CN207943541U - Transition apparatus with strainer and slab transport system - Google Patents

Transition apparatus with strainer and slab transport system Download PDF

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Publication number
CN207943541U
CN207943541U CN201721655326.3U CN201721655326U CN207943541U CN 207943541 U CN207943541 U CN 207943541U CN 201721655326 U CN201721655326 U CN 201721655326U CN 207943541 U CN207943541 U CN 207943541U
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CN
China
Prior art keywords
transition apparatus
main part
slab
apparatus main
conveyer belt
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CN201721655326.3U
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Chinese (zh)
Inventor
赵治美
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Wanhua Hexiang Group Co ltd
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Wanhua Incense Board Industry Co Ltd
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Abstract

The embodiments of the present invention provide a kind of transition apparatus, including transition apparatus main part, the transition apparatus main part are arranged along slab conveying direction between the upstream slab conveyer belt for conveying slab and the downstream slab conveyer belt for conveying slab.The transition apparatus further includes:Clamping part, for the transition apparatus main part to be clamped;And strainer, for driving the clamping part, to be tensioned the transition apparatus main part.The embodiments of the present invention also provide a kind of slab transport system including the transition apparatus.

Description

Transition apparatus with strainer and slab transport system
Technical field
The utility model belongs to field of plate manufacture, particularly, is related to a kind of transition apparatus and packet with strainer Include the slab transport system of the transition apparatus.
Background technology
In the production line of continuous press of wood-based plate, when using the adhesive producings particieboard such as MDI glue, due to MDI glue etc. The tack of adhesive is very poor, causes slab when by the joining place of upstream slab conveyer belt and downstream slab conveyer belt, holds Press cannot be normally entered, product quality is caused to decline by turned-down edge easily occur, dissipate base and bad phenomenons, the slab such as dropping off, so, How joining place between upstream slab conveyer belt and downstream slab conveyer belt realizes effective connection of the two, ensures slab energy Normal transient is problem to be solved.
CN204263300U discloses a kind of artificial straw slab conveying transition apparatus, slab conveyer belt upstream belt with Between the belt node of downstream, the setting material sliding rebound parallel with belt plane makes the plate blank material of upstream belt pass through Cab apron, horizontal sliding to downstream belt and the stabilization for keeping its form.
CN105712049A discloses a kind of belt conveyor slope corner combination roller, and the combination roller is by holder and installation Two roller groups of setting spacing and roll surface setting height difference are at the feed end mounted on belt conveyor or discharging before and after on holder End makes conveyer belt form slope between two rollers of combination roller, convenient for the seamless sliding of rebound between upstream and downstream conveyer Docking or height overlap small drop docking, and realization is sent material to stablize transition.
However, there are the following problems for existing transition apparatus:Since long-time is conveyed using caused creep and slab The temperature of band (such as press steel belt) influences, and sagging deflections occurs in transition apparatus so that slab cannot smooth smooth transition, occur Slab deformation dissipates the bad phenomenons such as base, fracture and turned-down edge.
Utility model content
In view of above-mentioned technical problem, in order to overcome at least one aspect of above-mentioned problem of the prior art, the utility model Embodiment propose a kind of transition apparatus and the slab transport system including the transition apparatus.
One side according to the present utility model provides a kind of transition apparatus, including transition apparatus main part, the mistake Cross apparatus main body portion along slab conveying direction be arranged for convey the upstream slab conveyer belt of slab with for conveying slab Between the slab conveyer belt of downstream, the transition apparatus further includes:
Clamping part, for the transition apparatus main part to be clamped;With
Strainer, for driving the clamping part, to be tensioned the transition apparatus main part.
Optionally, the transition apparatus main part is rebound or intermediate zone.
For example, the transition apparatus main part has the length direction perpendicular to the slab conveying direction, the tensioning Mechanism drives the clamping part movement, to be tensioned the transition apparatus main body along the length direction of the transition apparatus main part Portion.
For example, the strainer includes tension screw and tensioning nut, wherein the tension screw is connected to the folder Portion is held, the tensioning nut coordinates with the tension screw, to drive the clamping part to move.
For example, the clamping part includes the first clamping branch and the second clamping branch, first clamping branch and described The cooperation of second clamping branch is to be clamped the marginal portion of the transition apparatus main part.
For example, first clamping branch is grip slipper, second clamping branch is pressing plate, is arranged on the grip slipper There is receiving portion, to receive the marginal portion of the pressing plate and the transition apparatus main part, the pressing plate is by the transition apparatus The marginal portion of main part is compressed towards the grip slipper.
