Semi-automatic belt ring nail stacking machine with shaping function
By introducing a shaping function into a semi-automatic belt ring stapler, and utilizing stamping and heating shaping technologies, the problem of belt rings being difficult to fit the belt was solved, achieving efficient production and cost reduction.
Patent Information
- Application Number
- CN202423298178.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-31
AI Technical Summary
The existing semi-automatic belt ring fastening machine only has a riveting function, which makes it difficult for the belt ring to fit the belt. It requires a second ironing and shaping, resulting in high production costs and low efficiency.
A semi-automatic belt ring stapler with a shaping function was designed. The belt ring is formed by connecting short strips through a stamping device, and the two sides and bottom of the belt ring are pressed by a shaping device and heated to shape it into a rectangle, thus avoiding secondary processing.
It improves the fit between the belt ring and the belt, reduces production costs, increases production efficiency, and simplifies the process.
Smart Images

Figure CN223563378U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to semi -automatic belt ring code nailer technical field especially a kind of semi -automatic belt ring code nailer with shaping function. BACKGROUND
[0002] Belt ring is worn in belt, and after tightening belt, it is the thimble that belt is fixed, belt ring often adopts the same material strip of bar short belt with belt, code nail is driven into the both ends of bar short belt by code nailer, so that the head and tail of bar short belt are riveted to form belt ring by code nail.However, the code nailer in prior art only has riveting function, the inner circle of belt ring formed after bar short belt is closed is circular shape, and belt is sheet-shaped long strip, so that belt ring is difficult to fit belt, and belt ring often needs to be ironed and shaped, so that the inner circle of belt ring is rectangular to attach belt, thus belt ring needs secondary processing, production cost is high, and efficiency is low, so it is necessary to improve. SUMMARY
[0003] In view of the deficiencies in the prior art, the utility model aims to provide a semi-automatic belt ring code nailer with shaping function, to improve the adhesion of belt ring and belt, improve production efficiency and reduce production cost.
[0004] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of a semi-automatic belt ring code nailer with shaping function, comprising a rack, a stamping device, a shaping device and a fixed clamp seat are arranged on the rack, the stamping device comprises a stamping fixed frame, a stamping driving mechanism, a stamping rod and a stamping die, the stamping fixed frame is fixedly installed on the rack, the stamping rod is vertically slidably installed on the stamping fixed frame, the stamping driving mechanism is in transmission connection with the stamping rod, the stamping die is movably installed at the lower end of the stamping rod, the fixed clamp seat is installed on the stamping fixed frame and below the stamping die,
[0005] The shaping device comprises a heating control circuit, a vertical shaping mechanism and two lateral shaping mechanisms, the vertical shaping mechanism is arranged below the fixed clamp seat, and the two lateral shaping mechanisms are symmetrically arranged on the left and right sides of the fixed clamp seat,
[0006] Each lateral shaping mechanism is provided with a lateral driving mechanism and a lateral heating block, the lateral driving mechanism is in transmission connection with the lateral heating block, and the heating blocks of the two lateral shaping mechanisms move towards and away from the fixed clamp seat respectively,
[0007] The vertical shaping mechanism is provided with a vertical driving mechanism and a vertical heating block, the vertical driving mechanism is in transmission connection with the vertical heating block, and the vertical heating block moves towards and away from the fixed clamp seat,
[0008] The heating control circuit is electrically connected with the vertical heating block and the two lateral heating blocks respectively.
[0009] Further technical solutions, the lateral driving mechanism includes a lateral drive cylinder, a lateral fixed frame and a lateral heat insulation plate, the lateral fixed frame is fixedly installed on the rack, the lateral drive cylinder is fixedly installed on the lateral fixed frame, the lateral heat insulation plate is fixedly installed on the piston rod of the lateral drive cylinder, and the lateral heating block is fixedly installed on the lateral heat insulation plate.
[0010] The vertical driving mechanism includes a vertical drive cylinder and a vertical heat insulation plate, the vertical drive cylinder is fixedly installed on the rack, the vertical heat insulation plate is fixedly installed on the piston rod of the vertical drive cylinder, and the vertical heating block is fixedly installed on the upper part of the vertical heat insulation plate.
