulley seat 8 is rotatably connected with hydraulic rod 9, the outer wall of second pulley seat 8 side is rotatably connected with limit block 10, the inside of stand 1 is slidably connected with jacking assembly 11, and jacking assembly 11 is distributed in the corner of the bottom of table plate 2, the inside of stand 1 is rotatably connected with worm 12, the outer wall of one group of stand 1 is rotatably connected with synchronous piece 13.
[0028] First storage bin 3 is composed of strip support and cross-shaped turntable, and strip support is fixed on the surface of table plate 2 by bolt, and first storage bin 3 is rotatably connected with rotary bin 301 by cross-shaped turntable, and rotary bin 301 is rotatably connected with spherical connecting block 302 at both ends of outer wall.
[0029] The inside of workpiece platform 6 is rotatably connected with reverse screw 601, and workpiece platform 6 is slidably connected with clamp 602 through the sliding slot formed in its surface, and the bottom of clamp 602 extends to the sliding slot on the surface of workpiece platform 6 and is threadedly connected with the outer wall of one end of reverse screw 601 corresponding thereto.
[0030] The jacking assembly 11 is composed of a connecting bearing 1101, a convex ring 1102, a worm wheel 1103 and a lead screw 1104. The outer ring of the connecting bearing 1101 is fixed to the inner wall of the stand column 1. The bottom of the convex ring 1102 is integrally connected with the top of the inner ring of the connecting bearing 1101. The top of the convex ring 1102 is integrally connected with the bottom of the worm wheel 1103. One end of the lead screw 1104 penetrates the shaft center of the worm wheel 1103 and is threadedly connected with the inner wall of the shaft center of the worm wheel 1103. The top of the lead screw 1104 extends to the edge corner at the bottom of the table plate 2 and is fixedly connected therewith. The bottom of the lead screw 1104 is slidingly connected to the limiting sliding grooves formed on the inner wall of the stand column 1 on both sides.
[0031] In the embodiment, as shown in Figure 1 and Figure 2 , the second storage bin 4 is composed of a strip-shaped support and a rectangular storage rack. The storage rack is fixedly inclined at an angle of 15° on the top of the strip-shaped support, and the bottom of the strip-shaped support is fixed to the surface of the table plate 2 by bolts. This inclined structure helps to improve the visibility of the stored items on the storage rack. Compared with the horizontally placed storage rack, the inclined angle ensures that the items located at the rear will not be completely obscured by the items at the front, and the entire storage rack can be clearly seen at a glance, reducing the time spent searching for items and improving operational efficiency.
[0032] In the embodiment, as shown in Figure 7 , the inner wall of the rotary bin 301 is provided with a partition, and the bottom of the rotary bin 301 is fixed with a counterweight. The cross-shaped turntable in the first storage bin 3 is integrally connected by a shaft, and the rotary bins 301 are equally distributed along the shaft. The surface of the cross-shaped turntable is provided with circular notches for embedding and rolling connection with spherical connecting blocks 302. The partition in the inner wall of the rotary bin 301 allows the interior to be divided into multiple areas, and different types or specifications of materials can be placed in different partitions, providing sufficient space for storing a variety of different materials. When a certain material is needed, the operator can easily rotate the rotary bin 301 to move the area where the desired material is located to a convenient operating position. This feature greatly improves the convenience of material retrieval. Compared with traditional fixed bins, there is no need to reach deep or search for materials in a complex storage space. Through rotation, the operator can directly move the desired material to his or her front, achieving quick retrieval. Regardless of the angle at which the rotary bin 301 is rotated, the counterweight ensures that it remains balanced, avoiding tilting or overturning of the rotary bin 301 due to uneven distribution of material weight during rotation, effectively preventing material spillage.
