Adjustable balancing device

The adjustable support system addresses single-point locking issues by distributing load across multiple points using dual-axis motors and synchronized component movement, enhancing stability and durability.

CN120307064AActive Publication Date: 2025-07-15SHANXI NO 3 CONSTR ENG
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Patent Information

Application Number
CN202510803353.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-17
Publication Date
2025-07-15
Estimated Expiration
2045-06-17

AI Technical Summary

Technical Problem

In the prior art, due to the single self-locking position during the mechanical processing, when the load bearing is large and the time is long, the single point limit is prone to breakage and damage, and it is impossible to effectively disperse the stress, increase equipment loss, and reduce the service life of the equipment.

Method used

The adjustable balance device is adopted to drive the inlet and exit screws and transmission gears through a dual-axis motor and belt transmission box to realize the movement of the sliding integrated block and the sleeve support plate, and the synchronous rotation of the positioning lift plate and the rotating support plate is coordinated. Multi-stage limit engagement and electromagnetic limit are used to disperse the stress points and enhance the stability of the equipment; at the same time, the steady limit and horizontal detection of the material is achieved through the balanced pressing assembly to ensure the balance of the equipment.

Benefits of technology

It effectively reduces damage caused by single-point stress in the equipment, improves the service life and stability of the equipment, and ensures smooth support and positioning of the materials during processing.

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Abstract

The invention discloses an adjustable balancing device, and relates to the technical field of machining, belt transmission boxes are installed at the side end of an integrated supporting frame at equal intervals, a double-shaft motor is installed at one end of the integrated supporting frame through a motor base, and the side face of one belt transmission box is connected with an inlet and outlet lead screw in a clamped mode through symmetrical output shafts; and one end of the sliding integration block is rotationally connected with a sleeving supporting plate, the two ends of the inner side of the integration supporting frame are rotationally connected with positioning lifting plates, one end of each positioning lifting plate is provided with a correction motor through a motor base, and one end of an output shaft of each correction motor is connected with a bearing supporting frame in a clamped mode. According to the self-locking device, the situation that self-locking loosening or self-locking damage occurs to equipment when the bearing capacity is large and the time is long due to the fact that stress cannot be effectively dispersed is avoided, meanwhile, damage to the equipment caused by continuous high-strength stress is reduced, the service life of the equipment is effectively prolonged, and the use stability of the equipment is guaranteed.
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Description

Technical Field

[0001] The invention relates to the technical field of mechanical processing, in particular to an adjustable balancing device. Background Art

[0002] In the process of mechanical processing, we often encounter long materials and workpieces. Manual cutting results in large errors, while the mechanical workbench is small, which is not convenient for material processing. Now most of them use supporting equipment to support and limit one end to achieve load-bearing and processing.

[0003] The patent with application number 202310869186.3 mentions "hydraulic balancing device and its operating method". This patent limits the hydraulic equipment through self-locking gears and cooperates with the lifting and lowering limit of the bearing plate to achieve self-locking fixation of the hydraulic equipment.

[0004] However, during balanced support, due to the single self-locking position, the single-point limit is prone to breakage when the load is heavy and the time is long. At the same time, the straight up and down balanced load-bearing cannot disperse the force when it is under force, which greatly increases the load-bearing capacity of the single point of the equipment, increases the rate of equipment wear and tear, and reduces the service life of the equipment. Summary of the invention

[0005] The present invention provides an adjustable balancing device, which can effectively solve the problem raised in the above-mentioned background technology that when the balance support is supported, due to the single self-locking position, the single-point limit is prone to breakage when the load is large and the time is long. At the same time, the straight up and down balance load-bearing cannot disperse the force when it is subjected to force, which greatly increases the load-bearing capacity of a single point of the equipment, increases the rate of equipment loss, and reduces the service life of the equipment.

[0006] To achieve the above-mentioned object, the present invention provides the following technical solutions: an adjustable balancing device, comprising an integrated support frame, wherein the integrated support frame is provided with an adjustable support and anti-falling assembly; The support and anti-falling component includes a belt transmission box; The side ends of the integrated support frame are equidistantly installed with belt transmission boxes, and a double-axis motor is installed at one end of the integrated support frame at a position corresponding to the input shaft of the belt transmission box through a motor seat, and one side of the belt transmission box is connected with an inlet and outlet screw rod through a symmetrical output shaft, and the side ends of the inlet and outlet screw rods are connected with a sliding integration block through a screw rod seat; One end of the sliding integration block is rotatably connected to a sleeve support plate, both ends of the inner side of the integration support frame are rotatably connected to positioning lifting plates, one end of the positioning lifting plate is installed with a correction motor through a motor seat, and one end of the correction motor output shaft is clamped with a load-bearing support frame; A number of inlet and outlet fixing holes are equidistantly arranged at both ends of the integrated support frame. Connecting fixed boxes are welded at positions corresponding to the inlet and outlet fixing holes at both ends of the integrated support frame. A number of insertion springs are equidistantly welded inside the connecting fixed boxes. One end of each insertion spring is welded with a one-way interception box.

[0007] According to the above technical solution, the output shaft of the double-shaft motor is snap-connected to the input shaft of the belt transmission box. The cross-sections of the top ends of the sliding integration block and the one-way interception box are both arc-shaped. The load-bearing support frame is rotatably sleeved on the side ends of the sleeve support plate and the positioning lifting plate.

