A device for cutting surface grinding and post-grinding treatment of plates or sheets

By designing the cutting-edge grinding and post-grinding treatment equipment for sheets or sheets, including grinding, dust removal, spraying and boiling modules, the problems of low accuracy and low efficiency in the existing technology are solved, and an efficient and automated production process is achieved, with significant efficiency improvement.

CN112171469BActive Publication Date: 2025-06-20SHANGHAI YUHONG ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202010716094.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-07-23
Publication Date
2025-06-20
Estimated Expiration
2040-07-23

AI Technical Summary

Technical Problem

The existing technology cannot meet the demand for high-efficiency fully automatic processing of plate or sheet sections. The existing manual equipment is low in accuracy, low efficiency and low yield, and cannot meet product quality requirements.

Method used

A device including a grinding module, a dust removal module, a spraying module and a boiling module is designed. By grinding, dust removal, spraying and boiling treatments in turn, it can achieve efficient processing of the cutting surfaces of the board or sheet.

Benefits of technology

It has achieved continuous line production and high automation, and the efficiency has been improved by 20 times, significantly improving the accuracy and yield of the product, and meeting the needs of high-quality products.

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Patent Text Reader

Abstract

The present invention discloses a cutting surface grinding and post-grinding treatment device for plates or sheets. The device comprises a grinding module, a dust removal module, a spraying module, and a hot stamping module arranged in sequence. The grinding module is used for grinding the upper, lower, left, and right cutting surfaces of the plates or sheets. The dust removal module is used for removing the dust left after grinding on the plates or sheets. The spraying module is used for spraying glue or pigments on the ground surfaces of the plates or sheets. The hot stamping module is used for performing left-right and up-down hot stamping on the ground surfaces of the plates or sheets. The present invention can achieve continuous in-line production, high automation, and a 20-fold efficiency improvement.
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Description

Technical Field

[0001] The present invention belongs to the field of printing technology, and particularly relates to a device for cutting surface grinding and post-grinding treatment of plates or sheets. Background Art

[0002] With the development of the economy and consumption, the market needs a large number of products such as exquisitely printed books, greeting cards, sticky notes, high-quality packaging gift boxes, playing cards, etc. These products are printed exquisitely, but there is currently a blank in the market for high-efficiency and fully automatic equipment for processing cutting surfaces; the existing simple manual equipment has low precision, low efficiency, and low yield, and completely fails to meet the product quality requirements. Summary of the Invention

[0003] In view of this, the main object of the present invention is to provide a device for cutting surface grinding and post-grinding treatment of plates or sheets.

[0004] To achieve the above object, the technical solution of the present invention is realized as follows:

[0005] An embodiment of the present invention provides a device for cutting surface grinding and post-grinding treatment of plates or sheets. The device includes a grinding module, a dust removal module, a spraying module, and a hot stamping module arranged in sequence. The grinding module is used for grinding the upper, lower, left, and right cutting surfaces of the plates or sheets. The dust removal module is used for removing the dust left after grinding on the plates or sheets. The spraying module is used for spraying glue or pigment on the ground surface of the plates or sheets. The hot stamping module is used for performing left-right and up-down hot stamping on the ground surface of the plates or sheets.

[0006] In the above solution, the grinding module includes a first sliding platform, a first fixed platform, a left grinding mechanism, a right grinding mechanism, and an upper and lower grinding mechanism. The first sliding platform and the first fixed platform are oppositely arranged on the installation platform. The first sliding platform is connected to a driving motor for driving it to move towards the first fixed platform. The left grinding mechanism is arranged on the first sliding platform. The right grinding mechanism is arranged on the first fixed platform. The upper and lower grinding mechanisms are arranged on the upper and lower sides of the installation platform.

[0007] In the above solution, the left grinding mechanism includes a left rough grinding mechanism and a left fine grinding mechanism. The left rough grinding mechanism and the left fine grinding mechanism are arranged on the first sliding platform in sequence along the conveying direction of the plates or sheets. The right grinding mechanism includes a left rough grinding mechanism and a right fine grinding mechanism. The left rough grinding mechanism and the right fine grinding mechanism are arranged on the first fixed platform in sequence along the conveying direction of the plates or sheets.

[0008] In the above solution, the left rough grinding mechanism, the left fine grinding mechanism, the right rough grinding mechanism, and the right fine grinding mechanism all include a first driving motor, a first grinding tool shaft, a first shaft support, and a first grinding tool. The first shaft support is vertically arranged on the first sliding platform or the first fixed platform. The first grinding tool shaft is arranged on the first shaft support and one end is connected to the first driving motor through a transmission member. The first grinding tool is sleeved on the first grinding tool shaft and fixed by a first locking wheel.

[0009] In the above solution, the left rough grinding mechanism and the left fine grinding mechanism further include a first manual fine-tuning mechanism. The first manual fine-tuning mechanism is arranged between the installation platform and the first sliding platform for fine-tuning the position of the first sliding platform. The first manual fine-tuning mechanism includes a first fine-tuning handwheel, a transmission lead screw, and a first meshing gear. The first fine-tuning handwheel is arranged outside the installation platform and connected to the horizontally arranged transmission lead screw. The first meshing gear is arranged at the bottom of the first sliding platform and meshes with the transmission lead screw.

[0010] In the above solution, the upper and lower grinding mechanism includes a first lifting mechanism, an upper rough grinding mechanism, a lower rough grinding mechanism, an upper fine grinding mechanism, and a lower fine grinding mechanism. The lower rough grinding mechanism and the lower fine grinding mechanism are sequentially arranged along the conveying direction of the plate or sheet on the lower side of the installation platform. The upper rough grinding mechanism and the upper fine grinding mechanism are sequentially arranged along the conveying direction of the plate or sheet on the upper side of the installation platform. The rough grinding mechanism and the upper fine grinding mechanism are both connected to the upper side of the installation platform through the first lifting mechanism.

[0011] In the above solution, the upper rough grinding mechanism and the upper fine grinding mechanism both include a vertical line support, a linear module, a second shaft support, a second grinding tool shaft, a second grinding tool, and a second driving motor. The vertical line support is vertically arranged on the installation platform. The second shaft support is connected to the vertical line support through the linear modules arranged on both sides. The second grinding tool shaft is horizontally arranged on the second shaft support and the second grinding tool is sleeved outside. The second driving motor is arranged on one side outside the second shaft support and connected to the second grinding tool shaft through a transmission member.

[0012] In the above solution, the lower rough grinding mechanism and the lower fine grinding mechanism both include a third shaft support, a third grinding tool shaft, a third grinding tool, and a third driving motor. The third shaft support is connected to the vertical line support. The third grinding tool shaft is horizontally arranged on the third shaft support and the third grinding tool is sleeved outside. The third driving motor is arranged on one side outside the third shaft support and connected to the third grinding tool shaft through a transmission member.

[0013] In the above solution, the first grinding tool, the second grinding tool, and the third grinding tool all include an upper grinding tool, a middle grinding tool, and a lower grinding tool. The upper grinding tool, the middle grinding tool, and the lower grinding tool are stacked and composed, and the number of middle grinding tools is greater than or equal to one.

