CN203997726U - The feedway of material cycling case - Google Patents

The feedway of material cycling case Download PDF

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Publication number
CN203997726U
CN203997726U CN201420479098.9U CN201420479098U CN203997726U CN 203997726 U CN203997726 U CN 203997726U CN 201420479098 U CN201420479098 U CN 201420479098U CN 203997726 U CN203997726 U CN 203997726U
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China
Prior art keywords
sliding rail
rail
sole
material cycling
plate
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CN201420479098.9U
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Chinese (zh)
Inventor
季赛帅
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Continental Automotive Systems Shanghai Co Ltd
Continental Automotive Systems Inc
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Continental Automotive Systems Shanghai Co Ltd
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Abstract

The utility model provides a kind of feedway of material cycling case, comprises at least one conveying mechanism, and conveying mechanism comprises: bracing frame; The first sliding rail, is inclined on bracing frame; The second sliding rail, is inclined on bracing frame and is positioned at the below of the first sliding rail; Switching rail, has and can replace the structure being connected with the first sliding rail or the second sliding rail; Wherein, the first end away from switching rail of the first sliding rail is higher than the second end of the close switching rail of the first sliding rail, and the first end away from switching rail of the second sliding rail is lower than the second end of the close switching rail of the second sliding rail.What switching rail can replace is connected with the first sliding rail and the second sliding rail, and material cycling case is entered in the second sliding rail after the first sliding rail slides into switching rail again.The transport conveyor constructions of material cycling case of the present utility model is simple, without a dead lift, saves muscle power and increases work efficiency.