[0008] According to the above technical solution, a load-bearing limiting rod is welded between the two positioning lifting plates. A number of rotating support plates are rotatably connected at equal intervals on the side of the load-bearing limiting rod. The bottom ends of the sides of the multiple rotating support plates are rotatably connected with a concave-convex sliding frame. A number of concave arc-shaped grooves are equidistantly arranged at the top end of the integrated support frame; A number of pressing springs are symmetrically welded at equal intervals on the inner top end of the concave-convex sliding frame. The bottom ends of the two pressing springs are welded with a pressing special-shaped block. The double-limiting clamping rod rotatably penetrates through the side ends of the two sleeve support plates. Both ends of the double-limiting clamping rod are rotatably connected with a side blocking fixed box. Integrating springs are symmetrically welded at the inner top end of the side blocking fixed box. One end of the two integrating springs is welded with a stable limiting box; Fixed dampers are installed at one ends of the one-way interception box, the pressing special-shaped block, and the side blocking fixed box. A sliding connection sleeve is rotatably connected to the bottom of the side of the stable limiting box. Special-shaped positioning sleeves are slidably connected at positions corresponding to the sliding connection sleeves at both ends of the integrated support frame. A lifting electric push rod is fixed at the inner bottom end of the special-shaped positioning sleeve; Linkage electromagnets are installed at one ends of the connecting fixed box, the one-way interception box, the concave-convex sliding frame, and the pressing special-shaped block. A number of transmission gears are equidistantly installed on the output shaft of the other belt transmission box. A limiting rack is slidably connected at a position corresponding to the transmission gear on the side of the integrated support frame. One end of the limiting rack is rotatably connected with a lifting cooperation bar at equal intervals; A number of limiting sleeves are equidistantly fixed at one end inside the integrated support frame. A number of cooperation springs are equidistantly arranged inside the limiting sleeves. One ends of the multiple cooperation springs are all welded with rising sleeves. One end of one of the cooperation springs is welded with a lifting operation frame. A reset spring is fixed at the top of the side of the lifting operation frame. One end of the reset spring is welded with a flat fitting plate.

[0009] According to the above technical solution, the one-way interception box is slidably sleeved inside the inlet and outlet fixing holes. One end of the one-way interception box is attached to one end of the sliding integration block. The side blocking fixed box and the stable limiting box are sleeved and connected.

[0010] According to the above technical solution, the sliding connection sleeve is sleeved and connected with the special-shaped positioning sleeve. The longitudinal section of the bottom end of one end of the pressing special-shaped block is arc-shaped, and the longitudinal section of the pressing special-shaped block is L-shaped.

[0011] According to the above technical solution, a plurality of the fixed dampers are respectively connected with the connection fixing box, the concave-convex sliding frame and the stable limiting box. The transmission gear is engaged with the limiting rack, and one end of the lifting matching strip is rotatably connected with the lifting operation frame.

[0012] According to the above technical solution, a plurality of the rising sleeves are sleeved and connected one by one; The input ends of the double-shaft motor, the correction motor, the lifting electric push rod and the linkage electromagnet are all electrically connected with the output end of the external controller; The input end of the external controller is electrically connected with the output end of the external power supply.

[0013] According to the above technical solution, the integrated support frame is provided with a balance pressing assembly; The balance pressing assembly includes a support mounting sleeve; A plurality of support mounting sleeves are welded symmetrically at equal intervals at the bottom end of the integrated support frame. Support electric push rods are symmetrically installed at positions corresponding to the support mounting sleeves at the bottom end of the integrated support frame. Moving wheels are installed at the bottom ends of the two support electric push rods. Lifting electric slide rails are clamped at both ends of the integrated support frame. One end of the two lifting electric slide rails is connected with a lifting balance box through a slide rail seat; A plurality of embedded clamping grooves are arranged at equal intervals at the top end of the load-bearing support frame. A plurality of sliding limiting holes are arranged at equal intervals at the bottom end of the load-bearing support frame. Pressing electric slide rails are embedded at both inner ends of the load-bearing support frame. A pressing upper push plate is connected between the two pressing electric slide rails through a slide rail seat. A plurality of combined springs are welded symmetrically at equal intervals inside the sliding limiting holes. A combined sliding frame is welded at the bottom ends of the plurality of combined springs. A pressing bandage is installed at the top end of the combined sliding frame; A horizontal detector is fixed at the top end of the flat fitting plate. A pressure sensor is fixed at one side of the top end of the lifting operation frame. An anti-slip support pad is bonded inside the embedded clamping groove.

[0014] According to the above technical solution, the lifting balance box is sleeved and connected with the support mounting sleeve. The moving wheels are placed inside the lifting balance box. The combined sliding frame and the pressing bandage are both slidably installed inside the sliding limiting holes.

[0015] According to the above technical solution, the top end of the pressing upper push plate is attached to the bottom end of the combined sliding frame; The input ends of the support electric push rod, the lifting electric slide rail, the pressing electric slide rail, the horizontal detector and the pressure sensor are all electrically connected with the output end of the external controller; The signal output terminal of the pressure sensor is electrically connected to the signal input terminal of the external controller.

