Intelligent and Adjustable Boring and Separating Apparatus with A Cage Structure for Sandy Soil
20190307051 ยท 2019-10-10
Inventors
Cpc classification
International classification
Abstract
The invention relates to an intelligent and adjustable boring and separating apparatus with a cage structure for sandy soil which includes a position-adjusting mechanism, a control and power mechanism, and a boring and separating mechanism. The control and power mechanism includes a sleeve, a spacer, a steering control mechanism, a rotating mechanism, and an annular baffle. The steering control mechanism includes a first motor, a connecting rod, and a steering wheel. The rotating mechanism includes a sliding plate, a second motor, a gear and an inner ring. The boring and separating mechanism includes a shaft, a baffle plate, a reinforcement ring, and a fixing ring. The intelligent and adjustable boring and separating apparatus with a cage structure for sandy soil has advantages of having reasonable and simple structure, easy to operate, high intelligence, able to remove all kinds of sandy soil, time and labor saving, and high practicality, which effectively solves the problem of poor practicality of existing sieving machines.
Claims
1. An intelligent and adjustable boring and separating apparatus with a cage structure for sandy soil, comprising: a position-adjusting mechanism 1 with a frame structure; a control and power mechanism 2; and a boring and separating mechanism 3, wherein the position-adjusting mechanism 1 includes a connecting plate 11, a hydraulic cylinder 12 hinged at the connecting plate 11; wherein the control and power mechanism 2 includes a sleeve 21 with a double-opening structure, a spacer 22 fixedly disposed in one of the openings of the sleeve 21, a steering control mechanism 23, a rotating mechanism 24, and an annular baffle 25 disposed at another opening of the sleeve 21; wherein the steering control mechanism 23 includes a first motor 231 fixedly disposed at the spacer 22, a plurality of connecting rods 232, and a steering wheel 233; the steering wheel 233 is in transmitting connection with the first motor 231; one end of the connecting rod 232 is centered on the steering wheel 233 and radially hinged at the steering wheel 233, wherein the rotating mechanism 24 includes a circular sliding plate 241 sleeved in the inner cavity of the sleeve 21, a second motor 242 fixedly disposed on the sliding plate 241, a gear 243 that is in transmitting connection with the second motor 242, and an inner ring 244 fixedly disposed in the inner cavity of the sleeve 21; the inner ring 244 is in transmitting connection with the gear 243; the inner cavity of the sleeve 21 is provided with an inner convex ring 211; the sliding plate 241 is slidably arranged between the inner convex ring 211 and the annular baffle 25; the hydraulic cylinder 12 is hinged with the sliding plate 241, wherein the boring and separating mechanism 3 includes a shaft 31, a baffle plate 32, a reinforcement ring 33, and a fixing ring 34; a plurality of first through-holes 331 are uniformly arranged on the bottom surface of the reinforcement ring 33 in the circumferential direction; a plurality of second through-holes 341 and boring teeth 342 are uniformly arranged on the bottom surface of the fixing ring in the circumferential direction, wherein the shaft 31 passes through the first through-holes 331, the second through-holes 341, and the sleeve 21 in turn; the shaft 31 extends into one end of the sleeve 21 and is fixedly disposed with one end of a rotating plate 36; another end of the rotating plate 36 is hinged with a free end of the connecting rod 232; the shaft 31 is provided with a slot 37 along the central axis; one end of the baffle plate 32 is clamped with the slot 37.
2. The intelligent and adjustable boring and separating apparatus with a cage structure for sandy soil of claim 1, wherein the connecting plate 11 is provided with a connecting member; the connecting plate 11 is connected with external construction machine via the connecting member.
3. The intelligent and adjustable boring and separating apparatus with a cage structure for sandy soil of claim 1, wherein balls 26 are respectively arranged between the circular sliding plate 241 and the inner wall of the sleeve 21, and between the inner convex ring 211 and the annular baffle 25.
4. The intelligent and adjustable boring and separating apparatus with a cage structure for sandy soil of claim 1, wherein the boring teeth 342 is a triangular pyramid structure; one of the edges is arranged in the tangential direction of the fixing ring 34 at the position where it is located.
5. The intelligent and adjustable boring and separating apparatus with a cage structure for sandy soil of claim 1, wherein a rotary encoder 234 is provided at the hinge point between the rotating plate 36 and the connecting rod 232.
6. The intelligent and adjustable boring and separating apparatus with a cage structure for sandy soil of claim 1, wherein the shaft 31 is threadedly connected with a plurality of limit rings 35 used for defining the shaft 31 and the baffle 32.
7. The intelligent and adjustable boring and separating apparatus with a cage structure for sandy soil of claim 1, wherein the boring teeth 342 and the fixing ring 34 are of a one-piece structure.
