Shearing device for tile press
By designing a receiving platform and elastic component structure in the shearing device of the roll forming machine, the problem of metal panels falling and being damaged after shearing was solved, resulting in a higher product qualification rate and longer equipment lifespan.
Patent Information
- Application Number
- CN202511171051.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-21
- Publication Date
- 2025-11-21
AI Technical Summary
When the roll forming machine is cutting metal panels, the metal panels fall directly from in front of the cutting device, which can easily cause damage and affect the product qualification rate.
Design a shearing device for a tile press machine, which adopts a receiving platform and elastic element structure. The receiving element is inclined downward and buffered by the elastic element. It is locked into the groove of the metal panel for limiting. Combined with the elastic ring for secondary buffering, the falling impact force is reduced. The panels are stacked through the receiving platform.
It reduces impact damage to metal panels, improves product qualification rate, and extends equipment lifespan and reduces equipment costs through replaceable elastic components.
Smart Images

Figure CN120984973A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of tile press, in particular to a shearing device for tile press. BACKGROUND
[0002] With the acceleration of urbanization process and the increase of emergency demand, mobile houses have been widely used in temporary office, field work, emergency resettlement, tourist camp and other scenes due to their characteristics of quick assembly, flexible migration and high space utilization.
[0003] In the enclosure structure of mobile houses such as walls and roofs, sandwich panels become the mainstream choice due to their unique composite structure. The sandwich panel is usually composed of two metal panels (such as color steel plate) and an intermediate thermal core material (such as polyurethane, rock wool, polystyrene, etc.). It not only retains the high strength and weather resistance of metal materials, but also realizes excellent thermal insulation effect through the core material, perfectly meeting the demand of mobile houses for material multifunctionality. In related technologies, a metal panel, as shown in Figure 1 The plate body 1 is formed by rolling and pressing a plurality of grooves 11 on the plate body 1.
[0004] The tile press is a key equipment for forming metal panels. It processes flat metal coil into formed panels with specific cross-sectional shapes (such as corrugated, grooved, angular, etc.) through continuous rolling forming process. These formed panels not only enhance the structural rigidity of the sandwich panel, but also improve the sealing and connection strength during assembly.
[0005] Usually, the shearing device of the tile press and the conveying device of the tile press are fixedly installed on the same workbench. During use of the tile press, after the metal panel is positioned and cut by the shearing device, the metal panel will directly fall from the front of the shearing device. The height difference is easy to cause the metal panel to be damaged by knocking, which needs to be improved. SUMMARY
[0006] In order to improve the problem that the metal panel will directly fall from the front of the shearing device after being positioned and cut, which is easy to cause the metal panel to be damaged by knocking, the present application provides a shearing device for tile press.
[0007] The shearing device for tile press provided by the present application adopts the following technical scheme:
[0008] The utility model provides a cutting device for tile press, including workbench, the upper cutting knife that slides on the workbench lifts, the lower cutting knife that sets up on the workbench and driving part, the driving part drives the upper cutting knife lift, still including the receiving table, the receiving table is hinged with receiving part, receiving part is located below the lower cutting knife and inclines downward to the direction away from the workbench, the hinged axis of receiving part is horizontally arranged, and the receiving part is equipped with elastic part, and the elastic part is in close contact with the receiving table, so that receiving part has the tendency of turning upward, when the elastic part is in the natural state, the included angle formed by the upper surface of receiving part and horizontal plane is less than 10 DEG, the receiving part is used for clamping into the recess, and the receiving part is equipped with elastic ring.
[0009] By adopting the above technical scheme, when the metal panel is cut and falls down, the impact force of the metal panel pushing the receiving part to turn downward, the elastic force of the elastic part buffers the metal panel, and the receiving part is clamped into the recess on the plate body to limit the plate body, so that the plate body slides along the receiving part according to the specified path and falls onto the receiving table to be stacked, the plate body can be stacked more neatly, and the staff is not needed to arrange, in the process, the elastic ring is in close contact with the plate body to buffer the plate body again, the falling speed of the plate body is reduced, the impact force of the plate body falling is reduced in combination with the effect of the elastic part, and the product qualified rate of the metal panel is improved.
