CN212558284U - Lap joint shuttle bucket of conveyer belt system - Google Patents
Lap joint shuttle bucket of conveyer belt system Download PDFInfo
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- CN212558284U CN212558284U CN202021234523.XU CN202021234523U CN212558284U CN 212558284 U CN212558284 U CN 212558284U CN 202021234523 U CN202021234523 U CN 202021234523U CN 212558284 U CN212558284 U CN 212558284U
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- conveyer belt
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Abstract
The utility model provides a conveyer belt system's overlap joint shuttle fill, including the shuttle bucket body, two articulate the groove, each articulates the groove and is used for fixing respectively in X to the both sides of the frame extension end of conveyer belt, and the notch is in opposite directions, the transversal U-shaped structure that personally submits of the shuttle bucket body, one end is fixed and is equipped with the vertical picture peg that extends down, the connecting plate that extends up, the other end of the shuttle bucket body inclines downwardly extending along X, and projected extension length is greater than the width of X to the conveyer belt, the other end bottom is equipped with the support frame, the one end of the shuttle bucket body passes through picture peg sliding fit between two and articulates the groove, form the connection with X to the conveyer belt, the extension end of connecting plate is located the below of the belt discharge end of X to the conveyer belt, the other end of the shuttle bucket body passes through the support frame support in Y. The utility model discloses simple structure, convenient to use can be according to actual production situation for adjust two Y in a flexible way and to the bagged food transport rate of conveyer belt, satisfy the actual demand of enterprise.
Description
Technical Field
The utility model relates to a conveyer belt field, in particular to overlap joint shuttle of conveyer belt system is fought.
Background
In food processing enterprises, bagged food processed by an automatic packaging machine is usually taken away from the automatic packaging machine by an X-direction conveying belt, then the bagged food is separated from the X-direction conveying belt under the action of gravity, falls to a Y-direction conveying belt and is conveyed to a downstream selection process by the Y-direction conveying belt.
Because automatic packaging machine is more, and installation density is higher, consequently, the mode that two conveyer belts set up side by side is usually adopted to Y to the conveyer belt, and two Y correspond a plurality of X respectively to the outside of conveyer belt to the conveyer belt, and a plurality of X are to the continuous Y that will bag food carries to corresponding side to on the conveyer belt to the conveyer belt.
However, the Y-direction conveying belt may have an unadapted conveying speed due to various reasons, so that the conveying speed of the bagged food on the Y-direction conveying belt is changed to a large extent, which affects the normal operation of the downstream selecting process, even one of the Y-direction conveying belts is directly stopped, so that the bagged food is continuously accumulated on the stopped conveying belt, and the conveying speed is zero, which seriously affects the normal production of enterprises.
Therefore, how to effectively coordinate the conveying speed of the bagged food by the two Y-direction conveying belts is an urgent problem to be solved by those skilled in the art.
Disclosure of Invention
The utility model aims at prior art not enough, provide a conveyer belt system's overlap joint shuttle fill, its simple structure, convenient to use can be according to the actual production situation for adjust two Y in a flexible way and to the bagged food transport rate of conveyer belt, satisfy the actual demand of enterprise.
The technical scheme of the utility model is that: a lapping shuttle bucket of a conveyor belt system comprises a shuttle bucket body and two hanging grooves, wherein each hanging groove is respectively used for being fixed at two sides of an extending end of a machine frame of an X-direction conveyor belt and located between the X-direction conveyor belt and a Y-direction conveyor belt, the two hanging grooves extend along the vertical direction, notches are opposite, the cross section of the shuttle bucket body is of a U-shaped structure with an upward opening, one end of the shuttle bucket body is fixedly provided with an inserting plate which extends downwards vertically, the width of the inserting plate is matched with the distance between the bottoms of the two hanging grooves, one end of the shuttle bucket body is fixedly provided with a connecting plate which extends upwards, the width of the connecting plate is smaller than the distance between the two hanging grooves, the other end of the shuttle bucket body extends downwards along the X-direction in an inclined mode, the extending length of a projection is larger than the width of the X-direction conveyor belt, the bottom of the other end of the shuttle bucket body is provided with a supporting frame, one end of the, the connecting plate is detachably connected with the X-direction conveying belt, the extending end of the connecting plate is positioned below the belt discharging end of the X-direction conveying belt, and the other end of the shuttle bucket body is supported on a rack of the Y-direction conveying belt through a supporting frame to form an overlapping shuttle bucket of the conveying belt system.
