CN218595455U - Bar conveying roller way - Google Patents

Bar conveying roller way Download PDF

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Publication number
CN218595455U
CN218595455U CN202222278691.4U CN202222278691U CN218595455U CN 218595455 U CN218595455 U CN 218595455U CN 202222278691 U CN202222278691 U CN 202222278691U CN 218595455 U CN218595455 U CN 218595455U
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China
Prior art keywords
steel
guide groove
conveying surface
conveying
steel resistance
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CN202222278691.4U
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Chinese (zh)
Inventor
朱红安
朱润泽
刘卫陵
张铁
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Daye Special Steel Co Ltd
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Daye Special Steel Co Ltd
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Priority to CN202222278691.4U priority Critical patent/CN218595455U/en
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Publication of CN218595455U publication Critical patent/CN218595455U/en
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Abstract

The utility model provides a bar conveying roller way, which comprises a frame body, a conveying roller group and a steel blocking device, wherein the conveying roller group is provided with a conveying surface, a first gap is formed on the conveying surface, and the extending direction of the first gap is parallel to the conveying surface and is vertical to the conveying direction of the conveying surface; the steel resistance device comprises a steel resistance part and a power mechanism, the steel resistance part can be arranged on the frame body in a movable mode along a first direction, the steel resistance part has a first state and a second state when moving along the first direction relative to the frame body, and when the steel resistance part is in the first state, at least one part of the steel resistance part extends out of the conveying surface from the first gap; when the steel resistance component is in the second state, the steel resistance component is not higher than the conveying surface; the included angle between the first direction and the conveying surface is 60-120 degrees; the power mechanism is used for driving the steel resistance component to act. The roller way has the advantages of small volume, simple structure, short action time, better guidance, difficult accumulation of oxide skin and dust, high reliability, and extremely low maintenance and operation cost.

