Ingot gathering device and stacked ingot conveying system with same
By using the ingot-gathering plate and drive components of the ingot-gathering device in the zinc ingot conveying system, the problem of uneven zinc ingot stacking was solved, achieving efficient appearance correction and convenient transportation.
Patent Information
- Application Number
- CN202520006241.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2035-01-02
AI Technical Summary
In existing technologies, zinc ingots are not stacked neatly, resulting in poor appearance quality, increased transportation difficulty and cost, and manual straightening is labor-intensive and poses high safety risks.
The device employs a bar-gathering mechanism, which includes two bar-gathering plates perpendicular to the conveying direction and a drive component. The bar-gathering plates push the metal bar to align, thereby improving the straightening efficiency and quality.
It effectively improves the efficiency and quality of pallet appearance correction after stacking, avoids loose bundles, improves the convenience of subsequent transportation, and reduces manpower consumption and safety risks.
Smart Images

Figure CN223591789U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of ingot stacking and conveying, in particular to a gathering device and an ingot stacking and conveying system with the same. BACKGROUND
[0002] Zinc ingot stacking is the last step of producing qualified zinc ingots in the zinc smelting and casting section, and the neatness of the stacking is crucial. In the prior art, the method for correcting the zinc stack is to manually correct it. Manual correction has high labor intensity and high safety risk, and the zinc stack correction is poor in effect, which results in uneven stacking, affects the appearance quality of the zinc stack, increases the difficulty of subsequent zinc stack transportation and the wear of the transportation equipment, and further increases the cost. SUMMARY
[0003] The utility model aims at at least solving one of the technical problems existing in the prior art. To this end, the utility model provides a gathering device, which can effectively improve the correction efficiency and quality of the appearance of the stacked ingot after stacking, thereby effectively reducing the difficulty of subsequent ingot transportation and further effectively improving the convenience of subsequent ingot transportation.
[0004] The utility model further provides an ingot stacking and conveying system with the above-mentioned gathering device.
[0005] According to the gathering device of the utility model, the ingot stacking and conveying system comprises a conveying device, the conveying device is used for conveying the stacked ingot after stacking, the stacked ingot comprises a plurality of metal ingots arranged in layers, and the gathering device comprises a gathering plate, the gathering plate is arranged perpendicularly to a first direction, the number of the gathering plates is two, the two gathering plates are adapted to be arranged on the two sides of the conveying device in the first direction respectively, and the first direction is perpendicular to the conveying direction of the conveying device; and a driving member, the number of the driving members is two and each is connected with a gathering plate, the driving member is used for driving the corresponding gathering plate to move in the first direction, so as to align the plurality of metal ingots of the stacked ingot by the gathering plate.
[0006] According to the gathering device of the utility model, the gathering plate and the driving member are arranged in the gathering device, the gathering plate is arranged perpendicularly to the first direction, the number of the gathering plates is two, the two gathering plates are adapted to be arranged on the two sides of the conveying device in the first direction respectively, the first direction is perpendicular to the conveying direction of the conveying device, the number of the driving members is two and each is connected with a gathering plate, the driving member is used for driving the corresponding gathering plate to move in the first direction, so as to align the plurality of metal ingots of the stacked ingot by the gathering plate, which can effectively improve the correction efficiency and quality of the appearance of the stacked ingot after stacking, avoid the phenomenon of scattered bundles in the subsequent processes of packing, transferring and loading the stacked ingot, and thereby effectively improve the convenience of subsequent ingot transportation.
[0007] In some embodiments, the spindle device further comprises two support frames, the two support frames are respectively arranged on the side of the two spindle plates away from the conveying device in the first direction, and the spindle plates are movably arranged on the same side of the support frames in the first direction.
[0008] In some embodiments, the support frame comprises a mounting plate arranged perpendicularly to the first direction, the spindle plate is movably arranged on the mounting plate in the first direction, the mounting plate is formed with a mounting opening penetrating through the mounting plate in the first direction, and the driving member is arranged on the side of the mounting plate away from the spindle plate, and the driving end of the driving member is connected with the spindle plate through the mounting opening.
[0009] In some embodiments, the spindle plate is provided with a first guide rod extending towards the mounting plate, the mounting plate is provided with a guide channel extending in the first direction, and the first guide rod is slidably arranged in the guide channel in the first direction.