[0033] In the embodiment, as shown in Figure 6As shown, the clamps 602 are in relative motion on the surface of the workpiece platform 6 through the reverse lead screw 601, and one end of the surface of the workpiece platform 6 is provided with a clamping groove, which is used for clamping with the hook on the surface of the table plate 2 through the spring movable connection, and the clamps 602 are slidably connected with a plurality of equally spaced array distributed chucks through the through holes on the surface of the clamps 602, and the positions of the clamps 602 corresponding to the chucks are provided with springs, one end of the spring is fixedly connected with one end of the corresponding chuck, and the other end of the spring is integrally connected with the pressure sensor fixed on the inner wall of the cavity of the clamp 602, and the pressure sensor in the clamp 602 is electrically connected with the display device 5; by operating the reverse lead screw 601, the relative position of the clamp 602 can be easily changed, and when the clamp 602 is clamped on the basket, the spring can automatically adjust the position of the chuck according to the shape and size of the basket, realize self-adaptive clamping, so that the clamp 602 can better adapt to baskets of various shapes, and the application range is expanded. In some machining or detection operation process, the workpiece platform 6 needs to be kept stable, the clamping groove at one end of the surface of the workpiece platform 6 is clamped with the hook on the surface of the table plate 2, at this time, the clamping structure can prevent the workpiece platform 6 from moving or rotating accidentally, and ensure the stability and accuracy of the machining or detection process. When the clamp 602 exerts pressure on the basket, the internal pressure sensor will transmit the converted electrical signal to the display device 5 through the circuit, and the pressure data will be displayed in the form of numerical value or graph. The operator can directly see the pressure of the basket, and by observing the pressure data on the display device 5, the deformation of the basket under different pressures can be judged. When the pressure reaches a certain degree, whether the basket is damaged or deformed beyond the allowable range is observed, so as to evaluate the pressure resistance of the basket. The pressure resistance detection function is integrated on the workbench, and the operator does not need to transfer the basket to a special pressure resistance test equipment, which reduces the handling process of the basket between different equipments, can also find problems in time during the test process, avoids further processing of unqualified products or waste of subsequent resources, improves production efficiency and product quality, and reduces production cost.
[0034] In this embodiment, as shown in Figure 1 , Figure 2 and Figure 3As shown, the relative distribution between the first pulley seat 7 and the second pulley seat 8, and the hydraulic rod 9 is inclined at 30°, the power output end is respectively connected with the corresponding first pulley seat 7 and the second pulley seat 8, and the first pulley seat 7 and the second pulley seat 8 constitute a turnover structure through the hydraulic rod 9, and the second pulley seat 8 is L-shaped, one end of which is closely attached to the top of the first pulley seat 7 through the hydraulic rod 9; when the workbench needs to be moved, the first pulley seat 7 and the second pulley seat 8 are turned over to the appropriate position, so that the pulley contacts the ground, facilitating the movement of the workbench, avoiding the inconvenience of the traditional fixed workbench, reducing the handling work of a large number of basket workpieces, and improving the flexibility and operation efficiency in the production process. The hydraulic rod 9 provides suitable auxiliary support power and motion trajectory for the turnover movement of the first pulley seat 7 and the second pulley seat 8.
[0035] In this embodiment, as shown in Figure 1 、 Figure 2 and Figure 3 , the second pulley seat 8 is rotatably connected with a spring outside the position corresponding to the limiting block 10, and the limiting block 10 constitutes an elastic reset structure through the spring, and the first pulley seat 7 is fixedly connected with a circular column structure for clamping connection with the limiting block 10; when the pulley seat is unfolded under the action of the hydraulic rod 9 and the workbench is in a moving state, the limiting block 10 will limit the position of the first pulley seat 7 and the second pulley seat 8 to a certain extent, preventing accidental turnover or movement, achieving locking or unlocking of the moving state of the workbench, simple and intuitive operation, without complex mechanical structure or additional tools, improving the convenience and efficiency of operation.