Description

Bar conveying roller way
Technical Field
The utility model relates to a rod hinders steel technical field, in particular to rod rollgang.
Background
In actual metallurgical production, the produced bars need to be centrally and longitudinally conveyed on a roller bed after being cooled on a cooling bed, and the bars need to be subjected to steel resistance and steel division according to the variety and specification of the bars in the conveying process so as to prevent steel mixing. At present, the known steel resistance device for conveying the bar by the roller way mainly adopts a mode of horizontally installing below the roller way of the bar, and the steel resistance component is mainly arranged in a direction parallel to the roller way. The horizontal pneumatic steel resistance device is arranged on the side face of a roller way line, a small-specification long-stroke cylinder is used as an actuating element to be connected with a baffle plate of a lower roller, and the baffle plate is guided by a single horizontal guide groove arranged below the roller way to stretch.
The cylinder of the horizontal steel resistance device has the stroke exceeding 1 meter, large floor area and long action time, and the guide groove is horizontally arranged below the flat roller way, so that oxide skin and dust are easy to accumulate and are difficult to clean.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a bar rollgang for overcome foretell problem.
The utility model discloses a realize through following technical scheme:
the utility model provides a bar rollgang, its improvement lies in, includes support body, conveying roller set and hinders the steel device, wherein:
the conveying roller group is provided with a conveying surface, a first gap is formed on the conveying surface, and the extending direction of the first gap is parallel to the conveying surface and is vertical to the conveying direction of the conveying surface;
the steel resistance device comprises a steel resistance part and a power mechanism, the steel resistance part can be movably arranged on the frame body along a first direction, the steel resistance part has a first state and a second state when moving along the first direction relative to the frame body, and when the steel resistance part is in the first state, at least one part of the steel resistance part extends out of the conveying surface from the first gap; when the steel resistance component is in a second state, the steel resistance component is not higher than the conveying surface;
the included angle between the first direction and the conveying surface ranges from 60 degrees to 120 degrees;
the power mechanism is used for driving the steel resistance component to act.
Further, in the bar conveying roller way, the frame body is provided with a guide mechanism, and the guide mechanism is used for guiding the steel resistance component when moving.
Further, in foretell rod rollgang, follow the extending direction in first clearance, one side of conveying roller set is equipped with first cell body, and the opposite side is equipped with the second cell body, wherein, guiding mechanism includes:
the opening of the first guide groove faces to the second groove body, the extending direction of the first guide groove is parallel to the first direction, and one side edge of the steel resistance component is in sliding fit with the first guide groove;
and/or the presence of a gas in the atmosphere,
the second guide groove is formed in the second groove body, the opening of the second guide groove faces the first groove body, the extending direction of the second guide groove is parallel to the first direction, and one side edge of the steel blocking component is in sliding fit with the second guide groove.
Further, in the bar conveying roller way, the first groove body and the second groove body are fixedly connected with the frame body.
Further, in foretell rod rollgang, the support body includes support, first curb plate and second curb plate, first curb plate forms first cell body, the second curb plate forms the second cell body, first curb plate with the second curb plate sets up relatively, the conveying roller set is located first curb plate with between the second curb plate, and install in the support.
Further, in the bar conveying roller way, an inclined surface which becomes thicker gradually along the direction from the notch to the bottom of the groove is arranged on the outer edge of one side of the notch of the first guide groove or the second guide groove.
Furthermore, in the bar conveying roller way, blocking brushes are arranged on the edges of the notches of the first guide groove and the second guide groove.
Further, in the bar conveying roller way, the power mechanism is a telescopic lever assembly, the telescopic cylinder assembly is provided with a cylinder body and a telescopic rod, the cylinder body is used for being fixedly connected with a fixing piece, and the fixing piece is relatively fixed with the frame body; one end of the telescopic rod extends into the cylinder body, and the other end of the telescopic rod is connected with the steel blocking component.
Further, in the bar conveying roller way, the cylinder body is connected with the fixing member through a first rotating shaft, the cylinder body can rotate around an axis of the first rotating shaft relative to the fixing member, and the axis of the first rotating shaft is parallel to the extending direction of the first gap.