For example, the transition apparatus further includes grip bolt, the marginal portion of the transition apparatus main part is described in Grip bolt is clamped between the grip slipper and the pressing plate.
For example, the transition apparatus further includes mounting portion, for installing the transition apparatus to carrying the upstream plate In the rack of base conveyer belt or the rack of the carrying downstream slab conveyer belt.
For example, the transition apparatus further includes height adjustment mechanism, for adjusting the clamping part along the position of short transverse It sets, to adjust the transition apparatus main part along the position of the short transverse, wherein the short transverse is perpendicular to described The length direction of slab conveying direction and the transition apparatus main part.
For example, the height adjustment mechanism includes adjusting bolt and adjusting nut, the adjusting bolt is connected to the folder Seat is held, the adjusting nut coordinates with the adjusting bolt, to adjust the grip slipper along the position of the short transverse.
For example, the mounting portion includes mounting base and connecting seat, the mounting base receives the clamping part, the connecting seat It is connected to the rack for carrying the upstream slab conveyer belt or the rack of the carrying downstream slab conveyer belt.
For example, the transition apparatus further includes installation bolt and installation nut, for connecting and fixing the connecting seat To the rack of the rack or the carrying downstream slab conveyer belt that carry the upstream slab conveyer belt.
For example, the transition apparatus includes at least two strainers, at least two strainer is described in The length direction of transition apparatus main part is separately positioned on the both sides of the transition apparatus main part.
For example, the clamping part includes the first clamping part and the second clamping part, first clamping part and second folder The both sides that portion is separately positioned on the transition apparatus main part along the length direction of the transition apparatus main part respectively are held, to divide First edge part and the second edge portion of the transition apparatus main part, the first edge part and the second side are not clamped Edge is located at the both sides of the transition apparatus main part along its length;With
The strainer includes the first strainer and the second strainer, first strainer and described second Strainer is separately positioned on the both sides of the transition apparatus main part along the length direction of the transition apparatus main part, described First strainer is connected to first clamping part, and second strainer is connected to second clamping part, and described One strainer and second strainer interaction, to respectively drive first clamping part and second clamping Portion, to be tensioned the transition apparatus main part along the length direction of the transition apparatus main part.
For example, first strainer includes the first tension screw and the first tensioning nut, the first clamping part packet The first grip slipper is included, first tension screw is connected to first grip slipper, first tensioning nut and described first Tension screw coordinates, to drive first clamping part to move;
And/or second strainer includes the second tension screw and the second tensioning nut, the second clamping part packet The second grip slipper is included, second tension screw is connected to second grip slipper, second tensioning nut and described second Tension screw coordinates, to drive second clamping part to move.
Optionally, the material of the transition apparatus main part includes steel.
Optionally, the upstream slab conveyer belt is the belt of belt conveyer, and/or, the downstream slab conveyer belt For press steel belt.
Optionally, the transition apparatus main part includes belt protection portion, and the belt protection portion is arranged in the transition Apparatus main body portion is close to the side of the belt.
Another aspect according to the present utility model provides a kind of slab transport system, including upstream slab conveyer belt, downstream Slab conveyer belt and the transition apparatus being arranged between the upstream slab conveyer belt and the downstream slab conveyer belt, wherein The transition apparatus is any of the above-described transition apparatus.
Optionally, the upstream slab conveyer belt is the belt of belt conveyer, and/or, the downstream slab conveyer belt For press steel belt.
In above-mentioned transition apparatus and slab transport system, by the way that clamping part and strainer are arranged in transition apparatus, Transition apparatus main part is tensioned, transition apparatus creep caused by long-time use and slab conveying are avoided The temperature of band (such as press steel belt) influences and sagging deflections (such as central region sinking) occurs, so as to ensure that slab can be from Upstream slab conveyer belt smoothly smoothly transits on the slab conveyer belt of downstream, avoids the occurrence of slab deformation, dissipates base, is broken and collapses The bad phenomenons such as side.
Description of the drawings
By below with reference to attached drawing to being described made by the utility model, the other objects and advantages of the utility model will It is clear that can simultaneously help to be fully understood by the utility model.It should be noted that attached drawing is not necessarily to scale to paint System, but only shown with the illustrative way for not influencing reader's understanding.