[0010] Optionally, the receiving table comprises a table body, a mounting block slidably connected to the table body, and an adjusting block rotatably connected to the mounting block, the mounting block is located on both sides of the receiving part, the adjusting block is located on the side of the mounting block away from the receiving part, and the adjusting block is threadedly connected to the table body, the receiving part comprises a hinged rod, a clamping rod provided on the hinged rod, and a protrusion, the clamping rod is located on the side of the hinged rod away from the lower cutting knife, the elastic ring is provided on the clamping rod, the protrusion is located on the side of the hinged rod close to the mounting block, a clamping groove is formed in the mounting block for clamping the protrusion, and the protrusion is rotatably connected to the clamping groove.
[0011] The elastic part comprises a spiral elastic portion, a first positioning portion provided on the spiral elastic portion, and a second positioning portion provided on the spiral elastic portion, the first positioning portion and the second positioning portion are respectively located on both sides of the spiral elastic portion, the spiral elastic portion is sleeved outside the protrusion, a first positioning groove is formed in the hinged rod for clamping the first positioning portion, and a second positioning groove is formed in the mounting block for clamping the second positioning portion.
[0012] By adopting the above technical scheme, when the elastic member is unable to be used due to elastic fatigue or damage caused by long-term use, the adjusting block can be twisted to drive the mounting block to move away from the hinged rod, and the adjusting block and the mounting block are separated from the table body, so that the elastic member can be taken out from the hinged rod, then a new elastic member is sleeved on the protrusion, and the positioning part is clamped into the first positioning groove, then the mounting block and the adjusting block are placed on the table body again, the adjusting block is twisted, the mounting block is pushed to move close to the hinged rod, the second positioning part is clamped into the second positioning groove, and the elastic member is positioned, the replacement of the elastic member is completed, the entire receiving table does not need to be replaced, the service life of the receiving table is prolonged, the loss is reduced, and the equipment cost is reduced.
[0013] Optionally, the clamping rod comprises a connecting part arranged on the hinged rod and a pressing part threadedly connected to the connecting part, the connecting part is used for clamping into the groove, the connecting part is provided with a mounting groove one for clamping the elastic ring, the connecting part is provided with a threaded groove for threadedly connecting the pressing part, the mounting groove one is arranged around the outer periphery of the threaded groove, when the pressing part is threadedly connected into the threaded groove, the pressing part and the connecting part are spliced to form a mounting groove two, the side of the elastic ring away from the hinged rod is provided with a ring groove, the ring groove is used for clamping the pressing part, and the mounting groove two is used for clamping the elastic ring.
[0014] By adopting the above technical scheme, when the elastic ring is worn or damaged, the pressing part can be twisted to make the pressing part separate from the connecting part, then the damaged elastic ring is taken off, a new elastic ring is clamped into the mounting groove one, and the pressing part is threadedly connected into the threaded groove, the elastic ring in the mounting groove one is pressed by the pressing part, the replacement and positioning of the elastic ring are realized, meanwhile, the pressing part is clamped into the ring groove, the elastic ring is clamped into the mounting groove two, the elastic ring is clamped in the mounting groove one by the pressing part abutting against the inner wall of the ring groove, the situation that the elastic ring is taken away from the clamping rod by the friction resistance between the plate body and the elastic ring when the plate body moves downward along the connecting part is reduced, and the connection stability between the elastic ring and the clamping rod is improved.
[0015] Optionally, the table body is provided with a baffle at the end away from the workbench.
[0016] By adopting the above technical scheme, when the plate body slides downward to fall on the table body, the plate body is limited by the baffle, the plate body is stacked neatly, and the situation that the plate body slides off the table body is reduced.
[0017] Optionally, the table body is provided with a positioning block, the positioning block is vertically provided with a through hole, the workbench is provided with a fixing block, and the through hole is used for clamping the fixing block.
[0018] By adopting the above technical scheme, the table body is positioned by the fixing block abutting against the inner wall of the through hole, and the situation that the table body moves under the impact force of the plate body abutting against the baffle is reduced.