Further, in the bar conveying roller way, the telescopic rod is connected with the steel resistance component through a second rotating shaft, the steel resistance component can rotate around the axis of the second rotating shaft relative to the telescopic rod, and the axis of the second rotating shaft is perpendicular to the extending direction of the first gap.
The analysis can know, the utility model discloses a bar rollgang, including power unit and resistance steel part, it all has adopted vertical direction arrangement with power unit and resistance steel part, only needs all to install power unit in the top of current bar rollgang or below, all installs the guide way in one side and/or both sides of rollgang simultaneously, can ensure to hinder steel part and be vertical motion along the guide way and realize hindering the steel. By arranging the power mechanism and the steel resistance component, the problem that the occupied area of a steel resistance device arranged on the existing bar conveying roller way is large is solved, and the problem that the stroke of an air cylinder is too large due to the fact that the guide groove and the air cylinder are horizontally arranged in the existing steel resistance device is solved. Additionally, the utility model discloses a set up vertical guide way, the effectual deposition, the deposition scheduling problem that exists of the guide way that has transversely set up among the prior art of having solved.
To sum up, the utility model provides a rod rollgang has following advantage:
1. the whole device has the advantages of no additional floor area and short action time.
2. Through adopting vertical one or two guide way structures that set up, have the better and difficult advantage that piles up of cinder and dust of guidance quality.
3. The device has the advantages of small volume, simple structure, high reliability, and extremely low maintenance and operation cost.
Drawings
The accompanying drawings, which form a part of the present application, are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the invention and not to limit the invention. Wherein:
fig. 1 is a schematic structural view of a bar conveying roller bed provided by the present invention;
fig. 2 is a top view of the bar conveying roller bed provided by the present invention;
FIG. 3 isbase:Sub>A cross-sectional view taken along line A-A of FIG. 2;
fig. 4 is a front view of a bar conveying roller bed provided by the present invention;
FIG. 5 is a cross-sectional view taken along line B-B of FIG. 4;
fig. 6 is a schematic structural view of the steel blocking device provided by the present invention;
fig. 7 is a schematic structural view of a guide groove of the steel resistance device provided by the present invention;
FIG. 8 is a schematic view showing the structure of a guide groove with a brush;
fig. 9 is a schematic view of the structure of the slope of the edge of the guide groove.
Description of reference numerals:
1. a fixing member; 2. a first rotating shaft; 3. a telescopic cylinder assembly; 4. a first guide groove; 5. a second rotating shaft; 6. a steel resisting component; 7. a second guide groove; 8. the bottom of the tank; 9. a notch; 10. a bevel; 11. blocking and brushing; 12. a driving roller group.
Detailed Description
The present invention will be described in detail below with reference to the accompanying drawings in conjunction with embodiments. Each example is provided by way of explanation of the invention and not limitation of the invention. In fact, it will be apparent to those skilled in the art that modifications and variations can be made in the present invention without departing from the scope or spirit thereof. For instance, features illustrated or described as part of one embodiment, can be used with another embodiment to yield a still further embodiment. It is therefore intended that the present invention encompass such modifications and variations as fall within the scope of the appended claims and equivalents thereof.
In the description of the present invention, the terms "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description of the present invention and do not require that the present invention must be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention. The terms "connected", "connected" and "disposed" used in the present invention should be understood in a broad sense, and may be, for example, either fixedly connected or detachably connected; they may be directly connected or indirectly connected through intermediate members, and specific meanings of the above terms will be understood by those skilled in the art as appropriate.
As shown in fig. 1, a schematic structural diagram of a bar conveying roller way provided by the present application can be seen from the figure, the bar conveying roller way includes a frame body (not shown), a plurality of conveying roller sets 12 and a steel blocking device, the plurality of conveying roller sets 12 includes a plurality of conveying roller sets 12, the plurality of conveying roller sets 12 are arranged along a same straight line direction, and are formed with a conveying surface (a surface facing out of the paper as seen from the top view of fig. 2), a first gap is formed on the conveying surface, the first gap is arranged between two adjacent conveying roller sets 12, an extending direction of the first gap is parallel to the conveying surface, and is perpendicular to the conveying direction of the conveying surface.
