CN211733220U - Conical stacking and scraping mechanism - Google Patents

Conical stacking and scraping mechanism Download PDF

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Publication number
CN211733220U
CN211733220U CN202020019418.8U CN202020019418U CN211733220U CN 211733220 U CN211733220 U CN 211733220U CN 202020019418 U CN202020019418 U CN 202020019418U CN 211733220 U CN211733220 U CN 211733220U
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China
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frame
limiting
groove
positive
slot
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CN202020019418.8U
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张国庆
汪百权
王庆良
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Langfang Weiyuan Intelligent Technology Co ltd
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Langfang Weiyuan Intelligent Technology Co ltd
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Abstract

The utility model provides a conical windrow strickle mechanism, wherein a linear sliding rail is symmetrically arranged in a frame, sliding rods are symmetrically arranged at two ends of the linear sliding rail, the scraping plate is inserted in the sliding rod, the corners of the scraping plate are in arc transition, a positive and negative thread lead screw is arranged between the sliding rod and the sliding rod, one end of the positive and negative thread lead screw penetrates through the frame and then is connected with a driving device, the other end of the positive and negative thread lead screw is arranged on the frame, the frame I and the frame II are connected in pairs, the two frames II are respectively provided with a frame III, a conical part and a groove II, two symmetrical grooves I are arranged between the frame III and the conical part, one end of the groove is parallel to the groove, the other end of the groove is a slope-shaped groove, a conical bulge is arranged between the frame III and the conical part, a transition end is arranged above the convex end of the frame III, a connecting piece is arranged at one end of the frame III, the connecting piece is provided with the hole, the structure is reasonable, and the problem of automatic deep strickling in a limited closed space is solved.