[0036] In this embodiment, as shown in Figure 4 and Figure 5 , the worm 12 is located at one end of the worm wheel 1103 and is meshingly connected therewith, and the worms 12 are distributed in pairs through the shaft rods penetrating the shaft centers, and the synchronous member 13 is composed of a synchronous belt pulley and a toothed belt, wherein the synchronous belt pulley is integrally connected with the corresponding worm 12 at one end through the penetrating shaft rod, and the toothed belt is wrapped around and meshed with the outer wall of the synchronous belt pulley. The lead screw 1104 constitutes a screw transmission structure with the worm 12 through the worm wheel 1103, and constitutes a sliding telescopic structure inside the corresponding column 1, and the table plate 2 constitutes a lifting structure above the column 1 through the lead screw 1104; through the wrapping and meshing of the synchronous belt pulley and the toothed belt, the power can be accurately transmitted from one end of the worm 12 to the other end of the worm 12, thereby realizing the synchronous rotation of the worm wheel 1103. Through the combination of the worm 12, the worm wheel 1103 and the lead screw 1104, the table plate 2 realizes a continuous and stable lifting process. Operators can adjust the height of the table plate 2 according to different operation needs, such as workers of different heights performing basket processing, assembly or detection operations, to improve the comfort and convenience of operation.
[0037] The use method and advantages of the utility model are: the movable multifunctional processing workbench for the basket production, in use, the working process is as follows:
[0038] For example Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7As shown, first, various specifications of nuts, bolts and other small basket connecting parts are stored in the rotating bin 301 in the first storage bin 3, the partition plate arranged in the rotating bin 301 can realize the zoning of the parts, the counterweight at the bottom ensures the stability during rotation, and through the rotation structure of the cross-shaped rotating disc with the spherical connecting block 302 on both sides, the rotating bin 301 keeps the open side horizontal no matter how it rotates, avoiding the objects from falling; The installation tools such as wrenches and measuring tools for detecting flatness and specifications are stored on the rectangular shelf of the second storage bin 4, which is convenient for operators to check and use, when the workbench needs to be moved to different work areas such as the basket component discharge point, the operator steps on the second pulley seat 8, the originally inclined second pulley seat 8 is pressed at one end, and in the descending process, it contacts the first pulley seat 7 below, driving one end of the first pulley seat 7 to descend, as the first pulley seat 7 gradually becomes horizontal, the second pulley seat 8 continues to descend, and the limiting block 10 rotatingly connected to the outer wall of the second pulley seat 8 will contact the cylindrical structure on the outer wall of the first pulley seat 7, when the cylindrical structure interferes, the bottom of the limiting block 10 will rotate, and then the spring will be stretched, when the edge of the bottom of the limiting block 10 completely passes through the cylindrical structure, the limiting block 10 is reset under the elastic action of the spring, so that the cylindrical structure is clamped in the slot, at this time, the second pulley seat 8 is in a horizontal state and is attached to the top of the first pulley seat 7, during the movement of the first pulley seat 7 and the second pulley seat 8, the hydraulic rod 9 above them is correspondingly extended, providing a stable support movement path for them. Finally, the pulleys at the bottom of the horizontally distributed first pulley seat 7 and second pulley seat 8 stand on the ground, supporting the four columns 1 at the bottom of the table plate 2, realizing the movement state of the workbench, and facilitating the operator to move the workbench to the desired position, when the workbench moves to the specified position, the operator peels off the limiting block 10 from the cylindrical structure part, and kicks it up from the bottom of the first pulley seat 7 and the second pulley seat 8 respectively, since the first pulley seat 7 and the second pulley seat 8 are both rotatingly connected to the outer wall of the corresponding column 1 through hinges, they will be folded and turned over, and the power end of the hydraulic rod 9 will retract as the two are turned over, when the first pulley seat 7 and the second pulley seat 8 are in an inclined distribution, the column 1 at the bottom stands on the ground, so that the workbench returns to a stable state, ensuring the stability and safety during subsequent operations, the operator peels off the limiting block 10 from the cylindrical structure part, and kicks it up from the bottom of the first pulley seat 7 and the second pulley seat 8 respectively, and places the basket on the workpiece platform 6, adjusts the position of the clamp 602 by operating the reverse lead screw 601 inside the workpiece platform 6, so that the clamp 602 approaches the basket and is clamped at both ends of the basket, the array of chuck heads on the surface of the clamp 602 can automatically adjust the position under the spring structure according to the shape and size of the basket, if it is in the process of installing accessories, the workpiece platform 6 can be fixed by the hook on the surface of the table plate 2 and the clamping groove on the surface of the workpiece platform 6, ensuring the stability of the basket during the installation of accessories.The operator can take out the required nuts, bolts and installation tools from the first storage bin 3 and the second storage bin 4 to perform the assembly operation