Further, the steel blocking device comprises a steel blocking member 6 and a power mechanism, the steel blocking member 6 is movably mounted on the frame body along a first direction (i.e. the extending direction of the guide groove), when the steel blocking member 6 moves relative to the frame body along the first direction, the steel blocking member 6 has a first state (the steel blocking member 6 extends out of the first gap and blocks steel) and a second state (the steel blocking member 6 retracts from the first gap and stops steel blocking), when the steel blocking member 6 is in the first state, at least a part of the steel blocking member 6 extends out of the conveying surface from the first gap, at this time, the rod material being conveyed on the conveying surface is blocked by the extending steel blocking member and does not move along with the conveying surface, and at this time, an operator divides the blocked rod material according to the variety and the specification; when the steel resistance component 6 is in the second state, the steel resistance component 6 is not higher than the conveying surface, the steel resistance component 6 stops steel resistance at the moment, and the classified bars move along with the conveying surface and continue to be conveyed to the next link.
Preferably, the included angle between the first direction and the conveying surface is set to be 60-120 degrees, in practical application, a technician can further determine the degree of the included angle between the first direction and the conveying surface according to the actual gradient of the conveying surface and the specification of a bar material to be conveyed, or according to the shape and the material of the steel resistance component 6.
As shown in fig. 1 and 3, the power mechanism is connected to the stopper member 6 and drives the stopper member 6 to operate. Be equipped with guiding mechanism on the support body of this application, guiding mechanism is used for leading when moving for hindering steel part 6. Along the extending direction of the first gap, one side of the conveying roller group 12 is provided with a first groove body, and the other side is provided with a second groove body, namely two upright posts which are arranged at two sides of the conveying roller group 12 and are oppositely arranged as shown in fig. 5.
Further, as shown in fig. 1 and 5, in one embodiment of the present application, the guide mechanism includes: the steel blocking component is characterized in that the steel blocking component comprises a first guide groove 4 formed in a first groove body (a vertical column on the right side in fig. 5), the opening of the first guide groove 4 faces to a second groove body (a vertical column on the left side in fig. 5), the extending direction of the first guide groove 4 is parallel to the first direction, and one side edge (the right side edge in fig. 5) of the steel blocking component 6 is in sliding fit with the first guide groove 4.
In yet another embodiment of the present application, the guide mechanism includes: and a second guide groove 7 formed in the second groove body (the left upright in fig. 5), wherein the opening of the second guide groove 7 faces the first groove body (the right upright in fig. 5), the extending direction of the second guide groove 7 is parallel to the first direction, and one side edge (such as the left side edge in fig. 5) of the steel blocking part 6 is in sliding fit with the second guide groove 7.
In yet another embodiment of the present application, the guide mechanism includes: a first guide groove 4 formed in the first groove body (the right upright in fig. 5), the opening of the first guide groove 4 faces the second groove body (the left upright in fig. 5), the extending direction of the first guide groove 4 is parallel to the first direction, and one side edge (e.g., the right side edge in fig. 5) of the steel blocking part 6 is in sliding fit with the first guide groove 4; and a second guide groove 7 formed in the second tank body (the left column in fig. 5), the opening of the second guide groove 7 faces the first tank body (the right column in fig. 5), the extending direction of the second guide groove 7 is parallel to the first direction, and the other side (the left side in fig. 5) of the steel blocking member 6 is in sliding fit with the second guide groove 7. That is, the guide mechanism includes two guide grooves, namely, the first guide groove 4 and the second guide groove 7, which are oppositely disposed, and two side edges of the steel blocking member 6 are respectively and correspondingly disposed in the two guide grooves.
Preferably, the first groove body and the second groove body are both fixedly connected with the frame body.
Further, in an embodiment of the present disclosure, the frame includes a bracket (not shown), a first side plate (not shown), and a second side plate (not shown). The first side plate forms a first groove body, and the second side plate forms a second groove body. And the first side plate and the second side plate are arranged oppositely, and the plurality of conveying roller sets 12 are all positioned between the first side plate and the second side plate and are arranged on the bracket.
Preferably, as shown in fig. 9, the outer edge of one side of the notch 9 of the first guide groove 4 or the second guide groove 7 (i.e., the side opposite to the first guide groove 4 or the second guide groove 7 in fig. 5) is provided with a slope 10 which becomes gradually thicker in the direction from the notch 9 to the groove bottom 8 (i.e., in the left-to-right direction of the first guide groove 4 or in the right-to-left direction of the second guide groove 7 in fig. 5).