[0019] Optionally, the base body comprises a base, a vertical rod hinged to the base and a sliding table slidingly connected to the base, the vertical rod is located above the base, and the hinge axis of the vertical rod is horizontally arranged, the mounting block, the adjusting block and the hinge rod are all arranged on the vertical rod, a positioning rod is slidingly connected to the vertical rod, the sliding direction of the positioning rod is perpendicular to the hinge axis of the vertical rod, the base is provided with a positioning groove three for clamping the positioning rod, the sliding table is located on the side of the base away from the lower cutter and slides towards or away from the base, the baffle is arranged on the sliding table, the sliding table is provided with an insertion slot, the positioning block is located on the side of the base close to the lower cutter and is slidingly connected to the base, the positioning block slides towards or away from the base, the positioning block is provided with an insertion block, the insertion slot is used for clamping the insertion block, and the insertion slot and the insertion block are in interference fit, and the positioning block is provided with a positioning groove four for clamping the positioning rod.
[0020] By adopting the above technical scheme, during transportation, the adjusting block is twisted to make the positioning part two separate from the positioning groove two, then the positioning rod is moved to separate from the positioning groove three and the positioning groove four, then the vertical rod is turned to be close to the base, then the sliding table is moved to be close to the base, then the positioning block is moved to be close to the base, so that the insertion block is clamped into the insertion slot, and the positioning between the sliding table and the positioning block is realized through the interference fit between the insertion block and the insertion slot, so that the occupied space of the material receiving table as a whole can be reduced, so as to facilitate packaging, transportation and storage.
[0021] When the material receiving table needs to be used, the sliding table and the positioning block are moved away from the base, so that the insertion block is separated from the insertion slot and the positioning groove four and the positioning groove three are aligned, then the vertical rod is turned away from the base until the positioning rod and the positioning groove three are aligned, the positioning rod is clamped into the positioning groove three and the positioning groove four, the inner wall of the positioning groove three and the positioning groove four is abutted by the positioning rod, so as to position the vertical rod and the positioning block, then the fixing block is inserted into the through hole, and then the adjusting block is twisted to make the positioning part two clamped into the positioning groove two, so that the material receiving table can be used.
[0022] Optionally, the base is provided with universal wheels below, and the universal wheels are located on the side of the center line of the base close to the workbench.
[0023] By adopting the above technical scheme, during use of the material receiving table, the base can be inclined downward away from the workbench, so that the plate body abuts against the baffle to realize limiting and neat stacking, after the plate body is stacked to a certain number, the fixing block is separated from the through hole, then the hinge rod is pressed downward to make the end of the base away from the workbench be raised, so that the stacked plate body can be pushed to a designated position for storage through rolling of the universal wheels, without manual carrying, which helps to improve the work efficiency of workers.
[0024] Optionally, a positioning hole is formed on the sliding table, and a locking piece is threadedly connected to the base, and the positioning hole is used for clamping the locking piece.
[0025] By adopting the above technical scheme, the sliding table is positioned by the locking piece abutting against the inner wall of the positioning hole.
[0026] To sum up, the present application has at least one of the following beneficial technical effects:
[0027] 1. The secondary buffering of the elastic piece and the elastic ring reduces the impact force of the plate body falling, thereby reducing the damage caused by the plate body impacting the receiving table / the plate body on the receiving table, improving the product qualification rate of the metal panel, and limiting the plate body through the clamping of the receiving piece into the groove on the plate body, so that the plate body slides down along the receiving piece according to the specified path, which can make the plate body stack more neatly without the need for staff to arrange;
[0028] 2. When the elastic piece / elastic ring is damaged due to long-term use and cannot be used, the elastic piece / elastic ring can be replaced, which is beneficial to prolong the service life of the receiving table, reduce the loss, and reduce the equipment cost;
[0029] 3. During transportation, the torsion adjusting block is twisted to make the positioning part two separate from the positioning groove two, then the positioning rod is moved to separate from the positioning groove three and the positioning groove four, the vertical rod is then turned to be close to the base, then the sliding table and the positioning block are moved to be close to the base, so that the plug block is clamped into the plug slot, and the positioning between the sliding table and the positioning block is realized through the interference fit between the plug block and the plug slot, which can reduce the overall space occupied by the receiving table, so as to facilitate packaging, transportation and storage. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 It is a whole schematic diagram of the metal panel in the related art.