[0016] Compared with the prior art, the present invention has the following beneficial effects: A support adjustment and anti-falling component is provided, which drives the in-and-out screw rods and transmission gears through a double-axis motor and a belt transmission box, and the in-and-out screw rods drive the sliding integration block and the sleeve support plate to move, and the positioning lifting plate rotates and moves synchronously to drive the load-bearing support frame to rise, and the sleeve support plate drives the load-bearing limit rod, the rotating support plate and the concave-convex sliding frame to move and transpose, and the one-way interception box is driven by an inserted spring and a fixed damper to engage and limit the sliding integration block, and the pressing spring and the fixed damper drive the pressing special-shaped block to limit the concave-convex sliding frame, and the position of the equipment is controlled by a linkage electromagnet to achieve the limit blocking of the sleeve support plate, the positioning lifting plate and the rotating support plate, and the lifting state of the equipment is adjusted through multi-stage limit engagement and electromagnetic limit, and by increasing the limit force points of the equipment, the occurrence of force breakage due to single-point force and single-point restriction is reduced, thereby improving the stability of the equipment support positioning; The side stop fixing box and the stable limit box are limited by the integrated spring and the fixed damper. The lifting electric push rod drives the sliding connection sleeve and the special-shaped positioning sleeve to slide and exchange positions to achieve side end limitation, thereby supporting and limiting the middle and both sides. The lifting matching bar is driven by the transmission gear and the limiting rack to move. The lifting matching bar drives the lifting operation frame and the rising sleeve to lift and lower under the limiting action of the matching spring. With the reset spring and the flat laminating plate, the material can be steadily supported and limited during flat measurement, increasing the overall force points, reducing the lack of support at both ends and the middle, and the occurrence of force shaking causing the equipment to deviate and bend, and insufficient support positioning causing deviate and detach, which effectively improves the stability of the overall support limit. Through synchronous transmission at both ends, the equipment is driven to move at the same time to ensure that the overall support height is the same. At the same time, multi-stage limit engagement and magnetic reset are used, and the support position is adjusted by limit support and lifting on both sides. The simultaneous operation effectively solves the problem of single self-locking position and ineffective force dispersion in the prior art, which leads to self-locking looseness or self-locking damage of the equipment when the load is large and the time is long. At the same time, the damage to the equipment caused by continuous high-intensity force is reduced, the service life of the equipment is effectively improved, and the stability of the equipment is guaranteed.

[0017] 2. A balance pressing assembly is provided. The combined sliding frame is pushed to move by the pressing electric slide rail and the pressing upper push plate. The material to be processed is placed on the top of the load-bearing support frame and the anti-slip support pad. The combined sliding frame and the pressing bandage are driven by the combined spring to move downward, and the material is pressed to achieve stable limiting of the material. Moreover, by using elastic downward pressing and deformation fitting, the shape of the pressing bandage is adjusted according to the shape of the material to achieve accurate fitting and stable pressing, realizing the stability of the material limiting, reducing the occurrence of the situation that the material position deviates and detaches during processing. Through the mutual cooperation of the horizontal detector, the flat fitting plate and the pressure sensor, when the material is placed, it is possible to judge whether the height of the equipment support surface is consistent with the height of the machine table support surface according to the angle detected by the level gauge and the pressure received, so as to adjust the support position of the equipment to ensure the levelness of the material. The moving wheel is driven by the support electric push rod to lift, and the lifting electric slide rail drives the lifting balance box to move, adjusting the distance between the lifting balance box and the support mounting sleeve, and cooperating with the movement and transposition of the moving wheel to realize the movement following of the equipment during processing, and can realize rapid flat processing during the processing to ensure the balance state of the equipment.

[0018] In summary, through the mutual cooperation of the adjustment support anti-falling component and the balance pressing component, by using multi-stage balance adjustment and equipment height adjustment, when the material is used on different machine tables, it can be steadily operated. Cooperating with multi-stage clamping fixation and support fixation, the load-bearing and feeding and discharging stability of the equipment are improved, and the situation that the equipment is damaged due to shaking and excessive single-point force is reduced. Cooperating with multi-stage balance detection, the steady balance support of the material is realized, thus effectively ensuring the stability of the material support. Through the mutual cooperation of multiple components, the stability of the support and the accuracy of the balance are effectively improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention, and do not constitute a limitation to the present invention.