Specifically, as shown in fig. 6, the power mechanism is a telescopic bar assembly 3. The telescopic cylinder assembly 3 is provided with a cylinder body and a telescopic rod, the cylinder body is used for being fixedly connected with the fixing piece 1, and the fixing piece 1 and the rack body are relatively fixed (namely, after the fixing piece 1 is fixed, the fixing piece and the rack body do not displace any more). One end of the telescopic rod extends into the cylinder body, and the other end of the telescopic rod is connected with the steel blocking component 6.
Further, the cylinder is connected to the fixed member 1 through the first rotating shaft 2, and the cylinder is rotatable around the axis of the first rotating shaft 2 relative to the fixed member 1, and the axis of the first rotating shaft 2 is parallel to the extending direction of the first gap.
The telescopic rod is connected with the steel blocking part 6 through the second rotating shaft 5, the steel blocking part 6 can rotate around the axis of the second rotating shaft 5 relative to the telescopic rod, and the axis of the second rotating shaft 5 is perpendicular to the extending direction of the first gap. Namely, the axial directions of the first rotating shaft 2 and the second rotating shaft 5 are vertically arranged, so that the power mechanism is limited, and the running of the power mechanism is more stable.
As shown below with reference to fig. 1 to 9, it is right that the utility model provides a bar rollgang and the steel device that hinders that sets up on it describe, what this vertical setting (for vertical perpendicular setting in this application) hinders the steel device can be realized hindering the steel, dividing this link of steel through the steel device that hinders that sets up in conveying roller set 12 below, specifically do: more than the steel blocking part 6 stretches out of the conveying surface from the first gap, the part of the steel blocking part 6 stretching out blocks the head of the bar, so that steel blocking and steel splitting are achieved, after steel blocking, the bar stops advancing, technicians can mark the bar according to varieties and specifications, after marking is completed, the steel blocking part 6 of the steel blocking device retracts to the conveying surface which does not stretch out, then the conveying roller set 12 continues to operate, and the bar is conveyed forwards continuously. In the process, the steel resistance part 6 of the steel resistance device is always in a retraction state to prepare for the steel resistance of the lower wheel.
Specifically, as shown in fig. 1 to 6, the utility model provides a hinder steel device perpendicularly includes that vertical (vertical) locates the power unit (promptly telescopic cylinder subassembly 3 in fig. 6) of rod rollgang below and adopts the steel part 6 that hinders that can dismantle the connected mode and be connected with power unit's top, hinders in the both ends correspondence of steel part 6 locates vertical first guide way 4 and second guide way 7, drives when the power unit motion and hinders and be vertical slip in steel part 6 edge first guide way 4 and the second guide way 7. The power mechanism is arranged below the conveying roller way, so that the steel blocking device does not have additional floor area, and the defect that the floor area or the volume of the existing steel blocking device is too large is overcome.
The power mechanism can be directly connected with the ground or the foundation at the lower end of the power mechanism, and the connection mode can be fixed connection or movable connection. In consideration of the convenience of later maintenance, preferably, the power mechanism and the ground or the foundation are connected through the fixing member 1, and the fixing member 1 and the power mechanism are movably connected through the first rotating shaft 2. The power mechanism is connected with the ground or the foundation stably and is convenient to disassemble and assemble in the connection mode. Specifically, one end of the fixing member 1 is embedded or fixed on the ground or the foundation, and the other end of the fixing member 1 is detachably connected with the power mechanism through the first rotating shaft 2. The first rotating shaft 2 can be selected as a rotatable movable connecting piece such as a connecting pin, a connecting shaft and the like, and is preferably connected by the connecting pin, so that the detachable and convenient installation can be realized, and the structure of a part matched with the connecting pin is simpler, and the detachable and convenient installation in work is facilitated.
The power mechanism is used for providing a power source for the steel resistance part 6 to extend out of the first gap to be above the conveying surface or retract into the first gap to be below the conveying surface (not higher than the conveying surface) along the first guide groove 4 and/or the second guide groove 7, so that the top end of the power mechanism is a telescopic rod with a telescopic function, and the top end of the telescopic rod is connected with the steel resistance part 6.
In order to further reduce the occupied area of the power mechanism, the power mechanism is preferably a telescopic cylinder assembly 3, a cavity for accommodating a telescopic rod is arranged inside a cylinder body of the telescopic cylinder assembly 3, the telescopic rod extends out of the cavity and is used for driving the steel blocking component 6 to move upwards along the first guide groove 4 and the second guide groove 7, and the telescopic rod retracts into the cavity and is used for driving the steel blocking component 6 to move downwards along the first guide groove 4 and the second guide groove 7.
