A hot stamping machine with horizontal feeding and discharging

By designing a hot stamping machine with horizontal feeding and discharging, and adopting a structure where the feeding and discharging racks and the hot stamping device are staggered, combined with a horizontal pushing component and a guiding component, the safety hazards during loading and unloading of the hot stamping machine and the problem of tilting of the electroplated aluminum foil are solved, thereby improving safety and hot stamping quality.

CN117341351BActive Publication Date: 2026-02-13SHAOXING YUESHENG COLOR PRINTING CO LTD
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Patent Information

Application Number
CN202311504083.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-10
Publication Date
2026-02-13
Estimated Expiration
2043-11-10

AI Technical Summary

Technical Problem

Existing hot stamping machines pose a safety hazard during the loading and unloading process, as the hot stamping head may accidentally drop, potentially injuring operators. Furthermore, the electroplated aluminum foil is prone to tilting during winding and unwinding, affecting the hot stamping quality.

Method used

A horizontal feeding and discharging hot stamping machine was designed, which adopts a staggered design of feeding and discharging racks and hot stamping device. Safe loading and unloading is achieved by horizontally moving feeding and discharging racks and pushing components, and the electroplated aluminum foil is kept in a horizontal state by a guide component to ensure that the hot stamping head will not fall accidentally. At the same time, the hot stamping pressure is controlled by weights and lifting mechanisms.

Benefits of technology

It improves the safety and quality of hot stamping machines, avoids the risk of the hot stamping head falling accidentally, ensures that the electroplated aluminum foil remains horizontal during the hot stamping process, and enhances the safety and accuracy of operation.

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Abstract

The application discloses a horizontal feeding and discharging hot stamping machine, which comprises a rack, a hot stamping device and an aluminum foil conveying device; the hot stamping device comprises a hot stamping head and a hot stamping lifting mechanism for driving the hot stamping head to vertically lift; the aluminum foil conveying device comprises a winding and unwinding mechanism, a winding mechanism and aluminum foil arranged between the winding and unwinding mechanism and the winding mechanism; the hot stamping head is located directly above the aluminum foil; the rack is provided with a feeding and discharging device; the feeding and discharging device comprises a feeding and discharging frame horizontally arranged on the rack, a feeding and discharging mechanism for driving the feeding and discharging frame to horizontally move and a printing substrate supporting mechanism arranged on the feeding and discharging frame; the printing substrate supporting mechanism is used for placing a printing substrate; when feeding and discharging, the printing substrate supporting mechanism and the hot stamping device are staggered in the moving direction of the feeding and discharging frame. The application can avoid the situation that the hot stamping head accidentally falls and causes the operator to be injured during feeding and discharging, and improves the use safety of the hot stamping machine.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of dry fur, in particular to a horizontal feeding and discharging hot stamping machine. BACKGROUND

[0002] Hot stamping refers to a process of hot stamping an anodized aluminum foil (hot stamping film) to the surface of a printing material under certain temperature and pressure, and a hot stamping machine is a device for completing the hot stamping process.

[0003] The hot stamping machine comprises a body mechanism, a hot stamping device, and an anodized aluminum foil conveying device. The hot stamping device comprises a vertically lifting hot stamping head, which comprises an electric heating plate, a bottom plate fixed on the bottom surface of the electric heating plate, and a copper plate fixed on the bottom plate. During operation, the hot stamping head is lowered to hot stamp the anodized aluminum foil onto the lower printing material.

[0004] In general operation, the printing material needs to be manually moved to the direct lower side of the anodized aluminum foil, and the printing material is taken out from the direct lower side of the anodized aluminum foil after hot stamping. Thus, the operator may be injured due to accidental falling of the hot stamping head. SUMMARY

[0005] In order to improve the safety of hot stamping, the present application provides a horizontal feeding and discharging hot stamping machine.