[0020] In the drawings: Figure 1 is the three-dimensional structure schematic diagram of the present invention; Figure 2 is the structure schematic diagram of the adjustment support anti-falling component of the present invention; Figure 3 is the installation structure schematic diagram of the inlet and outlet fixing holes of the present invention; Figure 4 is the Figure 3 A structure enlarged schematic diagram of; Figure 5 is the Figure 3 B structure enlarged schematic diagram of; Figure 6 is the installation structure schematic diagram of the lifting cooperation bar of the present invention; Figure 7 It is a schematic diagram of the installation structure of the sliding integration block of the present invention; Figure 8 is a schematic structural diagram of a balanced pressing assembly of the present invention; Figure 9 It is a schematic diagram of the installation structure of the moving wheel of the present invention; Figure 10 It is a schematic diagram of the installation structure of the sliding limit hole of the present invention; Numbers in the figure: 1. Integrated support frame; 2. Adjusting support and anti-falling assembly; 201. Belt transmission box; 202. Double-axis motor; 203. In-and-out screw rod; 204. Sliding integration block; 205. Fitting support plate; 206. Positioning lifting plate; 207. Correction motor; 208. Load-bearing support frame; 209. In-and-out fixing hole; 210. Connecting fixing box; 211. Insert spring; 212. One-way interception box; 213. Load-bearing limit rod; 214. Rotating support plate; 215. Concave and convex sliding frame; 216. Inner concave arc groove; 217. Pressing spring; 218. Double-limit locking rod; 219, side stop fixing box; 220, integrated spring; 221, stable limit box; 222, fixed damper; 223, sliding connection sleeve; 224, special-shaped positioning sleeve; 225, lifting electric push rod; 226, linkage electromagnet; 227, transmission gear; 228, limit rack; 229, lifting matching strip; 230, limit sleeve; 231, matching spring; 232, rising sleeve; 233, lifting operation frame; 234, reset spring; 235, flat laminating plate; 236, pressing special-shaped block; 3. Balance pressing assembly; 301. Support mounting sleeve; 302. Support electric push rod; 303. Moving wheel; 304. Lifting electric slide rail; 305. Lifting balance box; 306. Embedded card slot; 307. Sliding limit hole; 308. Pressed electric slide rail; 309. Pressed upper push plate; 310. Combined spring; 311. Combined sliding frame; 312. Pressed bandage; 313. Level detector; 314. Pressure sensor; 315. Anti-slip support pad. DETAILED DESCRIPTION

[0021] The preferred embodiments of the present invention are described below in conjunction with the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.

[0022] Example: Figure 1-10 As shown, the present invention provides a technical solution, an adjustable balancing device, comprising an integrated support frame 1, wherein the integrated support frame 1 is provided with an adjustable support and anti-falling component 2; The adjusting and supporting anti-falling component 2 includes a belt transmission box 201, a double-shaft motor 202, an inlet and outlet lead screw 203, a sliding integration block 204, a sleeved support plate 205, a positioning lifting plate 206, a correction motor 207, a load-bearing support frame 208, an inlet and outlet fixing hole 209, a connection fixing box 210, an insertion spring 211, a one-way interception box 212, a load-bearing limit rod 213, a rotating support plate 214, a concave-convex sliding frame 215, a concave arc-shaped groove 216, a pressing spring 217, a double-limit clamping rod 218, a side-block fixing box 219, an integration spring 220, a stable limit box 221, a fixed damper 222, a sliding connection sleeve 223, a special-shaped positioning sleeve 224, a lifting electric push rod 225, a linkage electromagnet 226, a transmission gear 227, a limiting rack 228, a lifting cooperation strip 229, a limiting sleeve 230, a cooperation spring 231, a rising sleeve 232, a lifting operation frame 233, a reset spring 234, a flat fitting plate 235 and a pressing special-shaped block 236; The belt transmission boxes 201 are equidistantly installed at the side ends of the integration support frame 1. One end of the integration support frame 1 is provided with a double-shaft motor 202 through a motor seat corresponding to the position of the input shaft of the belt transmission box 201. The output shaft of the double-shaft motor 202 is clamped and connected to the input shaft of the belt transmission box 201 to achieve a stable transmission process. One side of one of the belt transmission boxes 201 is clamped with an inlet and outlet lead screw 203 through symmetric output shafts. The side end of the inlet and outlet lead screw 203 is connected with a sliding integration block 204 through a lead screw seat. The cross-sections of the top ends of the sliding integration block 204 and the one-way interception box 212 are both arc-shaped, so that stable operation can be carried out when the whole is limited and supported and separated in and out. One end of the sliding integration block 204 is rotatably connected with a sleeved support plate 205. Both ends of the inner side of the integration support frame 1 are rotatably connected with positioning lifting plates 206. One end of the positioning lifting plate 206 is provided with a correction motor 207 through a motor seat. One end of the output shaft of the correction motor 207 is clamped with a load-bearing support frame 208. The load-bearing support frame 208 is rotatably sleeved on the side ends of the sleeved support plate 205 and the positioning lifting plate 206, so as to correct the placement point when the overall height rises and ensure flat placement; A number of entry and exit fixing holes 209 are equidistantly provided at both ends of the integrated support frame 1, and connecting fixing boxes 210 are welded at the positions of the entry and exit fixing holes 209 at both ends of the integrated support frame 1, and a number of insertion springs 211 are equidistantly welded on the inner side of the connecting fixing box 210, and a one-way interception box 212 is welded on one end of the insertion spring 211, and the one-way interception box 212 is slidably sleeved on the inner side of the entry and exit fixing hole 209, and one end of the one-way interception box 212 is fitted with one end of the sliding integration block 204 to achieve sliding limit and counter-position support to ensure the accuracy and stability of the overall support limit, and a load-bearing limit rod 213 is welded between the two positioning lifting plates 206, and a number of rotating support plates 214 are equidistantly connected to the side ends of the load-bearing limit rod 213, and a concave convex sliding frame 215 is rotatably connected to the bottom of the side ends of the multiple rotating support plates 214, and a number of concave arc grooves 216 are equidistantly provided on the top of the integrated support frame 1; A plurality of compression springs 217 are symmetrically welded at the top of the inner side of the concave-convex sliding frame 215, and compression shaped blocks 236 are welded at the bottom ends of the two compression springs 217. The longitudinal section of the bottom of one end of the compression shaped block 236 is arc-shaped, and the longitudinal section of the compression shaped block 236 is L-shaped, so as to realize multi-stage lifting and positioning, and ensure the stability of the overall support limit. The two sleeve support plates 205 are rotatably penetrated by the double-limit clamping rod 218, and both ends of the double-limit clamping rod 218 are rotatably connected with the side block fixing box 219, and the side block fixing box 219 is sleeved and connected with the stable limit box 221 to realize a stable connection. The top of the inner side of the side block fixing box 219 is symmetrically welded with an integrated spring 220, and one end of the two integrated springs 220 is welded with a stable limit box 221; The one-way interception box 212, the pressed special-shaped block 236 and one end of the side stop fixing box 219 are all installed with a fixed damper 222, and the multiple fixed dampers 222 are respectively connected to the connection fixing box 210, the concave-convex sliding frame 215 and the stable limit box 221 to ensure stable restriction and steady buffering. The bottom of the side end of the stable limit box 221 is rotatably connected with a sliding connection sleeve 223, and the sliding connection sleeve 223 is sleeved and connected with the special-shaped positioning sleeve 224 to ensure a stable combination. The positions of the sliding connection sleeve 223 at both ends of the integrated support frame 1 are slidably connected with the special-shaped positioning sleeve 224, and the bottom of the inner side of the special-shaped positioning sleeve 224 is fixed with a lifting electric push rod 225; The connecting and fixing box 210, the one-way intercepting box 212, the concave-convex sliding frame 215 and one end of the pressing special-shaped block 236 are all installed with a linkage electromagnet 226, wherein the output shaft of another belt transmission box 201 is equidistantly installed with a plurality of transmission gears 227, and a limiting rack 228 is slidably connected at the position of the transmission gear 227 at the side end of the integrated support frame 1, and the transmission gear 227 is engaged with the limiting rack 228 to realize steady transmission, and one end of the limiting rack 228 is equidistantly connected to rotate with a lifting matching strip 229; A number of limiting sleeves 230 are fixedly arranged at equal intervals at one end inside the integrated support frame 1. A number of matching springs 231 are arranged at equal intervals inside the limiting sleeves 230. One end of each of the multiple matching springs 231 is welded with a rising sleeve 232. The multiple rising sleeves 232 are sleeved and connected one by one to realize mutual limitation and guidance between the multiple rising sleeves 232. The top of one of the matching springs 231 is welded with a lifting operation frame 233. One end of the lifting matching strip 229 is rotatably connected to the lifting operation frame 233 to realize the position replacement of the lifting operation frame 233 and ensure that the overall height is equal. A reset spring 234 is fixed to the top of the side end of the lifting operation frame 233. One end of the reset spring 234 is welded with a flat fitting plate 235; For the stable operation of the equipment, the input ends of the double-shaft motor 202, the correction motor 207, the lifting electric push rod 225 and the linkage electromagnet 226 are all electrically connected to the output end of an external controller; The input end of the external controller is electrically connected to the output end of an external power supply.