8. The intelligent and adjustable boring and separating apparatus with a cage structure for sandy soil of claim 1, wherein the baffle plate 32 is provided with a magnetic stripe 38; the shaft 31 is made of carbon structural steel; when the magnetic stripe 38 and the adjacent shaft 31 are close, they are attracted to each other.
9. The intelligent and adjustable boring and separating apparatus with a cage structure for sandy soil of claim 1, wherein the rotary encoder 234, the first motor 231, the second motor 242 and the hydraulic cylinder 12 are electrically connected with an external controller.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The invention is illustrated by the following figures and embodiments.
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028] The reference numbers of the figures are as follows: [0029] 1: position-adjusting mechanism; 11: connecting plate; 12: hydraulic cylinder; 2: control and power mechanism; 21: sleeve; 211: inner convex ring; 22: spacer; 23: steering control mechanism; 231: first motor; 232: connecting rod; 233: steering wheel; 234: rotary encoder; 24: rotating mechanism; 241: sliding plate; 242: second motor; 243: gear; 244: inner ring; 25: annular baffle; 26: balls; 3: boring and separating mechanism; 31: shaft; 32: baffle plate; 33: reinforcement ring; 331: first through-cells; 34: fixing ring; 341: second through-cells; 342: boring teeth; 35: limit ring; 36: rotating plate; 37: slot; 38: magnetic stripe
DETAILED DESCRIPTION
[0030] The invention is illustrated in accordance with figures. The figures as simplified diagrams demonstrate the basic structures of the apparatus of embodiments of the invention. Thus, the invention is not limited to the figures.
[0031] As shown in
[0032] As shown in
[0033] The steering control mechanism 23 includes a first motor 231 fixedly disposed at the spacer 22, a plurality of connecting rods 232, and a steering wheel 233. The steering wheel 233 is in transmitting connection with the first motor 231. One end of the connecting rod 232 is centered on the steering wheel 233 and radially hinged at the steering wheel 233.
[0034] The rotating mechanism 24 includes a circular sliding plate 241 sleeved in the inner cavity of the sleeve 21, a second motor 242 fixedly disposed on the sliding plate 241, a gear 243 that is in transmitting connection with the second motor 242, and an inner ring 244 fixedly disposed in the inner cavity of the sleeve 21. The inner ring 244 is in transmitting connection with the gear 243. The inner cavity of the sleeve 21 is provided with an inner convex ring 211. The sliding plate 241 is slidably arranged between the inner convex ring 211 and the annular baffle 25. The hydraulic cylinder 12 passes through the annular baffle 25 and is hinged with the sliding plate 241.
[0035] As shown in
[0036] The shaft 31 passes through the first through-holes 331, the second through-holes 341, and the sleeve 21 in turn. The shaft 31 extends into one end of the sleeve 21 and is fixedly disposed with one end of a rotating plate 36. Another end of the rotating plate 36 is hinged with a free end of the connecting rod 232. The shaft 31 is provided with a slot 37 along the central axis. One end of the baffle plate 32 is clamped with the slot 37.
[0037] In the embodiment as shown in
[0038] In the embodiment as shown in
[0039] In the embodiment as shown in
[0040] In the embodiment as shown in
[0041] In the embodiment as shown in
[0042] In the embodiment as shown in
[0043] In the embodiment as shown in
[0044] In one embodiment, the rotary encoder 234, the first motor 231, the second motor 242 and the hydraulic cylinder 12 are electrically connected with an external controller. In another embodiment, the rotary encoder 234, the first motor 231, the second motor 242 and the hydraulic cylinder 12 are electrically connected with the controller disposed at any position. The controller communicates with the external control platform through a wired or wireless manner.
[0045] An intelligent and adjustable boring and separating apparatus with a cage structure for sandy soil of the invention includes a position-adjusting mechanism, a control and power mechanism, and a boring and separating mechanism. The boring and separating mechanism constitutes a cylindrical structure that can be opened and closed. The control and power mechanism controls the overall rotation of the boring and separating mechanism and the opening and closing angle of the baffle to remove the sandy soil with corresponding size. On the one hand, the position-adjusting mechanism is connected with the external machinery. On the other hand it controls the positions of the boring and separating mechanism and the control and power mechanism. During operation, the apparatus is mounted on an external machine such as an agricultural tractor. The functions of boring, loading, transporting and screening can be controlled by an external controller. The apparatus has advantages of having reasonable and simple structure, easy to operate, high intelligence, able to remove all kinds of sandy soil, time and labor saving, and high practicality, which effectively solves the problem of poor practicality of existing sieving machines.
[0046] The exemplary embodiments of the present invention are thus fully described. Although the description referred to particular embodiments, it will be clear to one skilled in the art that the present invention may be practiced with variations of these specific details. Hence this invention should not be construed as limited to the embodiments set forth herein.