Fig. 1 is the local overlooking schematic diagram according to the transition apparatus of the exemplary embodiment of the utility model;
Fig. 2 is the local schematic front view of the transition apparatus in Fig. 1;
Fig. 3 is the schematic top plan view according to the transition apparatus of the exemplary embodiment of the utility model;
Fig. 4 is the schematic front view of the transition apparatus in Fig. 3;
Fig. 5 is the stereoscopic schematic diagram according to the transition apparatus main part of the exemplary embodiment of the utility model;And
Fig. 6 be show the transition apparatus of exemplary embodiment according to the present utility model be installed on upstream slab conveyer belt with Schematic diagram between the slab conveyer belt of downstream.
[reference numerals list]
1:Transition apparatus main part;
1a:First edge part;
1b:Second edge portion;
12:Hole;
2:Clamping part;
21:First clamping branch (or grip slipper);
212:Hole;
22:Second clamping branch (or pressing plate);
222:Hole
2a:First clamping part;
2b:Second clamping part;
21a:First grip slipper;
22a:First pressing plate;
21b:Second grip slipper;
22b:Second pressing plate;
25:Grip bolt;
4:Strainer;
41:Tension screw;
42:Tensioning nut;
4a:First strainer;
4b:Second strainer;
41a:First tension screw;
42a:First tensioning nut;
41b:Second tension screw;
42b:Second tensioning nut;
6:Mounting portion;
61:Mounting base;
62:Connecting seat;
621:Threaded hole;
6a:First mounting portion;
6b:Second mounting portion;
63:Installation bolt;
64:Nut is installed;
8:Height adjustment mechanism;
81:Adjusting bolt;
82:Adjusting nut;
10:Transition apparatus;
20:Upstream slab conveyer belt (such as belt);
30:Downstream slab conveyer belt (such as steel band);
32:Rack.
Specific implementation mode
To keep the purpose of this utility model, technical solution and advantage clearer, implement below in conjunction with the utility model The attached drawing of example, is clearly and completely described the technical solution of the utility model.Obviously, described embodiment is this reality With novel one embodiment, instead of all the embodiments.Based on described the embodiments of the present invention, this field is general The every other embodiment that logical technical staff is obtained under the premise of without creative work belongs to the utility model protection Range.
Unless otherwise defined, the technical term or scientific terminology that the utility model uses are should be belonging to the utility model The ordinary meaning that the personage with general technical ability is understood in field.
Herein, statement " particieboard " refers to that timber or non-wood plant fibre Raw material processing is (or broken at wood shavings Material), apply adhesive (and/or other additives), assembly is molded and through a kind of wood-based plate made of hot pressing.
Statement " stalk " be the general name of ripe crops cauline leaf (fringe) part, for example, may include wheat, rice, corn, The remainder of potato, rape, cotton, sugarcane and other crops (being usually coarse food grain) after harvesting seed.
Herein, belt conveyor refers to machinery using travelling belt as the continuative transport of traction and load bearing component. In belt conveyor, travelling belt pile warp driving drum and various bend pulleys give tensile force appropriate, work by tension device When making under the drive of the drive, by the frictional force and tensile force between roller and travelling belt, travelling belt is made to run. Material is continuously sent on conveyer belt, and as conveyer belt moves together, to realize the conveying to material.For example, belt Conveyer may include the belt conveyor for conveying slab in the section of mating formation of artificial board product line.
Herein, for convenience, three directions are defined, specifically, " slab conveying direction " fingerboard base is upper The direction of motion on slab conveyer belt, transition apparatus and downstream slab conveyer belt is swum, is indicated with direction X in figure;" transition apparatus The length direction of main part " refers to perpendicular to the direction of the slab conveying direction in conveyer belt plane, and direction Y tables are used in figure Show;" short transverse " refers to the direction of the length direction perpendicular to the slab conveying direction and the transition apparatus main part, It is indicated with direction Z in figure.
An exemplary embodiment according to the present utility model, provides a kind of transition apparatus, including transition apparatus main part, The transition apparatus main part along slab conveying direction be arranged for convey the upstream slab conveyer belt of slab with for conveying Between the downstream slab conveyer belt of slab, the transition apparatus further includes:Clamping part, for the transition apparatus main body to be clamped Portion;And strainer, for driving the clamping part, to be tensioned the transition apparatus main part.
In above-mentioned transition apparatus, by the way that clamping part and strainer is arranged so that transition apparatus main part can be opened Tightly, avoiding the temperature of transition apparatus creep caused by long-time use and slab conveyer belt (such as press steel belt) influences And there are sagging deflections (such as central region sinking), so as to ensure that slab can be from the smooth smoothly mistake of upstream slab conveyer belt It crosses to the slab conveyer belt of downstream, avoids the occurrence of slab deformation, dissipates the bad phenomenons such as base, fracture and turned-down edge.