on the basket; if the basket components need to be assembled at different angles, the workpiece platform 6 can be rotated; when the compression resistance of the basket needs to be detected, the display device 5 is turned on, and when the clamp 602 clamps the basket, the chuck on the surface of the clamp 602 can be self-adaptively adjusted according to the shape of the basket, the corresponding spring is compressed, and the pressure information is transmitted to the display device 5 through the pressure sensor connected with the chuck, the display device 5 can be installed with software specially used for data acquisition, such as LabVIEW, the operator applies pressure to the basket through an external pressure applying device, and simultaneously observes the pressure data on the display device 5, the display device 5 can display the pressure borne by the basket in the form of a numerical value or a graph, so as to judge the deformation of the basket under different pressures and evaluate the compression resistance of the basket; if the operators with different heights need to adjust the height of the workbench, the handle on one side of the table plate 2 can be operated to drive one of the coaxially connected worms 12 to rotate, the rotation of the worm 12 drives the corresponding synchronous wheel to rotate, the transmission structure of the toothed belt is used to realize the linkage of the other worm 12 driven by the other synchronous wheel, and then the worm gear 1103 engaged with the worm 12 is driven to rotate, when the worm gear 1103 rotates, the lead screw 1104 forming a screw transmission structure with the worm gear 1103 rotates, the table plate 2 is lifted and lowered, the rod body of the lead screw 1104 passes through the through hole between the connecting bearing 1101 and the convex ring 1102, the bottom part slides in the sliding groove in the inner wall of the stand column 1 through the sliding block, and finally the table plate 2 is adjusted to the appropriate height to provide a comfortable operating height for the operator.
[0039] The basic principle, main features and advantages of the utility model are shown and described above. The technical personnel in the industry should understand that the utility model is not limited by the above-mentioned embodiments, the above-mentioned embodiments and the description in the specification are only preferred examples of the utility model and are not used to limit the utility model, various changes and improvements of the utility model can be made without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed. The protection scope of the utility model is defined by the appended claims and equivalents thereof.
Claims
1. A movable multifunctional processing workbench for basket production, comprising a stand (1) and a table top (2), characterized in that: The table plate (2) is located above the column (1), the surface of the table plate (2) is sequentially provided with a first storage bin (3), a second storage bin (4) and a display device (5) from left to right, one side of the second storage bin (4) is rotatably connected with a workpiece platform (6), the lower side of the table plate (2) is respectively provided with a first pulley seat (7) and a second pulley seat (8), the column (1) is distributed in the form of two groups at the corner position of the bottom of the table plate (2), the first pulley seat (7) is rotatably connected with the outer wall of one side column (1) through a hinge, the second pulley seat (8) is rotatably connected with the outer wall of the other side column (1) through a hinge, the outer wall of the column (1) is rotatably connected with a hydraulic rod (9) above the first pulley seat (7) and the second pulley seat (8), the outer wall of the second pulley seat (8) is rotatably connected with a limiting block (10) on one side, the inside of the column (1) is slidably connected with a jacking assembly (11), and the jacking assembly (11) is distributed at the corner of the bottom of the table plate (2), the inside of the column (1) is rotatably connected with a worm (12), and the outer wall of one group of the column (1) is rotatably connected with a synchronous part (13); The first storage bin (3) is composed of a strip-shaped support and a cross-shaped turntable, and the strip-shaped support is fixed to the surface of the table plate (2) through bolts, and the first storage bin (3) is rotatably connected with a rotary bin (301) through the cross-shaped turntable, and the rotary bin (301) is rotatably connected with spherical connecting blocks (302) at both ends of the outer wall. The inside of the workpiece platform (6) is rotatably connected with a reverse lead screw (601), the workpiece platform (6) is slidably connected with a clamp (602) through the sliding groove formed on the surface thereof, and the bottom of the clamp (602) extends to the sliding groove on the surface of the workpiece platform (6) and is threadedly connected with the outer wall of one end of the reverse lead screw (601) corresponding thereto. The jacking assembly (11) is composed of a connecting bearing (1101), a convex ring (1102), a worm wheel (1103) and a lead screw (1104), the outer ring of the connecting bearing (1101) is fixed to the inner wall of the column (1), the bottom of the convex ring (1102) is integrally connected with the top of the inner ring of the connecting bearing (1101), the top of the convex ring (1102) is integrally connected with the bottom of the worm wheel (1103), one end of the lead screw (1104) penetrates the axis of the worm wheel (1103) and is threadedly connected with the inner wall of the axis of the worm wheel (1103), the top of the lead screw (1104) extends to the corner of the bottom of the table plate (2) and is fixedly connected therewith, and the bottom of the lead screw (1104) is slidably connected in the limiting sliding groove formed on the inner wall of the column (1) on both sides.