[0010] In some embodiments, the mounting plate is formed with a fixing hole penetrating through the mounting plate in the first direction, and the support frame further comprises a guide cylinder, one end of the guide cylinder is connected with the periphery of the fixing hole and the other end extends away from the spindle plate, and the guide cylinder defines the guide channel.
[0011] In some embodiments, the support frame further comprises a support plate connected with the mounting plate and extending away from the spindle plate in the first direction, and the driving member is fixed on the support plate.
[0012] In some embodiments, the support frame further comprises a first clamping plate and a second clamping plate, the first clamping plate and the second clamping plate are both fixed on the support plate and arranged on the side of the support plate facing the mounting opening, the first clamping plate and the second clamping plate are arranged in the first direction, the first clamping plate is located on the side of the second clamping plate facing the spindle plate, the driving member is clamped between the first clamping plate and the second clamping plate, and the driving end of the driving member is connected with the spindle plate through the first clamping plate.
[0013] In some embodiments, the first clamping plate is formed with a first guide hole penetrating through the first clamping plate in the first direction, the second clamping plate is formed with a second guide hole penetrating through the second clamping plate in the first direction, the first guide hole and the second guide hole are opposite in the first direction, the spindle plate is provided with a second guide rod extending towards the support frame, and the second guide rod is sequentially arranged in the first guide hole and the second guide hole.
[0014] In some embodiments, the support frame further comprises a support frame comprising a top beam and two vertical columns vertically extending and spaced apart in the conveying direction of the ingot stack, the top beam extending in the conveying direction of the ingot stack and connected between the upper ends of the two vertical columns, the peripheral edge of the mounting plate being connected to the two vertical columns and the top beam respectively, and the ingot gathering device further comprises a connecting beam extending in the first direction and connected between the top beams of the two support frames.
[0015] According to the ingot stack conveying system of the second aspect of the present application, the conveying device is used to convey the stacked ingots, and the stacked ingots comprise a plurality of ingots stacked in the up-down direction; the ingot gathering device of the first aspect of the present application, and the two ingot gathering plates are arranged on the two sides of the conveying device perpendicular to the conveying direction.
[0016] According to the ingot stack conveying system of the second aspect of the present application, by arranging the ingot gathering device of the first aspect, the appearance correction efficiency and quality of the stacked ingots can be effectively improved, and the phenomenon of scattered bundles in the subsequent processes of packaging, transporting and loading the ingots can be avoided, thereby effectively improving the convenience of subsequent transportation of the ingots.
[0017] Additional aspects and advantages of the present application will be partially given in the following description, partially will become obvious from the following description, or will be understood by the practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 is a schematic view of the ingot gathering device according to the embodiments of the present application.
[0019] Reference signs:
[0020] 100, ingot gathering device;
[0021] 10, ingot gathering plate; 11, first guide rod; 12, second guide rod;
[0022] 20, driving member;
[0023] 31, mounting plate; 310, mounting opening; 32, guide cylinder; 33, support plate; 34, first clamping plate; 35, second clamping plate; 36, support frame; 361, top beam; 362, vertical column;
[0024] 40, connecting beam. DETAILED DESCRIPTION
[0025] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.
[0026] The following is for reference. Figure 1 The present invention describes a spindle-gathering device 100 according to a first aspect embodiment.
[0027] like Figure 1 As shown, the ingot gathering device 100 according to the first aspect of the present invention is used in an ingot conveying system. The ingot conveying system includes a conveying device for conveying stacked ingots. The stacked ingots include multiple metal ingots arranged in layers. The ingot gathering device 100 includes an ingot gathering plate 10 and a driving member 20.
[0028] The collecting plates 10 are arranged perpendicular to the first direction, and there are two collecting plates 10. The two collecting plates 10 are adapted to be arranged on the conveying device in the first direction (e.g., Figure 1 On both sides of the left and right directions shown, the first direction is perpendicular to the conveying direction of the conveying device (e.g., the left and right directions shown). Figure 1 (shown in the front-back direction); there are two drive units 20, each connected to a different ingot gathering plate 10. The drive unit 20 is used to drive the corresponding ingot gathering plate 10 to move in the first direction, so as to push the multiple metal ingots of the stack to align through the ingot gathering plate 10.
[0029] It should be noted that, in a specific example, such as Figure 1 As shown, the first direction is the left-right direction, the conveying direction of the conveying device is the front-back direction, and the first direction is perpendicular to the conveying direction of the conveying device. In a specific example, such as... Figure 1 As shown, both ingot-gathering plates 10 are arranged perpendicular to the left and right directions, and the two ingot-gathering plates 10 are respectively arranged on the left and right sides of the conveying device. Furthermore, both ingot-gathering plates 10 are rectangular plates with the same size and face each other in the left and right directions.