Description

The feedway of material cycling case
Technical field
The utility model relates to a kind of feedway of material cycling case.
Background technology
In auto-parts production process, often need to carry out material cycling conveying.In prior art, generally use gravity type boat davit track to carry out material cycling conveying.Yet existing gravity type boat davit track shortcoming is a lot, complex structure, operating difficulties, also needs a dead lift material cycling case, consumes plenty of time and the muscle power of operating personal, and work efficiency is very low.Especially run into heavier material cycling case, carry very inconveniently, also likely cause the accident of pounding operating personal, danger close, safety is poor.
Utility model content
The utility model aims to provide a kind of simple in structure and without the feedway of the material cycling case of a dead lift.
To achieve these goals, the utility model provides a kind of feedway of material cycling case, comprises at least one conveying mechanism, and conveying mechanism comprises: bracing frame; The first sliding rail, is inclined on bracing frame; The second sliding rail, is inclined on bracing frame and is positioned at the below of the first sliding rail; Switching rail, has and can replace the structure being connected with the first sliding rail or the second sliding rail; Wherein, the first end away from switching rail of the first sliding rail is higher than the second end of the close switching rail of the first sliding rail, and the first end away from switching rail of the second sliding rail is lower than the second end of the close switching rail of the second sliding rail.
Further, switching rail is arranged on bracing frame rotationally, has the first state being connected with the first sliding rail and the second state being connected with the second sliding rail.
Further, switching rail comprises: sole-plate, be arranged at rotationally on bracing frame, when switching rail during in the first state sole-plate be connected with the first sliding rail, when switching rail during in the second state sole-plate be connected with the second sliding rail; Stopper section, is arranged on close one end of the first sliding rail of sole-plate; Wherein, when sole-plate is connected with the second sliding rail, stopper section backstop is in the second end of the first sliding rail.
Further, bracing frame comprises interconnective for supporting the first bracing frame of the first sliding rail, the second sliding rail and for supporting the second bracing frame of switching rail, bracing frame also comprises: column, one end of column is fixedly connected with the second bracing frame, and sole-plate is connected with the other end of column rotationally.
Further, stopper section has: two strut bars, be relatively arranged on sole-plate, and the distance between two strut bars and the width of material cycling case are suitable; Gear-stopping bar, is connected between two strut bars; Wherein, when switching rail is during in the first state, the distance between gear-stopping bar and sole-plate is more than or equal to the height of material cycling case, so that material cycling case is slid on sole-plate by the first sliding rail; When switching rail turns to the second state by the first state, material cycling case is slid on the second sliding rail by the first sliding rail, gear-stopping bar is positioned at the second end of the first sliding rail, at least part of second end higher than the first sliding rail of gear-stopping bar, is positioned at another material cycling case on the first sliding rail with backstop.
Further, on sole-plate, along be provided with at least one row's pulley in the direction of the second sliding rail, the axis of pulley is the sense of motion on the second sliding rail perpendicular to material cycling case.
Further, switching rail also comprises: fence, comprise the opposite fence that is set in parallel in gear-stopping bar opposite, and opposite fence is arranged on sole-plate.
Further, fence also comprises the gusset hurdle of the both sides that are arranged on sole-plate.
Further, switching rail also has: handle, is arranged on one end away from the first sliding rail of sole-plate.
Further, conveying mechanism is two and connects side by side the conveying mechanism arranging, two the first sliding rails are set up in parallel along its length, wherein, two conveying mechanisms comprise the first guardrail, the second guardrail and the 3rd guardrail being arranged in parallel, wherein, the first guardrail and the 3rd guardrail are arranged at respectively the outside of two the first sliding rails along the length direction of the first sliding rail, and the second guardrail arranges along the junction between two the first sliding rails.
Further, gear-stopping bar is arranged on two strut bars movably, and the distance between gear-stopping bar and sole-plate is adjustable.
Apply the technical solution of the utility model, a kind of feedway of material cycling case is provided, the feedway of material cycling case comprises at least one conveying mechanism, and conveying mechanism comprises bracing frame, the first sliding rail, the second sliding rail and switching rail.Wherein, the first sliding rail is inclined on bracing frame, the second sliding rail is inclined on bracing frame and is positioned at the below of the first sliding rail, switching rail has can replace the structure being connected with the first sliding rail or the second sliding rail, and material cycling case is entered in the second sliding rail after the first sliding rail slides into switching rail again.Therefore, the transport conveyor constructions of material cycling case of the present utility model is simple, without a dead lift, has saved the muscle power of operating personal and has improved work efficiency.
Accompanying drawing explanation
The Figure of description that forms the application's a part is used to provide further understanding of the present utility model, and schematic description and description of the present utility model is used for explaining the utility model, does not form improper restriction of the present utility model.In the accompanying drawings:
Fig. 1 shows the front view of the feedway of material cycling case of the present utility model;
Fig. 2 shows the birds-eye view of Fig. 1;
Fig. 3 shows the left view of Fig. 1; And
Fig. 4 shows the integral structure schematic diagram of the feedway of material cycling case of the present utility model.
Reference numeral in figure: 10, bracing frame; 20, the first sliding rail; 30, the second sliding rail; 40, switching rail; 41, sole-plate; 42, stopper section; 11, column; 421, strut bar; 422, gear-stopping bar; 43, handle; 411, pulley; 44, fence; 441, opposite fence; 50, guardrail; 51, the first guardrail; 52, the second guardrail; 53, the 3rd guardrail.
The specific embodiment
It should be noted that, in the situation that not conflicting, embodiment and the feature in embodiment in the application can combine mutually.Describe below with reference to the accompanying drawings and in conjunction with the embodiments the utility model in detail.
As shown in Figure 1, the utility model provides a kind of feedway of material cycling case.
Particularly, the feedway of material cycling case comprises at least one conveying mechanism.Conveying mechanism comprises bracing frame 10, the first sliding rail 20, the second sliding rail 30 and switching rail 40.
The first sliding rail 20 is inclined on bracing frame 10, on the first sliding rail 20, is placed with material cycling case.The second sliding rail 30 is inclined on bracing frame 10, and the second sliding rail 30 is positioned at the below of the first sliding rail 20.Switching rail 40 has can replace the structure being connected with the first sliding rail 20 or the second sliding rail 30, that is to say that switching rail 40 has the first state being connected with the first sliding rail 20 and the second state being connected with the second sliding rail 30.
Wherein, the first end away from switching rail 40 of the first sliding rail 20 is higher than the second end of the close switching rail 40 of the first sliding rail 20,, in use, the vertical dimension of the first end position of the first sliding rail 20 is greater than the vertical dimension of the second end position of the first sliding rail 20.The first end away from switching rail 40 of the second sliding rail 30 is lower than the second end of the close switching rail 40 of the second sliding rail 30, also be, in use, the vertical dimension of the first end position of the second sliding rail 30 is less than the vertical dimension of the second end position of the second sliding rail 30.That is to say, in the direction away from switching rail 40, the distance between the second sliding rail 30 and the first sliding rail 20 increases gradually.
What switching rail 40 can replace is connected with the first sliding rail 20 and the second sliding rail 30, and material cycling case is entered in the second sliding rail 30 after the first sliding rail 20 slides into switching rail 40 again.Therefore, the transport conveyor constructions of material cycling case of the present utility model is simple, without a dead lift, has saved the muscle power of operating personal and has improved work efficiency.