[0006] The horizontal feeding and discharging hot stamping machine provided by the present application adopts the following technical solution:

[0007] A horizontal feeding and discharging hot stamping machine comprises a rack, a hot stamping device, and an anodized aluminum foil conveying device. The hot stamping device comprises a hot stamping head and a hot stamping lifting mechanism for driving the hot stamping head to vertically lift. The anodized aluminum foil conveying device comprises a winding and unwinding mechanism, a winding mechanism, and an anodized aluminum foil arranged between the winding and unwinding mechanism and the winding mechanism. The hot stamping head is located directly above the anodized aluminum foil. The rack is provided with a feeding and discharging device. The feeding and discharging device comprises a feeding and discharging rack horizontally arranged on the rack, a feeding and discharging mechanism for driving the feeding and discharging rack to horizontally move, and a printing material supporting mechanism arranged on the feeding and discharging rack. The printing material supporting mechanism is used for placing the printing material. During feeding and discharging, the printing material supporting mechanism and the hot stamping device are staggered in the moving direction of the feeding and discharging rack.

[0008] By adopting the above technical solution, during feeding and discharging, the feeding and discharging mechanism drives the feeding and discharging rack to horizontally move, so that the printing material supporting mechanism and the hot stamping device are staggered. Thus, during feeding and discharging, the operator will not be injured due to accidental falling of the hot stamping head, and the use safety of the hot stamping machine is improved.

[0009] Optionally, the rack comprises a rack base; the rack base is a horizontally open rectangular frame and its opening direction is the same as the moving direction of the in-out material frame; the in-out material frame is a horizontally open rectangular frame and its opening direction is the same as the moving direction of the in-out material frame; the upper side wall of the rack base is formed with an upper moving avoiding hole which is open upward and downward and is used for the horizontal sliding of the in-out material frame; the support mechanism for the printing material comprises a cuboid printing material placing plate and a printing material lifting assembly used for driving the vertical lifting of the printing material placing plate; the upper side wall of the in-out material frame is formed with an upper through hole through which the printing material placing plate vertically passes; the in-out material frame is provided with a horizontal pushing assembly; the horizontal pushing assembly is used for horizontally pushing the printing material on the printing material placing plate along the opening direction of the in-out material frame.

[0010] By adopting the above technical scheme, when the printing material placing plate is at the uppermost end, the operator places the printing material on the printing material placing plate, then moves the in-out material frame horizontally to the position directly below the hot stamping head, then performs hot stamping, after the hot stamping is completed, the in-out material frame is horizontally moved, then the printing material placing plate is lowered, so that the printing material enters the in-out material frame, then the horizontal pushing assembly pushes the printing material horizontally away from the printing material placing plate, so that the operator only needs to place the printing material, further reducing the possibility of hand operation and improving the safety.

[0011] Optionally, the rack base is provided with a discharging table on the side close to the discharging end; when the printing material placing plate is at the lowermost end, the upper end surface of the discharging table is at the same horizontal plane as the upper end surface of the printing material placing plate.

[0012] By adopting the above technical scheme, after the horizontal pushing assembly pushes the printing material horizontally away from the printing material placing plate, the upper end surface of the horizontally moving discharging table, so that the printing material is further away from the hot stamping head, so that the subsequent operation is safer.

[0013] Optionally, the upper end surface of the in-out material frame is formed with a support frame which is a rectangular frame open upward and downward; the rectangular size of the inside of the support frame is the same as the size of the upper through hole and the two are opposite upward and downward; the support frame is provided with a limiting frame; the limiting frame is used for limiting the horizontal movement of the printing material.

[0014] By adopting the above technical scheme, through the cooperation of the limiting frame and the printing material placing plate, the position of the printing material in the horizontal direction is more accurate, and the accuracy of the subsequent hot stamping is improved.

[0015] Optionally, the upper through hole is provided with two and a pair of the upper through holes are distributed along the moving direction of the in-out material frame; the support frame, the limiting frame, the support mechanism for the printing material and the discharging table are all provided with two; a pair of the discharging tables are respectively located at the two end openings of the rack base.

[0016] By adopting the technical scheme, the support frame, the limiting frame, the printing substrate supporting mechanism and the feeding table are all provided with two, so that when one limiting frame is in the hot stamping position, the other limiting frame can be used for feeding and discharging, thereby improving the hot stamping efficiency.

[0017] Optionally, the upper end surface of the support frame is formed with a plurality of vertically distributed vertical insertion rods; the limiting frame is formed with a plurality of connecting perforations matched with the vertical insertion rods.