In the following, will be described in further detail on the basis of the attached diagram the structure of the transition apparatus according to the utility model embodiment.
As shown in Figure 1, the transition apparatus may include transition apparatus main part 1.Transition apparatus main part 1 can be Cab apron or intermediate zone, as shown in figure 5, transition apparatus main part 1 can be formed from steel, i.e., transition apparatus main part 1 can be steel Plate or steel band, for example, steel plate or steel band made of 304 steel.
As shown in fig. 6, the transition apparatus main part 1 can be arranged along slab conveying direction X for conveying slab Between upstream slab conveyer belt 20 and downstream slab conveyer belt 30 for conveying slab.According to an example, upstream slab is defeated It can be the belt of belt conveyer to send band 20, and downstream slab conveyer belt 30 can be press steel belt, such as artificial for manufacturing The steel band of the continuous press of plate.As shown in fig. 6, being conveyed in slab between upstream slab conveyer belt 20 and downstream slab conveyer belt 30 There are gaps on the X of direction, such as the X indicated in Fig. 6gap.Moreover, downstream slab conveyer belt 30 (such as press steel belt) enters in press 18 °~23 ° of inlet angle d (as shown in Figure 6) can be generally set at mouthful, so under upstream slab conveyer belt 20 and inlet Trip slab conveyer belt 30 can also have certain difference in height on short transverse Z, such as the Z indicated in Fig. 6gap.By the way that transition is filled Set main part 1 along slab conveying direction X be arranged for convey the upstream slab conveyer belt 20 of slab with for conveying slab Between downstream slab conveyer belt 30, above-mentioned X can be made upgapAnd Zgap, realize slab from the smoothly mistake of upstream slab conveyer belt 20 It crosses to downstream slab conveyer belt 30.
Exemplary embodiment according to the present utility model, as shown in Fig. 2, the transition apparatus further includes:Clamping part 2 is used In the clamping transition apparatus main part;With strainer 4, for driving the clamping part 2, to be tensioned the transition apparatus master Body portion 1.As shown in Figure 1, transition apparatus main part 1 has the length direction Y perpendicular to the slab conveying direction X, tensioning device Structure 4 drives clamping part 2 to move, with along the length direction Y tensioning transition apparatus main part 1 of the transition apparatus main part 1.
With reference to Fig. 2, clamping part 2 may include clamping branch 22 of the first clamping branch 21 and second, the first clamping branch 21 Coordinate so that the marginal portion of the transition apparatus main part 1 is clamped with the second clamping branch 22.For example, the first clamping branch 21 can Think grip slipper, the second clamping branch 22 can be pressing plate, receiving portion is provided on grip slipper 21, to receive pressing plate 22 and transition The marginal portion in apparatus main body portion 1, pressing plate 22 compress the marginal portion of transition apparatus main part 1 towards grip slipper 21.
As an example, the transition apparatus can also include grip bolt 25, the edge part of transition apparatus main part 1 Divide and is clamped between grip slipper 21 and pressing plate 22 by grip bolt 25.For example, as shown in figure 5, transition apparatus main part 1 It could be formed with hole 12 in marginal portion.Correspondingly, hole 212 is could be formed in grip slipper 21, could be formed in pressing plate 22 Hole 222.Optionally, hole 212 is threaded hole, and hole 222 and hole 12 are threaded hole or through-hole.When installation, make the hole in pressing plate 22 222, the hole 212 in the hole 12 and grip slipper 21 in the marginal portion of transition apparatus main part 1 is mutually aligned, and spiral shell then will be clamped Bolt 25 is inserted into three holes 222,12 and 212 of alignment and tightens, to make clamping part 2 clamp transition apparatus main part 1.It is optional Ground, above-mentioned hole 12 can be omitted, that is, could be formed with hole 212 in grip slipper 21, hole 222 is could be formed in pressing plate 22.It is optional Ground, hole 212 are threaded hole, and hole 222 is threaded hole or through-hole.When installation, make the hole in the hole 222 and grip slipper 21 in pressing plate 22 212 are mutually aligned, and then grip bolt 25 is inserted into two holes 222 and 212 of alignment and is tightened, to make clamping part 2 press from both sides Tight transition apparatus main part 1.
As an example, as shown in Figure 1, strainer 4 includes tension screw 41 and tensioning nut 42, wherein tensioning Lead screw 41 is connected to clamping part 2, and tensioning nut 42 coordinates with tension screw 41, to drive clamping part 2 to move.For example, referring to Fig. 1 And Fig. 2, tension screw 41 are connected to grip slipper 21, and tensioning nut 42 coordinates with tension screw 41, to drive grip slipper 21 to move, To which the transition apparatus main part 1 for driving grip slipper 21 and pressing plate 22 to be clamped moves, to be tensioned transition apparatus main part 1.