[0011] Further technical solutions, the lateral shaping mechanism is further provided with an anti-scald sliding table cylinder, the anti-scald sliding table cylinder is fixedly installed on the rack, and the lateral fixed frame is fixedly installed on the sliding table of the anti-scald sliding table cylinder.
[0012] Further technical solutions, the vertical shaping mechanism is further provided with an anti-scald shielding assembly, the anti-scald shielding assembly includes a shielding drive cylinder and an anti-scald box, the anti-scald box is slidingly installed on the rack in the longitudinal direction, the shielding drive cylinder is fixedly installed on the rack, the rear end of the anti-scald box is fixedly connected with the piston rod of the shielding drive cylinder, the inside of the anti-scald box is provided with an anti-scald chamber, the anti-scald box moves forward during feeding and discharging, the vertical heating block is located in the anti-scald chamber, the anti-scald box moves backward during shaping, and the vertical heating block moves out of the anti-scald chamber.
[0013] Further technical solutions, the anti-scald box includes an anti-scald partition plate, an anti-scald connecting plate, two lower anti-scald baffles and two upper anti-scald baffles, the rear end of the anti-scald partition plate is formed on the front side of the anti-scald connecting plate, the rear side of the anti-scald connecting plate is fixedly connected with the piston rod of the shielding drive cylinder, the upper ends of the two lower anti-scald baffles are respectively formed on the left and right sides of the lower part of the anti-scald partition plate, the lower ends of the two upper anti-scald baffles are respectively formed on the left and right sides of the upper part of the anti-scald partition plate, and the two lower anti-scald baffles and the anti-scald partition plate form an anti-scald chamber.
[0014] Further technical solutions, the semi-automatic belt ring code nailing machine is further provided with a humidifying mechanism, the humidifying mechanism includes a humidifier and a humidifying pipe, the humidifier is fixedly installed on the stamping fixed frame, the humidifying pipe is connected with the humidifier, and the gas outlet of the humidifying pipe faces the fixed clamping seat.
[0015] Further technical solutions, the stamping fixed frame includes a stamping upper frame and a stamping lower frame, the stamping lower frame is fixedly installed on the rack, the stamping upper frame is slidingly installed on the stamping lower frame in the longitudinal direction, and an adjusting assembly is arranged between the stamping upper frame and the stamping lower frame, the adjusting assembly includes an adjusting screw rod, an adjusting nut and an adjusting hand wheel, the adjusting nut is fixedly installed on the rear part of the stamping lower frame, the adjusting screw rod is threadedly connected with the adjusting nut, the front end of the adjusting screw rod is rotatably connected with the rear part of the stamping upper frame, and the adjusting hand wheel is fixedly installed on the rear end of the adjusting screw rod.
[0016] In the further technical scheme, the fixed clamping seat comprises a fixed connecting block, a lower guide riveting block and two upper clamping blocks, the rear end of the fixed connecting block is fixedly installed on the front side of the stamping lower frame, the two upper clamping blocks are respectively formed on the left and right sides of the upper part of the front end of the fixed connecting block, the lower guide riveting block is formed on the lower part of the front end of the fixed connecting block and is located below the two upper clamping blocks, the top surface of the lower guide riveting block is provided with a riveting guide groove, the two upper clamping blocks have a rivet passing gap therebetween, and the lower guide riveting block and the two upper clamping blocks have a clamping gap therebetween.
[0017] In the further technical scheme, the stamping driving mechanism comprises a stamping cylinder, a stamping connecting plate, a stamping sliding block and a stamping sliding rail, the stamping cylinder is fixedly installed on the upper part of the stamping upper frame, the stamping sliding rail is vertically installed on the stamping lower frame, the stamping sliding block is slidingly installed on the stamping sliding rail, one side of the stamping connecting plate is fixedly connected with the stamping sliding block, the upper part of the stamping connecting plate is fixedly connected with the piston rod of the stamping cylinder, the lower part of the stamping connecting plate is fixedly connected with the upper end of the stamping rod, the stamping die is provided with a stamping sliding groove with an opening facing upward, the lower part of the stamping rod is inserted into the stamping sliding groove, the two sides of the stamping die are respectively vertically provided with a limiting sliding groove in communication with the stamping sliding groove, the lower part of the stamping rod is respectively threadedly connected with a limiting rod on the left and right sides, the two limiting rods are respectively slidingly installed in the two limiting sliding grooves, the upper part of the stamping rod is sleeved with a spring, and the upper end of the spring abuts against the stamping connecting plate and the lower end abuts against the stamping die.
