CN216763132U - Block cleaning mechanism for sand conveying - Google Patents
Block cleaning mechanism for sand conveying Download PDFInfo
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- CN216763132U CN216763132U CN202220047441.7U CN202220047441U CN216763132U CN 216763132 U CN216763132 U CN 216763132U CN 202220047441 U CN202220047441 U CN 202220047441U CN 216763132 U CN216763132 U CN 216763132U
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Abstract
The utility model discloses a block cleaning mechanism for conveying sand materials, which comprises a conveying belt, an Jiong-shaped support and a transverse plate, wherein a plurality of vertical rods for blocking the block are arranged between a transverse beam of the Jiong-shaped support and the transverse plate, the bottom ends of the vertical rods are inserted into the sand materials on the conveying belt, the bottom ends of the vertical rods are adjustable relative to the height of the conveying belt, and the transverse distance between every two adjacent vertical rods is adjustable; the material facing sides of the upright columns on the two sides of the Jiong-shaped bracket are fixedly connected with a v-shaped bracket, 21274a and a v-shaped bracket, 21274b, two shifting wheels are respectively and rotatably arranged on the v-shaped bracket, the two shifting wheels rotate oppositely to strip blocked block-shaped materials from sand materials and respectively discharge the blocked block-shaped materials from the two sides of the conveying belt correspondingly. On the basis of not influencing the normal conveying of the sand material, the utility model can block and pull away the block-shaped objects carried in the sand material, realizes the online cleaning of the block-shaped objects, has high working efficiency and ensures the use safety of the rotary drum dryer and subsequent production and processing equipment.
Description
Technical Field
The utility model relates to the technical field of mortar production and preparation, in particular to a block cleaning mechanism for conveying sand.
Background
Mortar is a bonding substance used for building bricks on buildings, and is formed by adding water into sand and cementing materials (cement, lime paste, clay and the like) according to a certain proportion, and is also called mortar. In the production and preparation process of mortar, various materials are needed, wherein the materials comprise raw materials such as sand materials (sand), cementing materials such as cement, lime paste, clay and the like, and additives for improving the performance of the mortar.
The sand material is used as the main raw material, the water content is often larger when the sand material enters a factory, the sand material is also called as wet sand, the wet sand needs to be sent into a rotary drum dryer for drying, and the sand material of the blanking hopper is conveyed to the rotary drum dryer by a conveying belt.
In the actual work in-process, the sand material often carries with the cubic thing, and this cubic thing is the stone of not uniform in size usually, if these stones are sent into rotary drum dryer, then must bring very big potential safety hazard for rotary drum dryer and follow-up production processing equipment. Therefore, a block cleaning mechanism is needed to be designed, and blocks carried in the sand can be cleaned on line on the basis of not influencing the normal conveying of the sand.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome the defects and shortcomings in the prior art, and provides a block cleaning mechanism for conveying sand materials, which can block and pull away the blocks carried in the sand materials on the basis of not influencing the normal conveying of the sand materials, so as to realize online cleaning of the blocks and ensure the use safety of a rotary drum dryer and subsequent production and processing equipment.
In order to achieve the purpose, the utility model provides the following technical scheme:
the utility model provides a sand material is carried and is used blocky thing clearance mechanism, including the conveyer belt, its characterized in that: the rack of the conveying belt is fixedly connected with an Jiong-shaped support, the Jiong-shaped support stretches across the conveying belt along the width direction of the conveying belt, transverse plates are fixedly connected between two side upright posts of the Jiong-shaped support, a plurality of vertical rods for blocking blocks are arranged between a cross beam of the Jiong-shaped support and the transverse plates, the bottom ends of the vertical rods are inserted into sand on the conveying belt, the bottom ends of the vertical rods are adjustable relative to the conveying belt, and the transverse distance between every two adjacent vertical rods is adjustable;
the material facing sides of the upright columns at the two sides of the Jiong-shaped bracket are fixedly connected with a v-21274, the v-21274and the v-shaped bracket are respectively and rotatably provided with two shifting wheels, the two shifting wheels rotate oppositely to shift blocked blocks from sand materials and respectively discharge the blocked blocks from the two sides of the conveying belt correspondingly.