[0031] Figure 2 It is a whole schematic diagram of the embodiment of the present application.
[0032] Figure 3 It is a structure diagram of the embodiment of the present application partially cut at the vertical rod.
[0033] Figure 4 It is Figure 3 It is an enlarged view of part A of the embodiment of the present application, mainly showing the structure of the convex block and the positioning groove one.
[0034] Figure 5 It is a state diagram of the embodiment of the present application during transportation.
[0035] Figure 6 It is a structure diagram of part of the embodiment of the present application, mainly showing the structure diagram of the plug block.
[0036] Figure 7It is a partial exploded view of the embodiment of the application, mainly showing the structure of the two card slots and positioning slots.
[0037] Figure 8 It is a partial structure view of the embodiment of the application at the connecting part, mainly showing the structure of the ring groove and mounting groove.
[0038] Figure 9 It is a partial structure view of the embodiment of the application, mainly showing the structure of the positioning hole and the insertion slot.
[0039] Explanation of reference numerals: 1, plate body; 11, groove; 2, workbench; 3, upper cutter; 4, lower cutter; 5, driving member; 6, material receiving table; 61, table body; 611, base; 6111, sliding groove one; 6112, positioning slot three; 612, vertical rod; 6121, sliding groove two; 6122, mounting hole; 613, sliding table; 6131, positioning hole; 6132, insertion slot; 62, mounting block; 621, card slot; 622, positioning slot two; 63, adjusting block; 7, universal wheel; 8, positioning block; 81, transition part; 811, through hole; 82, sliding part; 821, positioning slot four; 9, fixed block; 10, insertion block; 12, positioning rod; 13, material receiving member; 131, hinged rod; 1311, positioning slot one; 132, protruding block; 133, clamping rod; 1331, connecting part; 1332, abutting part; 14, elastic member; 141, helical elastic part; 142, positioning part one; 143, positioning part two; 15, mounting groove one; 16, threaded groove; 17, elastic ring; 171, ring groove; 18, mounting groove two; 19, baffle; 20, locking member. DETAILED DESCRIPTION
[0040] The following will be described in detail with reference to the accompanying drawings. Figures 1-9 The application will be further described in detail.
[0041] A metal panel, see Figure 1 , comprising a plate body 1, a plurality of grooves 11 are formed on the plate body 1 by rolling, and the plurality of grooves 11 are uniformly and spacedly distributed along the width direction of the plate body 1.
[0042] The embodiment of the application discloses a shearing device for a tile press. Figure 2 The shearing device for the tile press comprises a workbench 2, an upper cutter 3, a lower cutter 4, a driving member 5 and a material receiving table 6, the upper cutter 3 is slidably lifted on the workbench 2, the lower cutter 4 is below the upper cutter 3 and is fixed on the workbench 2, in the embodiment, the number of the driving members 5 is two, the two driving members 5 are fixed above the workbench 2 and are spacedly arranged in the horizontal direction, the piston rod of the driving member 5 is fixedly connected through the workbench 2 and the upper cutter 3, the driving member 5 drives the upper cutter 3 to move, and the upper cutter 3 is slidably lifted on the workbench 2 through cooperation with the driving member 5, in the embodiment, the driving member 5 is an oil cylinder.
[0043] Referring to Figures 1-6 , the receiving table 6 is located in front of the workbench 2, that is, in actual use, the receiving table 6 is located on the side of the workbench 2 away from the conveying device on the tile press, the receiving table 6 comprises a table body 61, two mounting blocks 62 and an adjusting block 63, the table body 61 comprises a base 611, two vertical rods 612 and a sliding table 613, two universal wheels 7 are installed below the base 611, the two universal wheels 7 are located on the middle line of the base 611 close to the workbench 2 and are arranged in a spaced manner along the width direction of the plate body 1 on the workbench 2, a positioning block 8 is further slidably connected to the base 611, the positioning block 8 is located on the side of the base 611 close to the workbench 2, the positioning block 8 comprises a transition part 81 and two sliding parts 82, the two sliding parts 82 are located on the side of the transition part 81 away from the workbench 2 and are respectively located at the two ends of the transition part 81, the sliding part 82 and the transition part 81 are fixedly connected, a sliding groove one 6111 for accommodating the positioning block 8 is formed in the base 611, the sliding part 82 is slidably connected in the sliding groove one 6111, and the sliding part 82 slides close to or away from the base 611.