[0018] In the further technical scheme, the semi-automatic belt ring nailing machine is further provided with an automatic feeding device, and the automatic feeding device comprises a vibrating barrel and a feeding guide frame, the vibrating barrel is fixedly installed on the frame, and one end of the feeding guide frame is connected with the vibrating barrel and the other end extends between the fixed clamping seat and the stamping die.
[0019] After the above structure is adopted, the present application has the following advantages compared with the prior art: the stamping device is used to stamp the nailing strip, so that the belt ring is formed by connecting the strip-shaped short belts by the nailing strip, and at the same time, the two side surfaces and the bottom surface of the belt ring are respectively pressed by the shaping device, so that the belt ring is attached to the fixed clamping seat, the belt ring is heated and shaped by the side heating block and the vertical heating block, so that the belt ring is shaped into a rectangular belt ring, thereby improving the attachment between the belt ring and the belt; the heating and shaping are simultaneously performed in the riveting process, so that secondary processing and shaping are not needed, the production efficiency is improved, and the production cost is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0020] The present application will be further described below in combination with the drawings and embodiments.
[0021] Figure 1 is a structural schematic diagram of the present application;
[0022] Figure 2It is the front view of the stamping device and the shaping device of the utility model;
[0023] Figure 3 It is the Figure 2 The A part enlarged view of
[0024] Figure 4 It is the back structure schematic view of the stamping device of the utility model;
[0025] Figure 5 It is the state schematic view of the stamping device and the shaping device of the utility model when feeding and discharging;
[0026] Figure 6 It is the state schematic view of the stamping device and the shaping device of the utility model when shaping.
[0027] In the drawing,
[0028] 1 frame;
[0029] 2 stamping device, 21 stamping upper frame, 22 stamping lower frame, 231 adjusting screw rod, 232 adjusting nut, 233 adjusting hand wheel, 24 stamping cylinder, 25 stamping connecting plate, 261 stamping sliding block, 262 stamping sliding rail, 27 stamping rod, 271 limiting rod, 28 spring, 29 stamping die, 291 limiting sliding groove;
[0030] 3 vertical shaping mechanism, 31 vertical drive cylinder, 32 vertical heat insulation plate, 33 vertical heating block;
[0031] 4 lateral shaping mechanism, 41 lateral drive cylinder, 42 lateral fixed frame, 43 lateral heat insulation plate, 44 lateral heating block, 45 anti-scald sliding table cylinder;
[0032] 5 fixed clamping seat, 51 fixed connecting block, 52 lower guide rivet pressing block, 521 rivet pressing guide groove, 53 upper clamping block, 54 nail passing gap, 55 clamping gap;
[0033] 61 shielding drive cylinder, 62 anti-scald shielding box, 621 anti-scald partition, 622 lower anti-scald shielding plate, 623 upper anti-scald shielding plate, 624 anti-scald chamber;
[0034] 71 humidifier, 72 humidifying pipe;
[0035] 81 vibration barrel, 82 feeding guide frame. DETAILED DESCRIPTION
[0036] The following is only the preferred embodiment of the utility model, and does not limit the protection scope of the utility model.