[0023] The integrated support frame 1 is provided with a balance pressing assembly 3; The balance pressing assembly 3 includes a support mounting sleeve 301, a support electric push rod 302, a moving wheel 303, a lifting electric slide rail 304, a lifting balance box 305, an embedded clamping groove 306, a sliding limiting hole 307, a pressing electric slide rail 308, a pressing upper pushing plate 309, a combined spring 310, a combined sliding frame 311, a pressing bandage 312, a horizontal detector 313, a pressure sensor 314 and an anti-slip support pad 315; A number of support mounting sleeves 301 are symmetrically welded at equal intervals at the bottom end of the integrated support frame 1. Support electric push rods 302 are symmetrically installed at positions corresponding to the support mounting sleeves 301 at the bottom end of the integrated support frame 1. Moving wheels 303 are installed at the bottom ends of the two support electric push rods 302. Lifting electric slide rails 304 are clamped at both ends of the integrated support frame 1. One end of each of the two lifting electric slide rails 304 is connected to a lifting balance box 305 through a slide rail seat. The lifting balance box 305 is sleeved and connected with the support mounting sleeve 301. The moving wheels 303 are placed inside the lifting balance box 305 to realize synchronous lifting and ensure the stable operation of mobile support and load-bearing support; A number of embedded clamping grooves 306 are equidistantly arranged at the top end of the load-bearing support frame 208, and a number of sliding limit holes 307 are equidistantly arranged at the bottom end of the load-bearing support frame 208. Both ends of the inner side of the load-bearing support frame 208 are embedded with pressing electric slide rails 308. A pressing upper push plate 309 is connected between the two pressing electric slide rails 308 through a slide rail seat. The top end of the pressing upper push plate 309 is in contact with the bottom end of the combined sliding frame 311, ensuring stable processing of lifting alignment and support linkage. A number of combined springs 310 are symmetrically welded at equal intervals inside the sliding limit holes 307. The bottom ends of the multiple combined springs 310 are welded to a combined sliding frame 311. A pressing bandage 312 is installed at the top end of the combined sliding frame 311. The combined sliding frame 311 and the pressing bandage 312 are both slidably installed inside the sliding limit holes 307, ensuring steady processing of clamping fixation and limit guidance; A horizontal detector 313 is fixed to the top end of the flat fitting plate 235, a pressure sensor 314 is fixed to one side of the top end of the lifting operation frame 233, and an anti-slip support pad 315 is bonded inside the embedded clamping groove 306; For the stable operation of the equipment, the input ends of the support electric push rod 302, the lifting electric slide rail 304, the pressing electric slide rail 308, the horizontal detector 313 and the pressure sensor 314 are all electrically connected to the output end of an external controller; The signal output end of the pressure sensor 314 is electrically connected to the signal input end of the external controller.