In general, the installation space between the slab conveyer belt of upstream and downstream is limited, by designing above-mentioned transition apparatus, Ke Yi The tensioning that transition apparatus main part is realized in the limited installation space, solves the problems, such as exist for a long time in this field.
For example, as shown in Fig. 2, the transition apparatus can also include mounting portion 6, for by the transition apparatus install to It carries in the rack of the upstream slab conveyer belt 20 or the rack of the carrying downstream slab conveyer belt 30.Shown in Fig. 2 In exemplary embodiment, mounting portion 6 installs shown transition apparatus to carrying (such as the press steel of the downstream slab conveyer belt 30 Band) rack 32 (such as press frame) on.
Optionally, the mounting portion 6 may include mounting base 61 and connecting seat 62, and the mounting base 61 receives the clamping Portion 2, the connecting seat 62 are connected to the rack for carrying the upstream slab conveyer belt 20 or the carrying downstream slab conveyer belt 30 rack.As an example, mounting base 61 and connecting seat 62 may be integrally formed, for example, mounting base 61 and connecting seat 62 It may be formed integrally as the frame structure of " h " shape.
As shown in Fig. 2, the transition apparatus can also include installation bolt 63 and installation nut 64, it is used for the connection Seat 62 connects and is fixed to the rack for carrying the upstream slab conveyer belt or the rack of the carrying downstream slab conveyer belt.Such as Shown in Fig. 2, threaded hole 621 is formed on the side of connecting seat 62, for receiving installation bolt 63, installation bolt 63 and installation spiral shell Mother 64 coordinates, and connecting seat 62 is connected and is fixed in the rack 32 for carrying the downstream slab conveyer belt 30.
For example, as shown in Fig. 2, the transition apparatus can also include height adjustment mechanism 8, for adjusting the clamping part 2 along the position of short transverse Z, to adjust the transition apparatus main part 1 along the position of the short transverse Z.Under described Slab conveyer belt 30 is swum as in the exemplary embodiment of press steel belt, on the one hand, press needs the plate of compression moulding different-thickness Base, to form the plank of different-thickness;On the other hand, in press compression moulding slab, the central axis for ensureing slab is needed Overlapped with the central axis of press, for example, it is desired to ensure slab along the short transverse central axis and press along the height The central axis for spending direction overlaps.Just because of this, in the slab of compression moulding different-thickness, need to adjust slab along the height Spend the position in direction so that slab along the short transverse central axis and press along the short transverse central axis weight It closes.By the way that height adjustment mechanism is arranged in the transition apparatus, transition apparatus main part can be adjusted along the short transverse Position, when to make to be delivered to press from transition apparatus slab along central axis and the press of the short transverse along the height The central axis for spending direction overlaps.
As an example, as shown in Fig. 2, the height adjustment mechanism 8 may include adjusting bolt 81 and adjusting nut 82.As shown in Fig. 2, adjusting bolt 81 can be connected to grip slipper 21, adjusting nut 82 coordinates with adjusting bolt 81, to adjust folder Seat 21 is held along the position of the short transverse Z, to adjust the transition apparatus main part 1 of grip slipper 21 and the clamping of pressing plate 22 along height Spend the position of direction Z.
In the following, describing exemplary embodiment according to the present utility model further combined with Fig. 3 to Fig. 6.
As shown in Figure 3 and Figure 4, exemplary embodiment according to the present utility model, the transition apparatus include at least two Clamping part 2, such as the first clamping part 2a and the second clamping part 2b, the first clamping part 2a and the second clamping part 2b are filled along the transition The length direction Y for setting main part is separately positioned on the both sides of the transition apparatus main part 1, the transition apparatus to be clamped respectively The first edge part 1a and second edge portion 1b, the first edge part 1a and 1b points of second edge portion of main part 1 It Wei Yu not the both sides of the transition apparatus main part 1 along its length.
Further, the transition apparatus includes at least two strainers 4, such as the first strainer 4a and the The length direction Y difference of two strainer 4b, the first strainer 4a, the second strainer 4b along the transition apparatus main part It is arranged in the both sides of the transition apparatus main part 1.For example, the first strainer 4a is connected to first clamping part 2a, the second strainer 4b are connected to the second clamping part 2b, the first strainer 4a and second tensioning Mechanism 4b interacts, to respectively drive the first clamping part 2a and the second clamping part 2b, to be filled along the transition The length direction Y for setting main part is tensioned the transition apparatus main part 1.In one example, above-mentioned " interaction " can wrap The first strainer 4a and the second strainer 4b is included respectively to apply to the first clamping part 2a and the second clamping part 2b Pulling force, to which the length direction Y along the transition apparatus main part is tensioned the transition apparatus main part 1.