Furthermore, a plurality of through holes are respectively arranged along the length directions of the cross beam and the transverse plate of the Jiong-shaped bracket, and the through holes on the upper side and the lower side are in one-to-one correspondence; the plurality of vertical rods are respectively and correspondingly inserted into the plurality of through holes or the plurality of partial through holes from top to bottom.
Furthermore, each vertical rod is provided with a threaded section along the length direction thereof, and each vertical rod is fixed between the cross beam and the transverse plate of the Jiong-shaped support through two locking nuts screwed in the threaded sections.
Furthermore, the bottom end of each vertical rod is fixedly connected with a shuttle-shaped guide block arranged along the length direction of the conveying belt.
Furthermore, the two shifting wheels are respectively and rotatably arranged at the inner side of the 21274, each shifting wheel comprises a rotating wheel and a shifting block fixedly connected to the rim of the rotating wheel, and the rim of the rotating wheel is not contacted with the sand on the conveying belt all the time; when the two shifting blocks rotate to the lower side along with the rotating wheel, the two shifting blocks respectively extend into the sand material on the conveying belt, and blocked blocky objects are shifted away from the sand material and are respectively and correspondingly discharged from the two sides of the conveying belt.
Furthermore, two small motors which correspondingly drive the two thumb wheels to rotate oppositely are respectively arranged on the outer sides of the v-shaped support 21274and the outer side of the v-shaped support.
Furthermore, one side of each shifting block is a straight surface, the other side of each shifting block is an outward curved surface, and the straight surfaces of the two shifting blocks are arranged oppositely.
Compared with the prior art, the utility model has the beneficial effects that:
the utility model adopts a plurality of vertical rods inserted into the sand material to block the blocky objects, adopts two shifting wheels which rotate in opposite directions to shift the blocked blocky objects out of the sand material and respectively discharge the blocky objects from two sides of the conveying belt, and can block and shift the blocky objects carried in the sand material on the basis of not influencing the normal conveying of the sand material, thereby realizing the online cleaning of the blocky objects, having high working efficiency and ensuring the use safety of the rotary drum dryer and subsequent production and processing equipment; in addition, the bottom ends of the vertical rods are adjustable relative to the height of the conveying belt, and the transverse distance between every two adjacent vertical rods is adjustable, so that blocks with different sizes can be blocked.
Drawings
Fig. 1 is a schematic structural view of the present invention, and the direction of the arrow in the figure is the conveying direction of the conveyor belt.
Fig. 2 is an enlarged schematic view of a portion a in fig. 1.
Fig. 3 is a schematic structural view of a single vertical rod of the present invention.
Fig. 4 is a schematic structural view of two thumb wheels of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-4, a block cleaning mechanism for conveying sand materials comprises a conveying belt 1, a rack of the conveying belt 1 is fixedly connected with an Jiong-shaped support 2, the Jiong-shaped support 2 stretches across the conveying belt 1 along the width direction of the conveying belt 1, a transverse plate 3 is fixedly connected between two side upright posts of the Jiong-shaped support 2, a plurality of vertical rods 4 for blocking blocks are arranged between a cross beam of the Jiong-shaped support 2 and the transverse plate 3, the bottom ends of the vertical rods 4 are inserted into the sand materials on the conveying belt 1, the bottom ends of the vertical rods 4 are adjustable relative to the conveying belt 1, and the transverse distance between two adjacent vertical rods is adjustable;
jiong A bracket 5, 21274h, two shifting wheels 6 are respectively and rotatably mounted on the bracket 5, the two shifting wheels 6 rotate oppositely to shift blocked blocks from sand and discharge the blocked blocks from two sides of the conveyer belt 1.
In the utility model, a plurality of through holes 7 are respectively arranged along the length directions of the cross beam of the Jiong-shaped bracket 2 and the transverse plate 3, and the through holes 7 at the upper side and the lower side are in one-to-one correspondence; the plurality of vertical rods 4 are respectively and correspondingly inserted into the whole plurality of through holes 7 or partial plurality of through holes 7 from top to bottom.