[0037] A kind of semi-automatic belt ring code nailer with shaping function, such as Figures 1 to 6As shown, including rack 1, rack 1 is provided with stamping device 2, shaping device and fixed clamp seat 5, stamping device 2 includes stamping fixed frame, stamping drive mechanism, stamping rod 27 and stamping die 29, stamping fixed frame is fixedly installed on rack 1, stamping rod 27 is vertically slidingly installed on the stamping fixed frame, the stamping drive mechanism is in transmission connection with the stamping rod 27, the stamping die 29 is movably installed on the lower end of the stamping rod 27, the fixed clamp seat 5 is installed on the stamping fixed frame and below the stamping die 29, the shaping device includes heating control circuit, vertical shaping mechanism 3 and two lateral shaping mechanisms 4, the vertical shaping mechanism 3 is arranged below the fixed clamp seat 5, and the two lateral shaping mechanisms 4 are symmetrically arranged on the left and right sides of the fixed clamp seat 5 respectively, each lateral shaping mechanism 4 is provided with a lateral drive mechanism and a side heating block 44, the lateral drive mechanism is in transmission connection with the side heating block 44, the heating blocks of the two lateral shaping mechanisms 4 are respectively close to and away from the fixed clamp seat 5, the vertical shaping mechanism 3 is provided with a vertical drive mechanism and a vertical heating block 33, the vertical drive mechanism is in transmission connection with the vertical heating block 33, and the vertical heating block 33 is close to and away from the fixed clamp seat 5, and the heating control circuit is electrically connected with the vertical heating block 33 and the two side heating blocks 44 respectively. The traditional semi-automatic belt ring code nailer does not have a heating and shaping function, and after the riveting, the belt ring is a circular type, and the adhesion of the belt is poor, so that the belt ring often needs to be heated and shaped by using a shaping device, the production process is complex, the efficiency is low, and the cost is high. The stamping device 2 is used for stamping the code nail, so that the belt ring is formed by connecting the strip-shaped short belt through the code nail, at the same time, the two side surfaces and the bottom surface of the belt ring are pressed by the shaping device respectively, so that the belt ring is adhered to the fixed clamp seat 5, the belt ring is heated and shaped by the side heating block 44 and the vertical heating block 33, so that the belt ring is shaped into a rectangular belt ring, so as to improve the adhesion between the belt ring and the belt. In the process of riveting, heating and shaping are carried out at the same time, without the need for secondary processing and shaping, the production efficiency is improved, and the production cost is reduced. The inside of the vertical heating block 33 and the two side heating blocks 44 is provided with a thermocouple, and the thermocouple is electrically connected with the heating control circuit, so as to supply power to the thermocouple through the heating control circuit, so as to heat the vertical heating block 33 and the two side heating blocks 44.
[0038] Specifically, the lateral drive mechanism includes a lateral drive cylinder 41, a lateral fixing frame 42, and a side heat insulation plate 43. The lateral fixing frame 42 is fixedly installed on the frame 1, the lateral drive cylinder 41 is fixedly installed on the lateral fixing frame 42, the side heat insulation plate 43 is fixedly installed on the piston rod of the lateral drive cylinder 41, and the side heating block 44 is fixedly installed on the side heat insulation plate 43. The vertical drive mechanism includes a vertical drive cylinder 31 and a vertical heat insulation plate 32. The vertical drive cylinder 31 is fixedly installed on the frame 1, the vertical heat insulation plate 32 is fixedly installed on the piston rod of the vertical drive cylinder 31, and the vertical heating block 33 is fixedly installed on the upper part of the vertical heat insulation plate 32. The side heating block 44 and the vertical heating block 33 are driven by the side driving cylinder 41 and the vertical driving cylinder 31 respectively. The structure is simple and the cost is low. The heat is blocked by the side heat insulation plate 43 and the vertical heat insulation plate 32, which prevents the side driving cylinder 41 and the vertical driving cylinder 31 from heating up, reduces heat loss, and improves reliability and stability.
[0039] Specifically, the lateral shaping mechanism 4 is further equipped with an anti-scalding slide cylinder 45, which is fixedly installed on the frame 1, and the lateral fixing bracket 42 is fixedly installed on the slide of the anti-scalding slide cylinder 45. The anti-scalding slide cylinder 45 increases the travel of the side heating block 44, such as... Figure 5 As shown, during loading and unloading, the side heating block 44 is moved to the side away from the fixed clamp 5 by the anti-scalding slide cylinder 45, so that there is a large gap between the fixed clamp 5 and the side heating block 44, thereby preventing the side heating block 44 from being touched during loading and unloading, avoiding burns and improving safety.