[0014] In the above solution, the upper rough grinding mechanism, the upper fine grinding mechanism, the lower rough grinding mechanism, and the lower fine grinding mechanism also all include a second manual fine-tuning mechanism. The second manual fine-tuning mechanism includes a second fine-tuning handwheel, a transmission shaft, a second meshing gear, and a horizontal gear. One end of the transmission shaft is provided with the second fine-tuning handwheel, and the other end is provided with the second meshing gear. The second meshing gear meshes with the horizontal gear sleeved on the transmission rod.

[0015] In the above solution, the dust removal module includes a second sliding platform, a second fixed platform, a left dust removal mechanism, a right dust removal mechanism, an upper dust removal mechanism, and a lower dust removal mechanism. The second sliding platform and the second fixed platform are oppositely arranged on the installation platform. The left dust removal mechanism is arranged on the second sliding platform, the right dust removal mechanism is arranged on the second fixed platform, and the upper dust removal mechanism and the lower dust removal mechanism are respectively arranged on the upper and lower sides of the installation platform.

[0016] In the above solution, the left dust removal mechanism, the right dust removal mechanism, the upper dust removal mechanism, and the lower dust removal mechanism all include a fourth shaft bracket, a rotating shaft, a dust removal roller, and a fourth driving motor. Both ends of the rotating shaft are arranged on the fourth shaft bracket and one end is connected to the fourth driving motor through a transmission member. The dust removal roller is sleeved on the rotating shaft.

[0017] In the above solution, the spraying module includes a third sliding platform, a third fixed platform, a left spraying mechanism, a right spraying mechanism, an upper spraying mechanism, and a lower spraying mechanism. The third sliding platform and the third fixed platform are oppositely arranged on the installation platform. The left spraying mechanism is arranged on the third sliding platform, the right spraying mechanism is arranged on the third fixed platform, and the upper spraying mechanism and the lower spraying mechanism are respectively arranged on the upper and lower sides of the installation platform.

[0018] In the above solution, the left spraying mechanism, the right spraying mechanism, the upper spraying mechanism, and the lower spraying mechanism all include a first sliding rod, a second sliding rod, and a spray gun. The first sliding rod is arranged horizontally or vertically. The second sliding rod is slidably arranged on the first sliding rod, and the spray gun is slidably arranged on the second sliding rod.

[0019] In the above solution, the scalding module includes an upper scalding mechanism, a lower scalding mechanism, a second lifting mechanism, a left scalding mechanism, a right scalding mechanism, a fourth sliding platform, and a fourth fixed platform. The upper scalding mechanism and the lower scalding mechanism are respectively arranged on the upper and lower sides of the installation platform. The upper scalding mechanism is arranged on the upper side of the installation platform through the second lifting mechanism. The fourth sliding platform and the fourth fixed platform are oppositely arranged on the installation platform. The left scalding mechanism is arranged on the fourth sliding platform, and the right scalding mechanism is arranged on the fourth fixed platform.

[0020] In the above solution, the second lifting mechanism includes a first cylinder, a guide shaft, and a lifting platform. The output end of the first cylinder is connected to the upper hot rolling mechanism, and the guide shafts are located on both sides of the first cylinder and their ends are connected to the lifting platform.

[0021] In the above solution, the upper hot rolling mechanism, the lower hot rolling mechanism, the left hot rolling mechanism, and the right hot rolling mechanism all include an unwinding mechanism, a winding mechanism, a hot rolling sub-mechanism, and a frame. The hot rolling sub-mechanism is arranged in the middle area of the frame, and the unwinding mechanism and the winding mechanism are respectively located on both sides of the frame.

[0022] In the above solution, the unwinding mechanism includes an unwinding bracket, an unwinding roller, and a tension spring. One side of the unwinding bracket is connected to the frame, and the unwinding bracket is also connected to the winding mechanism through a connecting rod. The unwinding roller is arranged on the unwinding bracket, and the tension spring is sleeved on the unwinding roller.

[0023] In the above solution, the winding mechanism includes a winding motor, a winding bracket, and a winding roller. One side of the winding bracket is connected to the frame and is connected to the unwinding bracket through a connecting rod. The winding motor is arranged outside one side of the frame and is connected to the winding bracket through a belt. The winding roller is arranged on the winding bracket.

[0024] In the above solution, the hot rolling sub-mechanism includes a main motor, a synchronous pulley, a rotating shaft, a fixed shaft, a silicone roller, and a heating component. The rotating shaft is arranged inside the frame, and a fixed shaft is arranged between the two rotating shafts. The silicone roller is sleeved outside the fixed shaft. A heating component is arranged on one end face of the silicone roller. The main motor is arranged outside the frame and drives the synchronous pulley to rotate through a belt. The synchronous pulley is connected to the rotating shaft.

[0025] In the above solution, the heating component includes heating rods. A plurality of heating rod holes are arranged on one end face of the silicone roller, and heating rods are arranged in each heating rod hole.

[0026] In the above solution, the device further includes a stock preparation module, a feeding module, and a feeding buffer module. The stock preparation module is connected to the feeding module and is used to place a board or sheet on the material fixture and push it to the feeding module. The feeding module is connected to the feeding buffer module and is used to guide the material fixture with the board or sheet to move to the feeding buffer module and push the material fixture with the board or sheet located in the feeding buffer module to move to the grinding module. The feeding buffer module is connected to the grinding module and is used to translate the material fixture with the board or sheet to the other side and move it to the grinding module under the action of the feeding module.

[0027] In the above solution, the device further includes a material receiving module. The material receiving module is connected to the discharge end of the hot rolling mechanism through a conveying module and is used to take out the processed board or sheet and the material fixture.

[0028] In the above solution, both the stock preparation module and the material receiving module include a horizontal frame, a vertical frame, a fixture bearing table, a synchronous belt, a first guide rail, a driving motor, and a fixture lifting mechanism. On both sides of the top of the horizontal frame, first guide rails are respectively arranged, and on both sides of the inside, synchronous belts are respectively arranged. The synchronous belt is connected to an external driving motor through a rotating shaft and a toothed belt. The fixture bearing table is slidably arranged on the first guide rail and is driven to move by the synchronous belt. The vertical frame straddles one side of the horizontal frame, and the fixture lifting mechanism is arranged on one side of the vertical frame to limit the fixture bearing table.

[0029] In the above solution, the fixture lifting mechanism includes a second cylinder, a cylinder guide hole, and a limit plate. The second cylinder is arranged outside one side of the vertical frame, and the air rod ejector rod penetrates through the cylinder guide hole. Limit plates are respectively arranged on the upper and lower sides of the air rod ejector rod, and the limit plates are fixed to one side of the vertical frame by bolts.

[0030] In the above solution, the feeding module includes a feeding platform, an electric cylinder, and positioning guide wheels. The electric cylinder is arranged on one side of the feeding platform, and the output end of the electric cylinder faces the right side of the feeding buffer module. A plurality of positioning guide wheels are arranged on the left side of the electric cylinder.

[0031] In the above solution, the feeding buffer module includes a second guide rail, a sliding plate, and guide wheels. The sliding plate is slidably arranged on the second guide rail. A plurality of guide wheels are respectively arranged on both sides of the sliding plate, and the distance between the guide wheels on both sides matches the width of the material fixture.