Specifically, the first strainer 4a includes the first tension screw 41a and the first tensioning nut 42a, and described the One clamping part 2a includes that the first grip slipper 21a and the first pressing plate 22a, the first tension screw 41a are connected to first folder A 21a, the first tensioning nut 42a and the first tension screw 41a cooperation are held, to drive the first clamping part 2a to transport It is dynamic.Additionally or alternatively, the second strainer 4b includes the second tension screw 41b and the second tensioning nut 42b, institute It includes the second grip slipper 21b and the second pressing plate 22b to state the second clamping part 2b, and the second tension screw 41b is connected to described the Two grip slipper 21b, the second tensioning nut 42b and the second tension screw 41b coordinates, to drive second clamping part 2b is moved.
For example, the transition apparatus may include at least two mounting portions, such as the first mounting portion 6a and the second mounting portion 6b, for respectively by the first clamping part 2a, the first strainer 4a and the second clamping part 2b, the second strainer 4b install to In rack.
Referring back to Fig. 3, as an example, in transition apparatus main part 1 along the side of the length direction Y, that is, exist At the 1a of its first edge part, 4 grip bolts 25 can be set, to apply uniform chucking power so that clamping part jail Gu and transition apparatus main part is reliably clamped.
Referring back to Fig. 3, as an example, in transition apparatus main part 1 along the side of the length direction Y, that is, exist At the 1a of its first edge part, 2 the first strainer 4a can be set.2 the first strainer 4a are along described Slab conveying direction X is separately positioned on the both sides of the transition apparatus main part 1.Correspondingly, in transition apparatus main part 1 along institute The other side of length direction Y is stated, i.e., at the 1b of its first edge part, 2 the first strainer 4b can also be set.2 A first strainer 4b is separately positioned on the both sides of the transition apparatus main part 1 along the slab conveying direction X.It leans on One the first strainer 4a of nearly upstream slab conveyer belt (such as belt in Fig. 3) 20 sides and one described second Strainer 4b can form the first strainer group, first tensioning device close to 30 side of downstream slab conveyer belt Structure 4a and the second strainer 4b can form the second strainer group, the first strainer group and the second tensioning device Structure group gives the first clamping part 2a and the second clamping part 2b to apply pulling force so that the transition apparatus main part is in its entire width It is all tensioned on direction (the i.e. described slab conveying direction X), that is, ensure transition apparatus main part in its entire width direction all Be not in sagging deflections (such as central region sinking), so as to ensure that slab can be from upstream slab conveyer belt smoothly smoothly It transits on the slab conveyer belt of downstream, avoids the occurrence of slab deformation, dissipates the bad phenomenons such as base, fracture and turned-down edge.
Referring back to Fig. 3, as an example, in transition apparatus main part 1 along the side of the length direction Y, that is, exist At the 1a of its first edge part, 2 height adjustment mechanisms 8 can be set.2 height adjustment mechanisms 8 are along the plate Base conveying direction X is separately positioned on the both sides of the transition apparatus main part 1.Correspondingly, in transition apparatus main part 1 along described 2 height adjustment mechanisms 8 can also be arranged that is, at the 1b of its first edge part in the other side of length direction Y.2 institutes State the both sides that height adjustment mechanism 8 is separately positioned on the transition apparatus main part 1 along the slab conveying direction X.Pass through this The setting of sample can preferably adjust the transition apparatus main part along the position of the short transverse Z.
For example, the material of the transition apparatus main part 1 may include at least one selected from following material:Such as The metal material of steel or copper, for example, titanium alloy or manganese alloy metal alloy compositions, such as polytetrafluoroethylene (PTFE) hard plastic material.It is attached Add ground or selectively, the transition apparatus main part 1 at least contact slab surface can apply high-temperaure coating or receive Rice material coating, such as nano oxidized aluminized coating.Additionally or alternatively, at least contact of the transition apparatus main part 1 The surface of slab can pass through surface treatment, such as sandblasting, ball blast, polishing, tumbling, polishing, scratch brushing, spraying, electrophoresis, differential of the arc oxygen The process of surface treatment such as change, plating, to improve the surface smoothness that the transition apparatus main part contacts the surface of slab, example Such as, it is improved to 7 grades or more as defined in standard GB/T 1031-1968 of surface smoothness.