[0040] Specifically, the vertical shaping mechanism 3 is also equipped with an anti-scalding shielding assembly, which includes a shielding drive cylinder 61 and an anti-scalding shield box 62. The anti-scalding shield box 62 is slidably mounted on the frame 1 in the longitudinal direction, and the shielding drive cylinder 61 is fixedly mounted on the frame 1. The rear end of the anti-scalding shield box 62 is fixedly connected to the piston rod of the shielding drive cylinder 61. The anti-scalding shield box 62 has an anti-scalding chamber 624 inside. Figure 5 As shown, during loading and unloading, the anti-scalding baffle 62 moves forward, and the vertical heating block 33 is located inside the anti-scalding chamber 624. During shaping, the anti-scalding baffle 62 moves backward, and the vertical heating block 33 moves out of the anti-scalding chamber 624. The anti-scalding baffle 62 is moved by the blocking drive cylinder 61. During loading and unloading, the anti-scalding baffle 62 moves forward, causing the vertical heating block 33 to enter the anti-scalding chamber 624 to enclose it. The anti-scalding baffle 62 is located between the vertical heating block 33 and the fixed clamp 5 to prevent burns from the vertical heating block 33 during loading and unloading. Figure 6 As shown, during the riveting or shaping process, the shielding drive cylinder 61 drives the anti-scalding baffle box 62 to move backward, so that the vertical heating block 33 moves out of the space between the vertical heating block 33 and the fixed clamp 5, thereby facilitating the vertical heating block 33 to move upward and fit tightly against the belt ring.
[0041] Specifically, the anti-scald baffle 62 comprises an anti-scald partition plate 621, an anti-scald connecting plate, two lower anti-scald baffles 622 and two upper anti-scald baffles 623. The rear end of the anti-scald partition plate 621 is shaped on the front side of the anti-scald connecting plate, the rear side of the anti-scald connecting plate is fixedly connected with the piston rod of the shielding driving cylinder 61, the upper ends of the two lower anti-scald baffles 622 are respectively shaped on the left and right sides of the lower part of the anti-scald partition plate 621, the lower ends of the two upper anti-scald baffles 623 are respectively shaped on the left and right sides of the upper part of the anti-scald partition plate 621, and the two lower anti-scald baffles 622 and the anti-scald partition plate 621 form an anti-scald chamber 624. As shown in the figure, during feeding and discharging, the two upper anti-scald baffles 623 are located between the two lateral shaping mechanisms 4 and the fixed clamp seat 5, so as to further isolate the side heating block 44 and further improve the safety. Figure 5
[0042] Specifically, the semi-automatic belt ring nailing machine is further provided with a humidifying mechanism, the humidifying mechanism comprises a humidifier 71 and a humidifying pipe 72, the humidifier 71 is fixedly installed on the stamping fixed frame, the humidifying pipe 72 is connected with the humidifier 71, and the gas outlet of the humidifying pipe 72 faces the fixed clamp seat 5. The humidifier 71 comprises a water tank and an ultrasonic atomizer, the water in the water tank is atomized through the ultrasonic atomizer, and the atomized water vapor is sprayed to the belt ring through the humidifying pipe 72, so as to avoid the loss of water in the belt ring and improve the shaping effect.
[0043] Specifically, the stamping fixed frame comprises a stamping upper frame 21 and a stamping lower frame 22, the stamping lower frame 22 is fixedly installed on the rack 1, the stamping upper frame 21 is slidingly installed on the stamping lower frame 22 in the longitudinal direction, and an adjusting assembly is arranged between the stamping upper frame 21 and the stamping lower frame 22. The adjusting assembly comprises an adjusting screw rod 231, an adjusting nut 232 and an adjusting hand wheel 233, the adjusting nut 232 is fixedly installed on the rear part of the stamping lower frame 22, the adjusting screw rod 231 is threadedly connected with the adjusting nut 232, the front end of the adjusting screw rod 231 is rotationally connected with the rear part of the stamping upper frame 21, and the adjusting hand wheel 233 is fixedly installed on the rear end of the adjusting screw rod 231. The adjusting screw rod 231 is rotated by rotating the adjusting hand wheel 233, so that the stamping upper frame 21 is driven to move forward and backward, the stamping die 29 can be accurately aligned with the nail, the nail is prevented from being skewed, the belt ring with different widths can be adapted, the fixed clamp seat 5 does not need to be replaced, the use cost is reduced, and the convenience is improved.
