Novel stable shoe-shaped gold ingot machine
By setting up a stable installation mechanism on the paper ingot machine, the problem of component position offset caused by vibration is solved, the forming accuracy and processing efficiency of the paper ingot are ensured, and the maintenance frequency is reduced.
Patent Information
- Application Number
- CN202422834846.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-20
AI Technical Summary
During operation, the existing paper ingot making machines vibrate, causing the positions of various components to shift, affecting the forming accuracy and processing efficiency of paper ingots, and requiring frequent maintenance.
By setting a horizontal adjuster and a stable installation mechanism at the bottom of the Yuanbao machine, including a stable rod and a connecting piece, the stable installation of the first former, paper stopper, second former and blowing nozzle mechanism is ensured to avoid position displacement caused by equipment vibration.
It effectively avoids the influence of equipment vibration on the forming accuracy of paper ingots, reduces maintenance frequency, and improves processing efficiency and equipment stability.
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Figure CN223340173U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of paper ingot processing equipment, in particular to a novel and stable ingot making machine. Background Art
[0002] A paper ingot making machine typically includes a paper roll discharging mechanism, a cutting mechanism, a first former, a paper stopper, a second former, and a blowing mechanism. After the paper roll is loaded onto the discharging mechanism, it undergoes a series of steps, including cutting, shaping, and blowing, to form a paper ingot. Existing ingot making machines vibrate during operation, causing the various components to shift position, impacting folding and cutting accuracy, ultimately affecting the paper ingot's forming quality. Excessive component shifts require equipment maintenance and adjustments, impacting processing efficiency. Utility Model Content
[0003] The technical problem to be solved by the present invention is to provide a new and stable ingot making machine, which can reinforce and stabilize the first former, paper stopper, second former, blowing nozzle mechanism, etc. of the ingot making machine, thereby avoiding affecting the forming effect of paper ingots and reducing the maintenance frequency of the ingot making machine.
[0004] In order to solve the above technical problems, the technical solution adopted by the utility model is: a new and stable Yuanbao machine, including a first former, a paper stopper, a second former and a blowing nozzle mechanism. The bottom of the Yuanbao machine body is provided with a horizontal adjuster, and the horizontal adjuster includes a number of feet installed at the bottom of the body. The body is provided with a first forming position, a paper stopper position, a second forming position and a blowing position. The first forming position is provided with a first forming stabilizing mechanism, the first former is connected to the connecting part of the first forming stabilizing mechanism, the paper stopper is provided with a paper stopper stabilizing mechanism, the paper stopper is connected to the connecting part of the paper stopper stabilizing mechanism, the second forming position is provided with a second forming stabilizing mechanism, the second former is connected to the connecting part of the second forming stabilizing mechanism, the blowing position is provided with a blowing nozzle stabilizing mechanism, and the blowing nozzle mechanism is connected to the connecting part of the blowing nozzle stabilizing mechanism. The ingot machine of the present invention utilizes a first forming stabilizing mechanism to securely install the first former, utilizes a paper stop stabilizing mechanism to securely install the paper stop, utilizes a second forming stabilizing mechanism to securely install the second former, and utilizes a blowing nozzle stabilizing mechanism to securely install the blowing nozzle mechanism, thereby avoiding positional displacement of various components caused by equipment vibration during the production process, which affects the folding and cutting accuracy of paper ingots.
[0005] As an optional technical solution, the first forming stabilization mechanism, the paper-stopping stabilization mechanism, the second forming stabilization mechanism, and the mouthpiece stabilization mechanism are stabilization installation mechanisms. The stabilization installation mechanisms include a stabilization rod I, a connector, and a stabilization rod II. Stabilization rod I and stabilization rod II are polygonal rods. Stabilization rod I is connected to the frame and is provided with at least one connector. Stabilization rod I is provided with a fixing sleeve I corresponding to each connector. Fixing sleeve I cooperates with the corresponding connector. Stabilization rod II is provided on each connector. Stabilization rod II is perpendicular to stabilization rod I and is provided with a connecting portion on stabilization rod II. Stabilization rod II is provided with a fixing sleeve II, which cooperates with the connector. The first forming stabilization mechanism, the paper-stopping stabilization mechanism, the second forming stabilization mechanism, and the mouthpiece stabilization mechanism are stabilization installation mechanisms. Adaptive adjustment of the installation position can meet the needs of multiple functional mechanisms.
[0006] As an optional technical solution, a first connecting hole and a second connecting hole are provided on the connecting member, and a stabilizing rod I passes through the first connecting hole of each connecting member, and a fixing sleeve I is provided on the stabilizing rod I corresponding to each connecting member, and the fixing sleeve I is in conflict with the corresponding connecting member; a stabilizing rod II is passed through the second connecting hole of each connecting member, and a fixing sleeve II is provided on the stabilizing rod II and the fixing sleeve II is in conflict with the connecting member.
[0007] As an optional technical solution, the connecting member is provided with a first fastening hole, which communicates with the first connecting hole and has a length perpendicular to that of the first connecting hole; the connecting member is provided with a second fastening hole, which communicates with the second connecting hole and has a length perpendicular to that of the second connecting hole, and mounting fasteners are disposed in the first and second fastening holes. The fastening mounting members are used to connect the connecting member to the first and second stabilizing rods, thereby improving the structural strength of the stable mounting mechanism.
[0008] As an optional technical solution, the stabilizing rod I and the stabilizing rod II are regular polygonal rods.