[0030] Preferably, the material of the spool plate 10 can be Q235 steel. It should be noted that Q235 steel has good strength and toughness, and can withstand certain tensile, compressive and bending loads. Moreover, components made of Q235 steel are easy to weld, cut and bend. Therefore, the spool plate 10 made of Q235 steel can effectively improve the structural strength of the spool plate 10 and effectively reduce the processing difficulty of the spool plate 10.
[0031] It should be noted that in a specific example, the water-cooled conveying line jacking cylinder and the stacker manipulator clamp are arranged in the ingot stack conveying system. During the ingot stacking process, the ingots are jacked up by the water-cooled conveying line jacking cylinder, and the jacking action is rapid and continuous under the action of compressed air, so that the ingots are prone to shift after being jacked up, and the ingots are prone to falling during the process of being grabbed by the stacker manipulator clamp, thereby causing uneven ingot stacks and affecting the appearance quality of the ingot stacks.
[0032] In a specific example, as shown in Figure 1 two driving members 20 are arranged on the left and right sides of the conveying device, and the two driving members 20 are connected with the two ingot gathering plates 10, that is, the entire ingot gathering device 100 is arranged symmetrically left and right, the driving member 20 on the left side can drive the ingot gathering plate 10 to move in the left and right directions, and the driving member 20 on the right side can drive the ingot gathering plate 10 to move in the left and right directions.
[0033] When the stacked ingots after stacking are conveyed by the conveying device to between the two ingot gathering plates 10, the stacked ingots after stacking can be stopped between the two ingot gathering plates 10, the operator starts the driving members 20 on the left and right sides of the conveying device, which can make the ingot gathering plates 10 on the left and right sides move towards each other in the left and right directions, so that the ingot gathering plates 10 on the left and right sides can abut against the left side and the right side of the stacked ingots after stacking on the conveying device, thereby completing the alignment of the left side and the right side of the stacked ingots after stacking in the front and back directions.
[0034] In this embodiment, when using the ingot gathering device 100 to correct the appearance of the stacked ingots after stacking on the conveying device, first start the driving members 20 on the left and right sides of the conveying device, the driving member 20 on the left side can drive the ingot gathering plate 10 on the left side to move to the right, and the driving member 20 on the right side can drive the ingot gathering plate 10 on the right side to move to the left, thereby making the ingot gathering plates 10 on the left and right sides abut against the left side and the right side of the stacked ingots after stacking on the conveying device, so that the left side and the right side of the stacked ingots after stacking can be aligned in the front and back directions.
[0035] Then, adjust the driving member 20 on the left side to make the ingot gathering plate 10 on the left side move to the left, and adjust the driving member 20 on the right side to make the ingot gathering plate 10 on the right side move to the right, thereby making the ingot gathering plates 10 on the left and right sides separate from the left side and the right side of the ingots, and then starting the conveying device to move the ingots to the next work station.
[0036] In the prior art, the method of manually correcting the appearance of the stacked ingots has large labor intensity, consumes manpower and time, and easily causes the outer sides of the stacked ingots to be not completely aligned, thereby affecting the correction effect of the appearance of the stacked ingots. The appearance of the stacked ingots after stacking on the conveying device is corrected by using the ingot gathering device 100, which can effectively save manpower and time, effectively ensure the quality of the appearance of the corrected stacked ingots, effectively improve the efficiency of the appearance correction of the stacked ingots, and thus facilitate the subsequent transportation of the stacked ingots.
[0037] According to the ingot gathering device 100 in the embodiment of the present application, the ingot gathering plate 10 is arranged in the ingot gathering device 100, the ingot gathering plate 10 is arranged perpendicularly to the first direction, the number of the ingot gathering plates 10 is two, the two ingot gathering plates 10 are arranged on the two sides of the conveying device in the first direction respectively, the first direction is perpendicular to the conveying direction of the conveying device, the number of the driving members 20 is two, and the two driving members 20 are connected with the two ingot gathering plates 10 respectively, the driving member 20 is used for driving the corresponding ingot gathering plate 10 to move in the first direction, so as to align the plurality of metal ingots of the stacked ingot by the ingot gathering plate 10, the correction efficiency and the correction quality of the appearance of the stacked ingot after stacking can be effectively improved, the phenomenon of scattered bundles in the subsequent processes of packing, transporting and loading of the stacked ingot is avoided, and the convenience of the subsequent transportation of the stacked ingot is effectively improved.