And a reinforcing rib is fixedly arranged between the inserting plate and the bottom of the shuttle bucket body.
The included angle between the connecting plate and the shuttle bucket body is larger than 90 degrees.
The connecting plate is a cambered surface bent downwards, and the connecting plate is in transition connection with the shuttle bucket body through the cambered surface.
And the upper end of each hanging and connecting groove is fixedly provided with a connecting support lug, and each hanging and connecting groove is fixedly connected with the extension end of the X-direction conveyor belt frame through the connecting support lug.
The connecting support lug is provided with two strip-shaped holes, each strip-shaped hole extends along the vertical direction, and each hanging groove passes through the strip-shaped hole corresponding to the connecting support lug through a bolt and is in threaded fit with the extending end of the X-shaped conveying belt to the rack of the conveying belt to form fixed connection.
The cross section of the support frame is triangular.
Adopt above-mentioned technical scheme to have following beneficial effect:
1. an overlapping shuttle of a conveyor system includes a shuttle body and two hitch slots. Each hang and connect the groove and be used for fixing respectively in X to the frame of conveyer belt extend the both sides of end, be located X to the conveyer belt, Y between the conveyer belt, two hang and connect the groove and extend along vertical direction, and the notch is in opposite directions, promptly, the upper end notch in two hang and connect the groove is located X to the below of conveyer belt, and the lower extreme notch in two hang and connect the groove is located Y to the top of conveyer belt. The horizontal U-shaped structure that personally submits the opening up of shuttle bucket body, the one end of shuttle bucket body is fixed to be equipped with vertical picture peg that extends down, and the width of this picture peg suits with the distance between the tank bottoms in two hookup grooves for peg graft between two hookup grooves, form sliding fit, and the shuttle bucket body supports at the upper end notch in hookup groove, forms detachable connection. The fixed connecting plate that is equipped with up extension of one end of shuttle bucket body, the width of this connecting plate is less than the distance between two hookup grooves, and the one end and the hookup groove of the shuttle bucket body form can dismantle the connection back, and the connecting plate is located X to between the conveyer belt frame, avoids taking place to interfere with the conveyer belt frame. The other end of the shuttle bucket body extends downwards along the X-direction inclination, the projected extension length is greater than the width of the Y-direction conveying belt, a supporting frame is arranged at the bottom of the other end of the shuttle bucket body, namely, one end of the shuttle bucket body, which is provided with the inserting plate and the connecting plate, is at a high position, and one end, which is provided with the supporting frame, is at a low position. One end of the shuttle bucket body is in sliding fit between the two hanging grooves through the inserting plate and is detachably connected with the X-direction conveying belt, the high-position end of the shuttle bucket body is directly supported at the notches at the upper ends of the two shuttle bucket bodies, the extending end of the connecting plate is positioned below the belt discharging end of the X-direction conveying belt, the other end of the shuttle bucket body is supported on the rack of the Y-direction conveying belt through the supporting frame, and the two ends are combined to form the lapping shuttle bucket of the conveying belt system.
2. The reinforcing ribs are fixedly arranged between the bottom of the inserting plate and the bottom of the shuttle bucket body and used for reinforcing the structural strength between the inserting plate and the shuttle bucket body, and the shuttle bucket body is supported at the upper end notches of the two hanging and connecting grooves through the reinforcing ribs, so that the service life of the shuttle bucket body is effectively prolonged.
3. Each the upper end of hanging the joint groove is fixed and is equipped with the connection journal stirrup, is equipped with two bar holes on the connection journal stirrup, and each bar hole extends along vertical direction, and each hanging the joint groove passes the bar hole that corresponds the connection journal stirrup through the bolt, extends end screw-thread fit with the frame of X to the conveyer belt, forms fixed connection, conveniently adjusts the height in hanging the joint groove, satisfies more conveyer belt system's overlap joint demand.