[0044] Referring to Figures 1-6 , a through hole 811 is vertically formed in the transition part 81, a fixed block 9 is fixed on the workbench 2, the through hole 811 is provided for the fixed block 9 to pass through, and a positioning groove four 821 is formed on the side of each of the two sliding parts 82 away from each other, the positioning groove four 821 vertically penetrates the sliding part 82, and an insertion block 10 is fixed to the end of each of the two sliding parts 82 away from the workbench 2.
[0045] Referring to Figures 1-6 , the two vertical rods 612 are located above the base 611 and are arranged in a spaced manner along the width direction of the plate body 1 on the workbench 2, and each vertical rod 612 is hingedly connected to the base 611, the hinge axis of the vertical rod 612 is horizontally arranged and parallel to the width direction of the plate body 1 on the workbench 2.
[0046] Referring to Figures 1-6 , a sliding groove two 6121 is formed on the outer side wall of each of the two vertical rods 612 away from each other, a positioning rod 12 is slidably connected to each vertical rod 612, the positioning rod 12 is slidably connected in the sliding groove two 6121, and the sliding direction of the positioning rod 12 is perpendicular to the hinge axis of the vertical rod 612, a positioning groove three 6112 is formed on the outer side wall of the base 611, the number and position of the positioning groove three 6112 correspond to the number and position of the positioning rod 12 one by one, the positioning groove three 6112 and the sliding groove one 6111 are communicated, and the positioning groove three 6112 and the positioning groove four 821 are both provided for the positioning rod 12 to be inserted.
[0047] Referring to Figures 1-7Each of the vertical rods 612 is provided with a mounting hole 6122 penetrating the vertical rod 612 along the width direction of the upper plate body 1 of the workbench 2, the two mounting blocks 62 and the two vertical rods 612 correspond to each other, each of the mounting blocks 62 is located in the corresponding mounting hole 6122 and is horizontally slidably connected to the corresponding vertical rod 612, and the sliding direction of the mounting block 62 is parallel to the width direction of the upper plate body 1 of the workbench 2, each of the mounting blocks 62 is provided with a clamping groove 621 and a positioning groove two 622 on the side close to the other vertical rod 612, the two adjusting blocks 63 and the two mounting blocks 62 correspond to each other, each of the adjusting blocks 63 is located on the side of the corresponding mounting block 62 away from the other vertical rod 612 and is located in the mounting hole 6122, and the adjusting block 63 is rotationally connected to the corresponding mounting block 62, the rotation axis of the adjusting block 63 and the mounting block 62 is parallel to the sliding direction of the mounting block 62, and the adjusting block 63 and the vertical rod 612 are threadedly connected.
[0048] Referring to Figures 1-7 The two vertical rods 612 are hingedly connected with a material receiving piece 13 located below the lower cutter 4, the material receiving piece 13 comprises a hinge rod 131, two protrusions 132 and a clamping rod 133, the two protrusions 132 are respectively located at two ends of the hinge rod 131 and are fixedly connected with the hinge rod 131, the clamping groove 621 is provided for the protrusion 132 to clamp into, when the protrusion 132 is clamped into the clamping groove 621, the protrusion 132 is rotationally connected in the clamping groove 621, the hinge rod 131 is hingedly connected to the vertical rod 612 through the cooperation of the protrusion 132 and the clamping groove 621, and the axis of the hinge rod 131 is horizontally arranged and parallel to the sliding direction of the mounting block 62, and the hinge rod 131 is provided with a positioning groove one 1311 on the end face close to the protrusion 132.
[0049] Referring to Figures 1-7 Each of the protrusions 132 is provided with an elastic piece 14, the elastic piece 14 comprises a spiral elastic portion 141, a positioning portion one 142 and a positioning portion two 143, the spiral elastic portion 141 is sleeved on the outside of the protrusion 132, the positioning portion one 142 and the positioning portion two 143 are respectively fixed at two ends of the spiral elastic portion 141, the positioning groove one 1311 is provided for the positioning portion one 142 to clamp into, and the positioning groove two 622 is provided for the positioning portion two 143 to clamp into, in the embodiment, the elastic piece 14 is a torsion spring.
