CN216807080U - Multi-station blanking conveying belt - Google Patents

Multi-station blanking conveying belt Download PDF

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Publication number
CN216807080U
CN216807080U CN202122623153.XU CN202122623153U CN216807080U CN 216807080 U CN216807080 U CN 216807080U CN 202122623153 U CN202122623153 U CN 202122623153U CN 216807080 U CN216807080 U CN 216807080U
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China
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platform
weighing
rear direction
conveying
belt according
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CN202122623153.XU
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Chinese (zh)
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林干虹
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Zhejiang Derui New Material Technology Co ltd
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Zhejiang Derui New Material Technology Co ltd
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Abstract

The utility model relates to the technical field of material loading and conveying, in particular to a multi-station blanking conveying belt which comprises a conveying platform extending along the front-back direction, wherein the edges of the left side and the right side of the conveying platform are respectively provided with a side blocking platform extending along the front-back direction and higher than the conveying platform, a plurality of transverse blocking rods uniformly distributed at intervals along the front-back direction and a power device for driving the transverse blocking rods to move along the front-back direction are arranged above the conveying platform, and the transverse blocking rods are transversely arranged at the left and the right. The transverse stop lever plays a role in limiting the collecting container in the front and rear directions besides a role in pushing the collecting container, so that the collecting container is prevented from toppling in the front and rear directions, the collecting container is limited in the front and rear directions and the left and right directions, and the stability and reliability of the collecting container in advancing on the conveying platform are guaranteed.