[0018] By adopting the technical scheme, the limiting frame is convenient to disassemble and assemble, and is convenient to replace according to the shape of the printing substrate, thereby improving the working adaptability of the hot stamping machine.

[0019] Optionally, the hot stamping head comprises a horizontal support plate, a hot stamping head body vertically movably arranged on the horizontal support plate, a lifting assembly for lifting the hot stamping head body, and a weight placed on the top of the hot stamping head body; the hot stamping lifting mechanism is used for vertically lifting the horizontal support plate.

[0020] By adopting the technical scheme, before work, the lifting assembly makes the hot stamping head body be at the uppermost end relative to the horizontal support plate; during hot stamping, the hot stamping lifting mechanism drives the horizontal support plate to descend, so that the bottom of the hot stamping head body abuts against the aluminum foil; then the lifting assembly descends, so that the hot stamping head body descends due to the weight of the self and the weight of the weight, thereby exerting pressure; thus, the pressure can be changed by changing the weight, thereby controlling the clarity of the hot stamping.

[0021] Optionally, the upper end surface of the hot stamping head body is formed with a rectangular slot-shaped weight placing groove in the middle; the weight is placed in the weight placing groove.

[0022] By adopting the technical scheme, the weight is placed in the weight placing groove, so that the weight will not accidentally fall during lifting, thereby improving the working safety.

[0023] Optionally, the unwinding mechanism and the winding mechanism are the same in structure; the unwinding mechanism comprises an aluminum foil support frame, an aluminum foil lifting piece for driving the aluminum foil support frame to vertically lift, an aluminum foil reel rotatably connected to the aluminum foil support frame, an aluminum foil feeding driving piece for driving the aluminum foil reel to rotate, and a guide assembly arranged on the aluminum foil support frame; a pair of the guide assemblies are located between a pair of the aluminum foil reels; the guide assembly comprises an upper guide piece and a lower guide roller; the upper guide piece comprises a pair of upper guide seats arranged on the aluminum foil support frame and an upper guide roller rotatably connected to the pair of upper guide seats; the upper guide roller is located directly above the lower guide roller.

[0024] By adopting the technical scheme, the electrochemical aluminum foil below the hot stamping head is in a horizontal state, and the electrochemical aluminum foil below the hot stamping head will not be inclined due to winding and unwinding, thereby improving the quality of subsequent hot stamping.

[0025] Optionally, the upper guide further comprises a pair of vertical adjusting members; the upper guide seat is vertically slidably arranged on the electrochemical aluminum foil support frame; the vertical adjusting member corresponds to the upper guide seat one by one, and the vertical adjusting member is used for vertically adjusting the vertical position of the upper guide seat on the corresponding side.

[0026] By adopting the technical scheme, the upper and lower positions of the pair of upper guide seats can be adjusted by the pair of vertical adjusting members, so that the upper and lower positions of the upper guide rollers can be adjusted in the vertical direction, thereby adapting to electrochemical aluminum foils of different thicknesses.

[0027] To sum up, the beneficial effects of the present application are:

[0028] 1. When feeding or discharging, the printing substrate support mechanism and the hot stamping device are staggered, so that the hot stamping head will not accidentally fall and injure the operator, thereby improving the use safety of the hot stamping machine.

[0029] 2. The electrochemical aluminum foil below the hot stamping head is in a horizontal state, and the electrochemical aluminum foil below the hot stamping head will not be inclined due to winding and unwinding, thereby improving the quality of subsequent hot stamping. BRIEF DESCRIPTION OF DRAWINGS

[0030] Figure 1 is a sectional view of the structure of one side feeding and discharging of the present application.

[0031] Figure 2 is a sectional view of the structure of the other side feeding and discharging of the present application.

[0032] Figure 3 is a sectional view of the structure of the present application Figure 1 A-A.

[0033] Figure 4 is a sectional view of the structure of the present application Figure 1 B.

[0034] Figure 5 is a sectional view of the structure of the in-out feeding frame 21 of the present application.

[0035] Figure 6 is a sectional view of the structure of the hot stamping head of the present application.

