CN-224211739-U - Solid waste handles with steel scrap conveyor who is convenient for adjust
Abstract
The utility model relates to the technical field of waste transportation, in particular to a waste steel conveying device convenient to adjust for solid waste treatment, which comprises a fixed support, a force arm, a collecting mechanism and an adjusting mechanism, wherein the upper part of the fixed support is rotationally connected with the collecting mechanism through the force arm, the other end of the collecting mechanism is connected with the adjusting mechanism, the collecting mechanism comprises a guide bracket, a feeding belt, magnet sheets and a driving roller, two ends of the feeding belt are connected with the driving roller on the guide bracket to form a transmission structure, a plurality of magnet sheets are arranged on the feeding belt, the adjusting mechanism comprises a transverse sliding table, a connecting rod, a fixing frame, a screw rod and a first driving motor, the transverse sliding table is respectively connected with a sliding strip and the screw rod on the fixed support through a sliding groove and a screw hole at the bottom, and the transverse sliding table is connected with the fixing frame at the bottom of the connecting rod guide bracket. The utility model can adsorb and transport the waste iron finely crushed on the ground, thereby realizing automatic collection and improving the drying efficiency.
Inventors
- WANG XINTING
Assignees
- 云南鸿盛达再生物资有限责任公司
Dates
- Publication Date
- 20260508
- Application Date
- 20250425
Claims (7)
- 1. The utility model provides a solid waste handles with steel scrap conveyor who is convenient for adjust, includes fixed bolster (1), arm of force (2), collection mechanism (3) and adjustment mechanism (4), and characterized by, fixed bolster (1) upper portion is connected with collection mechanism (3) rotation through arm of force (2), and the other end of collection mechanism (3) is connected with adjustment mechanism (4); The collecting mechanism (3) comprises a guide bracket (301), a feeding belt (303), magnet sheets (304) and a driving roller (302), wherein two ends of the feeding belt (303) are connected with the driving roller (302) on the guide bracket (301) to form a transmission structure, and a plurality of magnet sheets (304) are arranged on the feeding belt (303); the adjusting mechanism (4) comprises a transverse sliding table (401), a connecting rod (403), a fixing frame (404), a screw rod (402) and a first driving motor (409), wherein the transverse sliding table (401) is respectively connected with a sliding strip (407) and the screw rod (402) on the fixed support (1) through a sliding groove and a screw hole at the bottom, and the transverse sliding table (401) is connected with the fixing frame (404) at the bottom of the guide support (301) through the connecting rod (403); The screw (402) is connected with a first driving motor (409) through a first chain (406) to form a transmission structure.
- 2. The scrap steel conveying device convenient to adjust for solid waste treatment according to claim 1, wherein one end of the connecting rod (403) is movably connected with a first fixed lug on the transverse sliding table (401), and the other end of the connecting rod (403) is movably connected with a second fixed lug at the bottom of the fixed frame (404); The screw rod (402) is arranged on the fixed support (1) through the bearing support (405), a first sprocket (408) is arranged at one end of the screw rod (402), and a first chain (406) is arranged on the first sprocket (408).
- 3. The scrap steel conveying device convenient to adjust for solid waste treatment according to claim 1, wherein a plurality of clamping grooves are formed in the surface of the feeding belt (303), the magnet pieces (304) are embedded into the clamping grooves, and the upper portions of the magnet pieces (304) are arranged flush with the surface of the feeding belt (303).
- 4. A scrap steel conveying device convenient to adjust for solid waste treatment according to claim 3, further comprising a guide mechanism (5), wherein the guide mechanism (5) comprises a supporting frame (501), a guide groove (502), a telescopic rod (504), a pressure spring (505) and a stripping plate (503), the guide groove (502) is movably connected with a connecting hole on the supporting frame (501) through a connecting shaft on the side part, one end of the guide groove (502) is provided with the stripping plate (503), and the stripping plate (503) is arranged close to the feeding belt (303).
- 5. The scrap steel conveying device convenient to adjust for solid waste treatment according to claim 4, wherein the guide chute (502) is of a rectangular cavity structure with an upper part and one end open, and the bottom of the guide chute (502) is movably connected with a fourth fixed lug at the side part of the support frame (501) through a third fixed lug and a telescopic rod (504); The outer part of the telescopic rod (504) is provided with a pressure spring (505) to form an elastic structure.