[0038] In an embodiment of the present application, as shown in Figure 1 The ingot gathering device 100 further comprises two support frames, the two support frames are arranged on the sides of the two ingot gathering plates 10 away from the conveying device in the first direction respectively, and the ingot gathering plate 10 is movably arranged on the same side support frame in the first direction.
[0039] In a specific example, as shown in Figure 1 The conveying device further comprises a fixed support frame, the two support frames are fixedly arranged on the left side and the right side of the conveying device respectively, further, the left side support frame is arranged on the left side of the left side ingot gathering plate 10, and the left side ingot gathering plate 10 can move relative to the left side support frame in the left-right direction, the right side support frame is arranged on the right side of the right side ingot gathering plate 10, and the right side ingot gathering plate 10 can move relative to the right side support frame in the left-right direction.
[0040] The embodiment can effectively improve the stability of the ingot gathering device 100, thereby effectively improving the stability of the ingot gathering plate 10 moving in the left-right direction.
[0041] In an embodiment of the present application, as shown in Figure 1As shown, the support frame comprises a mounting plate 31 arranged perpendicularly to the first direction, the gathering plate 10 is movably arranged on the mounting plate 31 along the first direction, the mounting plate 31 is formed with a mounting opening 310 penetrating through the mounting plate 31 along the first direction, the driving member 20 is arranged on the side of the mounting plate 31 away from the gathering plate 10, and the driving end of the driving member 20 is connected with the gathering plate 10 through the mounting opening 310.
[0042] In one specific example, as shown in the drawings, each support frame comprises a mounting plate 31, and further, the mounting plate 31 on the left side is arranged on the left side of the gathering plate 10 on the left side, and the gathering plate 10 on the left side can move relative to the mounting plate 31 on the left side along the left-right direction, and the mounting plate 31 on the right side is arranged on the right side of the gathering plate 10 on the right side, and the gathering plate 10 on the right side can move relative to the mounting plate 31 on the right side along the left-right direction. Figure 1 In one specific example, as shown in the drawings, each support frame comprises a mounting plate 31, and further, the mounting plate 31 on the left side is arranged on the left side of the gathering plate 10 on the left side, and the gathering plate 10 on the left side can move relative to the mounting plate 31 on the left side along the left-right direction, and the mounting plate 31 on the right side is arranged on the right side of the gathering plate 10 on the right side, and the gathering plate 10 on the right side can move relative to the mounting plate 31 on the right side along the left-right direction.
[0043] In one specific example, as shown in the drawings, each support frame comprises a mounting plate 31, and further, the mounting plate 31 on the left side is arranged on the left side of the gathering plate 10 on the left side, and the gathering plate 10 on the left side can move relative to the mounting plate 31 on the left side along the left-right direction, and the mounting plate 31 on the right side is arranged on the right side of the gathering plate 10 on the right side, and the gathering plate 10 on the right side can move relative to the mounting plate 31 on the right side along the left-right direction. Figure 1 In one specific example, as shown in the drawings, each support frame comprises a mounting plate 31, and further, the mounting plate 31 on the left side is arranged on the left side of the gathering plate 10 on the left side, and the gathering plate 10 on the left side can move relative to the mounting plate 31 on the left side along the left-right direction, and the mounting plate 31 on the right side is arranged on the right side of the gathering plate 10 on the right side, and the gathering plate 10 on the right side can move relative to the mounting plate 31 on the right side along the left-right direction.
[0044] In one specific example, as shown in the drawings, each support frame comprises a mounting plate 31, and further, the mounting plate 31 on the left side is arranged on the left side of the gathering plate 10 on the left side, and the gathering plate 10 on the left side can move relative to the mounting plate 31 on the left side along the left-right direction, and the mounting plate 31 on the right side is arranged on the right side of the gathering plate 10 on the right side, and the gathering plate 10 on the right side can move relative to the mounting plate 31 on the right side along the left-right direction.