Description

Multi-station blanking conveying belt
Technical Field
The utility model relates to the technical field of material loading and conveying, in particular to a multi-station blanking conveying belt.
Background
When a product is processed in a factory, a plurality of raw materials are generally used at the same time, so that the plurality of raw materials are sequentially loaded into the same container when the product is taken, and then the container is conveyed to a processing area for manufacturing the product. For raising the efficiency, the mill adopts automatic multistation to feed and conveying equipment more, as the disclosed facial mask liquid material liquid filling machine of multistation of chinese patent application number 202020861001.6, including base, conveyer belt and place the case, place incasement portion and have the device that stirs the processing to the facial mask liquid, place the incasement portion and be connected with a plurality of discharge gates, the conveyer belt is two splint that are provided with swing joint seat and set up side by side, places the canning bottle on the conveyer belt and marchs to the discharge gate below along with the conveyer belt when using, and facial mask liquid accomplishes the canning from the discharge gate is impressed in the filling bottle. In the transportation process of above-mentioned filling bottle, can pass through the power device drive the swing joint seat motion, and then drive splint and remove in opposite directions, the interval between two splint reduces, realizes spacing to the filling bottle, avoids the filling bottle landing from the conveyer belt at the in-process of actually carrying. However, the clamping plate in the patent only limits the filling bottles in the left-right direction, and the filling bottles need to travel along the front-back direction along with the conveying belt, so that the filling bottles are not limited in the front-back direction, and the filling bottles can topple over along the front-back direction, so that the failure of filling is caused.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the problems in the prior art, and provides a multi-station blanking conveyor belt which comprises a conveying platform extending along the front-back direction, wherein the edges of the left side and the right side of the conveying platform are respectively provided with a side blocking platform extending along the front-back direction and higher than the conveying platform, a plurality of transverse blocking rods uniformly distributed at intervals along the front-back direction and a power device driving the transverse blocking rods to move along the front-back direction are arranged above the conveying platform, and the transverse blocking rods are transversely arranged at the left and the right.
Preferably, the distance between two adjacent transverse blocking rods is equal to the distance between the left and right side blocking tables.
Preferably, the conveying platform is provided with two slide rails which are arranged side by side left and right, and the slide rails are positioned between the left side blocking table and the right side blocking table and extend along the front-back direction.
Preferably, the distance between the left slide rail and the left side blocking table is equal to the distance between the right slide rail and the right side blocking table.
Preferably, a plurality of weighing platforms which are arranged in the front-back direction are arranged between the two slide rails, the height of each weighing platform is equal to that of each slide rail, and the weighing platforms are positioned at the middle positions of the left side blocking platform and the right side blocking platform.
Preferably, a plurality of weighing tables which are arranged in the front-back direction are arranged between the two slide rails, the height of each weighing table is lower than that of each slide rail, a lifting device capable of lifting the weighing tables upwards is arranged below each weighing table, and the weighing tables are located at the middle positions of the left side blocking table and the right side blocking table.
Preferably, the device further comprises a plurality of deviation correcting devices arranged at intervals in the front-rear direction, each deviation correcting device comprises two deviation correcting plates arranged in bilateral symmetry, each deviation correcting plate is provided with a limiting surface extending in the front-rear direction and a guide surface extending from the limiting surface to the oblique rear direction, and the distance between the left limiting surface and the right limiting surface is smaller than the distance between the left side blocking table and the right side blocking table.
Preferably, the deviation correcting device is arranged between two adjacent weighing platforms in the front and the back.
Preferably, the lateral blocking table is provided with an accommodating groove extending in the front-rear direction, the power device is located in the accommodating groove and can move in the front-rear direction, and the transverse blocking rod is fixedly connected with the power device.
Preferably, the power device comprises a chain laid in the accommodating groove in the front-back direction and a gear driving the chain to run, and the transverse stop lever is fixed on the chain.
Has the advantages that:
the transverse stop lever plays a role in limiting the collecting container in the front and rear directions besides a role in pushing the collecting container, so that the collecting container is prevented from toppling in the front and rear directions, the collecting container is limited in the front and rear directions and the left and right directions, and the stability and reliability of the collecting container in advancing on the conveying platform are guaranteed.
Drawings
Fig. 1 is a general structural schematic diagram of a multi-station blanking conveying belt of the utility model;
FIG. 2 is a top view of FIG. 1;
FIG. 3 is a schematic structural view of a deviation correcting plate and a power device;
FIG. 4 is a front view of FIG. 1;
in the figure: 1. conveying platform, 11, slide rail, 12, bearing platform, 2, side block platform, 21, holding tank, 3, horizontal pin, 4, power device, 41, chain, 42, gear, 5, deviation correcting device, 51, deviation correcting board, 511, guide surface, 512, spacing face.