Preferably, switching rail 40 is arranged on bracing frame 10 rotationally, has the first state being connected with the first sliding rail 20 and the second state being connected with the second sliding rail 30.Switching rail 40 is arranged on and on bracing frame 10, makes the feedway globality of material cycling case stronger, and makes the alternately connection of switching rail 40 between the first sliding rail 20 and the second sliding rail 30 also more flexible and accurate.
As shown in Figure 1, switching rail 40 comprises sole-plate 41 and stopper section 42, and stopper section 42 is arranged on close one end of the first sliding rail 20 of sole-plate 41.
As depicted in figs. 1 and 2, sole-plate 41 is arranged on bracing frame 10 rotationally.When switching rail 40 during in the first state sole-plate 41 be connected with the first sliding rail 20, when switching rail 40 during in the second state sole-plate 41 be connected with the second sliding rail 30.When sole-plate 41 is connected with the second sliding rail 30, stopper section 42 backstops are in the second end of the first sliding rail 20.
As shown in Figure 1, bracing frame 10 comprises for supporting the first bracing frame of the first sliding rail 20 and the second sliding rail 30 and for supporting the second bracing frame of switching rail 40, the first bracing frame and the second bracing frame link together.Switching rail 40 is arranged on the second bracing frame, and sole-plate 41 is connected in the second bracing frame rotationally.On the second bracing frame, be provided with a column 11, sole-plate 41 is connected in column 11 rotationally, and take column 11 and move as the similar seesaw mode of fulcrum.Particularly, one end of column 11 is fixedly connected with the second bracing frame, and formation can be supported the understructure of switching rail 40.Sole-plate 41 is connected with the other end of column 11 rotationally, and for example the other end of sole-plate 41 and column is hinged or be coupling.
As shown in Figure 4, stopper section 42 has two strut bars 421 and gear-stopping bar 422.Two strut bars 421 are longitudinally relatively arranged on sole-plate 41, and preferably, two strut bars 421 are connected on sole-plate 41 vertically.Distance between two strut bars 421 and the width of material cycling case are suitable, and gear-stopping bar 422 is laterally connected in the end away from sole-plate 41 of two strut bars 421.Wherein, when switching rail 40 has its first state to turn to the second state, gear-stopping bar 422 is higher than the second end of the first sliding rail 20, thereby backstop skids off the first sliding rail 20 from the next material cycling case of the first sliding rail 20.Also be, distance between gear-stopping bar 422 and sole-plate 41 is more than or equal to the height of material cycling case, and a little more than the distance between the second end of the first sliding rail 20 and the second end of the second sliding rail 30, and the raised area is less than again the height of material cycling case.The length of strut bar 421 is more than or equal to the distance between gear-stopping bar 422 and sole-plate 41.
Gear-stopping bar 422 is arranged on two strut bars 421 movably so that the distance between gear-stopping bar 422 and sole-plate 41 is adjustable, to be applicable to the transportation of the especially highly different material cycling case of different size.
As shown in Figure 1, Figure 3 and Figure 4, switching rail 40 also has handle 43, and handle 43 is arranged at sole-plate 41 away from one end of the first sliding rail 20.
As shown in Figure 2 and Figure 4, on sole-plate 41, along be provided with at least one row's pulley 411 in the direction of the second sliding rail 30, the axis of pulley 411 is perpendicular to the sense of motion of material cycling case.Preferably, pulley 411 is that two rows and compartment of terrain are set up in parallel.On certain the first sliding rail 20 and the second sliding rail 30, also can be provided with pulley 411.Pulley 411 can be more smooth and easy so that material cycling case slides, and work efficiency more improves.Also reduced the friction between material cycling case and sliding rail, reduced the loss that material cycling case and sliding rail bring because of friction simultaneously.
Switching rail 40 also comprises fence 44, and fence 44 comprises the gusset hurdle 442 of the opposite fence 441 be arrangeding in parallel with gear-stopping bar 422 and the both sides that are arranged on sole-plate 41.Opposite fence 441 is arranged on sole-plate 41, parallel with gear-stopping bar 422.Fence 44 can prevent that material cycling case from skidding off track and overturning on ground, avoided the damage of material cycling case.And the part fence 44 paralleling with handle 43 is that opposite fence 441 has also played the hand that prevents from striking when material cycling case is on the sole-plate 41 that glides operating personal, also avoid material cycling case clash into handle 43 or skid off from sole-plate 41 simultaneously.
As shown in Figures 1 to 4, in the present embodiment, two conveying mechanisms connect setting side by side, have further improved work efficiency, improve to greatest extent job schedule and rhythm.
Preferably, two the first sliding rails 20 are set up in parallel along its length.Wherein, two conveying mechanisms have three guardrails that are arranged in parallel 50, and guardrail 50 comprises the first guardrail 51, the second guardrail 52 and the 3rd guardrail 53.The first guardrail 51 and the 3rd guardrail 53 are arranged at respectively the outside of two the first sliding rails 20 along the length direction of the first sliding rail 20, wherein, the first guardrail 51 is along the arranged outside of the length direction of first sliding rail 20, the 3rd guardrail 53 is along the arranged outside of the length direction of another the first sliding rail 20, and the second guardrail 52 arranges along the junction between two the first sliding rails 20.Certainly, the utility model is not limited to two conveying mechanisms and connects side by side setting, can be as required, and a plurality of conveying mechanisms connect setting side by side.
The principle of work of preferred embodiment of the present utility model is as follows:
Press down the handle 43 of switching rail 40, the sole-plate 41 of switching rail 40 and the first sliding rail 20 are in the position of a straight line, and the material cycling case of filling material transfers on switching rail 40 from the first sliding rail 20 under gravitational effect.That is to say, press down after the handle 43 of switching rail 40, sole-plate 41 is connected with the first sliding rail 20, because the distance between gear-stopping bar 422 and sole-plate 41 is more than or equal to the height than material cycling case, so fill the material cycling case of material, by the below through gear-stopping bar 422 on the first sliding rail 20, be slipped on sole-plate 41, gear-stopping bar 422 can not stop the material cycling case of filling material.While shifting out empty material cycling case on switching rail 40, operator only need upwards carry the handle of switching rail 40 43, utilize the gear-stopping bar 422 on switching rail 40 that the material cycling case of filling material is temporarily blocked on the first sliding rail 20, stop its down sliding.When the sole-plate 41 of switching rail 40 and the second sliding rail 30 are during at a straight line, empty material cycling case skids off switching rail 40 and enters the second sliding rail 30.When empty material cycling case skids off after switching rail 40, only switching rail 40 need be retracted to sole-plate 41 that initial position is switching rail 40 places and the first sliding rail 20 in the position of a straight line, the material cycling case of filling material will slide into due to gravity on the sole-plate 41 of switching rail 40, so circulation.
As can be seen from the above description, the utility model the above embodiments have realized following technique effect:
What switching rail 40 can replace is connected with the first sliding rail 20 and the second sliding rail 30, and material cycling case is entered in the second sliding rail 30 after the first sliding rail 20 slides into switching rail 40 again.Therefore, the transport conveyor constructions of material cycling case of the present utility model is simple, without a dead lift, has saved the muscle power of operating personal and has improved work efficiency.
The foregoing is only preferred embodiment of the present utility model, be not limited to the utility model, for a person skilled in the art, the utility model can have various modifications and variations.All within spirit of the present utility model and principle, any modification of doing, be equal to replacement, improvement etc., within all should being included in protection domain of the present utility model.