[0050] Referring to Figures 1-8The two clamping rods 133 are spaced apart along the width direction of the plate body 1 on the workbench 2, the clamping rod 133 comprises a connecting part 1331 and an abutting part 1332, the connecting part 1331 is fixed to the side of the hinged rod 131 away from the lower cutter 4 and is inclined downward away from the workbench 2, the connecting part 1331 is used for clamping the groove 11, a mounting groove 15 and a threaded groove 16 are arranged on the end face of the connecting part 1331 away from the workbench 2, the mounting groove 15 is arranged around the outer periphery of the threaded groove 16 and penetrates the connecting part 1331 away from the threaded groove 16, the clamping rod 133 is provided with an elastic ring 17, a ring groove 171 is arranged on the outer side wall of the elastic ring 17, the mounting groove 15 is used for clamping the elastic ring 17, when the elastic ring 17 is clamped in the mounting groove 15, the ring groove 171 is located on the side of the elastic ring 17 away from the hinged rod 131, the abutting part 1332 is located on the side of the connecting part 1331 away from the workbench 2, the threaded groove 16 is used for threadedly connecting the abutting part 1332, when the abutting part 1332 is threadedly connected in the threaded groove 16, the abutting part 1332 and the connecting part 1331 are spliced to form a mounting groove 18, the mounting groove 18 is used for clamping the elastic ring 17, the ring groove 171 is used for clamping the abutting part 1332, in the embodiment, the material of the elastic ring 17 is rubber.
[0051] In actual use, when the elastic ring 17 is worn or damaged, the abutting part 1332 can be twisted to make the abutting part 1332 separate from the connecting part 1331, then the damaged elastic ring 17 is taken out, a new elastic ring 17 is clamped in the mounting groove 15, and the abutting part 1332 is threadedly connected in the threaded groove 16, at the same time, the abutting part 1332 is clamped in the ring groove 171, and the elastic ring 17 is clamped in the mounting groove 18, the abutting part 1332 abuts against the elastic ring 17 in the mounting groove 15 to realize the replacement and positioning of the elastic ring 17.
[0052] When the elastic member 14 is elastically fatigued or damaged and cannot be used, the adjusting block 63 can be twisted to drive the mounting block 62 to move away from the hinged rod 131 until the adjusting block 63 and the mounting block 62 separate from the vertical rod 612, then the elastic member 14 can be taken out from the hinged rod 131, then a new elastic member 14 is sleeved on the protrusion 132 and the positioning part 142 is clamped in the positioning groove 1311, then the mounting block 62 and the adjusting block 63 are placed on the vertical rod 612 again, the adjusting block 63 is twisted to drive the mounting block 62 to move close to the hinged rod 131 until the positioning part 143 is clamped in the positioning groove 622, then the elastic member 14 is positioned, and the replacement of the elastic member 14 is completed.
[0053] Referring to Figures 1-8, the elastic member 14 abuts against the vertical rod 612, so that the connecting portion 1331 and the hinged rod 131 have a tendency to overturn upwardly, and when the elastic member 14 is in a natural state, an included angle formed by the upper surface of the connecting portion 1331 and a horizontal plane is less than 10°, so as to ensure that the board body 1 can fall onto the connecting portion 1331 when falling.
[0054] Referring to Figures 1-9 , the sliding table 613 is located on the side of the base 611 away from the lower cutter 4 and is slidably connected to the base 611, and the sliding table 613 slides towards or away from the base 611, one end of the sliding table 613 away from the base 611 is fixed with a baffle 19, both sides of the sliding table 613 are provided with positioning holes 6131, the positioning holes 6131 are located at one end of the sliding table 613 close to the base 611, and the base 611 is threadedly connected with locking members 20, the number and position of the locking members 20 correspond to the number and position of the positioning holes 6131 in a one-to-one manner, and the positioning holes 6131 are used for clamping the locking members 20, and in the embodiment, the locking members 20 are bolts.