Detailed Description
The following specific examples are to be construed as merely illustrative, and not limitative of the remainder of the disclosure in any way whatsoever, and after a reading of this specification, a person skilled in the art will be able to make modifications to the examples as required without any inventive contribution but only subject to the scope of the appended claims.
Fig. 1 shows a multi-station blanking conveyor belt, which comprises a conveying platform 1 extending along the front-back direction, wherein the edges of the left side and the right side of the conveying platform 1 are respectively provided with a side blocking platform 2 extending along the front-back direction and higher than the conveying platform 1, a plurality of transverse blocking rods 3 arranged at regular intervals along the front-back direction and a power device 4 driving the transverse blocking rods 3 to move along the front-back direction are arranged above the conveying platform 1, and the transverse blocking rods 3 are transversely arranged left and right. In practical use, a container for collecting materials, such as a barrel, is placed on the conveying platform 1 and is positioned between two adjacent transverse stop rods 3, the barrel is pushed by the transverse stop rods 3 to advance from back to front, one material is temporarily stopped and collected when the barrel advances to one station, and the other material is collected when the barrel continues to the next station after the collection is finished. Specifically, what conveying platform 1 used is one towards the top decking to whole extend along the fore-and-aft direction and be the rectangle, its left and right sides edge all is provided with the side and blocks platform 2, and the side blocks the whole conveying platform 1 that exceeds of platform 2, so control two sides and block the platform and can surround conveying table face 1 on the left and right sides orientation, prevent that the collection container breaks away from conveying platform on the left and right sides orientation. The multi-station blanking conveying belt completely pushes the collecting container by the transverse stop rod 3, so that common conveying equipment such as a conveying belt or a roller does not need to be paved on the conveying platform 1, the conveying platform 1 only needs to be kept smooth, the cost is effectively saved, the structure is simple, the conveying belt is not easy to damage, and the maintenance cost is reduced. Besides the pushing function for collecting and accommodating, the transverse stop rod 3 also has the function of limiting the collecting container in the front and rear directions, so that the collecting container is prevented from toppling in the front and rear directions, the collecting container is limited in the front and rear directions and the left and right directions, and the stability and the reliability of the advancing of the collecting container on the conveying platform 1 are ensured.
Collecting container can adopt the cross section to be circular shape bucket or the square frame of cross section usually in operating condition, and collecting container of this kind of shape is comparatively stable when advancing, is difficult for empting, so further improvement, the preferred adjacent two of this embodiment interval between the horizontal pin 3 equals the interval between two left and right sides limit platform 2, and to collecting container of above-mentioned shape, two horizontal pin 3 are unanimous with two left and right sides limit platform 2's the restriction degree to collecting container around to collecting container, make collecting container around the restriction that four directions received balanced, guarantee its stability of advancing. In this embodiment, the cross section of the collecting container is preferably a circular barrel, and the maximum diameter of the outer wall of the barrel is slightly smaller than the distance between two adjacent transverse blocking rods 3, so that as long as the collecting container is placed on the conveying platform 1, the collecting container is framed by a square structure formed by the front transverse blocking rod 3, the rear transverse blocking rod 3 and the left side blocking platform 2 and the right side blocking platform 2, and the limiting effect is remarkable. According to the technical scheme, the collecting container slides on the conveying platform 1, the whole lower surface of the collecting container is in contact with the conveying platform 1 and generates friction force, and the smooth degree of the surface of the conveying platform 1 is difficult to ensure during production, so that the collecting container is subjected to large friction force, on one hand, the transverse stop lever 3 is required to provide larger thrust force to push the collecting container, and on the other hand, the collecting container is easy to topple; to this problem, this embodiment is preferred two slide rails 11 that are side by side about setting up on conveying platform 1, slide rail 11 is located about two sides and blocks between the platform 2 and extend along the fore-and-aft direction, and the collecting vessel just directly places on two slide rails 11 like this, and the lower bottom surface suspension of collecting vessel is on two slide rails 11 and not with conveying platform 1 direct contact, has reduced the resistance of advancing of collecting vessel greatly, has both reduced power take off's cost, has reduced the wearing and tearing of collecting vessel and conveying platform 1, has improved conveying efficiency and transport stability again. In the above, the maximum diameter of the outer wall of the collecting container is preferably only slightly smaller than the distance between the left and right side blocking tables 2, so that the offset which can be generated by the collecting container in the left-right direction is very small, and therefore, the improvement is further provided, preferably, the distance between the left slide rail 11 and the left side blocking table 2 is equal to the distance between the right slide rail 11 and the right side blocking table 2, so that the two slide rails 11 can support the collecting container approximately in a bilateral symmetry manner, and the stability of the collecting container is ensured.