[0044] Specifically, the fixed clamp seat 5 comprises a fixed connecting block 51, a lower guide and riveting block 52 and two upper clamping blocks 53. The rear end of the fixed connecting block 51 is fixedly installed on the front side of the stamping lower frame 22. The two upper clamping blocks 53 are respectively formed on the left and right sides of the upper part of the front end of the fixed connecting block 51. The lower guide and riveting block 52 is formed on the lower part of the front end of the fixed connecting block 51 and below the two upper clamping blocks 53. The top surface of the lower guide and riveting block 52 is provided with a riveting guide groove 521. The two upper clamping blocks 53 have a nail passing gap 54 therebetween. The lower guide and riveting block 52 and the two upper clamping blocks 53 have a clamping gap 55 therebetween. During feeding and discharging, the two ends of the strip-shaped short belt are respectively inserted into the clamping gap 55. The rear part of the strip-shaped short belt is abutted against the fixed connecting block 51 to be positioned. The strip-shaped short belt is preliminarily fixed through the clamping gap 55. During riveting, the stamping die 29 moves downward to pass through the nail passing gap 54 to pierce the strip-shaped short belt with the nail. The nail is abutted against the riveting guide groove 521 after passing through the strip-shaped short belt to be bent under the action of the riveting guide groove 521 to complete the riveting connection. The fixed clamp seat 5 has a simple structure and low cost.
[0045] Specifically, the stamping driving mechanism comprises a stamping cylinder 24, a stamping connecting plate 25, a stamping sliding block 261 and a stamping sliding rail 262. The stamping cylinder 24 is fixedly installed on the upper part of the stamping upper frame 21. The stamping sliding rail 262 is vertically installed on the stamping lower frame 22. The stamping sliding block 261 is slidingly installed on the stamping sliding rail 262. One side of the stamping connecting plate 25 is fixedly connected with the stamping sliding block 261. The upper part of the stamping connecting plate 25 is fixedly connected with the piston rod of the stamping cylinder 24. The lower part of the stamping connecting plate 25 is fixedly connected with the upper end of the stamping rod 27. The stamping die 29 is provided with a stamping sliding groove with an opening facing upward. The lower part of the stamping rod 27 is inserted into the stamping sliding groove. The two sides of the stamping die 29 are respectively vertically provided with limiting sliding grooves 291 in communication with the stamping sliding groove. The lower part of the stamping rod 27 is respectively threadedly connected with limiting rods 271. The two limiting rods 271 are respectively slidingly installed in the two limiting sliding grooves 291. The upper part of the stamping rod 27 is sleeved with a spring 28. The upper end of the spring 28 is abutted against the stamping connecting plate 25 and the lower end is abutted against the stamping die 29. The spring 28 gives the stamping die 29 a buffering capacity to improve the riveting effect. The stamping cylinder 24 drives the stamping rod 27. The structure is simple and the cost is low. The stamping sliding block 261 and the stamping sliding rail 262 can make the stamping connecting plate 25 stably move in the vertical direction to prevent axial deviation and improve the riveting precision.
[0046] Specifically, the semi-automatic belt ring nailer is further provided with an automatic feeding device, the automatic feeding device comprises a vibrating barrel 81 and a feeding guide frame 82, the vibrating barrel 81 is fixedly installed on the rack 1, one end of the feeding guide frame 82 is connected with the vibrating barrel 81 and the other end extends to between the fixed clamp seat 5 and the stamping die 29. A plurality of nails are screened, arranged and conveyed to the feeding guide frame 82 through the vibrating barrel 81, the feeding guide frame 82 conveys the nails one by one to between the fixed clamp seat 5 and the stamping die 29, so that automatic feeding is realized, manual installation of the nails is not needed, and production efficiency is improved.
[0047] It should be understood that the terms "front", "back", "left", "right" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and the "longitudinal direction" is "longitudinal", and the "transverse direction" is "transverse", only for the convenience of describing the utility model and simplifying the description, and not indicating or implying that the device or element referred to must have a particular orientation, a particular orientation structure and operation, and therefore cannot be understood as a limitation on the protection content of the utility model. Figure 5
[0048] The above is only the preferred embodiment of the utility model, and for those skilled in the art, according to the idea of the utility model, the specific implementation mode and application range can be changed, and the content of the specification should not be understood as a limitation on the utility model.