[0055] Referring to Figures 1-9 , the outer side wall of the sliding table 613 close to the base 611 is provided with insertion grooves 6132, the number and position of the insertion grooves 6132 correspond to the number and position of the insertion blocks 10 in a one-to-one manner, and the insertion grooves 6132 are used for clamping the insertion blocks 10, and the insertion grooves 6132 and the insertion blocks 10 are in interference fit.
[0056] When being transported, the adjusting block 63 is twisted to make the positioning portion two 143 disengage from the positioning groove two 622, then the positioning rod 12 is moved to disengage from the positioning groove three 6112 and the positioning groove four 821, then the vertical rod 612 is overturned to be close to the base 611, then the sliding table 613 is moved to be close to the base 611, then the positioning block 8 is moved to be close to the base 611, so that the insertion block 10 is clamped into the insertion groove 6132, and the positioning between the sliding table 613 and the positioning block 8 is realized through the interference fit between the insertion block 10 and the insertion groove 6132, so as to reduce the occupied space of the whole material receiving table 6, so as to facilitate packaging, transportation and storage.
[0057] When the material receiving table 6 needs to be used, the sliding table 613 and the positioning block 8 are moved away from the base 611, so that the insertion block 10 disengages from the insertion groove 6132 and the positioning groove four 821 and the positioning groove three 6112 are aligned, then the vertical rod 612 is overturned to be away from the base 611, until the positioning rod 12 and the positioning groove three 6112 are aligned, the positioning rod 12 is clamped into the positioning groove three 6112 and the positioning groove four 821, the inner walls of the positioning groove three 6112 and the positioning groove four 821 are abutted by the positioning rod 12, so as to position the vertical rod 612 and the positioning block 8, then the fixing block 9 is threaded through the hole 811, then the adjusting block 63 is twisted, so that the positioning portion two 143 is clamped into the positioning groove two 622, and the material receiving table 6 can be used.
[0058] The implementation principle of the shearing device for the tile press in the embodiment of the application is as follows:
[0059] When the metal panel is sheared and falls onto the connecting part 1331, the impact force of the falling metal panel pushes the connecting part 1331 and the hinged rod 131 to overturn downward, the elastic force of the elastic member 14 buffers the metal panel, and meanwhile the connecting part 1331 is clamped into the groove 11 on the plate body 1 to limit the plate body 1, so that the plate body 1 slides downward along the connecting part 1331 according to the specified path, and falls onto the receiving table 6 for stacking, which can make the plate body 1 stack more neatly without the need for staff to arrange. In this process, the elastic ring 17 abuts against the plate body 1 to buffer the plate body 1 again, which reduces the falling speed of the plate body 1. In combination with the effect of the elastic member 14, the impact force of the plate body 1 falling is comprehensively reduced, thereby reducing the situation that the plate body 1 collides with the receiving table 6 / the plate body 1 on the receiving table 6 to cause damage, and improving the product qualified rate of the metal panel.
[0060] The above are preferred embodiments of the present application, and are not intended to limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape, principle of the present application shall be covered within the protection scope of the present application.
Claims
1. A shearing device for a tile press machine, comprising a worktable (2), an upper cutter (3) that slides and moves vertically on the worktable (2), a lower cutter (4) disposed on the worktable (2), and a driving member (5), wherein the driving member (5) drives the upper cutter (3) to move vertically, characterized in that: It also includes a receiving platform (6), on which a receiving component (13) is hinged. The receiving component (13) is located below the lower cutter (4) and tilts downward in a direction away from the worktable (2). The hinge axis of the receiving component (13) is set horizontally. The receiving component (13) is provided with an elastic element (14). The elastic element (14) abuts against the receiving platform (6), so that the receiving component (13) has a tendency to flip upward. When the elastic element (14) is in its natural state, the angle formed between the upper surface of the receiving component (13) and the horizontal plane is less than 10°. The receiving component (13) is used to fit into the groove (11). The receiving component (13) is provided with an elastic ring (17).