[0032] Compared with the prior art, the present invention can achieve continuous production in a line, high automation, and a 20-fold efficiency improvement. Description of the Drawings

[0033] Figure 1 It is a schematic structural diagram of a device for cutting surface grinding and post-grinding treatment of a board or sheet provided by an embodiment of the present invention;

[0034] Figure 2 It is a schematic structural diagram of a grinding module in a device for cutting surface grinding and post-grinding treatment of a board or sheet provided by an embodiment of the present invention;

[0035] Figure 3 It is a schematic structural diagram of a left rough grinding mechanism in a device for cutting surface grinding and post-grinding treatment of a board or sheet provided by an embodiment of the present invention;

[0036] Figure 4 It is Figure 3 a side view of

[0037] Figure 5This is a schematic structural diagram of the upper rough grinding mechanism and the upper fine grinding mechanism in a cutting surface grinding and post-grinding processing device for plates or sheets provided by an embodiment of the present invention;

[0038] Figure 6 This is a top view of the upper rough grinding mechanism and the upper fine grinding mechanism in a cutting surface grinding and post-grinding processing device for plates or sheets provided by an embodiment of the present invention;

[0039] Figure 7 This is a bottom view of the upper rough grinding mechanism and the upper fine grinding mechanism in a cutting surface grinding and post-grinding processing device for plates or sheets provided by an embodiment of the present invention;

[0040] Figure 8 This is a side view of the upper rough grinding mechanism and the upper fine grinding mechanism in a cutting surface grinding and post-grinding processing device for plates or sheets provided by an embodiment of the present invention;

[0041] Figure 9 This is a front view of the lower rough grinding mechanism and the lower fine grinding mechanism in a cutting surface grinding and post-grinding processing device for plates or sheets provided by an embodiment of the present invention;

[0042] Figure 10 This is a schematic structural diagram of the first grinding tool, the second grinding tool, and the third grinding tool in a cutting surface grinding and post-grinding processing device for plates or sheets provided by an embodiment of the present invention;

[0043] Figure 11 This is a schematic structural diagram of the middle grinding tool in a cutting surface grinding and post-grinding processing device for plates or sheets provided by an embodiment of the present invention;

[0044] Figure 12 This is a schematic structural diagram of the dust removal module in a cutting surface grinding and post-grinding processing device for plates or sheets provided by an embodiment of the present invention;

[0045] Figure 13 This is a side view of the dust removal module in a cutting surface grinding and post-grinding processing device for plates or sheets provided by an embodiment of the present invention;

[0046] Figure 14 This is a schematic structural diagram of the left dust removal mechanism in a cutting surface grinding and post-grinding processing device for plates or sheets provided by an embodiment of the present invention;

[0047] Figure 15 This is a schematic structural diagram of the spraying module in a cutting surface grinding and post-grinding processing device for plates or sheets provided by an embodiment of the present invention;

[0048] Figure 16 This is a schematic structural diagram of the left spraying mechanism in a cutting surface grinding and post-grinding processing device for plates or sheets provided by an embodiment of the present invention;

[0049] Figure 17 This is a schematic structural diagram of the hot stamping module in an equipment for cutting surface grinding and post - grinding treatment of plates or sheets according to an embodiment of the present invention;

[0050] Figure 18 This is a schematic structural diagram of the upper hot stamping mechanism in an equipment for cutting surface grinding and post - grinding treatment of plates or sheets according to an embodiment of the present invention;

[0051] Figure 19 This is a rear view of the upper hot stamping mechanism in an equipment for cutting surface grinding and post - grinding treatment of plates or sheets according to an embodiment of the present invention;

[0052] Figure 20 This is a schematic structural diagram of the stock preparation module in an equipment for cutting surface grinding and post - grinding treatment of plates or sheets according to an embodiment of the present invention. Detailed implementation manners

[0053] In order to make the objectives, technical solutions and advantages of the present invention more clear and understandable, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0054] An embodiment of the present invention provides an equipment for cutting surface grinding and post - grinding treatment of plates or sheets. As Figure 1 shown, the equipment includes a grinding module 1, a dust removal module 2, a spraying module 3, and a hot stamping module 4 arranged in sequence. The grinding module 1 is used for grinding the upper, lower, left and right cutting surfaces of the plate or sheet. The dust removal module 2 is used for removing the dust left after grinding on the plate or sheet. The spraying module 3 is used for spraying glue or pigment on the grinding surface of the plate or sheet. The hot stamping module 4 is used for performing left - right and up - down hot stamping on the grinding surface of the plate or sheet.

[0055] As Figure 2 shown, the grinding module 1 includes a first sliding platform 11, a first fixed platform 12, a left grinding mechanism 13, a right grinding mechanism 14, an upper and lower grinding mechanism 15, and a lower grinding mechanism 16. The first sliding platform 11 and the first fixed platform 12 are oppositely arranged on the installation platform. The first sliding platform 11 is connected to a driving motor for driving it to move towards the first fixed platform 12. The left grinding mechanism 13 is arranged on the first sliding platform 11. The right grinding mechanism 14 is arranged on the first fixed platform 12. The upper and lower grinding mechanism 15 is arranged on the upper and lower sides of the installation platform.

[0056] The left grinding mechanism 13 includes a left rough grinding mechanism 131 and a left fine grinding mechanism 132. The left rough grinding mechanism 131 and the left fine grinding mechanism 132 are sequentially arranged on the first sliding platform 11 along the conveying direction of the plate or sheet. The right grinding mechanism 14 includes a left rough grinding mechanism 141 and a right fine grinding mechanism 142. The left rough grinding mechanism 141 and the right fine grinding mechanism 142 are sequentially arranged on the first fixed platform 12 along the conveying direction of the plate or sheet.

[0057] As Figure 3 , 4 shown, the left rough grinding mechanism 131, the left fine grinding mechanism 132, the left rough grinding mechanism 141 and the right fine grinding mechanism 142 all include a first driving motor 1311, a first grinding tool shaft 1312, a first shaft bracket 1313, and a first grinding tool 1314. The first shaft bracket 1313 is vertically arranged on the first sliding platform 11 or the first fixed platform 12. The first grinding tool shaft 1312 is arranged on the first shaft bracket 1313 and one end is connected to the first driving motor 1311 through a transmission member. The first grinding tool 1314 is sleeved on the first grinding tool shaft 1312 and fixed by a first locking wheel 1315.

[0058] The first grinding tools 1314 in the left rough grinding mechanism 131, the left fine grinding mechanism 132, the left rough grinding mechanism 141 and the right fine grinding mechanism 142 respectively adopt rough grinding tools and fine grinding tools.

[0059] In the left rough grinding mechanism 131 and the left fine grinding mechanism 132, the first grinding tool 1314 faces the side of the first fixed platform 12.

[0060] The left rough grinding mechanism 131 and the left fine grinding mechanism 132 further include a first manual fine-tuning mechanism 1316. The first manual fine-tuning mechanism 1316 is arranged between the installation platform and the first sliding platform 11 for fine-tuning the position of the first sliding platform 11.