Description

Conical stacking and scraping mechanism
Technical Field
The utility model relates to a material strickles equipment field, especially relates to a toper windrow strickles mechanism.
Background
Original material is all strickleed off by the manual work, must be strickleed off by the manual work in open environment, complex operation, can't carry out the automatic degree of depth in limited enclosure space and strickle off.
Disclosure of Invention
In order to solve the problem, the utility model provides a toper windrow strickles mechanism, it is rational in infrastructure, has solved and has carried out the problem of automatic degree of depth strickleing in limited enclosure.
The technical scheme of the utility model is that: the utility model provides a toper windrow strickles mechanism, includes frame, sharp slide rail, positive and negative screw lead screw, actuating device, strickles, slide bar, the sharp slide rail of symmetry installation in the frame, the slide bar is installed to sharp slide rail both ends symmetry, the strickle cartridge is in the slide bar, the corner of strickleing is the arc transition, installs positive and negative screw lead screw between slide bar and the slide bar, and the one end of positive and negative screw lead screw is connected with actuating device after passing the frame, and the other end is installed on the frame.
Optionally, the frame includes a first frame, a second frame, a third frame, a first groove, a conical part, a second groove, a transition end and a connecting piece, the first frame is connected with the second frame two pairwise, the third frame, the conical part and the second groove are arranged on the two second frames, two symmetrical first grooves are arranged between the third frame and the conical part, one end of each first groove is parallel to the corresponding groove, the other end of each first groove is a slope-shaped groove, a conical protrusion is arranged between the third frame and the conical part, the transition end is arranged above the protruding end of the third frame, the connecting piece is arranged at one end of the third frame, and a hole is formed in the connecting piece.
Optionally, the positive and negative thread lead screw comprises a positive and negative thread, a first connecting end and a second connecting end, and the first connecting end and the second connecting end are respectively arranged at two ends of the positive and negative thread.
Optionally, the scraping plate comprises a U-shaped transition end, a U-shaped groove, a first limiting end and a limiting column, the upper end of the scraping plate is the U-shaped transition end, the two sides of the scraping plate are provided with the first limiting end and the limiting column, and the middle of the scraping plate is provided with the U-shaped groove.
Optionally, the sliding rod comprises a rod main body, a connecting hole, a second limiting end, a third limiting end, a limiting hole and a slot, the slot is arranged in the middle of the rod main body, the connecting hole penetrating through the slot is formed in the rod main body, the second limiting end, the third limiting end and the limiting hole are respectively arranged at two ends of the rod main body, and the second limiting end, the third limiting end and the limiting hole are symmetrically arranged at two ends of the rod main body.
Optionally, the scraping plate is inserted into the slot, the U-shaped slot coincides with the connecting hole, the first limiting end is placed on the smooth surfaces on the two sides of the slot, the limiting column is placed on the second limiting end and inserted into the first slot, the third limiting end is inserted into the second slot, the linear sliding rail passes through the limiting hole and is fixed on the frame, the positive and negative threaded screw rod passes through the connecting hole, one end of the U-shaped slot is fixed on the first frame, and the other end of the U-shaped slot passes through the first frame and is connected with the driving device.
Optionally, a hole is formed in the connecting piece.
Optionally, the U-shaped transition end, the U-shaped groove, the first limiting end and the limiting column are of an integrated structure.
Optionally, the rod main body, the connecting hole, the second limiting end, the third limiting end, the limiting hole and the slot are of an integrated structure.
Compared with the prior art, the beneficial effects of the utility model are that: it is rational in infrastructure, solved and carried out the problem of automatic degree of depth strickleing in limited enclosure, can strike off freely falling the tiny particle that forms the toper windrow and following stacks such as earth, fine sand, rice, small, can be when less airtight space uses, and automatic control, the cost of labor is practiced thrift in the time of shortening.
Drawings
The invention is further explained below with reference to the figures:
FIG. 1 is a block diagram of the present invention;
FIG. 2 is an exploded view of the present invention;
FIG. 3 is a block diagram of the present invention;
FIG. 4 is a block diagram of the present invention;
FIG. 5 is a block diagram of the present invention;
shown in fig. 1, 2, 3, 4, 5: 1. the device comprises a frame, 2, a linear sliding rail, 3, a positive and negative threaded screw rod, 4, a driving device, 5, a scraping plate, 6, a sliding rod, 1-1, a frame I, 1-2, a frame II, 1-3, a frame III, 1-4, a groove I, 1-5, a conical part, 1-6, a groove II, 1-7, a transition end, 1-8, a connecting piece, 3-1, a positive and negative thread, 3-2, a connecting end I, 3-3, a connecting end II, 5-1, a U-shaped transition end, 5-2, a U-shaped groove, 5-3, a first limiting end, 5-4, a limiting column, 6-1, a rod main body, 6-2, a connecting hole, 6-3, a second limiting end, 6-4, a third limiting end, 6-5, a limiting hole, 6-6, And (4) a slot.
Detailed Description