Claims (11)

1. a feedway for material cycling case, is characterized in that, comprises at least one conveying mechanism, and described conveying mechanism comprises:
Bracing frame (10);
The first sliding rail (20), is inclined on support frame as described above (10);
The second sliding rail (30), is inclined at the below that described the first sliding rail (20) was gone up and be positioned to support frame as described above (10);
Switching rail (40), has and can replace the structure being connected with described the first sliding rail (20) or described the second sliding rail (30);
Wherein, the first end away from described switching rail (40) of described the first sliding rail (20) is higher than the second end of the close described switching rail (40) of described the first sliding rail (20), and the first end away from described switching rail (40) of described the second sliding rail (30) is lower than the second end of the close described switching rail (40) of described the second sliding rail (30).
2. the feedway of material cycling case according to claim 1, it is characterized in that, it is upper that described switching rail (40) is arranged at support frame as described above (10) rotationally, has the first state being connected with described the first sliding rail (20) and the second state being connected with described the second sliding rail (20).
3. the feedway of material cycling case according to claim 2, is characterized in that, described switching rail (40) comprising:
Sole-plate (41), be arranged at rotationally on support frame as described above (10), when sole-plate (41) described in described switching rail (40) is during in described the first state is connected with described the first sliding rail (20), when sole-plate (41) described in described switching rail (40) is during in described the second state is connected with described the second sliding rail (20);
Stopper section (42), is arranged on one end of close described the first sliding rail (20) of described sole-plate (41);
Wherein, when described sole-plate (41) is connected with described the second sliding rail (20), described stopper section (42) backstop is in the second end of described the first sliding rail (20).
4. the feedway of material cycling case according to claim 3, it is characterized in that, support frame as described above (10) comprises interconnective for supporting the first bracing frame of described the first sliding rail (20), described the second sliding rail (30) and for supporting the second bracing frame of described switching rail (40), support frame as described above (10) also comprises:
Column (11), one end of described column (11) is fixedly connected with described the second bracing frame, and described sole-plate (41) is connected with the other end of described column (11) rotationally.
5. the feedway of material cycling case according to claim 3, is characterized in that, described stopper section (42) have:
Two strut bars (421), are relatively arranged on described sole-plate (41) upper, and the distance between two described strut bars (421) and the width of material cycling case are suitable;
Gear-stopping bar (422), is connected between two described strut bars (421);
Wherein, when described switching rail (40) is during in described the first state, distance between described gear-stopping bar (422) and described sole-plate (41) is more than or equal to the height of material cycling case, so that described material cycling case is slid on described sole-plate (41) by described the first sliding rail (20); When described switching rail (40) turns to described the second state by described the first state, described material cycling case is slid on described the second sliding rail (30) by described the first sliding rail (20), described gear-stopping bar (422) is positioned at the second end of described the first sliding rail (20), described gear-stopping bar (422) at least partly higher than the second end of described the first sliding rail 20, with backstop, be positioned at material cycling case described in another on described the first sliding rail (20).
6. the feedway of material cycling case according to claim 5, is characterized in that,
Described sole-plate (41) is upper along be provided with at least one row's pulley (411) in the direction of described the second sliding rail (30), and the axis of described pulley (411) is the sense of motion on the second sliding rail (30) perpendicular to described material cycling case.
7. the feedway of material cycling case according to claim 5, is characterized in that, described switching rail (40) also comprises:
Fence (44), comprises the opposite fence (441) that is set in parallel in described gear-stopping bar (422) opposite, and described opposite fence (441) is arranged on described sole-plate (41).
8. the feedway of material cycling case according to claim 7, is characterized in that, described fence (44) also comprises the gusset hurdle (442) of the both sides that are arranged on described sole-plate (41).
9. the feedway of material cycling case according to claim 3, is characterized in that, described switching rail (40) also has:
Handle (43), is arranged on one end away from described the first sliding rail (20) of described sole-plate (41).
10. the feedway of material cycling case according to claim 1, it is characterized in that, described conveying mechanism is two and connects side by side the conveying mechanism arranging, two the first sliding rails (20) are set up in parallel along its length, wherein, two described conveying mechanisms comprise the first guardrail (51) being arranged in parallel, the second guardrail (52) and the 3rd guardrail (53), wherein, the first guardrail (51) and the 3rd guardrail (53) are arranged at respectively the outside of two the first sliding rails (20) along the length direction of the first sliding rail (20), the second guardrail (52) arranges along the junction between two the first sliding rails (20).
The feedway of 11. material cycling casees according to claim 5, it is characterized in that, it is upper that described gear-stopping bar (422) is arranged on two described strut bars (421) movably, and the distance between described gear-stopping bar (422) and described sole-plate (41) is adjustable.
CN201420479098.9U 2014-08-22 2014-08-22 The feedway of material cycling case Active CN203997726U (en)