[0061] The first manual fine-tuning mechanism 1316 includes a first fine-tuning handwheel 13161, a transmission lead screw 13162, and a first meshing gear 13163. The first fine-tuning handwheel 13161 is arranged outside the installation platform and connected to the horizontally arranged transmission lead screw 13162. The first meshing gear 13163 is arranged at the bottom of the first sliding platform 11 and meshes with the transmission lead screw 13162.

[0062] In the left rough grinding mechanism 141 and the right fine grinding mechanism 142, the first shaft bracket 1313 is vertically arranged on the first fixed platform 12, and the first grinding tool 1314 faces the side of the first sliding platform 11.

[0063] The upper and lower grinding mechanism 15 includes a first lifting mechanism 151, an upper rough grinding mechanism 152, a lower rough grinding mechanism 153, an upper fine grinding mechanism 154, and a lower fine grinding mechanism 155. The lower rough grinding mechanism 153 and the lower fine grinding mechanism 155 are sequentially arranged along the conveying direction of the plate or sheet on the lower side of the installation platform, and the upper rough grinding mechanism 152 and the upper fine grinding mechanism 154 are sequentially arranged along the conveying direction of the plate or sheet on the upper side of the installation platform. The rough grinding mechanism 152 and the upper fine grinding mechanism 154 are both connected to the upper side of the installation platform through the first lifting mechanism 151.

[0064] The first lifting mechanism 151 includes a lifting motor, and the output end of the lifting motor is connected to the upper rough grinding mechanism 152 or the upper fine grinding mechanism 154 through a transmission rod.

[0065] As Figures 5 - 8 shown, both the upper rough grinding mechanism 152 and the upper fine grinding mechanism 154 include a vertical line bracket 1521, a linear module 1522, a second shaft bracket 1523, a second grinding tool shaft 1524, a second grinding tool 1525, and a second driving motor 1526. The vertical line bracket 1521 is vertically arranged on the installation platform. The second shaft bracket 1523 is connected to the vertical line bracket 1521 through the linear modules 1522 arranged on both sides. The second grinding tool shaft 1524 is horizontally arranged on the second shaft bracket 1523 and the second grinding tool 1525 is sleeved outside. The second driving motor 1526 is arranged on one side outside the second shaft bracket 1523 and is connected to the second grinding tool shaft 1524 through a transmission member.

[0066] A locking wheel 1527 is arranged at the end of the second grinding tool shaft 1524.

[0067] The transmission member adopts a transmission belt.

[0068] The second grinding tools 1525 in the upper rough grinding mechanism 152 and the upper fine grinding mechanism 154 respectively adopt a rough grinding tool and a fine grinding tool.

[0069] The grinding tool includes but is not limited to a flat grinding wheel, a cylindrical grinding wheel, and a grinding belt.

[0070] As Figure 9 shown, both the lower rough grinding mechanism 153 and the lower fine grinding mechanism 155 include a third shaft bracket 1531, a third grinding tool shaft 1532, a third grinding tool 1533, and a third driving motor. The third shaft bracket 1531 is connected to the vertical line bracket 1521. The third grinding tool shaft 1532 is horizontally arranged on the third shaft bracket 1531 and the third grinding tool 1533 is sleeved outside. The third driving motor is arranged on one side outside the third shaft bracket 1531 and is connected to the third grinding tool shaft 1532 through a transmission member.

[0071] The third grinding tools 1533 in the lower rough grinding mechanism 153 and the lower fine grinding mechanism 155 respectively adopt rough grinding tools and fine grinding tools.

[0072] As Figure 10 shown, the first grinding tool 1314, the second grinding tool 1525 and the third grinding tool 1533 all include an upper grinding tool 15251, a middle grinding tool 15252, and a lower grinding tool 15253. The upper grinding tool 15251, the middle grinding tool 15252, and the lower grinding tool 15253 are stacked, and the number of middle grinding tools 15252 is greater than or equal to one.

[0073] As Figure 11 shown, the upper grinding tool 15251, the middle grinding tool 15252, and the lower grinding tool 15253 are circular, and an installation hole 15254 is provided at the center inside the circle, and a plurality of heat dissipation holes 15255 are provided around.

[0074] One side of the upper grinding tool 15251 and the lower grinding tool 15253 is horizontal, and the other side is inclined, and it looks like a trapezoid in front view; the two sides of the middle grinding tool 15252 are inclined and parallel, and it looks like a rhombus in front view. The inclination angles of the inclined surfaces of the upper grinding tool 15251, the middle grinding tool 15252, and the lower grinding tool 15253 are equal, and they form a regular cylinder after being combined and tightening the tightening wheel 1527.

[0075] The output end of the lifting motor of the first lifting mechanism 151 is connected to the third shaft support 1531. Driven by the lifting motor, the third shaft support 1531 moves up and down along the linear module 1522.

[0076] The upper rough grinding mechanism 152 and the upper fine grinding mechanism 154 also both include a second manual fine-tuning mechanism 1528. The second manual fine-tuning mechanism 1528 includes a second fine-tuning handwheel 15281, a transmission shaft 15282, a second meshing gear 15283, and a horizontal gear 15284. One end of the transmission shaft 15282 is provided with the second fine-tuning handwheel 15281, and the other end is provided with the second meshing gear 15283. The second meshing gear 15283 meshes with the horizontal gear 15284 sleeved on the transmission rod.

[0077] By rotating the second fine-tuning handwheel 15281 clockwise or counterclockwise, the second meshing gear 15283 drives the horizontal gear 15284 to rotate, so as to finely adjust the rise or fall of the second shaft support 1523.

[0078] In the lower rough grinding mechanism 153 and the lower fine grinding mechanism 155, the third shaft bracket 1531 is slidably connected to the longitudinal line bracket 1521 through the second manual fine-tuning mechanism 1528. One end of the transmission shaft 15282 is provided with a second fine-tuning handwheel 15281, and the other end is provided with a second meshing gear 15283. The second meshing gear 15283 meshes with the horizontal gear 15284 sleeved on the transmission rod.

[0079] As Figure 12 , 13 shown, the dust removal module 2 includes a second sliding platform 21, a second fixed platform 22, a left dust removal mechanism 23, a right dust removal mechanism 24, an upper dust removal mechanism 25, and a lower dust removal mechanism 26. The second sliding platform 21 and the second fixed platform 22 are oppositely arranged on the installation platform. The left dust removal mechanism 23 is arranged on the second sliding platform 21, the right dust removal mechanism 24 is arranged on the second fixed platform 22, and the upper dust removal mechanism 25 and the lower dust removal mechanism 26 are respectively arranged on the upper and lower sides of the installation platform.

[0080] As Figure 14 shown, the left dust removal mechanism 23, the right dust removal mechanism 24, the upper dust removal mechanism 25, and the lower dust removal mechanism 26 all include a fourth shaft bracket 231, a rotating shaft 232, a dust removal roller 233, and a fourth driving motor 234. Both ends of the rotating shaft 232 are arranged on the fourth shaft bracket 231 and one end is connected to the fourth driving motor 234 through a transmission member. The dust removal roller 233 is sleeved on the rotating shaft 232.