The multi-station blanking conveyer belt is mainly used for pushing a collection container to different stations for material collection, and in an actual working condition, each time the material collection has requirements on the collection amount, so that a plurality of weighing tables 12 which are arranged along the front-back direction are arranged between two slide rails 11 in the embodiment, the height of each weighing table 12 is equal to that of each slide rail 11, and each weighing table 12 is positioned at the middle position of each of a left side edge blocking table and a right side edge blocking table 2. During the in-service use, weighing platform 12 needs to correspond the unloading equipment, and promptly when collecting container march to weighing platform 12 top under the promotion of horizontal pin 3, the feed opening of the unloading equipment of top needs to be aimed at to the opening of collecting container this moment, and after the unloading equipment filled the material into collecting container, weighing platform 12 weighed collecting container, and the content of feedback material avoids leading to product quality to go out the problem because of the material content makes mistakes. The height of the weighing platform 12 is consistent with that of the sliding rails 11, so that the collection container may be subjected to large resistance when moving to the weighing platform 12 to influence normal moving of the collection container, the weighing platform 12 is provided with a second implementation mode, a plurality of weighing platforms 12 arranged in the front-back direction are arranged between the two sliding rails 11, the height of each weighing platform 12 is lower than that of the corresponding sliding rail 11, the weighing platforms 12 are located at the middle positions of the left side edge blocking platform and the right side edge blocking platform 2, a lifting device capable of lifting the weighing platforms 12 upwards is arranged below the weighing platforms 12, a hydraulic mechanism and the like can be selected, the collection container firstly moves to the position above the weighing platforms 12, and then the lifting device pushes the weighing platforms 12 to lift to measure the weight of the collection container and feed back data. So that the weighing station 12 does not interfere with the normal travel of the collection container.
Although the collection container has a small amount of deviation in the left-right direction, the weighing platform 12 does not face the bottom surface of the collection container as long as there is deviation, which may increase the error of weight measurement, so that the multi-station blanking conveyor belt of the present embodiment preferably further includes a plurality of deviation rectifying devices 5 arranged at intervals in the front-rear direction, the deviation rectifying devices 5 include two deviation rectifying plates 51 arranged in a left-right symmetry manner, in the present embodiment, the left and right side blocking platforms 2, the left and right slide rails 11, and the left and right deviation rectifying plates 51 in each deviation rectifying device 5 are all in a left-right symmetry manner, and the symmetry planes of the three are the same. The deviation correcting plate 51 is provided with a limiting surface 512 extending along the front-back direction and a guide surface 511 extending from the limiting surface 512 to the oblique back direction, the distance between the left limiting surface 512 and the right limiting surface 512 in each deviation correcting device 5 is smaller than the distance between the left side blocking table 2 and the right side blocking table 2, the outer wall of the deviation correcting plate slides to the limiting surface 512 along the guide surface 511 in the advancing process, so that the collecting container is located at the right middle position of the conveying platform 1 in the left-right direction, and the smoothness of the collecting container in the material collecting and weighing processes is guaranteed. Therefore, preferably, the deviation correcting device 5 is arranged between two adjacent weighing platforms 12 in front and back, so that the collection container which is just corrected can move to a material collecting station, smooth material collection is ensured, and weighing errors are reduced. In the two left and right deviation correcting plates 51 of one deviation correcting device 5, the left deviation correcting plate 51 is fixed on the left side edge blocking table 2, and the right deviation correcting plate 51 is fixed on the right side edge blocking table 2.
In this embodiment, the power device needs to drive the transverse blocking rod 3 to move, preferably, the side blocking table 2 is provided with a containing groove 21 extending in the front-back direction, the power device 4 is located in the containing groove 21 and can move in the front-back direction, and the transverse blocking rod 3 is fixedly connected with the power device 4. One implementation mode of the power device 4 is to select a left slide block and a right slide block as a group, to form a plurality of groups, to erect each transverse blocking rod 3 on the left slide block and the right slide block of one group, and to drive the left slide block and the right slide block of one group to move through a motor to drive the transverse blocking rod to move; another embodiment of the power device 4 includes a chain 41 laid in the accommodating groove 21 along the front-back direction and a gear 42 driving the chain 41 to run, the transmission is stable, the chains 41 are disposed in the accommodating grooves 21 of the left and right side blocking tables 2, the transverse blocking rod 3 is erected and fixed on the left and right chains 41, and the rotation of the gear 42 requires the motor to provide power.
While the utility model has been described with reference to specific embodiments, the utility model is not limited thereto, and various equivalent modifications and substitutions can be easily made by those skilled in the art within the technical scope of the utility model. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (10)