[0036] BRIEF DESCRIPTION OF DRAWINGS

[0037] 10, frame; 11, frame base; 110, upper moving avoiding hole; 12, upper support; 120, horizontal perforation; 13, upper vertical support plate; 14, lower vertical support plate; 15, lower guide rod;

[0038] 20, feeding and discharging device; 21, feeding and discharging frame; 210, upper perforation; 2100, pushing sliding groove; 211, frame base; 212, middle connecting block; 213, upper feeding support plate; 214, support frame; 215, vertical inserting rod; 22, support material supporting mechanism; 221, support material lifting assembly; 222, support material placing plate; 23, feeding and discharging driving motor; 24, feeding and discharging screw rod; 25, pushing driving motor; 26, pushing driving screw rod; 27, pushing plate;

[0039] 30, limiting frame;

[0040] 40, discharging table; 41, discharging table plate; 42, supporting leg;

[0041] 50, hot stamping device; 51, hot stamping lifting cylinder; 52, horizontal support plate; 520, avoiding groove; 53, hot stamping head body; 531, lifting support plate; 5310, weight placing groove; 532, vertical guide rod; 533, heating plate; 534, bottom plate; 535, copper plate; 54, lifting assembly; 541, lifting cylinder; 542, lifting driving block;

[0042] 60, electrochemical aluminum foil conveying device; 61, electrochemical aluminum foil lifting piece; 62, electrochemical aluminum foil support frame; 620, vertical moving groove; 63, electrochemical aluminum foil reel; 64, lower guide roller; 65, upper guide roller; 66, vertical adjusting bolt. DETAILED DESCRIPTION

[0043] The following will be described in detail with reference to the accompanying drawings. Figures 1-6 The present application will be further described in detail.

[0044] The present application discloses a horizontal feeding and discharging hot stamping machine, referring to the accompanying drawings Figure 1 and Figure 2, rack 10, feeding and discharging device 20, hot stamping device 50, a pair of limiting frames 30, a pair of discharging tables 40 and aluminum foil conveying device 60; rack 10 comprises rack base 11 and "N" shaped upper support 12 formed in the middle of the upper end face of rack base 11; rack base 11 is a horizontally opened rectangular frame; a pair of discharging tables 40 are located at the two end openings of rack base 11; feeding and discharging device 20 is arranged on rack base 11 and is used for horizontal conveying of the printing material; feeding and discharging device 20 comprises a horizontal pushing assembly; the horizontal pushing assembly is used for horizontally pushing the printing material to the corresponding side discharging table 40; a pair of limiting frames 30 are arranged on feeding and discharging device 20 and are used for limiting the printing material in the horizontal direction; hot stamping device 50 is arranged on upper support 12 and is used for hot stamping of the printing material; aluminum foil conveying device 60 is used for providing aluminum foil below hot stamping device 50.

[0045] With reference to Figure 1 and Figure 2 , feeding and discharging device 20 comprises feeding and discharging frame 21 horizontally arranged on rack 10, feeding and discharging mechanism used for driving horizontal movement of feeding and discharging frame 21, and a pair of printing material supporting mechanisms 22 arranged on feeding and discharging frame 21; the pair of printing material supporting mechanisms 22 are distributed along the movement direction of feeding and discharging frame 21; printing material supporting mechanism 22 is used for placing the printing material; the movement direction of feeding and discharging frame 21 is the same as the opening direction of rack base 11.

[0046] With reference to Figure 1 , Figure 2 and Figure 5 , feeding and discharging frame 21 comprises "N" shaped frame base 211 and upper feeding support plate 213; the middle part of the upper end face of a pair of vertical parts of frame base 211 is respectively formed with intermediate connecting block 212; upper feeding support plate 213 is fixed between the upper ends of a pair of intermediate connecting blocks 212; the middle part of the upper side wall of rack base 11 is formed with upper and lower opening rectangular hole shaped upper movement avoiding hole 110; a pair of intermediate connecting blocks 212 are slidingly arranged in upper movement avoiding hole 110; upper feeding support plate 213 is formed with a pair of upper perforations 210 distributed along the movement direction of feeding and discharging frame 21; the upper end face of upper feeding support plate 213 is formed with a pair of upper and lower opening rectangular frame shaped supporting frames 214; supporting frame 214 corresponds to upper perforation 210 one by one, and the internal rectangular size of supporting frame 214 is the same as the size of upper perforation 210 and the two are opposite to each other in the up and down direction.