[0081] In the left dust removal mechanism 23 and the right dust removal mechanism 24, the fourth shaft brackets 231 are respectively vertically arranged on the second sliding platform 21 and the second fixed platform 22. The dust removal roller 233 in the left dust removal mechanism 23 faces the second fixed platform 22, and the dust removal roller 233 in the right dust removal mechanism 24 faces the second sliding platform 21.

[0082] In the upper dust removal mechanism 25 and the lower dust removal mechanism 26, the fourth shaft brackets 231 are respectively horizontally arranged on the bracket and the installation platform. The dust removal roller 233 in the upper dust removal mechanism 25 faces downward, and the dust removal roller 233 in the lower dust removal mechanism 26 faces upward.

[0083] As Figure 15 shown, the spraying module 3 includes a third sliding platform 31, a third fixed platform 32, a left spraying mechanism 33, a right spraying mechanism 34, an upper spraying mechanism 35, and a lower spraying mechanism 36. The third sliding platform 31 and the third fixed platform 32 are oppositely arranged on the installation platform. The left spraying mechanism 33 is arranged on the third sliding platform 31, the right spraying mechanism 34 is arranged on the third fixed platform 32, and the upper spraying mechanism 35 and the lower spraying mechanism 36 are respectively arranged on the upper and lower sides of the installation platform.

[0084] As Figure 16 shown, the left spraying mechanism 33, right spraying mechanism 34, upper spraying mechanism 35, and lower spraying mechanism 36 each include a first sliding rod 331, a second sliding rod 332, and a spray gun 333. The first sliding rod 331 is arranged horizontally or vertically. The second sliding rod 332 is slidably arranged on the first sliding rod 331, and the spray gun 333 is slidably arranged on the second sliding rod 332.

[0085] In the left spraying mechanism 33 and right spraying mechanism 34, the first sliding rods 331 are respectively vertically arranged on the third sliding platform 31 and the third fixed platform 32.

[0086] In the upper spraying mechanism 35 and lower spraying mechanism 36, the first sliding rods 331 are respectively horizontally arranged on the bracket and the mounting platform.

[0087] As Figure 17 shown, the hot rolling mechanism 4 includes an upper hot rolling mechanism 41, a lower hot rolling mechanism 42, a second lifting mechanism 43, a left hot rolling mechanism 44, a right hot rolling mechanism 45, a fourth sliding platform 46, and a fourth fixed platform 47. The upper hot rolling mechanism 41 and the lower hot rolling mechanism 42 are respectively arranged on the upper and lower sides of the mounting platform. The upper hot rolling mechanism 41 is arranged on the upper side of the mounting platform through the second lifting mechanism 43. The fourth sliding platform 46 and the fourth fixed platform 47 are oppositely arranged on the mounting platform. The left hot rolling mechanism 44 is arranged on the fourth sliding platform 46, and the right hot rolling mechanism 45 is arranged on the fourth fixed platform 47.

[0088] As Figure 18 、 19 shown, the second lifting mechanism 43 includes a first cylinder 431, a guide shaft 432, and a lifting platform 433. The output end of the first cylinder 431 is connected to the upper hot rolling mechanism 41. The guide shafts 432 are located on both sides of the first cylinder 431 and their ends are connected to the lifting platform 433.

[0089] As Figure 18 、 19 shown, the upper hot rolling mechanism 41, the lower hot rolling mechanism 42, the left hot rolling mechanism 44, and the right hot rolling mechanism 45 each include an unwinding mechanism 411, a winding mechanism 412, a hot rolling sub - mechanism 413, and a frame 414. The hot rolling sub - mechanism 413 is arranged in the middle area of the frame 414. The unwinding mechanism 411 and the winding mechanism 412 are respectively located on both sides of the frame 414.

[0090] The unwinding mechanism 411 includes an unwinding bracket 4111, an unwinding roller 4112, and a tension spring 4113. One side of the unwinding bracket 4111 is connected to the frame 414. The unwinding bracket 4111 is also connected to the winding mechanism 412 through a connecting rod 4114. The unwinding roller 4112 is arranged on the unwinding bracket 4111, and the tension spring 4113 is sleeved on the unwinding roller 4112.

[0091] The winding mechanism 412 includes a winding motor 4121, a winding bracket 4122, and a winding roller 4123. One side of the winding bracket 4122 is connected to the frame 414 and is connected to the unwinding bracket 4111 through a connecting rod 4114. The winding motor 4121 is arranged outside one side of the frame 414 and is connected to the winding bracket 4122 through a belt 4124. The winding roller 4123 is arranged on the winding bracket 4122.

[0092] The hot roller mechanism 413 includes a main motor 4131, a synchronous pulley 4132, a rotating shaft 4133, a fixed shaft 4134, a silicone roller 4135, and a heating component 4136. The rotating shaft 4133 is arranged inside the frame 414, and a fixed shaft 4134 is arranged between two rotating shafts 4133. The silicone roller 4135 is sleeved outside the fixed shaft 4134. A heating component 4136 is arranged on one end face of the silicone roller 4135. The main motor 4131 is arranged outside the frame 414 and drives the synchronous pulley 4132 to rotate through a belt. The synchronous pulley 4132 is connected to the rotating shaft 4133.

[0093] The heating component 4136 includes heating rods. A plurality of heating rod holes 41361 are arranged on one end face of the silicone roller 4135, and heating rods are arranged in each heating rod hole 41361.

[0094] The rotating shaft 4133 drives the silicone roller 4135 to rotate.

[0095] The tension spring 4113 fixedly passes through the hot stamping aluminized film on the unwinding roller 4112, and the aluminized coil is released as the silicone roller 4135 rotates.

[0096] The winding roller 4123 on the winding bracket 4122 rotates under the drive of the belt 4124 and the winding motor 4121 to recover the hot stamping aluminized waste.

[0097] Furthermore, the equipment also includes a material preparation module 5, a feeding module 6, and a feeding buffer module 7. The material preparation module 5 is connected to the feeding module 6, and is used to place plates or sheets on the material fixture and push them to the feeding module 6. The feeding module 6 is connected to the feeding buffer module 7, and is used to guide the material fixture with plates or sheets placed on it to move to the feeding buffer module 7, and push the material fixture with plates or sheets placed in the feeding buffer module 7 to move to the grinding module 1. The feeding buffer module 7 is connected to the grinding module 1, and is used to translate the material fixture with plates or sheets placed on it to the other side and move it to the grinding module 1 under the action of the feeding module 6.

[0098] In this embodiment, if Figure 20 As shown, the material preparation module 5 includes a horizontal frame 51, a vertical frame 52, a fixture support platform 53, a synchronous belt 54, a first guide rail 55, a drive motor 56, and a fixture lifting mechanism 57. The first guide rails 55 are respectively arranged on both sides of the top of the horizontal frame 51, and synchronous belts 54 are respectively arranged on both sides of the inside. The synchronous belt 54 is connected to the external drive motor 56 through a rotating shaft and a toothed belt. The fixture support platform 53 is slidably arranged on the first guide rail 55 and is driven to move by the synchronous belt 54. The vertical frame 52 is arranged on one side of the horizontal frame 51, and the fixture lifting mechanism 57 is arranged on one side of the vertical frame 52 for limiting the fixture support platform 53.