[0045] In one specific example, as shown in the drawings, each support frame comprises a mounting plate 31, and further, the mounting plate 31 on the left side is arranged on the left side of the gathering plate 10 on the left side, and the gathering plate 10 on the left side can move relative to the mounting plate 31 on the left side along the left-right direction, and the mounting plate 31 on the right side is arranged on the right side of the gathering plate 10 on the right side, and the gathering plate 10 on the right side can move relative to the mounting plate 31 on the right side along the left-right direction. Figure 1 In one specific example, as shown in the drawings, each support frame comprises a mounting plate 31, and further, the mounting plate 31 on the left side is arranged on the left side of the gathering plate 10 on the left side, and the gathering plate 10 on the left side can move relative to the mounting plate 31 on the left side along the left-right direction, and the mounting plate 31 on the right side is arranged on the right side of the gathering plate 10 on the right side, and the gathering plate 10 on the right side can move relative to the mounting plate 31 on the right side along the left-right direction.
[0046] In one specific example, as shown in the drawings, each support frame comprises a mounting plate 31, and further, the mounting plate 31 on the left side is arranged on the left side of the gathering plate 10 on the left side, and the gathering plate 10 on the left side can move relative to the mounting plate 31 on the left side along the left-right direction, and the mounting plate 31 on the right side is arranged on the right side of the gathering plate 10 on the right side, and the gathering plate 10 on the right side can move relative to the mounting plate 31 on the right side along the left-right direction. Figure 1As shown, the first guide rod 11 and the guide channel are arranged along the left-right direction, and one end of the first guide rod 11 is vertically welded to the surface of the gathering plate 10, so that the first guide rod 11 can move along the left-right direction together with the gathering plate 10.
[0047] Further, the number of the first guide rod 11 can be multiple, for example, the number of the first guide rod 11 can be two, four, six, eight and more than ten, and the multiple first guide rods 11 are arranged along the length direction and the width direction of the gathering plate 10, and the number of the guide channel is multiple, and the multiple guide channels are in one-to-one correspondence with the multiple first guide rods 11 and are in sliding fit.
[0048] In a specific example, as shown in the figure, Figure 1 The number of the first guide rod 11 and the guide channel is four, the multiple guide channels are in one-to-one correspondence with the multiple first guide rods 11 and are in sliding fit, that is, the guide channel limits the movement of the first guide rod 11 in other directions, so that the first guide rod 11 can only move along the left-right direction, so that the gathering plate 10 can only move along the left-right direction.
[0049] The embodiment can effectively ensure that the gathering plate 10 moves linearly along the first direction by arranging the first guide rod 11 extending towards the mounting plate 31 on the gathering plate 10, the mounting plate 31 is provided with a guide channel extending along the first direction, and the first guide rod 11 is slidably arranged in the guide channel along the first direction, which can effectively avoid unnecessary displacement of the gathering plate 10 in other directions, thereby effectively improving the accuracy of the gathering plate 10 when correcting the appearance of the ingot stack.
[0050] In an embodiment of the utility model, as shown in the figure, Figure 1 The mounting plate 31 is formed with a fixing hole penetrating through the mounting plate 31 along the first direction, and the support frame further comprises: a guide cylinder 32, one end of the guide cylinder 32 is connected with the circumference of the fixing hole and the other end extends away from the gathering plate 10, and the guide cylinder 32 defines a guide channel.
[0051] In a specific example, as shown in the figure, Figure 1 The fixing hole penetrates through the mounting plate 31 along the left-right direction, and the number of the fixing hole is four, and the multiple fixing holes are in one-to-one correspondence with the multiple guide cylinders 32. Further, the guide cylinder 32 is arranged along the left-right direction, and one end of the guide cylinder 32 is vertically welded to the circumference of the fixing hole on the mounting plate 31, that is, the extension direction of the guide cylinder 32 is parallel to the left-right direction, so that the extension direction of the guide channel is parallel to the left-right direction, thereby ensuring that the first guide rod 11 moves along the left-right direction without deviation.
[0052] The embodiment forms a fixing hole penetrating the mounting plate 31 along the first direction on the mounting plate 31, and a guide cylinder 32 is arranged in the support frame, one end of the guide cylinder 32 is connected with the periphery of the fixing hole and the other end extends away from the mounting plate 10, a guide channel is defined in the guide cylinder 32, the guide channel can be arranged along the first direction, and the structural strength of the guide channel is effectively improved, so that the durability of the guide channel is effectively improved.
[0053] In one embodiment of the utility model, as shown in Figure 1 The support frame further comprises a support plate 33, the support plate 33 is connected with the mounting plate 31 and extends away from the mounting plate 10 along the first direction, and the driving member 20 is fixed on the support plate 33. Figure 1 In one specific example, as shown in The support plate 33 is a rectangular plate, one end of the support plate 33 is welded perpendicularly to the side surface of the mounting plate 31, and the support plate 33 is arranged extending along the left-right direction.