Claims
1. A semi-automatic belt loop code nailing machine with a shaping function, comprising a rack (1), characterized in that: The rack (1) is provided with a punching device (2), a shaping device and a fixed clamp seat (5), the punching device (2) comprises a punching fixed frame, a punching driving mechanism, a punching rod (27) and a punching die (29), the punching fixed frame is fixedly installed on the rack (1), the punching rod (27) is vertically and slidingly installed on the punching fixed frame, the punching driving mechanism is in transmission connection with the punching rod (27), the punching die (29) is movably installed on the lower end of the punching rod (27), the fixed clamp seat (5) is installed on the punching fixed frame and below the punching die (29), The shaping device comprises a heating control circuit, a vertical shaping mechanism (3) and two lateral shaping mechanisms (4), the vertical shaping mechanism (3) is arranged below the fixed clamp seat (5), and the two lateral shaping mechanisms (4) are symmetrically arranged on the left and right sides of the fixed clamp seat (5), Each lateral shaping mechanism (4) is provided with a lateral driving mechanism and a lateral heating block (44), the lateral driving mechanism is in transmission connection with the lateral heating block (44), and the heating blocks of the two lateral shaping mechanisms (4) are respectively subjected to close and away movements towards the fixed clamp seat (5), The vertical shaping mechanism (3) is provided with a vertical driving mechanism and a vertical heating block (33), the vertical driving mechanism is in transmission connection with the vertical heating block (33), and the vertical heating block (33) is subjected to close and away movements towards the fixed clamp seat (5), The heating control circuit is in electrical connection with the vertical heating block (33) and the two lateral heating blocks (44).
2. The semi-automatic belt loop code nailing machine with the shaping function according to claim 1, characterized in that: The lateral driving mechanism comprises a lateral driving cylinder (41), a lateral fixed frame (42) and a lateral heat insulation plate (43), the lateral fixed frame (42) is fixedly installed on the rack (1), the lateral driving cylinder (41) is fixedly installed on the lateral fixed frame (42), and the lateral heat insulation plate (43) is fixedly installed on the piston rod of the lateral driving cylinder (41), and the lateral heating block (44) is fixedly installed on the lateral heat insulation plate (43); The vertical driving mechanism comprises a vertical driving cylinder (31) and a vertical heat insulation plate (32), the vertical driving cylinder (31) is fixedly installed on the rack (1), the vertical heat insulation plate (32) is fixedly installed on the piston rod of the vertical driving cylinder (31), and the vertical heating block (33) is fixedly installed on the upper portion of the vertical heat insulation plate (32).
3. The semi-automatic belt loop code nailing machine with the shaping function according to claim 2, characterized in that: The lateral shaping mechanism (4) is further provided with an anti-scald sliding table cylinder (45), the anti-scald sliding table cylinder (45) is fixedly installed on the rack (1), and the lateral fixed frame (42) is fixedly installed on the sliding table of the anti-scald sliding table cylinder (45).
4. The semi-automatic belt loop code nailing machine with the shaping function according to claim 2, characterized in that: The vertical shaping mechanism (3) is further provided with an anti-scald shielding assembly, which comprises a shielding driving cylinder (61) and an anti-scald shielding box (62). The anti-scald shielding box (62) is slidingly installed on the rack (1) in the longitudinal direction, and the shielding driving cylinder (61) is fixedly installed on the rack (1). The rear end of the anti-scald shielding box (62) is fixedly connected with the piston rod of the shielding driving cylinder (61), and the inside of the anti-scald shielding box (62) is provided with an anti-scald chamber (624). When feeding or discharging, the anti-scald shielding box (62) moves forward, and the vertical heating block (33) is located in the anti-scald chamber (624). When shaping, the anti-scald shielding box (62) moves backward, and the vertical heating block (33) moves out of the anti-scald chamber (624).
5. The semi-automatic belt loop code nailing machine with the function of shaping according to claim 4, characterized in that: The anti-scald shielding box (62) comprises an anti-scald partition plate (621), an anti-scald connecting plate, two lower anti-scald shielding plates (622) and two upper anti-scald shielding plates (623). The rear end of the anti-scald partition plate (621) is formed on the front side of the anti-scald connecting plate, the rear side of the anti-scald connecting plate is fixedly connected with the piston rod of the shielding driving cylinder (61), the upper ends of the two lower anti-scald shielding plates (622) are respectively formed on the left and right sides of the lower part of the anti-scald partition plate (621), the lower ends of the two upper anti-scald shielding plates (623) are respectively formed on the left and right sides of the upper part of the anti-scald partition plate (621), and the two lower anti-scald shielding plates (622) and the anti-scald partition plate (621) form the anti-scald chamber (624).