[0099] The clamp lifting mechanism 57 includes a second cylinder 571, a cylinder guide hole 572, and a limit plate 573. The second cylinder 571 is arranged on the outside of one side of the vertical frame 52 and the gas rod push rod 5711 passes through the cylinder guide hole 572. Limit plates 573 are respectively arranged on the upper and lower sides of the gas rod push rod 5711. The limit plates 573 are fixed to one side of the vertical frame 52 by bolts.

[0100] The fixture bearing platform 53 is a bracket on which a plurality of rollers 531 are arranged. The rotation direction of the plurality of rollers 531 is perpendicular to the movement direction of the fixture bearing platform 53 .

[0101] During material preparation, the clamp support platform 53 moves into the vertical frame 52, and the second cylinder 571 is actuated to push the air rod push rod 5711 toward the clamp support platform 53, and support the material clamp 10 placed on the clamp support platform 53, and then place a number of plates or sheets on the material clamp 10 at longitudinal intervals. After the placement is completed, the second cylinder 571 is reset, the air rod push rod 5711 is retracted, and the clamp support platform 53 moves toward the discharge end. After it is in place, the material clamp 10 slides from the clamp support platform 53 to the feeding module 6.

[0102] The feeding module 6 includes a feeding platform 61, an electric cylinder 62, and positioning guide wheels 63. The electric cylinder 62 is arranged on one side of the feeding platform 61, and the output end of the electric cylinder 62 faces the right side of the feeding buffer module 7. A plurality of positioning guide wheels 63 are arranged on the left side of the electric cylinder 62.

[0103] The material fixture 10 entering the feeding module 6 enters the left side of the feeding buffer module 7 under the guidance of the positioning guide wheels 63, then moves to the right side of the feeding buffer module 7, and enters the grinding module 1 under the push of the electric cylinder 62.

[0104] The feeding buffer module 7 includes a second guide rail 71, a sliding plate 72, and guide wheels 73. The sliding plate 72 is slidably arranged on the second guide rail 71. A plurality of guide wheels 73 are respectively arranged on both sides of the sliding plate 72, and the distance between the guide wheels 73 on both sides matches the width of the material fixture 10.

[0105] After the material fixture 10 enters between the guide wheels 73 on both sides of the sliding plate 72 through the feeding module 6, the sliding plate 72 moves to the right along the second guide rail 72. After moving to the end, it enters the grinding module 1 under the push of the electric cylinder 62.

[0106] Further, the device further includes a material receiving module 8. The material receiving module 8 is connected to the discharge end of the hot rolling module 4 through a conveying module 9, and is used to take out the processed plates or sheets and the material fixtures.

[0107] The material fixture 10 has a frame structure composed of upper and lower fixtures spliced together.

[0108] In this embodiment, the material receiving module 8 and the stock preparation module 5 have the same structure. When receiving materials, the fixture carrier 53 moves into the vertical frame 52, the air rod ejector 5711 is ejected towards the fixture carrier 53, and holds the material fixture 10 placed on the fixture carrier 53. Then, the upper fixture is taken out, the material partition is pulled out, and finally the cylinder ejector 5711 is retracted. At this time, the materials are loosened and can be easily received.

[0109] The working process of the present invention:

[0110] When preparing materials through the stock preparation module 5, the fixture carrier 53 moves into the vertical frame 52, the second cylinder 571 acts, the air rod ejector 5711 is ejected towards the fixture carrier 53, and holds the material fixture 10 placed on the fixture carrier 53. Then, a plurality of plates or sheets are longitudinally and spacedly placed on the material fixture 10. After the placement is completed, the second cylinder 571 resets, the air rod ejector 5711 retracts, the fixture carrier 53 moves towards the discharge end. After arriving, the material fixture 10 slides from the fixture carrier 53 to the feeding module 6.

[0111] The material fixture 10 entering the feeding module 6 enters the left side of the feeding buffer module 7 under the guidance of the positioning guide wheel 63, then moves to the right side of the feeding buffer module 7, and enters the grinding module 1 under the push of the electric cylinder 62.

[0112] After the material fixture 10 enters between the two side guide wheels 73 on the sliding plate 72 through the feeding module 6, the sliding plate 72 moves to the right along the second guide rail 72, and after moving to the end, it enters the grinding module 1 under the push of the electric cylinder 62.

[0113] The first sliding platform 11 of the grinding module 1 moves towards the first fixed platform 12, clamping the material fixture 10 between the first sliding platform 11 and the first fixed platform 12. First, the left rough grinding mechanism 131 and the left rough grinding mechanism 141 perform rough grinding on the left and right sides of the plate or sheet, and then the left fine grinding mechanism 132 and the right fine grinding mechanism 142 perform fine grinding on the left and right sides of the plate or sheet. At this time, the grinding of the left and right sides of the plate or sheet has been completed. After that, the upper rough grinding mechanism 152 descends through the first lifting mechanism 151 to cooperate with the top surface of the plate or sheet, and then the upper rough grinding mechanism 152 and the lower rough grinding mechanism 153 perform rough grinding on the top and bottom surfaces of the plate or sheet. Next, the upper fine grinding mechanism 154 descends through the first lifting mechanism 151 to cooperate with the top surface of the plate or sheet, and the upper fine grinding mechanism 154 and the lower fine grinding mechanism 155 perform fine grinding on the top and bottom surfaces of the plate or sheet. At this time, the grinding of the four sides of the plate or sheet is completed.

[0114] With the continuous push of the feeding module 6, when the material fixture 10 leaves the grinding module 1, all the plates or sheets placed on it have completed the grinding of the four sides, and then enter the dust removal module 2. The second sliding platform 21 drives the left dust removal mechanism 23 to move towards the second fixed platform 22, and the upper dust removal mechanism 25 descends downward. The left dust removal mechanism 23, the right dust removal mechanism 24, the upper dust removal mechanism 25, and the lower dust removal mechanism 26 of the dust removal module 2 are in four directions at the same position, and simultaneously clean and remove dust from the four sides of the plate or sheet.

[0115] With the continuous push of the feeding module 6, when the material fixture 10 leaves the dust removal module 2, all the plates or sheets placed on it have completed the dust removal of the four sides, and then enter the spraying module 3. The third sliding platform 31 drives the left spraying mechanism 33 to move towards the third fixed platform 32, and the upper spraying mechanism 35 descends downward. The left spraying mechanism 33, the right spraying mechanism 34, the upper spraying mechanism 35, and the lower spraying mechanism 36 of the spraying module 3 are in four directions at the same position, and spray glue or pigment on the four sides of the plate or sheet simultaneously according to the process requirements.

[0116] As the feeding module 6 continues to push, when the material clamp 10 leaves the spraying module 3, all the plates or sheets placed thereon have completed spraying on four sides, and then enter the hot rolling module 4, and the fourth sliding platform 46 drives the left hot rolling mechanism 44 to move toward the fourth fixed platform 47, clamping the material clamp 10 between the fourth sliding platform 46 and the fourth fixed platform 47, and firstly hot rolling the left and right sides of the plate or sheet through the left hot rolling mechanism 44 and the right hot rolling mechanism 45, and then the upper hot rolling mechanism 41 descends to the top surface of the second lifting mechanism 43 through the second lifting mechanism 43, and then hot rolling the top and bottom surfaces of the plate or sheet through the upper hot rolling mechanism 41 and the lower hot rolling mechanism 42, at this time, the four sides of the plate or sheet are hot.