Hinder steel part 6 and upwards move along first guide way 4 and second guide way 7, hinder steel part 6 promptly from upwards stretching out to conveying face top through first clearance from the rollgang below from down, hinder steel part 6 and stretch out the back and block the rod of carrying on the rollgang promptly for the rod stops along with the motion of rollgang, and technical staff can mark and specification classification to the rod this moment. After all the bars prevented from moving are classified and marked, the steel blocking component 6 retracts to the position below the conveying surface from the position above the conveying roller way through the first gap, at the moment, the bars on the conveying roller way continue to move along with the roller way until all the marked bars are conveyed away, and before the next batch of unmarked bars are conveyed, the steel blocking component 6 needs to continue to prepare for extending and blocking steel.
In order to facilitate the disassembly and assembly of the steel blocking part 6 and the telescopic rod of the power mechanism, the steel blocking part 6 and the telescopic rod are connected through the second rotating shaft 5, the second rotating shaft 5 can be selected as a connecting pin, a connecting shaft and other rotatable movable connecting pieces, preferably, the connecting pin is adopted for connection, so that the disassembly and assembly can be realized, the assembly is convenient to install, the structure of the assembly matched with the connecting pin is simpler, and the disassembly and assembly in work is facilitated.
As shown in fig. 7, for the utility model provides a pair of the structural schematic diagram of the guide way of embodiment, for the convenience of hindering steel part 6 can be smooth do vertical motion between first guide way 4 and second guide way 7, the groove width of the first guide way 4 that this application set up and second guide way 7 all is greater than the thickness that hinders steel part 6's both ends, so set up and can guarantee to hinder steel part 6's both ends locate first guide way 4 and second guide way 7 in after, hinder steel part 6's both ends and not hug closely with the inner wall of guide way, avoid producing unnecessary resistance in the motion.
In order to facilitate the two ends of the steel resistance component 6 to be smoothly installed in the first guide groove 4 and the second guide groove 7, the distance between the groove bottom 8 of the first guide groove 4 and the groove bottom 9 of the second guide groove 7 or between the groove bottom 9 of the first guide groove 4 and the groove bottom 8 of the second guide groove 7 is slightly larger than the length of the steel resistance component 6 in the horizontal direction, and the arrangement can ensure that the two ends of the steel resistance component 6 are smoothly installed into the two guide grooves.
Further, as shown in fig. 9, in order to enable the two ends of the steel blocking member 6 to be installed in the first guide groove 4 and the second guide groove 7 without using any equipment, the present invention preferably uses the steel blocking member 6 as a member having elasticity, and the vertical outer edge of one side of the notch 9, which is provided with any one of the first guide groove 4 and the second guide groove 7, is provided with a slope 10 which gradually becomes thicker along the notch 9 toward the groove bottom 8, as shown in the present invention. With such arrangement, when the steel blocking component 6 is installed in the first guide groove 4 and the second guide groove 7, only one end of the steel blocking component 6 needs to be completely inserted into the groove bottom 8 of the guide groove on one side without the inclined surface 10, and then the other end of the steel blocking component 6 slides into the groove of the guide groove on the other side forcibly along the inclined surface 10, so that the installation of the two ends of the steel blocking component 6 is completed.
Furthermore, as shown in fig. 7 and 9, in order to reduce the accumulation probability of dust and scale in the guide groove, the present application further provides a brush 11 at the edge of the notch 9 of the guide groove (including the first guide groove 4 and the second guide groove 7), and bristles of the brush 11 are attached to both sides of the steel blocking member 6, so that the gap between the notch of the first guide groove 4 and the second guide groove 7 and the steel blocking member 6 is filled as much as possible, the entry of dust and scale is blocked to the greatest extent, and the steel blocking member 6 runs smoothly.