[0024] The working principle and usage process of the present invention: When processing materials, the staff adjusts the position of the equipment according to the length of the materials and the height of the processing machine. The lifting electric slide rail 304 drives the lifting balance box 305 to rise along the support mounting sleeve 301, and the moving wheels 303 are brought into contact with the ground. The integrated support frame 1 is driven by the moving wheels 303 to move and change positions, realizing equipment alignment limitation. The two belt drive boxes 201 are driven by the double-shaft motor 202. The two groups of inlet and outlet lead screws 203 are driven by the belt drive boxes 201 to rotate. The sliding integration block 204 is driven by the inlet and outlet lead screws 203 to move along the integrated support frame 1. The sleeve support plate 205 is pushed by the sliding integration block 204 to move and rotate along the load-bearing support frame 208. At this time, the positioning lifting plate 206 rotates along the integrated support frame 1. By using the rotation and movement of the sleeve support plate 205, and the synchronous rotation and rise of the positioning lifting plate 206, the load-bearing support frame 208 is pushed to rise. The load-bearing support frame 208 is driven by the correction motor 207 to rotate along the positioning lifting plate 206, so that the top end of the load-bearing support frame 208 is always horizontal, ensuring the flatness of the support position during the lifting process; During the movement of the sliding integration block 204, the side end of the sliding integration block 204 fits with the side end of the one-way interception box 212, and pushes the one-way interception box 212 into the inner side of the connection fixing box 210 along the access fixing hole 209. At this time, the insertion spring 211 is compressed. When the sliding integration block 204 moves and passes through the position of the one-way interception box 212, the one-way interception box 212 is pushed by the insertion spring 211 and the fixed damper 222 to move along the connection fixing box 210 and the access fixing hole 209, and one end is attached to one end of the sliding integration block 204 to achieve blocking and fixing; When the positioning lifting plate 206 rotates and lifts, the positioning lifting plate 206 drives the load-bearing limit rod 213 to rotate and lift synchronously. At this time, the load-bearing limit rod 213 drives the rotating support plate 214 to rotate and lift, and the rotating support plate 214 drives the concave-convex sliding frame 215 to move along the integration support frame 1. At this time, the side end of the pressing special-shaped block 236 inside the concave-convex sliding frame 215 contacts the side end of the concave arc groove 216 and gradually rises along the concave arc groove 216. At this time, the pressing spring 217 is compressed. When it moves to the position of the next concave arc groove 216, the pressing spring 217 and the fixed damper 222 drive the pressing special-shaped block 236 to insert into the inner side of the concave arc groove 216, and use the L-shaped limit to effectively block and limit during the overall downward movement to avoid the occurrence of sliding and falling; When the nested support plate 205 moves up and down, the double-limit clamping rod 218 drives the side blocking fixing box 219 to rise. At this time, the special-shaped positioning sleeve 224 moves along the integration support frame 1. When the side blocking fixing box 219 rises, the integration spring 220 is stretched. The integration spring 220 and the fixed damper 222 block and limit the side blocking fixing box 219 and the stable limit box 221. The lifting electric push rod 225 drives the sliding connection sleeve 223 to move up and down along the special-shaped positioning sleeve 224, so as to adjust the height of the sliding connection sleeve 223 according to the rising height, realize the overall pressing and limiting, and use the two-end pressing and limiting and the middle support positioning to realize the overall limiting and fixing, reduce the occurrence of one-way cheap caused by the swing of the equipment during the lifting support process, and ensure the stability of the overall support and positioning; When the load-bearing support frame 208 needs to be reset, the two groups of linkage electromagnets 226 are magnetically attracted to each other, so as to drive the one-way interception box 212 to move into the inner side of the connection fixing box 210, and drive the pressing special-shaped block 236 to move into the inner side of the concave-convex sliding frame 215. At this time, the sliding integration block 204 is driven to move again through the access screw rod 203, so as to drive the nested support plate 205, the positioning lifting plate 206 and the load-bearing support frame 208 to move back to their original positions; When the load-bearing support frame 208 is lifted or lowered, the belt transmission box 201 drives the transmission gear 227 to rotate along the integrated support frame 1, and the transmission gear 227 drives the limiting rack 228 to move along the integrated support frame 1. When the limiting rack 228 moves, it drives the lifting and matching bar 229 to rotate and lift, and the lifting and matching bar 229 drives the lifting operation frame 233 to rise. At this time, the matching spring 231 presses down and limits the rising sleeve 232 and the lifting operation frame 233. At this time, the bottom rising sleeve 232 rises along the limiting sleeve 230, and multiple rising sleeves 232 slide and limit each other. The lifting operation frame 233 rises along the rising sleeve 232 to achieve multi-component step-by-step lifting and matching. When the lifting operation frame 233 rises, the matching spring 231 is stretched. At this time, the flat fitting plate 235 is driven to rise. The two groups of belt transmission boxes 201 are used to drive the lifting synchronously to achieve stable alignment processing and ensure the accuracy of flat alignment; The pressing electric slide rail 308 drives the pressing upper push plate 309 to rise along the load-bearing support frame 208, and pushes the combined sliding frame 311 to rise along the sliding limit hole 307. At this time, the combined spring 310 is compressed. The staff pulls the pressing bandage 312 and places the material to be processed on the top of the anti-slip support pad 315 embedded in the clamping groove 306 at the top of the load-bearing support frame 208. After the placement is completed, the pressing electric slide rail 308 drives the pressing upper push plate 309 to move down. At this time, the combined spring 310 drives the combined sliding frame 311 to move down along the sliding limit hole 307, driving the pressing bandage 312 to press the material, realizing stable material limitation, so that the material can be steadily fixed according to the shape of the material when the material is placed, ensuring the stability of material fixed limitation; The flat laminating plate 235 is in an inclined state before the material is placed. The material pushes the flat laminating plate 235 to rotate along the lifting operation frame 233. At this time, the reset spring 234 is twisted and deformed, and the flat laminating plate 235 drives the level detector 313 to rotate. The level state is continuously detected by the level detector 313. When the height of the equipment support plane is lower than the height of the machine support plane, the level detector 313 cannot fit with the bottom of the material. At this time, the level detector 313 is in an inclined state. The level of the material is adjusted by the equipment rising to achieve parallel fitting of the material with the flat laminating plate 235 and the top of the level detector 313. When the equipment height is higher than the machine height, the bottom of the flat laminating plate 235 and the pressure The top of the sensor 314 is pressed, and the pressure sensor 314 is under pressure. The level detector 313 is in an inclined state. The material level is adjusted by the equipment to achieve the material and the top of the flat laminating plate 235 are fitted. At the same time, the level detector 313 and the pressure sensor 314 are used for detection. When the whole is level, the level detector 313 is in a horizontal state and the bottom of the flat laminating plate 235 is in contact with the pressure sensor 314. Through the cooperation of the two groups of level detection and pressure detection, it is determined whether the height of the equipment support surface and the height of the machine support surface are in a horizontal position, and the overall level detection is realized to ensure the level of the equipment support, avoid the material from tilting during the support process, and ensure the level of the material placement; When placing materials and equipment, the supporting electric push rod 302 drives the moving wheel 303 to rise and fall, and the lifting electric slide rail 304 drives the lifting balance box 305 to rise and fall along the supporting installation sleeve 301, and adjusts the distance between the lifting balance box 305 and the supporting installation sleeve 301. Moreover, multiple groups of supporting installation sleeves 301 and lifting balance boxes 305 can be adjusted arbitrarily to realize the leveling and integration of equipment. The moving wheel 303 drives the integrated support frame 1 to move, so that automatic feeding and processing can be carried out during material processing, thereby ensuring the balance and efficiency of production processing.