[0117] As the feeding module 6 continues to push, when the material clamp 10 leaves the boiling module 4, all the plates or sheets placed on it have completed boiling on four sides, and then enter the receiving module 8. The clamp support platform 53 of the receiving module 8 is moved to the vertical frame 52, and the air rod push rod 5711 is pushed toward the clamp support platform 53, and the material clamp 10 placed on the clamp support platform 53 is supported, and then the upper clamp is taken out, the material partition is pulled out, and finally the cylinder push rod 5711 is retracted. At this time, the material is loose and can be easily collected.

[0118] The above description is only a preferred embodiment of the present invention and is not intended to limit the protection scope of the present invention.

Claims

1. A cutting surface grinding and post-grinding treatment device for plates or sheets, characterized in that, The device includes a grinding module, a dust removal module, a spraying module, and a hot stamping module arranged in sequence. The grinding module is used for grinding the upper, lower, left, and right cutting surfaces of a board or sheet. The dust removal module is used for removing the dust left after grinding on the board or sheet. The spraying module is used for spraying glue or pigment on the ground surface of the board or sheet. The hot stamping module is used for performing left-right and up-down hot stamping on the ground surface of the board or sheet. The grinding module includes a first sliding platform, a first fixed platform, a left grinding mechanism, a right grinding mechanism, and an up-down grinding mechanism. The first sliding platform and the first fixed platform are arranged opposite to each other on the installation platform. The first sliding platform is connected to a driving motor for driving it to move towards the first fixed platform. The left grinding mechanism is arranged on the first sliding platform. The right grinding mechanism is arranged on the first fixed platform. The up-down grinding mechanism is arranged on the upper and lower sides of the installation platform. The dust removal module includes a second sliding platform, a second fixed platform, a left dust removal mechanism, a right dust removal mechanism, an upper dust removal mechanism, and a lower dust removal mechanism. The second sliding platform and the second fixed platform are arranged opposite to each other on the installation platform. The left dust removal mechanism is arranged on the second sliding platform. The right dust removal mechanism is arranged on the second fixed platform. The upper dust removal mechanism and the lower dust removal mechanism are respectively arranged on the upper and lower sides of the installation platform. The spraying module includes a third sliding platform, a third fixed platform, a left spraying mechanism, a right spraying mechanism, an upper spraying mechanism, and a lower spraying mechanism. The third sliding platform and the third fixed platform are arranged opposite to each other on the installation platform. The left spraying mechanism is arranged on the third sliding platform. The right spraying mechanism is arranged on the third fixed platform. The upper spraying mechanism and the lower spraying mechanism are respectively arranged on the upper and lower sides of the installation platform. The hot stamping module includes an upper hot stamping mechanism, a lower hot stamping mechanism, a second lifting mechanism, a left hot stamping mechanism, a right hot stamping mechanism, a fourth sliding platform, and a fourth fixed platform. The upper hot stamping mechanism and the lower hot stamping mechanism are respectively arranged on the upper and lower sides of the installation platform. The upper hot stamping mechanism is arranged on the upper side of the installation platform through the second lifting mechanism. The fourth sliding platform and the fourth fixed platform are arranged opposite to each other on the installation platform. The left hot stamping mechanism is arranged on the fourth sliding platform. The right hot stamping mechanism is arranged on the fourth fixed platform. The device further includes a stock preparation module, a feeding module, and a feeding buffer module. The stock preparation module is connected to the feeding module and is used for placing a board or sheet on a material fixture and pushing it to the feeding module. The feeding module is connected to the feeding buffer module and is used for guiding the material fixture with the board or sheet placed thereon to move to the feeding buffer module and pushing the material fixture with the board or sheet placed therein in the feeding buffer module to move to the grinding module. The feeding buffer module is connected to the grinding module and is used for translating the material fixture with the board or sheet placed thereon to the other side and moving it to the grinding module under the action of the feeding module.

2. The cutting surface grinding and post-grinding treatment device for plates or sheets according to claim 1, characterized in that, The left grinding mechanism includes a left rough grinding mechanism and a left fine grinding mechanism. The left rough grinding mechanism and the left fine grinding mechanism are sequentially arranged on the first sliding platform along the conveying direction of the plate or sheet. The right grinding mechanism includes a right rough grinding mechanism and a right fine grinding mechanism. The right rough grinding mechanism and the right fine grinding mechanism are sequentially arranged on the first fixed platform along the conveying direction of the plate or sheet.

3. The cutting surface grinding and post-grinding treatment device for plates or sheets according to claim 2, characterized in that, The left rough grinding mechanism, the left fine grinding mechanism, the right rough grinding mechanism, and the right fine grinding mechanism all include a first driving motor, a first grinding tool shaft, a first shaft bracket, and a first grinding tool. The first shaft bracket is vertically arranged on the first sliding platform or the first fixed platform. The first grinding tool shaft is arranged on the first shaft bracket and one end is connected to the first driving motor through a transmission member. The first grinding tool is sleeved on the first grinding tool shaft and fixed by a first locking wheel.

4. The cutting surface grinding and post-grinding treatment device for plates or sheets according to claim 3, characterized in that, The left rough grinding mechanism and the left fine grinding mechanism further include a first manual fine-tuning mechanism. The first manual fine-tuning mechanism is arranged between the installation platform and the first sliding platform for fine-tuning the position of the first sliding platform. The first manual fine-tuning mechanism includes a first fine-tuning handwheel, a transmission lead screw, and a first meshing gear. The first fine-tuning handwheel is arranged outside the installation platform and connected to the horizontally arranged transmission lead screw. The first meshing gear is arranged at the bottom of the first sliding platform and meshes with the transmission lead screw.

5. The cutting surface grinding and post-grinding treatment device for plates or sheets according to claim 4, characterized in that, The upper and lower grinding mechanism includes a first lifting mechanism, an upper rough grinding mechanism, a lower rough grinding mechanism, an upper fine grinding mechanism, and a lower fine grinding mechanism. The lower rough grinding mechanism and the lower fine grinding mechanism are sequentially arranged on the lower side of the installation platform along the conveying direction of the plate or sheet. The upper rough grinding mechanism and the upper fine grinding mechanism are sequentially arranged on the upper side of the installation platform along the conveying direction of the plate or sheet. The upper rough grinding mechanism and the upper fine grinding mechanism are both connected to the upper side of the installation platform through the first lifting mechanism.

6. The cutting surface grinding and post-grinding treatment device for plates or sheets according to claim 5, characterized in that, The upper rough grinding mechanism and the upper fine grinding mechanism both include a vertical line bracket, a linear module, a second shaft bracket, a second grinding tool shaft, a second grinding tool, and a second driving motor. The vertical line bracket is vertically arranged on the installation platform. The second shaft bracket is connected to the vertical line bracket through the linear modules arranged on both sides. The second grinding tool shaft is horizontally arranged on the second shaft bracket and the second grinding tool is sleeved outside. The second driving motor is arranged on the outside of one side of the second shaft bracket and connected to the second grinding tool shaft through a transmission member.