Furthermore, in order to ensure that the steel blocking component 6 does not deviate from the first guide groove 4 and the second guide groove 7 when moving in the vertical direction along the first guide groove 4 and the second guide groove 7, the height of the first guide groove 4 and the height of the second guide groove 7 are both greater than the height of the steel blocking component 6 in the vertical direction, and the grooves of the first guide groove 4 and the second guide groove 7 are both vertically through grooves, so as to ensure that the steel blocking component 6 can extend out from the upper part and the lower part of the first guide groove 4 and the second guide groove 7, namely, as long as the steel blocking component 6 is in the extending and retracting state, the continuous limiting of the steel blocking component 6 can be realized when parts of the left end and the right end of the steel blocking component are positioned in the grooves of the first guide groove 4 and the second guide groove 7, and the vertical height of the first guide groove 4 and the second guide groove 7 can be shortened as much as possible due to the arrangement, and the installation space is further saved.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. The utility model provides a bar rollgang which characterized in that, includes support body, conveying roller set and hinders the steel device, wherein:
the conveying roller group is provided with a conveying surface, a first gap is formed on the conveying surface, and the extending direction of the first gap is parallel to the conveying surface and is vertical to the conveying direction of the conveying surface;
the steel resistance device comprises a steel resistance part and a power mechanism, the steel resistance part can be movably arranged on the frame body along a first direction, the steel resistance part has a first state and a second state when moving along the first direction relative to the frame body, and when the steel resistance part is in the first state, at least one part of the steel resistance part extends out of the conveying surface from the first gap; when the steel blocking component is in a second state, the steel blocking component is not higher than the conveying surface;
the included angle between the first direction and the conveying surface ranges from 60 degrees to 120 degrees;
the power mechanism is used for driving the steel resistance component to act.
2. The bar rollgang of claim 1 wherein the frame has a guide mechanism for guiding the movement of the stop members.
3. The bar rollgang of claim 2 wherein, along the direction of extension of the first gap, one side of the set of conveyor rolls is provided with a first slot and the other side is provided with a second slot, wherein the guide mechanism comprises:
the opening of the first guide groove faces to the second groove body, the extending direction of the first guide groove is parallel to the first direction, and one side edge of the steel resistance component is in sliding fit with the first guide groove;
and/or the presence of a gas in the atmosphere,
the steel blocking component comprises a second guide groove formed in the second groove body, an opening of the second guide groove faces towards the first groove body, the extending direction of the second guide groove is parallel to the first direction, and one side edge of the steel blocking component is in sliding fit with the second guide groove.
4. The bar conveying roller way according to claim 3, wherein the first and second troughs are fixedly connected to the frame body.
5. The bar rollgang of claim 3 wherein the frame includes a bracket, a first side plate and a second side plate, the first side plate forms the first slot, the second side plate forms the second slot, the first side plate and the second side plate are disposed opposite to each other, and the set of conveyor rolls is disposed between the first side plate and the second side plate and mounted to the bracket.
6. The rod conveyor roll table of claim 3 wherein the outer edge of one side of the notch of the first guide groove or the second guide groove is provided with a slope that gradually becomes thicker along the notch toward the bottom of the groove.
7. The bar material roller conveyor according to claim 6, wherein a brush is provided on the edge of the notch of each of the first guide groove and the second guide groove.
8. The bar rollgang of claim 2 wherein the power mechanism is a telescopic cylinder assembly having a cylinder and a telescopic rod, the cylinder being adapted to be fixedly connected to a fixed member, the fixed member being fixed relative to the frame; one end of the telescopic rod extends into the cylinder body, and the other end of the telescopic rod is connected with the steel blocking component.
9. The bar rollgang of claim 8 wherein the cylinder is connected to the fixture by a first rotating shaft and the cylinder is rotatable relative to the fixture about the axis of the first rotating shaft, the axis of the first rotating shaft being parallel to the direction of extension of the first gap.
10. The bar rollgang of claim 9 wherein the telescoping rod is connected to the drag member by a second pivot, the drag member being rotatable relative to the telescoping rod about a second pivot axis, the second pivot axis being perpendicular to the direction of extension of the first gap.
CN202222278691.4U 2022-08-29 2022-08-29 Bar conveying roller way Active CN218595455U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222278691.4U CN218595455U (en) 2022-08-29 2022-08-29 Bar conveying roller way

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222278691.4U CN218595455U (en) 2022-08-29 2022-08-29 Bar conveying roller way

Publications (1)

Publication Number Publication Date
CN218595455U true CN218595455U (en) 2023-03-10

Family

ID=85399218

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222278691.4U Active CN218595455U (en) 2022-08-29 2022-08-29 Bar conveying roller way

Country Status (1)

Country Link
CN (1) CN218595455U (en)

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