1. The utility model provides a multistation unloading conveyer belt, its characterized in that includes conveying platform (1) that extends along the fore-and-aft direction, the left and right sides edge of conveying platform (1) all is provided with and extends and exceeds along the fore-and-aft direction side block platform (2) of conveying platform (1), conveying platform (1) top is provided with horizontal pin (3) and the drive that a plurality of roots were arranged along the even interval of fore-and-aft direction power device (4) that the fore-and-aft direction removed are followed in horizontal pin (3), horizontal setting about horizontal pin (3).
2. A multi-station blanking conveyor belt according to claim 1, characterized in that the distance between two adjacent transverse bars (3) is equal to the distance between the left and right lateral blocking tables (2).
3. A multi-station blanking conveyor belt according to claim 2, characterized in that two slide rails (11) are arranged side by side on the conveyor platform (1), and the slide rails (11) are located between the left and right side blocking tables (2) and extend in the front-rear direction.
4. A multi-station blanking conveyor belt according to claim 3, characterized in that the distance between the left slide rail (11) and the left side stop (2) is equal to the distance between the right slide rail (11) and the right side stop (2).
5. A multi-station blanking conveyor belt according to claim 4, characterized in that a plurality of weighing platforms (12) are arranged in the front-rear direction between the two slide rails (11), the height of each weighing platform (12) is equal to the height of the corresponding slide rail (11), and the weighing platforms (12) are located at the middle positions of the left and right side blocking platforms (2).
6. A multi-station blanking conveying belt according to claim 4, characterized in that a plurality of weighing platforms (12) arranged in the front-rear direction are arranged between two slide rails (11), the height of each weighing platform (12) is lower than that of each slide rail (11), a lifting device capable of lifting the weighing platform (12) upwards is arranged below each weighing platform (12), and each weighing platform (12) is located at the middle position between the left side blocking platform (2) and the right side blocking platform (2).
7. A multi-station blanking conveying belt according to any one of claims 5 or 6, characterized by further comprising a plurality of deviation rectifying devices (5) arranged at intervals in the front-rear direction, wherein each deviation rectifying device (5) comprises two deviation rectifying plates (51) arranged in bilateral symmetry, each deviation rectifying plate (51) is provided with a limiting surface (512) extending in the front-rear direction and a guide surface (511) extending from the limiting surface (512) to the oblique rear direction, and the distance between the left limiting surface and the right limiting surface (512) is smaller than the distance between the left side blocking table and the right side blocking table (2).
8. A multi-station blanking conveyor belt according to claim 7, characterized in that said deviation rectifying device (5) is arranged between two adjacent weighing platforms (12).
9. A multi-station blanking conveyor belt according to claim 1, wherein the side blocking table (2) is provided with a receiving groove (21) extending in the front-rear direction, the power device (4) is located in the receiving groove (21) and can move in the front-rear direction, and the transverse blocking rod (3) is fixedly connected with the power device (4).
10. A multi-station blanking conveyor belt according to claim 9, characterized in that said power means (4) comprises chains (41) laid in said accommodating grooves (21) in the front-rear direction and gears (42) driving said chains (41) to run, and said transverse bars (3) are fixed to the left and right chains (41) through both ends.
CN202122623153.XU 2021-10-29 2021-10-29 Multi-station blanking conveying belt Active CN216807080U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122623153.XU CN216807080U (en) 2021-10-29 2021-10-29 Multi-station blanking conveying belt

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122623153.XU CN216807080U (en) 2021-10-29 2021-10-29 Multi-station blanking conveying belt

Publications (1)

Publication Number Publication Date
CN216807080U true CN216807080U (en) 2022-06-24

Family

ID=82047588

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122623153.XU Active CN216807080U (en) 2021-10-29 2021-10-29 Multi-station blanking conveying belt

Country Status (1)

Country Link
CN (1) CN216807080U (en)

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