2. The movable multifunctional processing workbench for basket production according to claim 1, characterized in that: The second storage bin (4) is composed of a strip-shaped support and a rectangular storage rack, the storage rack is fixedly connected to the top of the strip-shaped support at an angle of 15°, and the bottom of the strip-shaped support is fixed to the surface of the table plate (2) through bolts.
3. The movable multifunctional processing workbench for basket production according to claim 1, characterized in that: The inner wall of the rotary stock bin (301) is provided with a partition, and the bottom of the rotary stock bin (301) is fixed with a counterweight, and the cross-shaped rotating disc between the first stock bin (3) is connected in an integrated manner through a shaft rod, and the rotary stock bin (301) is distributed at equal angles along the shaft rod, and the surface of the cross-shaped rotating disc is provided with a circular notch for embedding and rolling connection with the spherical connecting block (302).
4. The movable multifunctional processing workbench for basket production according to claim 1, characterized in that: The clamps (602) are connected in opposite directions through the reverse lead screw (601) on the surface of the workpiece platform (6), and a clamping groove is formed at one end of the surface of the workpiece platform (6), which is used for clamping with the hook on the surface of the table plate (2) through the spring, and the clamps (602) are slidably connected with a plurality of equally spaced arrayed chucks through the through holes formed on the surface of the clamps (602), and springs are arranged in the clamps (602) corresponding to the positions of the chucks. One end of the spring is fixedly connected with one end of the corresponding chuck, and the other end of the spring is integrally connected with the pressure sensor fixed in the cavity inner wall of the clamp (602), and the pressure sensor in the clamp (602) is electrically connected with the display device (5).
5. The movable multifunctional processing workbench for basket production according to claim 1, characterized in that: The first pulley seat (7) and the second pulley seat (8) are oppositely distributed, and the hydraulic rod (9) is inclinedly arranged at an angle of 30°, and the power output ends of the first pulley seat (7) and the second pulley seat (8) are rotatably connected with the corresponding first pulley seat (7) and second pulley seat (8), and the first pulley seat (7) and the second pulley seat (8) form a turnover structure through the hydraulic rod (9), and the second pulley seat (8) is L-shaped, and one end of the second pulley seat (8) is tightly attached to the top of the first pulley seat (7) through the hydraulic rod (9).
6. The movable multifunctional processing workbench for basket production according to claim 1, characterized in that: The second pulley seat (8) is rotatably connected with a spring outside the corresponding limiting block (10), and the limiting block (10) forms an elastic reset structure through the spring, and the first pulley seat (7) is fixedly connected with a circular column structure for clamping the limiting block (10).
7. The movable multifunctional processing workbench for basket production according to claim 1, characterized in that: The worm (12) is located at one end of the worm gear (1103) and is meshingly connected therewith, and the worms (12) are distributed in pairs through the shaft rods penetrating the shaft centers thereof, and the synchronous member (13) is composed of a synchronous belt pulley and a toothed belt The synchronous belt pulley and the corresponding worm (12) are integrally connected through the penetrating shaft rod, and the toothed belt is wrapped around and meshed with the outer wall of the synchronous belt pulley, the lead screw (1104) forms a screw transmission structure with the worm (12) through the worm gear (1103), and forms a sliding expansion structure in the corresponding stand (1), and the table plate (2) forms a lifting structure above the stand (1) through the lead screw (1104).