[0054] Therefore, the support plate 33 can provide a stable support point for the driving member 20, so that the stability of the driving member 20 is effectively ensured.
[0055] The embodiment arranges the support plate 33 in the support frame, the support plate 33 is connected with the mounting plate 31 and extends away from the mounting plate 10 along the first direction, and the driving member 20 is fixed on the support plate 33, so that the support plate 33 can provide a stable mounting base for the driving member 20, thereby effectively improving the stability and reliability of the driving member 20.
[0056] In one embodiment of the utility model, as shown in Figure 1 The support frame further comprises a first clamping plate 34 and a second clamping plate 35, the first clamping plate 34 and the second clamping plate 35 are both fixed on the support plate 33 and arranged on the side of the support plate 33 facing the mounting port 310, the first clamping plate 34 and the second clamping plate 35 are arranged spaced apart along the first direction, the first clamping plate 34 is located on the side of the second clamping plate 35 facing the mounting plate 10, the driving member 20 is clamped between the first clamping plate 34 and the second clamping plate 35, and the driving end of the driving member 20 is connected with the mounting plate 10 through the first clamping plate 34.
[0057] In one specific example, as shown in Figure 1As shown, the support plate 33 is horizontally arranged, one end of the support plate 33 is vertically welded on the lower side of the mounting port 310, the lower ends of the first clamping plate 34 and the second clamping plate 35 are welded on the upper side of the support plate 33, the first clamping plate 34 and the second clamping plate 35 are arranged in the left-right direction, and the first clamping plate 34 is located between the second clamping plate 35 and the gathering plate 10.
[0058] Further, the first clamping plate 34 is provided with a first recess, the second clamping plate 35 is provided with a second recess, the driving member 20 is clamped between the first clamping plate 34 and the second clamping plate 35 through the first recess and the second recess, and the driving end of the driving member 20 is fixedly connected with the gathering plate 10 in the left-right direction, so as to drive the gathering plate 10 to move in the left-right direction.
[0059] In addition, the first clamping plate 34 is provided with four first mounting holes, a plurality of first mounting holes are arranged in the length and width directions of the first clamping plate 34, the second clamping plate 35 is provided with four second mounting holes, a plurality of second mounting holes are arranged in the length and width directions of the second clamping plate 35, and the first mounting hole and the second mounting hole are opposite in the left-right direction, and further, the first mounting hole is a counterbore hole, and the second mounting hole is a through hole. The first mounting hole and the second mounting hole are provided with bolts, so that the driving member 20 can be effectively fixed between the first clamping plate 34 and the second clamping plate 35.
[0060] The embodiment is arranged by arranging the first clamping plate 34 and the second clamping plate 35 in the support frame, the first clamping plate 34 and the second clamping plate 35 are fixed to the support plate 33 and arranged on the side of the support plate 33 facing the mounting port 310, the first clamping plate 34 and the second clamping plate 35 are arranged in the first direction, the first clamping plate 34 is located on the side of the second clamping plate 35 facing the gathering plate 10, the driving member 20 is clamped between the first clamping plate 34 and the second clamping plate 35, and the driving end of the driving member 20 is connected with the gathering plate 10 through the first clamping plate 34. Not only can the driving member 20 be further fixed, thereby further improving the stability of the driving member 20, but also the influence of the vibration generated by the driving member 20 during work on the gathering plate 10 can be effectively reduced, thereby effectively ensuring the stability of the gathering plate 10.
[0061] In an embodiment of the utility model, Figure 1 As shown, the first clamping plate 34 is formed with a first guide hole penetrating the first clamping plate 34 in the first direction, the second clamping plate 35 is formed with a second guide hole penetrating the second clamping plate 35 in the first direction, the first guide hole and the second guide hole are opposite in the first direction, the gathering plate 10 is provided with a second guide rod 12 extending towards the support frame, and the second guide rod 12 is sequentially arranged in the first guide hole and the second guide hole.
[0062] The number of the second guide rods 12 can be multiple, for example, the number of the second guide rods 12 can be two, three, four, five and more than six, and the second guide rods 12 correspond to the first guide holes and the second guide holes one by one. In a specific example, as shown in Figure 1 the number of the second guide rods 12 is two, and the two second guide rods 12 are arranged on the front and rear sides of the driving member 20. Further, one end of the guide rod is vertically welded on the surface of the piling plate 10, that is, the second guide rod 12 can move along the left and right directions together with the piling plate 10, and the second guide rod 12 can limit the deviation of the piling plate 10 in other directions.