6. The semi-automatic belt loop code nailing machine with the shaping function according to claim 1, characterized in that: The semi-automatic belt ring coding machine is further provided with a humidifying mechanism, which comprises a humidifier (71) and a humidifying pipe (72). The humidifier (71) is fixedly installed on the stamping fixing frame, and the humidifying pipe (72) is connected with the humidifier (71). The gas outlet of the humidifying pipe (72) faces the fixed clamping seat (5).
7. The semi-automatic belt loop code nailing machine with the shaping function according to any one of claims 1 to 6, characterized in that: The stamping fixing frame comprises a stamping upper frame (21) and a stamping lower frame (22). The stamping lower frame (22) is fixedly installed on the rack (1), and the stamping upper frame (21) is slidingly installed on the stamping lower frame (22) in the longitudinal direction. An adjusting assembly is arranged between the stamping upper frame (21) and the stamping lower frame (22). The adjusting assembly comprises an adjusting screw (231), an adjusting nut (232) and an adjusting hand wheel (233). The adjusting nut (232) is fixedly installed on the rear part of the stamping lower frame (22). The adjusting screw (231) is threadedly connected with the adjusting nut (232). The front end of the adjusting screw (231) is rotatably connected with the rear part of the stamping upper frame (21). The adjusting hand wheel (233) is fixedly installed on the rear end of the adjusting screw (231).
8. The semi-automatic belt loop code nailing machine with the function of shaping according to claim 7, characterized in that: The fixed clamping seat (5) comprises a fixed connecting block (51), a lower guide and riveting block (52) and two upper clamping blocks (53), the rear end of the fixed connecting block (51) is fixedly installed on the front side of the stamping lower frame (22), the two upper clamping blocks (53) are respectively formed on the left and right sides of the upper part of the front end of the fixed connecting block (51), the lower guide and riveting block (52) is formed on the lower part of the front end of the fixed connecting block (51) and below the two upper clamping blocks (53), the top surface of the lower guide and riveting block (52) is provided with a riveting guide groove (521), the two upper clamping blocks (53) have a nail penetrating gap (54) therebetween, and the lower guide and riveting block (52) and the two upper clamping blocks (53) have a clamping gap (55) therebetween.
9. The semi-automatic belt loop code nailing machine with the function of shaping according to claim 7, characterized in that: The stamping driving mechanism comprises a stamping cylinder (24), a stamping connecting plate (25), a stamping sliding block (261) and a stamping sliding rail (262), the stamping cylinder (24) is fixedly installed on the upper part of the stamping upper frame (21), the stamping sliding rail (262) is vertically installed on the stamping lower frame (22), the stamping sliding block (261) is slidingly installed on the stamping sliding rail (262), one side of the stamping connecting plate (25) is fixedly connected with the stamping sliding block (261), the upper part of the stamping connecting plate (25) is fixedly connected with the piston rod of the stamping cylinder (24), the lower part of the stamping connecting plate (25) is fixedly connected with the upper end of the stamping rod (27), the stamping die (29) is provided with a stamping sliding groove with an opening facing downward, the lower part of the stamping rod (27) is inserted into the stamping sliding groove, the two sides of the stamping die (29) are vertically provided with limiting sliding grooves (291) in communication with the stamping sliding groove, the left and right sides of the lower part of the stamping rod (27) are respectively threadedly connected with limiting rods (271), the two limiting rods (271) are respectively slidingly installed in the two limiting sliding grooves (291), and the upper part of the stamping rod (27) is sleeved with a spring (28), the upper end of the spring (28) abuts against the stamping connecting plate (25) and the lower end abuts against the stamping die (29).
10. The semi-automatic belt loop code nailing machine with a shaping function according to claim 9, characterized in that: The semi-automatic belt ring nail coding machine is further provided with an automatic feeding device, the automatic feeding device comprises a vibrating barrel (81) and a feeding guide frame (82), the vibrating barrel (81) is fixedly installed on the frame (1), one end of the feeding guide frame (82) is connected with the vibrating barrel (81) and the other end extends between the fixed clamping seat (5) and the stamping die (29).