Optionally, the transition apparatus main part 1 may include belt protection portion (not shown), and the belt protection portion is set It sets in the transition apparatus main part 1 close to the side of the belt, to prevent the transition apparatus main part 1 from surprisingly touching skin Band and scratch belt.For example, the belt protection portion can be can wear made of the abradable material of such as rubber.Separately Outside, by setting belt protection portion, the gap between the transition apparatus main part and belt can be further decreased, thus into One step ensures the smooth smooth transition of slab.
Exemplary embodiment according to the present utility model also provides a kind of slab transport system, as shown in fig. 6, including upper Slab conveyer belt 20, downstream slab conveyer belt 30 and setting is swum to convey in the upstream slab conveyer belt 20 and the downstream slab With the transition apparatus 10 between 30.The transition apparatus 10 is the transition apparatus above described according to Fig. 1-5.
For example, the upstream slab conveyer belt 20 can be the belt of belt conveyer, and/or, the downstream slab is defeated It can be press steel belt to send band 30.18 °~23 ° of inlet angle α can be arranged in press inlet in the press steel belt, such as scheme Shown in 6.
It should be noted that in attached drawing or specification text, the realization method for not being painted or describing is affiliated technology Form known to a person of ordinary skill in the art, is not described in detail in field.In addition, the above-mentioned definition to each element and method is simultaneously It is not limited only to various concrete structures, shape or the mode mentioned in embodiment.
It should also be noted that, the demonstration of the parameter comprising particular value can be provided herein, but these parameters are without definite etc. In corresponding value, but analog value can be similar in acceptable error margin or design constraint.
Particular embodiments described above has carried out into one the purpose of this utility model, technical solution and advantageous effect Step is described in detail, it should be understood that the foregoing is merely specific embodiment of the utility model, are not limited to this reality With novel, within the spirit and principle of the utility model, any modification, equivalent substitution, improvement and etc. done should all include It is within the protection scope of the utility model.
It should be noted that in attached drawing or specification text, the realization method for not being painted or describing is affiliated technology Form known to a person of ordinary skill in the art, is not described in detail in field.In addition, the above-mentioned definition to each element and method is simultaneously It is not limited only to various concrete structures, shape or the mode mentioned in embodiment, those of ordinary skill in the art can carry out letter to it It singly changes or replaces.

Claims (20)

1. a kind of transition apparatus, including transition apparatus main part, the transition apparatus main part is arranged along slab conveying direction Between upstream slab conveyer belt for conveying slab and the downstream slab conveyer belt for conveying slab, which is characterized in that institute Stating transition apparatus further includes:
Clamping part, for the transition apparatus main part to be clamped;With
Strainer, for driving the clamping part, to be tensioned the transition apparatus main part.
2. transition apparatus according to claim 1, which is characterized in that the transition apparatus main part is rebound or transition Band.
3. transition apparatus according to claim 1 or 2, which is characterized in that the transition apparatus main part have perpendicular to The length direction of the slab conveying direction, the strainer drives the clamping part movement, with along the transition apparatus master The length direction in body portion is tensioned the transition apparatus main part.
4. transition apparatus according to claim 1, which is characterized in that the strainer includes tension screw and tensioning spiral shell It is female, wherein the tension screw is connected to the clamping part, and the tensioning nut coordinates with the tension screw, to drive State clamping part movement.
5. transition apparatus according to claim 1, which is characterized in that the clamping part includes the first clamping branch and second Branch is clamped, the first clamping branch and the cooperation of second clamping branch are to be clamped the edge of the transition apparatus main part Part.
6. transition apparatus according to claim 5, which is characterized in that first clamping branch is grip slipper, described the Two clamping branches are pressing plate, receiving portion are provided on the grip slipper, to receive the pressing plate and the transition apparatus main part Marginal portion, the pressing plate compresses the marginal portion of the transition apparatus main part towards the grip slipper.
7. transition apparatus according to claim 6, which is characterized in that the transition apparatus further includes grip bolt, described The marginal portion of transition apparatus main part is clamped in by the grip bolt between the grip slipper and the pressing plate.
8. transition apparatus according to claim 1, which is characterized in that the transition apparatus further includes mounting portion, and being used for will The transition apparatus is installed to the rack of the rack or the carrying downstream slab conveyer belt that carry the upstream slab conveyer belt On.