2. The shearing device for a tile press machine according to claim 1, characterized in that: The receiving platform (6) includes a platform body (61), a mounting block (62) slidably connected to the platform body (61), and an adjusting block (63) rotatably connected to the mounting block (62). The mounting block (62) is located on both sides of the receiving component (13), and the adjusting block (63) is located on the side of the mounting block (62) away from the receiving component (13). The adjusting block (63) and the platform body (61) are threadedly connected. The receiving component (13) includes a hinge rod (131) and a mounting block (63) disposed on the hinge rod (131). 31) has a locking rod (133) and a protrusion (132). The locking rod (133) is located on the side of the hinge rod (131) away from the lower cutter (4). The elastic ring (17) is provided on the locking rod (133). The protrusion (132) is located on the side of the hinge rod (131) close to the mounting block (62). The mounting block (62) has a slot (621) for the protrusion (132) to be locked in. The protrusion (132) is rotatably connected in the slot (621). The elastic element (14) includes a spiral elastic part (141), a positioning part one (142) and a positioning part two (143) disposed on the spiral elastic part (141). The positioning part one (142) and the positioning part two (143) are respectively located on both sides of the spiral elastic part (141). The spiral elastic part (141) is sleeved on the outside of the protrusion (132). The hinge rod (131) is provided with a positioning groove one (1311) for the positioning part one (142) to be inserted into. The mounting block (62) is provided with a positioning groove two (622) for the positioning part two (143) to be inserted into.
3. The shearing device for a tile press machine according to claim 2, characterized in that: The locking rod (133) includes a connecting part (1331) disposed on the hinge rod (131) and a clamping part (1332) threadedly connected to the connecting part (1331). The connecting part (1331) is used to engage with the groove (11). The connecting part (1331) has an installation groove (15) for engaging the elastic ring (17). The connecting part (1331) has a threaded groove (16) for threaded connection of the clamping part (1332). (15) A mounting groove (18) is formed around the outer periphery of the threaded groove (16). When the abutment (1332) is threaded into the threaded groove (16), the abutment (1332) and the connecting part (1331) are spliced together. The elastic ring (17) has an annular groove (171) on the side away from the hinge rod (131). The annular groove (171) is for the abutment (1332) to be inserted into, and the mounting groove (18) is for the elastic ring (17) to be inserted into.
4. The shearing device for a tile press machine according to claim 3, characterized in that: The platform (61) has a baffle (19) at the end away from the workbench (2).
5. The shearing device for a tile press machine according to claim 4, characterized in that: The platform (61) is provided with a positioning block (8), and the positioning block (8) is provided with a through hole (811) in the vertical direction. The worktable (2) is provided with a fixing block (9), and the through hole (811) is for the fixing block (9) to pass through.
6. The shearing device for a tile press machine according to claim 5, characterized in that: The platform (61) includes a base (611), a vertical rod (612) hinged to the base (611), and a slide (613) slidably connected to the base (611). The vertical rod (612) is located above the base (611), and the hinge axis of the vertical rod (612) is horizontal. The mounting block (62), the adjusting block (63), and the hinge rod (131) are all provided on the vertical rod (612). A positioning rod (12) is slidably connected to the vertical rod (612). The sliding direction of the positioning rod (12) is perpendicular to the hinge axis of the vertical rod (612). The base (611) has a positioning groove (6112) for the positioning rod (12) to be inserted into. The slide (613) is located on the side of the base (611) away from the lower cutter (4) and slides closer to or away from the base (611). The baffle (19) is provided on the slide (613). The slide (613) has a slot (6132). The positioning block (8) is located on the side of the base (611) close to the lower cutter (4) and slides to be connected to the base (611). The positioning block (8) slides closer to or away from the base (611). The positioning block (8) has an insert (10). The slot (6132) is for the insert (10) to be inserted. The slot (6132) and the insert (10) are interference fit. The positioning block (8) has a positioning groove (821) for the positioning rod (12) to be inserted.
7. The shearing device for a tile press machine according to claim 6, characterized in that: The base (611) is provided with casters (7) below it, and the casters (7) are located on the side of the center line of the base (611) close to the workbench (2).
8. The shearing device for a tile press machine according to claim 6, characterized in that: The slide (613) has a positioning hole (6131), and the base (611) is threaded with a locking member (20), and the positioning hole (6131) is for the locking member (20) to be inserted.
Citation Information
Cited By
Surface protection method for compression molding of color steel plate wall tile
CN122184169A