[0047] With reference to Figure 1 , Figure 4 and Figure 5 , the upper end face of supporting frame 214 is formed with a plurality of uniformly distributed vertical insertion rods 215; limiting frame 30 is formed with vertical openings for vertical movement of the printing material; limiting frame 30 is sleeved on vertical insertion rod 215 from top to bottom.

[0048] Referring to Figures 1-3 , the printing material supporting mechanism 22 comprises a cuboid-shaped printing material placing plate 222 and a printing material lifting assembly 221 for driving the printing material placing plate 222 to vertically lift; the printing material lifting assembly 221 comprises a printing material lifting electric cylinder fixed on the horizontal part of the rack base 211; the printing material placing plate 222 is fixed on the upper end of the piston rod of the printing material lifting electric cylinder; the shape of the printing material placing plate 222 is the same as that of the upper perforated plate 210.

[0049] Referring to Figures 1-3 , the upper end surface of the rack base 11 is formed with a pair of upper vertical support plates 13 distributed along the moving direction of the feeding and discharging rack 21; the feeding and discharging mechanism comprises a pair of feeding and discharging screws 24 horizontally and rotationally connected between the pair of upper vertical support plates 13 and a pair of feeding and discharging driving motors 23 fixed on the upper vertical support plates 13; the feeding and discharging screws 24 correspond to the feeding and discharging driving motors 23 one by one and the feeding and discharging screws 24 are coaxially fixed with the output shafts of the corresponding feeding and discharging driving motors 23; the upper material supporting plate 213 is screwed on the pair of feeding and discharging screws 24.

[0050] In order to improve the horizontal moving stability of the feeding and discharging rack 21, referring to Figures 1-3 , the lower side wall of the rack base 11 is formed with a pair of lower vertical support plates 14 distributed along the moving direction of the feeding and discharging rack 21; a pair of lower guide rods 15 are formed between the pair of lower vertical support plates 14; the horizontal part of the rack base 211 is horizontally sleeved on the pair of lower guide rods 15.

[0051] Referring to Figures 1-3 and Figure 5 , the horizontal pushing material assembly comprises a cuboid-shaped pushing material plate 27 horizontally movably arranged and a pushing material driving member for driving the pushing material plate 27 to horizontally move; the pair of vertical parts of the rack base 211 are respectively formed with a pushing material sliding groove 2100 for the end part of the corresponding side of the pushing material plate 27 to horizontally slide; the pushing material driving member comprises a pair of pushing material driving screws 26 and a pair of pushing material driving motors 25; the pushing material driving screws 26 correspond to the pushing material sliding grooves 2100 one by one and the pushing material driving screws 26 are horizontally and rotationally arranged between the pair of vertical side walls of the pushing material sliding grooves 2100; the pushing material driving motors 25 correspond to the pushing material driving screws 26 one by one and the pushing material driving screws 26 are coaxially fixedly connected with the output shafts of the pushing material driving motors 25; the two ends of the pushing material plate 27 are respectively screwed on the corresponding side of the pushing material driving screws 26.

[0052] Referring to Figures 1-3The blanking table 40 includes a cuboid-shaped blanking table plate 41 arranged horizontally and four supporting legs 42 fixed on the lower end surface of the blanking table plate 41; the blanking table plate 41 corresponds to the printing substrate placing plate 222 one by one; when the printing substrate placing plate 222 is at the lowermost end, the upper end surfaces of the printing substrate placing plate 222 and the corresponding side of the blanking table plate 41 are flush and form a complete horizontal plane, and the lower end surface of the pushing plate 27 is flush with the upper end surface of the printing substrate placing plate 222.

[0053] With reference to Figures 1-3 The hot stamping device 50 includes a hot stamping head and a hot stamping lifting mechanism for driving the hot stamping head to vertically lift.