The present invention will be described in further detail with reference to the drawings, which are only used for explaining the present invention, and are schematic illustrations of the embodiments of the present invention, and should not be construed as limiting the present invention.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "connected" and "connected" are to be interpreted broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; may be directly connected or indirectly connected through an intermediate. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art.
As shown in fig. 1, 2, 3, 4, and 5, the conical windrow leveling mechanism includes a frame 1, linear sliding rails 2, positive and negative threaded screws 3, a driving device 4, a leveling plate 5, and sliding rods 6, the linear sliding rails 2 are symmetrically installed in the frame 1, the sliding rods 6 are symmetrically installed at two ends of the linear sliding rails 2, the leveling plate 5 is inserted into the sliding rods 6, corners of the leveling plate 5 are in arc transition, the positive and negative threaded screws 3 are installed between the sliding rods 6 and the sliding rods 6, one end of the positive and negative threaded screws 3 penetrates through the frame 1 and then is connected with the driving device 4, and the other end is installed on the frame 1.
Optionally, the frame 1 comprises a frame I1-1, a frame II 1-2, a frame III 1-3, a groove I1-4, a conical part 1-5, a groove II 1-6, a transition end 1-7 and a connecting piece 1-8, the frame I1-1 and the frame II 1-2 are connected in pairs, the two frames II 1-2 are respectively provided with the frame III 1-3, the conical part 1-5 and the groove II 1-6, two symmetrical grooves I1-4 are arranged between the frame III 1-3 and the conical part 1-5, one end of the groove I1-4 is parallel to the groove II 1-6, the other end is a slope-shaped groove, a conical bulge is arranged between the frame III 1-3 and the conical part 1-5, the transition end 1-7 is arranged above the convex end of the frame III 1-3, and one end of the frame III 1-3 is provided with a connecting piece 1-8, and the connecting piece 1-8 is provided with a hole.
Optionally, the positive and negative thread screw rod 3 comprises a positive and negative thread 3-1, a first connecting end 3-2 and a second connecting end 3-3, and the first connecting end 3-2 and the second connecting end 3-3 are respectively arranged at two ends of the positive and negative thread 3-1.
Optionally, the scraping plate 5 comprises a U-shaped transition end 5-1, a U-shaped groove 5-2, a first limiting end 5-3 and a limiting column 5-4, the upper end of the scraping plate 5 is the U-shaped transition end 5-1, the first limiting end 5-3 and the limiting column 5-4 are arranged on two sides of the scraping plate 5, and the U-shaped groove 5-2 is arranged in the middle of the scraping plate 5.
Optionally, the sliding rod 6 includes a rod main body 6-1, a connecting hole 6-2, a second limiting end 6-3, a third limiting end 6-4, a limiting hole 6-5, and a slot 6-6, the slot 6-6 is provided in the middle of the rod main body 6-1, the connecting hole 6-2 penetrating the slot 6-6 is provided on the rod main body 6-1, the second limiting end 6-3, the third limiting end 6-4, and the limiting hole 6-5 are respectively provided at two ends of the rod main body 6-1, and the second limiting end 6-3, the third limiting end 6-4, and the limiting hole 6-5 at two ends of the rod main body 6-1 are all symmetrical.
Optionally, the scraping plate 5 is inserted into the slot 6-6, the U-shaped slot 5-2 coincides with the connecting hole 6-2, the first limiting end 5-3 is placed on the smooth surface on both sides of the slot 6-6, the limiting column 5-4 is placed on the second limiting end 6-3 and inserted into the slot 1-4, the third limiting end 6-4 is inserted into the slot 1-6, the linear sliding rail 2 passes through the limiting hole 6-5 and is fixed on the frame 1, the positive and negative threaded lead screw 3 passes through the connecting hole 6-2, one end of the U-shaped slot 5-2 is fixed on the frame 1-1, and the other end passes through the frame 1-1 and is connected with the driving device 4.
Optionally, the connecting pieces 1 to 8 are provided with holes.
Optionally, the U-shaped transition end 5-1, the U-shaped groove 5-2, the first limiting end 5-3 and the limiting column 5-4 are of an integrated structure.
Optionally, the rod main body 6-1, the connecting hole 6-2, the second limiting end 6-3, the third limiting end 6-4, the limiting hole 6-5 and the slot 6-6 are of an integrated structure.
When the mechanism is started, the driving device 4 is started to drive the positive and negative thread lead screws 3 to rotate, the positive and negative thread lead screws 3 drive the sliding rods 6 to respectively slide towards two sides on the linear sliding rails 2, the scraping plate 5 can move along the first groove 1-4 and the second groove 1-6 on the frame 1 according to the acting force of the sliding rods 6, when the scraping plate 5 moves to a fixed position, the driving device 4 is reversely started to drive the positive and negative thread lead screws 3 to rotate, the positive and negative thread lead screws 3 drive the sliding rods 6, the scraping plate 5 moves on the linear sliding rails 2, the scraping plate 5 and the scraping plate 5 opposite to the positive and negative thread lead screws move upwards relatively and synchronously, and the scraping plate 5 resets.
The utility model discloses rational in infrastructure, solved and carried out the problem that the degree of depth was strickleed off automatically in limited enclosure, can reach below the free small particle that falls formation toper windrow, like earth, fine sand, rice etc. the stack is strickleed off, and is small, can be when less airtight space uses, and automatic control, and the cost of labor is practiced thrift in the reduction time.
The above description is illustrative of the present invention and is not to be construed as limiting thereof, as numerous modifications and variations will readily occur to those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the scope of the claims of the present invention.