9. transition apparatus according to claim 1, which is characterized in that the transition apparatus further includes height adjustment mechanism, For adjusting the clamping part along the position of short transverse, to adjust the transition apparatus main part along the short transverse Position, wherein length direction of the short transverse perpendicular to the slab conveying direction and the transition apparatus main part.
10. transition apparatus according to claim 9, which is characterized in that the height adjustment mechanism include adjusting bolt and Adjusting nut, the adjusting bolt are connected to the grip slipper, and the adjusting nut coordinates with the adjusting bolt, to adjust Grip slipper is stated along the position of the short transverse.
11. transition apparatus according to claim 8, which is characterized in that the mounting portion includes mounting base and connecting seat, institute Stating mounting base receives the clamping part, the connecting seat to be connected to described in the rack for carrying the upstream slab conveyer belt or carrying The rack of downstream slab conveyer belt.
12. transition apparatus according to claim 11, which is characterized in that the transition apparatus further includes installation bolt and peace Loading nut carries rack or the carrying downstream of the upstream slab conveyer belt for connecting and being fixed to by the connecting seat The rack of slab conveyer belt.
13. transition apparatus according to claim 3, which is characterized in that the transition apparatus includes at least two described Tight mechanism, at least two strainer are separately positioned on the transition dress along the length direction of the transition apparatus main part Set the both sides of main part.
14. transition apparatus according to claim 3, which is characterized in that the clamping part includes the first clamping part and second Clamping part, the length direction of first clamping part and second clamping part respectively along the transition apparatus main part are set respectively It sets in the both sides of the transition apparatus main part, the first edge part and second of the transition apparatus main part to be clamped respectively Marginal portion, the first edge part and second edge portion are located at the transition apparatus main part along its length Both sides;With
The strainer includes the first strainer and the second strainer, and first strainer and described second are tensioned Mechanism is separately positioned on the both sides of the transition apparatus main part along the length direction of the transition apparatus main part, and described first Strainer is connected to first clamping part, and second strainer is connected to second clamping part, described first Tight mechanism and second strainer interaction, to respectively drive first clamping part and second clamping part, from And it is tensioned the transition apparatus main part along the length direction of the transition apparatus main part.
15. transition apparatus according to claim 14, which is characterized in that first strainer includes the first tensioning pole wire Bar and the first tensioning nut, first clamping part include the first grip slipper, and first tension screw is connected to described first Grip slipper, first tensioning nut coordinate with first tension screw, to drive first clamping part to move;
And/or second strainer includes the second tension screw and the second tensioning nut, second clamping part includes the Two grip slippers, second tension screw are connected to second grip slipper, and second tensioning nut is tensioned with described second Lead screw coordinates, to drive second clamping part to move.
16. transition apparatus according to claim 1, which is characterized in that the material of the transition apparatus main part include from At least one selected in following material:Steel, copper, titanium alloy, manganese alloy or hard plastic material;
And/or the surface of at least contact slab of the transition apparatus main part is applied coated with high-temperaure coating or nano material Layer;
And/or the surface of at least contact slab of the transition apparatus main part is by surface treatment.
17. transition apparatus according to claim 1, which is characterized in that the upstream slab conveyer belt is belt conveyer Belt, and/or, the downstream slab conveyer belt be press steel belt.
18. transition apparatus according to claim 17, which is characterized in that the transition apparatus main part includes belt protection Portion, the belt protection portion are arranged in the transition apparatus main part close to the side of the belt.
19. a kind of slab transport system, including upstream slab conveyer belt, downstream slab conveyer belt and setting are in the upstream slab Transition apparatus between conveyer belt and the downstream slab conveyer belt, which is characterized in that the transition apparatus is to be wanted according to right Seek the transition apparatus described in any one of 1-18.
20. slab transport system according to claim 19, which is characterized in that the upstream slab conveyer belt is transported for belt The belt of defeated machine, and/or, the downstream slab conveyer belt is press steel belt.
CN201721655326.3U 2017-12-01 2017-12-01 Transition apparatus with strainer and slab transport system Active CN207943541U (en)

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Application Number Priority Date Filing Date Title
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Application Number Priority Date Filing Date Title
CN201721655326.3U CN207943541U (en) 2017-12-01 2017-12-01 Transition apparatus with strainer and slab transport system

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107826713A (en) * 2017-12-01 2018-03-23 万华生态板业(信阳)有限公司 Transition apparatus and slab induction system with strainer

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107826713A (en) * 2017-12-01 2018-03-23 万华生态板业(信阳)有限公司 Transition apparatus and slab induction system with strainer

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Patentee before: Wanhua Hexiang Board Industry Co.,Ltd.