[0054] With reference to Figure 6 The hot stamping head includes a horizontal support plate 52, a hot stamping head body 53 vertically and movably arranged on the horizontal support plate 52, a lifting assembly 54 for lifting the hot stamping head body 53, and a weight placed on the bottom of the hot stamping head body 53; the hot stamping head body 53 includes a lifting support plate 531, a heating plate 533, a bottom plate 534, and a copper plate 535; the bottom plate 534 is fixed on the bottom surface of the heating plate 533; the copper plate 535 is detachably fixed on the bottom surface of the bottom plate 534 by bolts; four vertically arranged vertical guide rods 532 are fixed between the heating plate 533 and the lifting support plate 531; the vertical guide rods 532 are vertically inserted into the horizontal support plate 52; a rectangular weight accommodating groove 5310 is formed in the middle of the upper end surface of the lifting support plate 531 for placing the weight; the lifting assembly 54 includes a pair of lifting electric cylinders 541; the lifting electric cylinders 541 are fixed on the lower end surface of the horizontal support plate 52; the pair of lifting electric cylinders 541 are located on both sides of the heating plate 533; the upper end of the piston rod of the lifting electric cylinder 541 is fixed with a lifting driving block 542; the lifting support plate 531 is located directly above the pair of lifting driving blocks 542; an avoiding groove 520 is formed on the upper end surface of the horizontal support plate 52 for the pair of lifting driving blocks 542 to be inserted from top to bottom.

[0055] With reference to Figures 1-3 The hot stamping lifting mechanism includes a hot stamping lifting electric cylinder 51; the piston rod of the hot stamping lifting electric cylinder 51 vertically penetrates through the lifting support plate 531 and is fixedly connected with the horizontal support plate 52.

[0056] With reference to Figures 1-3, the electrochemical aluminum foil conveying device 60 comprises a roll-off mechanism, a winding mechanism and an electrochemical aluminum foil arranged between the roll-off mechanism and the winding mechanism; the roll-off mechanism and the winding mechanism are identical in structure; the roll-off mechanism comprises a "N" shaped electrochemical aluminum foil support frame 62, an electrochemical aluminum foil lifting piece 61 for driving the electrochemical aluminum foil support frame 62 to vertically lift, an electrochemical aluminum foil reel 63 rotatably connected to the electrochemical aluminum foil support frame 62, an electrochemical aluminum foil feeding driving piece for driving the electrochemical aluminum foil reel 63 to rotate and a guide assembly arranged on the electrochemical aluminum foil support frame 62; a pair of guide assemblies are located between a pair of electrochemical aluminum foil reels 63; a pair of electrochemical aluminum foil support frames 62 are located on both sides of the upper support 12 and are distributed in the vertical direction along the moving direction of the in-out feeding frame 21; a horizontal perforation 120 for the electrochemical aluminum foil to pass through is formed on the vertical part of the upper support 12.

[0057] Referring to Figures 1-3 , the electrochemical aluminum foil lifting piece 61 comprises an electrochemical aluminum foil lifting cylinder fixed on the lower end face of the upper side wall of the rack base 11; the electrochemical aluminum foil support frame 62 is fixed on the upper end of the piston rod of the corresponding side electrochemical aluminum foil lifting cylinder.

[0058] Referring to Figures 1-3 , the electrochemical aluminum foil feeding driving piece comprises an electrochemical aluminum foil feeding driving motor fixed on the electrochemical aluminum foil support frame 62; the electrochemical aluminum foil reel 63 is coaxially fixedly connected with the output shaft of the electrochemical aluminum foil feeding driving motor of the corresponding side.

[0059] Referring to Figures 1-3 , the guide assembly comprises an upper guide piece and a lower guide roller 64; the upper guide piece comprises a pair of upper guide seats arranged on the electrochemical aluminum foil support frame 62, an upper guide roller 65 rotatably connected to the pair of upper guide seats and a pair of vertical adjusting pieces; the upper guide roller 65 is located directly above the lower guide roller 64.

[0060] Referring to Figure 3 , a vertical moving groove 620 for the vertical movement of the upper guide seat is formed on the vertical part of the electrochemical aluminum foil support frame 62; the vertical moving groove 620 corresponds to the upper guide seat in one-to-one correspondence; the vertical adjusting piece corresponds to the upper guide seat in one-to-one correspondence and the vertical adjusting piece comprises a vertical adjusting bolt 66; the screw rod of the vertical adjusting bolt 66 vertically penetrates the vertical moving groove 620 and the lower end is rotatably connected to the lower side wall of the vertical moving groove 620; the upper guide seat is vertically slidably arranged in the vertical moving groove 620 of the corresponding side and is screwed on the vertical adjusting bolt 66 of the corresponding side.