[0063] In the embodiment, the first guide hole penetrating the first clamping plate 34 in the first direction is formed on the first clamping plate 34, the second guide hole penetrating the second clamping plate 35 in the first direction is formed on the second clamping plate 35, the first guide hole and the second guide hole are opposite in the first direction, the second guide rod 12 extending towards the support frame is arranged on the piling plate 10, and the second guide rod 12 is sequentially arranged in the first guide hole and the second guide hole. Therefore, the linear movement of the piling plate 10 in the first direction can be effectively ensured, and unnecessary displacement of the piling plate 10 in other directions can be avoided, so that the accuracy of the piling plate 10 in correcting the appearance of the pile of ingots can be effectively improved.
[0064] In an embodiment of the utility model, as shown in Figure 1 the support frame further comprises a support frame 36, the support frame 36 comprises a top beam 361 and two vertical columns 362, the two vertical columns 362 extend vertically and are arranged at intervals in the conveying direction of the pile of ingots, the top beam 361 extends along the conveying direction of the pile of ingots and is connected between the upper ends of the two vertical columns 362, the periphery of the mounting plate 31 is connected with the two vertical columns 362 and the top beam 361 respectively, and the piling device 100 further comprises a connecting beam 40, which extends along the first direction and is connected between the top beams 361 of the two support frames.
[0065] In a specific example, as shown in Figure 1 the vertical column 362 extends in the up-down direction and is arranged at intervals in the front-rear direction, the top beam 361 extends in the front-rear direction, the front end of the top beam 361 is welded on the top end of the front vertical column 362, the rear end of the top beam 361 is welded on the top end of the rear vertical column 362, the front side edge of the mounting plate 31 is welded on the front vertical column 362, the rear side edge of the mounting plate 31 is welded on the rear vertical column 362, and the upper side edge of the mounting plate 31 is welded on the top beam 361. Therefore, the mounting plate 31 can be effectively and stably mounted on the support frame 36.
[0066] In a specific example, as shown in Figure 1As shown, the number of the connecting beams 40 is one, the connecting beams 40 extend along the left-right direction, the left end of the connecting beams 40 is connected to the top beam 361 on the left side, and the right end of the connecting beams 40 is connected to the top beam 361 on the right side. In this way, the structural strength and rigidity of the support frame in the first direction can be effectively increased.
[0067] The embodiment can effectively simplify the structural configuration of the support frame and effectively improve the stability of the mounting plate 31, thereby effectively improving the stability of the ingot gathering plate 10, by arranging the support frame 36 in the support frame, the support frame 36 includes a top beam 361 and two vertical columns 362, the two vertical columns 362 extend vertically and are arranged at intervals in the conveying direction of the ingot stack, the top beam 361 extends along the conveying direction of the ingot stack and is connected between the upper ends of the two vertical columns 362, and the peripheral edge of the mounting plate 31 is connected to the two vertical columns 362 and the top beam 361, respectively. The connecting beam 40 extends along the first direction and is connected between the top beams 361 of the two support frames, which can effectively increase the structural strength and rigidity of the support frame in the first direction, thereby further improving the stability of the support frame.
[0068] The ingot stack conveying system according to the second aspect of the present application comprises a conveying device and the ingot gathering device 100 according to the first aspect of the present application.
[0069] The conveying device is used for conveying the stacked ingots, and the stacked ingots comprise a plurality of zinc ingots stacked along the up-down direction; and the two ingot gathering plates 10 are arranged on the two sides of the conveying device perpendicular to the conveying direction. In one specific example, the conveying device is provided with a conveying chain, and the stacked ingots are arranged on the conveying chain and can move along the front-back direction with the conveying chain, so as to complete the conveying of the stacked ingots.
[0070] The ingot stack conveying system according to the embodiment of the present application can effectively improve the correction efficiency and quality of the appearance of the stacked ingots by arranging the ingot gathering device 100 according to the first aspect of the present application, thereby avoiding the phenomenon of scattered bundles in the subsequent processes of packaging, transporting and loading the ingots, and effectively improving the convenience of subsequent transportation of the ingots.