- 6. The scrap steel conveying device convenient to adjust for solid waste treatment according to claim 1, wherein a rotating shaft is arranged in the fixed support (1), and travelling wheels (6) are arranged at two ends of the rotating shaft; The rotating shaft is provided with a third sprocket, and the third sprocket is connected with a fourth sprocket on the output shaft of the second driving motor through a second chain.
- 7. A scrap conveyor for solid waste treatment, according to claim 1, characterized in that the inside of the fixed support (1) is provided with a control box and a battery.
Description
Solid waste handles with steel scrap conveyor who is convenient for adjust Technical Field The utility model relates to the technical field of waste transportation, in particular to a waste steel conveying device convenient to adjust for solid waste treatment. Background In modern industrial production and daily life, the production amount of waste iron continuously rises, the efficient collection treatment of the waste iron has great significance for resource conservation and environmental protection, but the collection of the waste iron at present faces serious challenges, the traditional manual collection by means of a broom and a shovel is time-consuming, labor-consuming and labor-intensive, physical fatigue and occupational diseases of workers are easily caused, and the efficiency and health are seriously affected, and the existing collection equipment cannot effectively adsorb ground waste iron due to the lack of design aiming at the characteristics of the waste iron, and the gap between a collection part and the ground is difficult to adjust to adapt to different ground conditions, so that the collection efficiency is low and the application range is limited. Therefore, research and development can utilize the absorption principle to adsorb ground scrap iron to the conveyer belt to can adjust conveyer belt and ground clearance's novel absorption formula scrap iron collecting device in a flexible way, become the urgent one that satisfies present scrap iron collection work high efficiency, laborsaving demand. Disclosure of utility model Aiming at the technical problems in the background technology, the utility model provides the scrap steel conveying device which is convenient to adjust and is used for treating the solid waste, and the scrap iron finely crushed on the ground can be adsorbed and transported, so that the automatic collection is realized, and the drying efficiency is improved. The technical implementation scheme of the utility model is as follows: The waste steel conveying device convenient to adjust for solid waste treatment comprises a fixed support, a force arm, a collecting mechanism and an adjusting mechanism, wherein the upper portion of the fixed support is connected with the collecting mechanism in a rotating mode through the force arm, the other end of the collecting mechanism is connected with the adjusting mechanism, the collecting mechanism comprises a guide support, a feeding belt, magnet sheets and a driving roller, two ends of the feeding belt are connected with the driving roller on the guide support to form a transmission structure, a plurality of magnet sheets are arranged on the feeding belt, the adjusting mechanism comprises a transverse sliding table, a connecting rod, a fixing frame, a screw rod and a first driving motor, the transverse sliding table is connected with a sliding strip and the screw rod on the fixed support through sliding grooves and screw holes at the bottom of the transverse sliding table, the transverse sliding table is connected with the fixing frame at the bottom of the connecting rod guide support, and the screw rod is connected with the first driving motor through a first chain to form the transmission structure. Optionally, one end of the connecting rod is movably connected with a first fixed lug on the transverse sliding table, the other end of the connecting rod is movably connected with a second fixed lug at the bottom of the fixing frame, the screw rod is arranged on the fixing support through the bearing support, one end of the screw rod is provided with a first sprocket, and the first sprocket is provided with a first chain. Optionally, be provided with a plurality of draw-in grooves on the pay-off area surface, the inside setting of draw-in groove is embedded to the magnet piece, and the upper portion of magnet piece flushes the setting with the pay-off area surface. Optionally, the feeding device further comprises a material guiding mechanism, wherein the material guiding mechanism comprises a supporting frame, a material guiding groove, a telescopic rod, a pressure spring and a stripping sheet, the material guiding groove is movably connected with a connecting hole on the supporting frame through a connecting shaft on the side part, one end of the material guiding groove is provided with the stripping sheet, and the stripping sheet is close to the feeding belt. Optionally, the guide chute is of a rectangular cavity structure with an upper part and one end open, the bottom of the guide chute is movably connected with a fourth fixed lug on the side part of the support frame through a third fixed lug and a telescopic rod, and a pressure spring is arranged outside the telescopic rod to form an elastic structure. Optionally, a rotating shaft is arranged in the fixed support, travelling wheels are arranged at two ends of the rotating shaft, a third sprocket is arranged on the rotating shaft, and the third sprocket is connected with a fourth