[0025] Finally, it should be noted that the above description is only a preferred example of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. Adjustable balance device, comprising an integrated support frame (1), characterized in that: The integrated support frame (1) is provided with an adjustment and fall prevention component (2); The adjustment and fall prevention component (2) includes a belt transmission box (201); The belt transmission boxes (201) are equidistantly installed on the side ends of the integrated support frame (1). One end of the integrated support frame (1) is provided with a double-shaft motor (202) through a motor base corresponding to the position of the input shaft of the belt transmission box (201). One side of one of the belt transmission boxes (201) is clamped with an in-out lead screw (203) through a symmetric output shaft. The side end of the in-out lead screw (203) is connected with a sliding integration block (204) through a lead screw base; One end of the sliding integration block (204) is rotatably connected with a sleeve support plate (205). Both ends of the inner side of the integrated support frame (1) are rotatably connected with positioning and lifting plates (206). One end of the positioning and lifting plate (206) is provided with a correction motor (207) through a motor base. One end of the output shaft of the correction motor (207) is clamped with a load-bearing support frame (208); A number of in-out fixing holes (209) are equidistantly opened at both ends of the integrated support frame (1). Connection fixing boxes (210) are welded at the positions corresponding to the in-out fixing holes (209) at both ends of the integrated support frame (1). A number of insertion springs (211) are equidistantly welded inside the connection fixing boxes (210). One end of the insertion spring (211) is welded with a one-way interception box (212).

2. The adjustable balancing device according to claim 1, wherein The output shaft of the double-shaft motor (202) is clamped and connected with the input shaft of the belt transmission box (201). The cross-sections of the tops of the sliding integration block (204) and the one-way interception box (212) are both arc-shaped. The load-bearing support frame (208) is rotatably sleeved on the side ends of the sleeve support plate (205) and the positioning and lifting plate (206).