7. The cutting surface grinding and post-grinding treatment device for plates or sheets according to claim 6, characterized in that, The lower rough grinding mechanism and the lower fine grinding mechanism both include a third shaft bracket, a third grinding tool shaft, a third grinding tool, and a third driving motor. The third shaft bracket is connected to the vertical line bracket. The third grinding tool shaft is horizontally arranged on the third shaft bracket and the third grinding tool is sleeved outside. The third driving motor is arranged on the outside of one side of the third shaft bracket and connected to the third grinding tool shaft through a transmission member.

8. The cutting surface grinding and post-grinding treatment device for plates or sheets according to claim 7, characterized in that, The first grinding tool, the second grinding tool, and the third grinding tool all include an upper grinding tool, a middle grinding tool, and a lower grinding tool. The upper grinding tool, the middle grinding tool, and the lower grinding tool are stacked and composed, and the number of middle grinding tools is greater than or equal to one.

9. The cutting surface grinding and post-grinding treatment device for plates or sheets according to claim 8, characterized in that, The upper rough grinding mechanism, upper fine grinding mechanism, lower rough grinding mechanism, and lower fine grinding mechanism also each include a second manual fine adjustment mechanism. The second manual fine adjustment mechanism includes a second fine adjustment handwheel, a transmission shaft, a second meshing gear, and a horizontal gear. One end of the transmission shaft is provided with the second fine adjustment handwheel, and the other end is provided with the second meshing gear. The second meshing gear meshes with the horizontal gear sleeved on the transmission rod.

10. The cutting surface grinding and post-grinding treatment device for plates or sheets according to claim 9, characterized in that, The left dust removal mechanism, right dust removal mechanism, upper dust removal mechanism, and lower dust removal mechanism each include a fourth shaft bracket, a rotating shaft, a dust removal roller, and a fourth driving motor. Both ends of the rotating shaft are arranged on the fourth shaft bracket, and one end is connected to the fourth driving motor through a transmission member. The dust removal roller is sleeved on the rotating shaft.

11. The cutting surface grinding and post-grinding treatment device for plates or sheets according to claim 1, characterized in that, The left spraying mechanism, right spraying mechanism, upper spraying mechanism, and lower spraying mechanism each include a first sliding rod, a second sliding rod, and a spray gun. The first sliding rod is arranged horizontally or vertically. The second sliding rod is slidably arranged on the first sliding rod, and the spray gun is slidably arranged on the second sliding rod.

12. The cutting surface grinding and post-grinding treatment device for plates or sheets according to claim 1, characterized in that, The second lifting mechanism includes a first cylinder, a guide shaft, and a lifting platform. The output end of the first cylinder is connected to the upper scalding mechanism. The guide shafts are located on both sides of the first cylinder and the ends are connected to the lifting platform.

13. The cutting surface grinding and post-grinding treatment device for plates or sheets according to claim 12, characterized in that, The upper scalding mechanism, lower scalding mechanism, left scalding mechanism, and right scalding mechanism each include an unwinding mechanism, a winding mechanism, a scalding sub-mechanism, and a frame. The scalding sub-mechanism is arranged in the middle area of the frame, and the unwinding mechanism and the winding mechanism are respectively located on both sides of the frame.

14. The cutting surface grinding and post-grinding treatment device for plates or sheets according to claim 13, characterized in that,The unwinding mechanism includes an unwinding bracket, an unwinding roller, and a tension spring. One side of the unwinding bracket is connected to the frame. The unwinding bracket is also connected to the winding mechanism through a connecting rod. The unwinding roller is arranged on the unwinding bracket, and the tension spring is sleeved on the unwinding roller.

15. The cutting surface grinding and post-grinding treatment equipment for plates or sheets according to claim 14, characterized in that, The winding mechanism includes a winding motor, a winding bracket, and a winding roller. One side of the winding bracket is connected to the frame and is connected to the unwinding bracket through a connecting rod. The winding motor is arranged outside one side of the frame and is connected to the winding bracket through a belt. The winding roller is arranged on the winding bracket.

16. The cutting surface grinding and post-grinding treatment equipment for plates or sheets according to claim 15, characterized in that, The scalding sub-mechanism includes a main motor, a synchronous pulley, a rotating shaft, a fixed shaft, a silicone roller, and a heating component. The rotating shaft is arranged inside the frame, and a fixed shaft is arranged between the two rotating shafts. The silicone roller is sleeved outside the fixed shaft. A heating component is arranged on one end face of the silicone roller. The main motor is arranged outside the frame and drives the synchronous pulley to rotate through a belt. The synchronous pulley is connected to the rotating shaft.

17. The cutting surface grinding and post-grinding treatment equipment for plates or sheets according to claim 16, characterized in that, The heating component includes heating rods. A plurality of heating rod holes are arranged on one end face of the silicone roller, and heating rods are arranged in each heating rod hole.

18. The cutting surface grinding and post-grinding treatment equipment for plates or sheets according to any one of claims 1-17, characterized in that, The equipment also includes a material receiving module. The material receiving module is connected to the discharge end of the scalding mechanism through a conveying module, and is used for taking out the processed plates or sheets and the material fixture.

19. The cutting surface grinding and post-grinding treatment equipment for plates or sheets according to claim 18, characterized in that, The stock preparation module and the material receiving module both include a horizontal frame, a vertical frame, a fixture carrier table, a synchronous belt, a first guide rail, a driving motor, and a fixture lifting mechanism. On both sides of the top of the horizontal frame, the first guide rails are respectively arranged, and on both sides of the inside, the synchronous belts are respectively arranged. The synchronous belt is connected to the external driving motor through a rotating shaft and a toothed belt. The fixture carrier table is slidably arranged on the first guide rail and is driven to move by the synchronous belt. The vertical frame straddles one side of the horizontal frame, and the fixture lifting mechanism is arranged on one side of the vertical frame for limiting the fixture carrier table.

20. The cutting surface grinding and post-grinding treatment equipment for plates or sheets according to claim 19, characterized in that, The fixture lifting mechanism includes a second cylinder, a cylinder guide hole, and a limit plate. The second cylinder is arranged outside one side of the vertical frame, and the air rod ejector rod penetrates through the cylinder guide hole. Limit plates are respectively arranged on the upper and lower sides of the air rod ejector rod, and the limit plates are fixed to one side of the vertical frame by bolts.

21. The cutting surface grinding and post-grinding treatment equipment for plates or sheets according to claim 20, characterized in that, The feeding module includes a feeding platform, an electric cylinder, and positioning guide wheels. The electric cylinder is arranged on one side of the feeding platform, and the output end of the electric cylinder faces the right side of the feeding buffer module. A plurality of positioning guide wheels are arranged and are located on the left side of the electric cylinder.

22. The cutting surface grinding and post-grinding treatment equipment for plates or sheets according to claim 21, characterized in that, The feeding buffer module includes a second guide rail, a sliding plate, and guide wheels. The sliding plate is slidably arranged on the second guide rail. A plurality of guide wheels are respectively arranged on both sides of the sliding plate, and the distance between the guide wheels on both sides matches the width of the material fixture.

Citation Information

Patent Citations

  • Section grinding and post-grinding treatment device for plates or sheets

    CN212470968U