Claims (6)

1. Toper windrow strickles mechanism, including frame (1), straight line sliding rail (2), positive and negative screw lead screw (3), actuating device (4), strickle (5), slide bar (6), its characterized in that: the straight-line sliding rail (2) is symmetrically installed in the frame (1), the sliding rods (6) are symmetrically installed at two ends of the straight-line sliding rail (2), the scraping plate (5) is inserted into the sliding rods (6), corners of the scraping plate (5) are in arc transition, positive and negative threaded lead screws (3) are installed between the sliding rods (6) and the sliding rods (6), one ends of the positive and negative threaded lead screws (3) penetrate through the frame (1) and then are connected with driving equipment (4), and the other ends of the positive and negative threaded lead screws are installed on the frame (1).
2. The tapered windrow strike-off mechanism of claim 1, further comprising: the frame (1) comprises a first frame (1-1), a second frame (1-2), a third frame (1-3), a first groove (1-4), a conical part (1-5), a second groove (1-6), transition ends (1-7) and connecting pieces (1-8), wherein the first frame (1-1) and the second frame (1-2) are connected in pairs, the three frame (1-3), the conical part (1-5) and the second groove (1-6) are arranged on the two second frames (1-2), two symmetrical first grooves (1-4) are arranged between the third frame (1-3) and the conical part (1-5), one end of the first groove (1-4) is parallel to the second groove (1-6), the other end of the first groove is a slope-shaped groove, a conical bulge is arranged between the third frame (1-3) and the conical part (1-5), a transition end (1-7) is arranged above the convex end of the frame III (1-3), and a connecting piece (1-8) is arranged at one end of the frame III (1-3);
the positive and negative thread lead screw (3) comprises a positive and negative thread (3-1), a first connecting end (3-2) and a second connecting end (3-3), wherein the first connecting end (3-2) and the second connecting end (3-3) are respectively arranged at two ends of the positive and negative thread (3-1);
the scraping plate (5) comprises a U-shaped transition end (5-1), a U-shaped groove (5-2), a first limiting end (5-3) and a limiting column (5-4), the upper end of the scraping plate (5) is the U-shaped transition end (5-1), the first limiting end (5-3) and the limiting column (5-4) are arranged on two sides of the scraping plate (5), and the U-shaped groove (5-2) is arranged in the middle of the scraping plate (5);
the sliding rod (6) comprises a rod main body (6-1), a connecting hole (6-2), a second limiting end (6-3), a third limiting end (6-4), a limiting hole (6-5) and a slot (6-6), the slot (6-6) is arranged in the middle of the rod main body (6-1), the connecting hole (6-2) penetrating through the slot (6-6) is formed in the rod main body (6-1), the second limiting end (6-3), the third limiting end (6-4) and the limiting hole (6-5) are respectively arranged at two ends of the rod main body (6-1), and the second limiting end (6-3), the third limiting end (6-4) and the limiting hole (6-5) at two ends of the rod main body (6-1) are symmetrical.
3. The tapered windrow strike-off mechanism of claim 2, further comprising: the scraping plate (5) is inserted into the slot (6-6), the U-shaped groove (5-2) is overlapped with the connecting hole (6-2), the first limiting end (5-3) is placed on the smooth surface on two sides of the slot (6-6), the limiting column (5-4) is placed on the second limiting end (6-3) and inserted into the slot I (1-4), the third limiting end (6-4) is inserted into the slot II (1-6), the linear sliding rail (2) penetrates through the limiting hole (6-5) and is fixed on the frame (1), the positive and negative threaded screw rod (3) penetrates through the connecting hole (6-2), one end of the U-shaped groove (5-2) is fixed on the frame I (1-1), and the other end of the U-shaped groove penetrates through the frame I (1-1) and is connected with the driving device (4).
4. The tapered windrow strike-off mechanism of claim 2, further comprising: holes are arranged on the connecting pieces (1-8).
5. The tapered windrow strike-off mechanism of claim 2, further comprising: the U-shaped transition end (5-1), the U-shaped groove (5-2), the first limiting end (5-3) and the limiting column (5-4) are of an integrated structure.
6. The tapered windrow strike-off mechanism of claim 2, further comprising: the rod main body (6-1), the connecting hole (6-2), the second limiting end (6-3), the third limiting end (6-4), the limiting hole (6-5) and the slot (6-6) are of an integrated structure.
CN202020019418.8U 2020-01-06 2020-01-06 Conical stacking and scraping mechanism Active CN211733220U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020019418.8U CN211733220U (en) 2020-01-06 2020-01-06 Conical stacking and scraping mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020019418.8U CN211733220U (en) 2020-01-06 2020-01-06 Conical stacking and scraping mechanism

Publications (1)

Publication Number Publication Date
CN211733220U true CN211733220U (en) 2020-10-23

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Application Number Title Priority Date Filing Date
CN202020019418.8U Active CN211733220U (en) 2020-01-06 2020-01-06 Conical stacking and scraping mechanism

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113548505A (en) * 2021-07-27 2021-10-26 安徽寒锐新材料有限公司 Automatic screeding device for vibrating and screening cobalt oxide powder

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113548505A (en) * 2021-07-27 2021-10-26 安徽寒锐新材料有限公司 Automatic screeding device for vibrating and screening cobalt oxide powder

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