From this, when a plurality of montant 4 corresponds respectively from top to bottom and inserts whole a plurality of through-hole 7, insert corresponding quantity's montant in a plurality of through-hole 7 promptly, at this moment, the horizontal interval between two adjacent montants is minimum, can block less massive thing.
When a plurality of vertical rods 4 respectively correspond to a plurality of through holes 7 of the inserting part from top to bottom, namely, vertical rods are inserted into partial through holes, the transverse distance between two adjacent vertical rods is adjusted by selectively inserting each vertical rod into each through hole, and blocks with different sizes are blocked.
In the utility model, each vertical rod is provided with a threaded section 8 along the length direction thereof, and each vertical rod is fixed between the cross beam of the Jiong-shaped bracket 2 and the transverse plate 3 through two locking nuts 9 screwed in the threaded sections. Therefore, the fixing of each vertical rod is realized.
In the utility model, the bottom end of each vertical rod is fixedly connected with a shuttle-shaped guide block 10 arranged along the length direction of the conveying belt 1. Thereby, the rapid passing of the sand material between two adjacent shuttle-shaped guide blocks 10 is facilitated.
In the utility model, two shifting wheels 6 are respectively and rotatably arranged at the inner side of a v-21274, -shaped bracket 5, each shifting wheel comprises a rotating wheel 61 and a shifting block 62 fixedly connected with the wheel edge of the rotating wheel 61, and the wheel edge of the rotating wheel 61 is not always contacted with sand materials on a conveying belt 1, thus not interfering the normal conveying of the sand materials; when the two shifting blocks 62 rotate 61 to the lower side along with the rotating wheel, the two shifting blocks respectively extend into the sand on the conveying belt 1, and blocked blocks are shifted from the sand and are respectively discharged from the two sides of the conveying belt 1 correspondingly.
In the utility model, two small motors 11 which correspondingly drive two thumb wheels 6 to rotate oppositely are respectively arranged on the outer sides of the v-shaped bracket 5.
In the utility model, one side of the shifting block 62 is a straight surface, the other side is an outward curved surface, and the straight surfaces of the two shifting blocks 62 are oppositely arranged. This facilitates the stripping of the blocked lumps from the sand material and their discharge from the conveyor belt 1 on both sides.
The utility model is further described below with reference to the accompanying drawings:
when the rotating wheel 61 is not rotated, the initial positions of the two shifting blocks 62 are located at the highest point of the rim of the rotating wheel 61.
During operation, the conveyer belt 1 conveys sand materials to pass through the lower part of the Jiong-shaped bracket 2, blocky objects (stones) carried in the sand materials are stopped at the position under the blocking of the plurality of vertical rods 4, and the sand materials are conveyed forwards continuously through the gap between two adjacent vertical rods.
Meanwhile, the two small motors 11 correspondingly drive the two shifting wheels 6 to rotate oppositely, and the two shifting blocks 62 respectively extend into the sand on the conveying belt 1 when rotating 61 to the lower side along with the rotating wheels, so that blocked blocks are separated from the sand and are respectively correspondingly discharged from two sides of the conveying belt 1.
It should be noted that, because the two shifting blocks 62 intermittently extend into the sand on the conveyor belt 1, excessive sand is not taken away at one time, and the blocks are gradually shifted away from the sand and discharged along with the two shifting blocks 62 intermittently extending into the sand.
In addition, for large blocks, the large blocks can be picked out of the sand material in a manual regular inspection mode.
Although the present description is described in terms of embodiments, not every embodiment includes only a single embodiment, and such description is for clarity only, and those skilled in the art should be able to integrate the description as a whole, and the embodiments can be appropriately combined to form other embodiments as will be understood by those skilled in the art.
Therefore, the above description is only a preferred embodiment of the present application, and is not intended to limit the scope of the present application; all changes which come within the meaning and range of equivalency of the claims are to be embraced within their scope.