4. The connecting plate is the cambered surface of bending down, through cambered surface transitional coupling between connecting plate and the shuttle fill body, the pouch food that drops to the conveyer belt from X is followed curved connecting plate landing to the shuttle fill body, guarantees gliding stability on pouch food's the connecting plate, avoids pouch food to drop out.
The following further description is made with reference to the accompanying drawings and detailed description.
Drawings
Fig. 1 is a schematic view of the installation of the present invention;
FIG. 2 is a schematic structural view of the shuttle body of the present invention;
FIG. 3 is a view taken along line A of FIG. 2;
fig. 4 is an installation schematic diagram of the hanging groove of the present invention.
In the attached drawing, 1 is the shuttle fill body, 2 is for hanging the groove, 3 is the picture peg, 4 is the connecting plate, 5 is the support frame, 6 is the strengthening rib, 7 is the connection journal stirrup, 8 is the bar hole.
Detailed Description
Referring to fig. 1-4, an embodiment of an overlapping shuttle of a conveyor system is shown. The overlapping hopper of the conveyor system comprises a hopper body 1 and two catching grooves 2. Each hang and connect groove 2 is used for fixing respectively on the both sides of the frame extension end of X to the conveyer belt, is located between X to the conveyer belt, the Y to the conveyer belt, two hang and connect groove 2 and extend along vertical direction, and the notch is in opposite directions, in this embodiment, each hang and connect the upper end of groove 2 and fixedly be equipped with connection journal stirrup 7, each hang and connect groove 2 through connecting journal stirrup 7 and X to the frame extension end fixed connection of conveyer belt, specifically, be equipped with two bar holes 8 on the connection journal stirrup 7, each bar hole 8 extends along vertical direction, each hang and connect groove 2 and pass the bar hole 8 that corresponds connection journal stirrup 7 through the bolt, with X to the frame extension end screw-thread fit of conveyer belt, form fixed connection, usually, in order to make things convenient for, use, the upper end notch aperture in hang and connect the groove is great. The cross section of the shuttle bucket body 1 is of a U-shaped structure with an upward opening, one end of the shuttle bucket body 1 is fixedly provided with an insert plate 3 which vertically extends downwards, the width of the insert plate 3 is adapted to the distance between the bottoms of the two hanging and connecting grooves 2, in order to improve the connecting strength between the shuttle bucket body and the insert plate, a reinforcing rib 6 is fixedly arranged between the insert plate 3 and the bottom of the shuttle bucket body 1, the length of the insert plate is usually shorter than that of the hanging and connecting grooves, and the thickness of the insert plate is adapted to the groove width of the hanging and connecting grooves. The fixed connecting plate 4 that is equipped with up extension of one end of shuttle bucket body 1, the width of this connecting plate 4 is less than two distances of hanging between the groove 2, and in this embodiment, the contained angle between connecting plate 4 and the shuttle bucket body 1 is greater than 90, and connecting plate 4 is the cambered surface of bending down, and passes through cambered surface transitional coupling between connecting plate 4 and the shuttle bucket body 1. The other end of the shuttle bucket body 1 obliquely extends downwards along the X direction, the extension length of the projection is greater than the width of the Y-direction conveying belt, two support frames 5 are arranged at the bottom of the other end of the shuttle bucket body 1, in the embodiment, the two support frames are respectively arranged at two sides of the bottom of the other end of the shuttle bucket body, and the cross section of each support frame 5 is triangular. One end of the shuttle bucket body 1 is in sliding fit between the two hanging grooves 2 through the inserting plates 3, and is supported at the upper end notches of the two hanging grooves through the reinforcing ribs to form detachable connection with X to the conveying belt, the extending end of the connecting plate 4 is positioned below the belt discharging end of the X to the conveying belt, the other end of the shuttle bucket body 1 is supported on a rack of the Y to the conveying belt through the supporting frame 5, and the lapping shuttle bucket of the conveying belt system is formed by combination.