[0071] In the description of the utility model, it is necessary to understand that the orientation or positional relation indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" is the orientation or positional relation based on the orientation or positional relation shown in the drawings, which is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.
[0072] In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the utility model, the meaning of "multiple" is two or more than two, unless otherwise explicitly specified and limited.
[0073] In the utility model, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection", "fixing" and other terms should be understood in a broad sense, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected, or it can be communicated; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication or interaction relationship between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0074] In the description of the specification, the description of the terms "one embodiment", "some embodiments", "example", "specific example" or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the utility model. In the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine the different embodiments or examples described in the specification and the features of different embodiments or examples without contradiction.
[0075] Although the embodiments of the utility model have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the utility model, and the scope of the utility model is defined by the claims and their equivalents.
Claims
1. A stacking device for a stacking ingot conveying system, the stacking ingot conveying system comprising a conveying device for conveying stacked ingots, the stacking ingots comprising a plurality of metal ingots arranged in layers, characterized in that, The ingot-gathering device includes: A collecting plate, wherein the collecting plate is arranged perpendicular to a first direction, and there are two collecting plates, which are adapted to be arranged on both sides of the conveying device in the first direction, wherein the first direction is perpendicular to the conveying direction of the conveying device; The driving element is provided in two parts, each connected to one of the two stacking plates. The driving element is used to drive the corresponding stacking plate to move in the first direction, so as to push the stack of metal ingots to align through the stacking plate.
2. The ingot-gathering device according to claim 1, characterized in that, Also includes: Two support frames are respectively arranged on the side of the two collecting plates away from the conveying device in the first direction, and the collecting plates are movably mounted on the support frames on the same side along the first direction.
3. The ingot-gathering device according to claim 2, characterized in that, The support frame includes a mounting plate arranged perpendicular to the first direction, and the spool-gathering plate is movably mounted on the mounting plate along the first direction. The mounting plate has a mounting opening that extends through the mounting plate along the first direction. The driving member is located on the side of the mounting plate opposite to the spool-gathering plate, and the driving end of the driving member passes through the mounting opening and is connected to the spool-gathering plate.
4. The ingot-gathering device according to claim 3, characterized in that, The ingot-gathering plate is provided with a first guide rod extending toward the mounting plate, and the mounting plate is provided with a guide channel extending along the first direction. The first guide rod is slidably inserted into the guide channel along the first direction.
5. The ingot-gathering device according to claim 4, characterized in that, The mounting plate has a fixing hole that passes through the mounting plate along the first direction. The support frame also includes a guide cylinder, one end of which is connected to the periphery of the fixing hole and the other end extends away from the spool plate. The guide cylinder defines the guide channel.
6. The ingot-gathering device according to claim 3, characterized in that, The support frame further includes a support plate, which is connected to the mounting plate and extends away from the spool plate along the first direction, and the driving member is fixed to the support plate.
7. The ingot-gathering device according to claim 6, characterized in that, The support frame further includes a first clamping plate and a second clamping plate, both of which are fixed to the support plate and arranged on the side of the support plate facing the mounting opening. The first clamping plate and the second clamping plate are arranged at intervals along a first direction, with the first clamping plate located on the side of the second clamping plate facing the collecting plate. The driving member is clamped between the first clamping plate and the second clamping plate, and the driving end of the driving member passes through the first clamping plate and is connected to the collecting plate.
8. The ingot-gathering device according to claim 7, characterized in that, The first clamping plate has a first guide hole extending through it in the first direction, and the second clamping plate has a second guide hole extending through it in the first direction. The first guide hole and the second guide hole are directly opposite each other in the first direction. The ingot-gathering plate is provided with a second guide rod extending toward the support frame, and the second guide rod is sequentially inserted into the first guide hole and the second guide hole.
9. The ingot-gathering device according to claim 3, characterized in that, The support frame further includes a support frame comprising a top beam and two uprights. The two uprights extend vertically and are spaced apart in the conveying direction of the stack. The top beam extends along the conveying direction of the stack and connects to the upper ends of the two uprights. The periphery of the mounting plate is connected to the two uprights and the top beam, respectively. The ingot gathering device further includes a connecting beam that extends along the first direction and connects the top beams of the two support frames.
10. A stacking conveying system, characterized in that, include: A conveying device for conveying stacked ingots, the stack comprising multiple zinc ingots arranged in a vertical direction; According to any one of claims 1-9, the two collecting plates are respectively arranged on both sides of the conveying device perpendicular to the conveying direction.