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107669029A (en) * 2017-09-08 2018-02-09 广汽本田汽车有限公司 Fluent shelf
CN109399053A (en) * 2018-12-21 2019-03-01 永固集团股份有限公司 A kind of material frame switching device
CN110589459A (en) * 2019-09-20 2019-12-20 广汽丰田汽车有限公司 Automatic recycling and conveying device for turnover box
CN112173729A (en) * 2020-09-18 2021-01-05 史丹利化肥遂平有限公司 Fertile automatic control pile up neatly system in bags
CN109399053B (en) * 2018-12-21 2024-04-30 永固集团股份有限公司 Material frame switching device

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107669029A (en) * 2017-09-08 2018-02-09 广汽本田汽车有限公司 Fluent shelf
CN109399053A (en) * 2018-12-21 2019-03-01 永固集团股份有限公司 A kind of material frame switching device
CN109399053B (en) * 2018-12-21 2024-04-30 永固集团股份有限公司 Material frame switching device
CN110589459A (en) * 2019-09-20 2019-12-20 广汽丰田汽车有限公司 Automatic recycling and conveying device for turnover box
CN110589459B (en) * 2019-09-20 2024-03-15 广汽丰田汽车有限公司 Automatic recycling and conveying device for turnover box
CN112173729A (en) * 2020-09-18 2021-01-05 史丹利化肥遂平有限公司 Fertile automatic control pile up neatly system in bags

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