The utility model discloses an operating principle uses figure 1 as an example, and Y is individual to the quantity of conveyer belt, and sets up side by side, and two Y set up many X respectively to the outside of conveyer belt (corresponding left side, the right side of figure 1) to the conveyer belt, and each X all corresponds an automatic packaging machine to the conveyer belt, and under the normal conditions, the bagged food that the automatic packaging machine of corresponding side produced carries to the Y of corresponding side to the conveyer belt through X. Y on right side need slow down rate of delivery (the reduction of bag dress food quantity in unit interval) to the conveyer belt, through the X on right side to the conveyer belt on the overlap joint shuttle fill, can be fast with the X on right side to conveyer belt and left Y to conveyer belt collocation, make right side X shift to left Y to the conveyer belt to the bagged food that the conveyer belt carried.
Claims (7)
1. The utility model provides a conveyer belt system's overlap joint shuttle fill which characterized in that: comprises a shuttle bucket body (1) and two hanging grooves (2),
each hanging and connecting groove (2) is respectively used for being fixed at two sides of the extending end of the rack of the X-direction conveying belt and positioned between the X-direction conveying belt and the Y-direction conveying belt, the two hanging and connecting grooves (2) extend along the vertical direction, the notches are opposite,
the cross section of the shuttle bucket body (1) is of a U-shaped structure with an upward opening, one end of the shuttle bucket body (1) is fixedly provided with an inserting plate (3) which extends downwards vertically, the width of the inserting plate (3) is adapted to the distance between the bottoms of the two hanging and connecting grooves (2),
one end of the shuttle bucket body (1) is fixedly provided with a connecting plate (4) extending upwards, the width of the connecting plate (4) is less than the distance between the two hanging and connecting grooves (2),
the other end of the shuttle bucket body (1) obliquely extends downwards along the X direction, the extension length of the projection is greater than the width of the Y-direction conveying belt, a support frame (5) is arranged at the bottom of the other end of the shuttle bucket body (1),
one end of the shuttle bucket body (1) is in sliding fit between the two hanging grooves (2) through the inserting plate (3) and is detachably connected with the X to the conveying belt, the extending end of the connecting plate (4) is positioned below the belt discharging end of the X to the conveying belt, the other end of the shuttle bucket body (1) is supported on the rack of the Y to the conveying belt through the supporting frame (5), and the overlapping shuttle bucket of the conveying belt system is formed by combination.
2. The overlapping shuttle of the conveyor belt system of claim 1 wherein: and a reinforcing rib (6) is fixedly arranged between the inserting plate (3) and the bottom of the shuttle bucket body (1).
3. The overlapping shuttle of the conveyor belt system of claim 1 wherein: the included angle between the connecting plate (4) and the shuttle bucket body (1) is larger than 90 degrees.
4. The overlapping shuttle of the conveyor belt system of claim 1 wherein: the connecting plate (4) is a cambered surface bent downwards, and the connecting plate (4) is in transition connection with the shuttle bucket body (1) through the cambered surface.
5. The overlapping shuttle of the conveyor belt system of claim 1 wherein: the upper end of each hanging and connecting groove (2) is fixedly provided with a connecting support lug (7), and each hanging and connecting groove (2) is fixedly connected with the extending end of the X-direction conveyor belt frame through the connecting support lug (7).
6. The overlapping shuttle of the conveyor belt system of claim 5 wherein: be equipped with two bar holes (8) on connecting journal stirrup (7), each bar hole (8) extends along vertical direction, each hang and connect groove (2) and pass bar hole (8) that correspond connecting journal stirrup (7) through the bolt, extend end screw-thread fit with the frame of X to the conveyer belt, form fixed connection.
7. The overlapping shuttle of the conveyor belt system of claim 1 wherein: the cross section of the support frame (5) is triangular.
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CN202021234523.XU CN212558284U (en) | 2020-06-29 | 2020-06-29 | Lap joint shuttle bucket of conveyer belt system |
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CN202021234523.XU CN212558284U (en) | 2020-06-29 | 2020-06-29 | Lap joint shuttle bucket of conveyer belt system |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN116853758A (en) * | 2023-08-23 | 2023-10-10 | 未来维度(深圳)科技有限公司 | Automatic robot carrying method |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN116853758A (en) * | 2023-08-23 | 2023-10-10 | 未来维度(深圳)科技有限公司 | Automatic robot carrying method |
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