[0061] The working principle of the hot stamping machine with horizontal in-out feeding:

[0062] According to the shape of the printing object, a corresponding pair of limiting frames 30 is selected, and the pair of limiting frames 30 are respectively sleeved on the vertical insertion rods 215 of the pair of supporting frames 214; then the operator puts the printing object into the limiting frame 30 staggered with the stamping device 50 from top to bottom, and the bottom of the printing object abuts against the printing object placing plate 222; then the in-out material frame 21 moves horizontally, so that the printing object is located directly below the stamping device 50; then the pair of aluminum foil supporting frames 62 descends, so that the aluminum foil abuts against the upper surface of the printing object horizontally, then the stamping head descends, so that the bottom of the copper plate 535 is in contact with the aluminum foil, then the pair of lifting cylinders 541 drives the pair of lifting driving blocks 542 to descend, so that the stamping head body 53 descends as a whole, and the stamping is performed by the weight of the stamping head body 53 and the weight of the weight; after the stamping is completed, the pair of lifting cylinders 541 drives the pair of lifting driving blocks 542 to ascend back, so that the stamping head body 53 ascends back as a whole, then the stamping head ascends back, then the in-out material frame 21 moves horizontally back, then the printing object placing plate 222 descends, so that the printing object also descends, then the pushing plate 27 moves horizontally to push the printing object to the corresponding side of the discharging table plate 41, and finally the printing object after stamping can be taken off from the discharging table plate 41.

[0063] The above are preferred embodiments of the present application, and do not limit the protection scope of the present application, so that: any equivalent changes made according to the structure, shape, principle of the present application should be covered within the protection scope of the present application.

Claims

1. A horizontal transfer hot stamping machine comprising a frame (10), a hot stamping device (50) and a foil conveying device (60); the hot stamping device (50) comprises a hot stamping head and a hot stamping lifting mechanism for driving the hot stamping head to vertically lift; the foil conveying device (60) comprises a foil unwinding mechanism, a foil winding mechanism and a foil arranged between the foil unwinding mechanism and the foil winding mechanism; the hot stamping head is located directly above the foil; characterized in that; The rack (10) is provided with an in-out material device (20); the in-out material device (20) comprises an in-out material frame (21) horizontally movably arranged on the rack (10), an in-out material mechanism for driving the in-out material frame (21) to move horizontally, and a printing material supporting mechanism (22) arranged on the in-out material frame (21); the printing material supporting mechanism (22) is used for placing printing materials; when feeding or discharging, the printing material supporting mechanism (22) and the hot stamping device (50) are staggered in the moving direction of the in-out material frame (21). The rack (10) comprises a rack base (11); the rack base (11) is a horizontally-opened rectangular frame, and the opening direction thereof is the same as the moving direction of the in-out material frame (21); the in-out material frame (21) is also a horizontally-opened rectangular frame, and the opening direction thereof is the same as the moving direction of the in-out material frame (21); an upper moving avoiding hole (110) is formed on the upper side wall of the rack base (11) and is opened upward and downward and is used for the horizontal sliding of the in-out material frame (21); the printing material supporting mechanism (22) comprises a printing material placing plate (222) in the shape of a cuboid and a printing material lifting assembly (221) for driving the printing material placing plate (222) to vertically lift; an upper through hole (210) is formed on the upper side wall of the in-out material frame (21) and is used for the vertical passing of the printing material placing plate (222); a horizontal pushing assembly is arranged in the in-out material frame (21); the horizontal pushing assembly is used for horizontally pushing the printing materials on the printing material placing plate (222) along the opening direction of the in-out material frame (21).

2. The horizontal transfer pad printing machine according to claim 1, characterized in that: The rack base (11) is provided with a discharging table (40) on the side close to the discharging end; when the printing material placing plate (222) is at the lowermost end, the upper end surface of the discharging table (40) is on the same horizontal plane as the upper end surface of the printing material placing plate (222).