Claims (7)
1. The utility model provides a sand material is carried and is used blocky thing clearance mechanism, including the conveyer belt, its characterized in that: the rack of the conveying belt is fixedly connected with an Jiong-shaped support, the Jiong-shaped support stretches across the conveying belt along the width direction of the conveying belt, transverse plates are fixedly connected between two side upright posts of the Jiong-shaped support, a plurality of vertical rods for blocking blocks are arranged between a cross beam of the Jiong-shaped support and the transverse plates, the bottom ends of the vertical rods are inserted into sand on the conveying belt, the bottom ends of the vertical rods are adjustable relative to the conveying belt, and the transverse distance between every two adjacent vertical rods is adjustable;
the material facing sides of the upright columns at the two sides of the Jiong-shaped bracket are fixedly connected with a v-21274, the v-21274and the v-shaped bracket are respectively and rotatably provided with two shifting wheels, the two shifting wheels rotate oppositely to shift blocked blocks from sand materials and respectively discharge the blocked blocks from the two sides of the conveying belt correspondingly.
2. The block cleaning mechanism for conveying sand materials as claimed in claim 1, wherein: a plurality of through holes are respectively arranged along the length directions of the cross beam and the transverse plate of the Jiong-shaped bracket, and the through holes on the upper side and the lower side are in one-to-one correspondence; the plurality of vertical rods are respectively and correspondingly inserted into the plurality of through holes or the plurality of partial through holes from top to bottom.
3. The block cleaning mechanism for conveying sand material according to claim 2, characterized in that: each vertical rod is provided with a threaded section along the length direction thereof, and each vertical rod is fixed between the cross beam and the transverse plate of the Jiong-shaped bracket through two locking nuts screwed in the threaded sections.
4. The block cleaning mechanism for conveying sand materials as claimed in claim 2, wherein: the bottom end of each vertical rod is fixedly connected with a shuttle-shaped guide block arranged along the length direction of the conveying belt.
5. The block cleaning mechanism for conveying sand material according to claim 1, characterized in that: the two shifting wheels are respectively and rotatably arranged at the inner side of the v-21274, -shaped bracket, each shifting wheel comprises a rotating wheel and a shifting block fixedly connected to the wheel edge of the rotating wheel, and the wheel edge of the rotating wheel is not always contacted with the sand on the conveying belt; when the two shifting blocks rotate to the lower side along with the rotating wheel, the two shifting blocks respectively extend into the sand material on the conveying belt, and blocked blocky objects are shifted away from the sand material and are respectively and correspondingly discharged from the two sides of the conveying belt.
6. The block cleaning mechanism for conveying sand material according to claim 5, characterized in that: two small motors which correspondingly drive the two thumb wheels to rotate oppositely are respectively arranged on the outer sides of the v-shaped brackets 21274.
7. The block cleaning mechanism for conveying sand material according to claim 6, characterized in that: one side of the shifting block is a straight surface, the other side of the shifting block is an outward curved surface, and the straight surfaces of the two shifting blocks are arranged oppositely.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220047441.7U CN216763132U (en) | 2022-01-10 | 2022-01-10 | Block cleaning mechanism for sand conveying |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220047441.7U CN216763132U (en) | 2022-01-10 | 2022-01-10 | Block cleaning mechanism for sand conveying |
Publications (1)
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CN216763132U true CN216763132U (en) | 2022-06-17 |
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CN202220047441.7U Active CN216763132U (en) | 2022-01-10 | 2022-01-10 | Block cleaning mechanism for sand conveying |
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CN (1) | CN216763132U (en) |
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2022
- 2022-01-10 CN CN202220047441.7U patent/CN216763132U/en active Active
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Address after: 234000 100 meters east of the extension road of national highway 206 in Yongbei Industrial Park, Fuli Town, Suzhou City, Anhui Province Patentee after: Suzhou Xinfeng Building Materials Technology Co.,Ltd. Address before: 234101 100m east of extension road of national highway 206 in Yongbei Industrial Park, Fuli Town, Anqing City, Anhui Province Patentee before: Suzhou Xinfeng Building Materials Technology Co.,Ltd. |