3. The adjustable balance device according to claim 1, characterized in that, A load-bearing limit rod (213) is welded between the two positioning and lifting plates (206). A number of rotating support plates (214) are equidistantly rotatably connected to the side end of the load-bearing limit rod (213). The bottom of the side end of a plurality of rotating support plates (214) is rotatably connected with a concave-convex sliding frame (215). A number of inner concave arc-shaped grooves (216) are equidistantly opened at the top of the integrated support frame (1); A number of pressing springs (217) are equidistantly and symmetrically welded to the inner top end of the concave-convex sliding frame (215). The bottom ends of the two pressing springs (217) are welded with a pressing special-shaped block (236). A double-limit clamping rod (218) rotatably penetrates through the side ends of the two sleeve support plates (205). Both ends of the double-limit clamping rod (218) are rotatably connected with side blocking fixing boxes (219). Integrated springs (220) are symmetrically welded to the inner top end of the side blocking fixing boxes (219). One end of the two integrated springs (220) is welded with a stable limit box (221); The one-way interception box (212), the pressed special-shaped block (236) and the side stop fixing box (219) are all installed with a fixed damper (222) at one end; the bottom of the side end of the stable limit box (221) is rotatably connected to a sliding connection sleeve (223); both ends of the integrated support frame (1) are slidably connected to special-shaped positioning sleeves (224) at positions corresponding to the sliding connection sleeves (223); and a lifting electric push rod (225) is fixed to the bottom inner side of the special-shaped positioning sleeve (224); The connecting and fixing box (210), the one-way intercepting box (212), the concave-convex sliding frame (215) and one end of the pressed special-shaped block (236) are all installed with a linkage electromagnet (226), wherein the output shaft of another belt transmission box (201) is equidistantly installed with a plurality of transmission gears (227), and the side end of the integrated support frame (1) is slidably connected to a limiting rack (228) at a position corresponding to the transmission gear (227), and one end of the limiting rack (228) is equidistantly rotatably connected to a lifting matching strip (229); A plurality of limiting sleeves (230) are fixed at equal intervals on one end of the inner side of the integrated support frame (1), a plurality of matching springs (231) are arranged at equal intervals on the inner side of the limiting sleeve (230), a plurality of matching springs (231) are welded with a lifting sleeve (232) on one end, a lifting operating frame (233) is welded on the top end of one of the matching springs (231), a return spring (234) is fixed on the top end of the side end of the lifting operating frame (233), and a flat bonding plate (235) is welded on one end of the return spring (234).

4. The adjustable balancing device according to claim 3, characterized in that, The one-way interception box (212) is slidably sleeved on the inner side of the inlet and outlet fixing hole (209), one end of the one-way interception box (212) is fitted with one end of the sliding integration block (204), and the side stop fixing box (219) is sleeved and connected with the stable limit box (221).

5. The adjustable balance device according to claim 3, characterized in that, The sliding connection sleeve (223) is sleeved and connected with the special-shaped positioning sleeve (224); the longitudinal section of the bottom of one end of the pressing special-shaped block (236) is arc-shaped; and the longitudinal section of the pressing special-shaped block (236) is L-shaped.

6. The adjustable balancing device according to claim 3, characterized in that, The plurality of fixed dampers (222) are respectively connected to the connection fixing box (210), the concave-convex sliding frame (215) and the stable limit box (221); the transmission gear (227) is engaged with the limiting rack (228); and one end of the lifting matching strip (229) is rotationally connected to the lifting operation frame (233).

7. The adjustable balancing device according to claim 3, characterized in that The plurality of rising sleeves (232) are sleeved and connected one by one; The input ends of the dual-axis motor (202), the correction motor (207), the lifting electric push rod (225) and the linkage electromagnet (226) are all electrically connected to the output end of the external controller; The input end of the external controller is electrically connected to the output end of the external power supply.

8. The adjustable balance device according to claim 7, characterized in that, The integrated support frame (1) is provided with a balanced pressing component (3); The balanced pressing assembly (3) comprises a supporting installation sleeve (301); A number of support mounting sleeves (301) are symmetrically welded at equal intervals at the bottom end of the integrated support frame (1). Support electric push rods (302) are symmetrically installed at positions corresponding to the support mounting sleeves (301) at the bottom end of the integrated support frame (1). Moving wheels (303) are installed at the bottom ends of the two support electric push rods (302). Lifting electric slide rails (304) are clamped at both ends of the integrated support frame (1). One end of the two lifting electric slide rails (304) is connected to a lifting balance box (305) through a slide rail seat; A number of embedded clamping grooves (306) are provided at equal intervals at the top end of the load-bearing support frame (208). A number of sliding limit holes (307) are provided at equal intervals at the bottom end of the load-bearing support frame (208). Pressing electric slide rails (308) are embedded at both ends inside the load-bearing support frame (208). A pressing upper push plate (309) is connected between the two pressing electric slide rails (308) through a slide rail seat. A number of combined springs (310) are symmetrically welded at equal intervals inside the sliding limit holes (307). A combined sliding frame (311) is welded to the bottom ends of the multiple combined springs (310). A pressing bandage (312) is installed at the top end of the combined sliding frame (311); A horizontal detector (313) is fixed to the top end of the flat fitting plate (235). A pressure sensor (314) is fixed to one side of the top end of the lifting operation frame (233). An anti-slip support pad (315) is bonded inside the embedded clamping groove (306).

9. The adjustable balance device according to claim 8, wherein, The lifting balance box (305) is sleeved and connected with the support mounting sleeve (301). The moving wheel (303) is placed inside the lifting balance box (305). Both the combined sliding frame (311) and the pressing bandage (312) are slidably installed inside the sliding limit hole (307).

10. The adjustable balance device according to claim 8, characterized in that, The top end of the pressing upper push plate (309) is in contact with the bottom end of the combined sliding frame (311); The input ends of the support electric push rod (302), the lifting electric slide rail (304), the pressing electric slide rail (308), the horizontal detector (313) and the pressure sensor (314) are all electrically connected to the output end of an external controller; The signal output end of the pressure sensor (314) is electrically connected to the signal input end of the external controller.

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