3. The horizontal transfer pad printing machine according to claim 2, wherein: An upper end surface of the in-out material frame (21) is formed with a support frame (214) in the shape of a rectangular frame which is opened upward and downward; the rectangular size of the inside of the support frame (214) is the same as the size of the upper through hole (210) and the two are opposite to each other in the upward and downward directions; the support frame (214) is provided with a limiting frame (30); the limiting frame (30) is used for limiting the horizontal movement of the printing materials.

4. The horizontal transfer pad printing machine according to claim 3, wherein: The upper through hole (210) is provided with two upper through holes (210), and a pair of the upper through holes (210) are distributed along the moving direction of the in-out material frame (21); the support frame (214), the limiting frame (30), the printing material supporting mechanism (22) and the discharging table (40) are all provided with two; a pair of the discharging tables (40) are respectively arranged at the two end openings of the rack base (11).

5. The horizontal transfer press of claim 3, wherein: An upper end surface of the support frame (214) is formed with a plurality of vertically inserted rods (215) which are uniformly distributed; the limiting frame (30) is formed with a plurality of connecting through holes which are matched with the vertically inserted rods (215).

6. The horizontal transfer press of claim 1, wherein: The hot stamping head comprises a horizontal support plate (52), a hot stamping head body (53) vertically movably arranged on the horizontal support plate (52), a lifting assembly (54) for lifting the hot stamping head body (53), and a weight placed on the top of the hot stamping head body (53); the hot stamping lifting mechanism is used for vertically lifting the horizontal support plate (52).

7. The horizontal transfer press of claim 6, wherein: A rectangular groove-shaped weight placing groove (5310) is formed in the middle of the upper end surface of the hot stamping head body (53); the weight is placed in the weight placing groove (5310).

8. The horizontal transfer press of claim 1, wherein: The roll-out mechanism and the roll-up mechanism are identical in structure; the roll-out mechanism comprises an electrochemical aluminum foil support frame (62), an electrochemical aluminum foil lifting piece (61) for driving the electrochemical aluminum foil support frame (62) to vertically lift, an electrochemical aluminum foil reel (63) rotatably connected to the electrochemical aluminum foil support frame (62), an electrochemical aluminum foil feeding driving piece for driving the electrochemical aluminum foil reel (63) to rotate, and a guide assembly arranged on the electrochemical aluminum foil support frame (62); a pair of the guide assemblies are located between a pair of the electrochemical aluminum foil reels (63); the guide assembly comprises an upper guide piece and a lower guide roller (64); the upper guide piece comprises a pair of upper guide seats arranged on the electrochemical aluminum foil support frame (62) and an upper guide roller (65) rotatably connected to the pair of upper guide seats; the upper guide roller (65) is located directly above the lower guide roller (64).

9. The horizontal transfer press of claim 8, wherein: The upper guide piece further comprises a pair of vertical adjusting pieces; the upper guide seat is vertically slidably arranged on the electrochemical aluminum foil support frame (62); the vertical adjusting piece corresponds to the upper guide seat one by one, and the vertical adjusting piece is used for vertically adjusting the vertical position of the upper guide seat on the corresponding side. The roll-out mechanism and the roll-up mechanism are identical in structure; the roll-out mechanism comprises an electrochemical aluminum foil support frame (62), an electrochemical aluminum foil lifting piece (61) for driving the electrochemical aluminum foil support frame (62) to vertically lift, an electrochemical aluminum foil reel (63) rotatably connected to the electrochemical aluminum foil support frame (62), an electrochemical aluminum foil feeding driving piece for driving the electrochemical aluminum foil reel (63) to rotate, and a guide assembly arranged on the electrochemical aluminum foil support frame (62); a pair of the guide assemblies are located between a pair of the electrochemical aluminum foil reels (63); the guide assembly comprises an upper guide piece and a lower guide roller (64); the upper guide piece comprises a pair of upper guide seats arranged on the electrochemical aluminum foil support frame (62) and an upper guide roller (65) rotatably connected to the pair of upper guide seats; the upper guide roller (65) is located directly above the lower guide roller (64).

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