[0009] As an optional technical solution, the first forming and stabilizing mechanism includes a first stabilizing rod I, a first stabilizing rod II, and a first connecting member. The first stabilizing rod I is a regular hexagonal rod. Two first connecting members are provided on the first stabilizing rod I. A first fixing sleeve I is provided on the first stabilizing rod I corresponding to each first connecting member. Each first connecting member is provided with a first stabilizing rod II. A first fixing sleeve II is provided on the first stabilizing rod II corresponding to each first connecting member. A connecting pin is provided at the connecting pin. A former fixing plate is provided on the connecting pin, and the former fixing plate rotates relative to the connecting pin. An arc-shaped waist hole is provided on the former fixing plate. An adjustment fastener is provided in the arc-shaped waist hole. The adjustment fastener is connected to the adjustment fastening hole provided on the first stabilizing rod II. The former fixing plate is connected to the forming part of the first former. The two forming parts of the first former are respectively connected to the two former fixing plates to avoid position displacement due to equipment vibration and ensure the forming effect of the paper ingot.
[0010] As an optional technical solution, the paper stop stabilizing mechanism includes a paper stop stabilizing rod I, a paper stop stabilizing rod II and a paper stop connecting piece. A paper stop connecting piece is provided on the paper stop stabilizing rod I, and a paper stop fixing sleeve I is provided on the paper stop fixing rod I corresponding to the paper stop connecting piece. A paper stop stabilizing rod II is provided on the paper stop connecting piece, and a paper stop fixing sleeve II is provided on the paper stop stabilizing rod II at the paper stop connecting piece. The connecting part of the paper stop stabilizing rod II is connected to the paper stopper.
[0011] As an optional technical solution, the second forming and stabilizing mechanism includes a second stabilizing rod I, a second stabilizing rod II, and a second connecting member. The second stabilizing rod I is provided with multiple second connecting members. A second fixing sleeve I is provided on the second stabilizing rod I corresponding to each second connecting member. Each second connecting member is provided with a second stabilizing rod II, and each second stabilizing rod II is provided with a second fixing sleeve II on the second connecting member. The second stabilizing rods II on each second connecting member are respectively provided with two side stabilizing rods II located on either side and a middle stabilizing rod II located between the side stabilizing rods II. The middle stabilizing rod II is provided with a rubber wheel, which is an integral structure with the middle stabilizing rod II. The side stabilizing rods II are provided with origami paper sheets, which are symmetrically arranged on either side of the rubber wheel. The rubber wheel of the second former is integrated with part of the second forming and stabilizing mechanism, further ensuring the stabilization of the second former.
[0012] As an optional technical solution, the mouthpiece stabilizing mechanism includes a mouthpiece stabilizing rod I, a mouthpiece stabilizing rod II, a mouthpiece connecting piece and an adjusting fixing plate, the adjusting fixing plate is connected to the machine body, a mounting plate is vertically provided at the end of the mouthpiece stabilizing rod I, an arc-shaped waist hole is provided on the mounting plate, and a connecting pin is provided at the center of the arc-shaped waist hole on the mounting plate, the connecting pin is connected to the mounting hole provided on the adjusting fixing plate and the mouthpiece stabilizing rod I rotates relative to the adjusting fixing plate, a connecting fastener is provided in the arc-shaped waist hole, and the connecting fastener is connected to the connecting fastening hole provided on the adjusting fixing plate; a mouthpiece connecting piece is provided on the mouthpiece stabilizing rod I, a mouthpiece fixing sleeve I is provided on the mouthpiece stabilizing rod I at the mouthpiece connecting piece, a mouthpiece stabilizing rod II is provided on the mouthpiece stabilizing rod II, a mouthpiece fixing sleeve II is provided on the mouthpiece connecting piece, the mouthpiece of the mouthpiece mechanism is connected to the connecting part of the mouthpiece stabilizing rod II, and a through groove for the mouthpiece pipe to pass through is provided in the mouthpiece stabilizing rod II.
[0013] As an optional technical solution, the machine body is provided with a raw material loading position, which is equipped with a paper roll discharging mechanism. The paper roll discharging mechanism includes a paper roll discharging shaft, which is mounted on the machine body and rotates relative to the machine body. The raw material loading position is also provided with a raw material limiting mechanism. The raw material limiting mechanism includes a mounting member, a mounting adjustment member, and a paper roll limiting member. The mounting member is mounted on the machine body, and the mounting adjustment member is mounted on the mounting member and moves and adjusts along the axial direction of the paper roll discharging shaft. The paper roll limiting member includes a limiting cylinder and a limiting seat. The limiting seat is mounted on the mounting adjustment member and flips relative to the mounting adjustment member between a standby position and a limited paper top position. The limiting cylinder is mounted on the limiting seat and rotates relative to the limiting seat. The limiting cylinder is perpendicular to the paper roll discharging shaft. The raw material limiting mechanism limits the raw material roll, thereby improving feeding stability.
[0014] Compared with the prior art, the present invention has the following beneficial effects: 1. The first former is firmly installed by using the first forming stabilizing mechanism, so as to avoid the first former being dislocated or having an angle shift due to the vibration of the equipment and the torsional force on the first former during the production process; 2. The paper stopper is firmly installed by using the paper stopper stabilizing mechanism, so as to avoid the paper stopper being dislocated and having an angle shift due to the vibration of the equipment during the production process, thereby avoiding affecting the paper cutting accuracy; 3. The second former is firmly installed by using the second forming stabilizing mechanism, so as to avoid the misalignment of the rubber wheel and the folding paper board caused by the vibration of the equipment during the production process The rubber wheel and the second stabilizing rod II are an integrated structure, which is beneficial to the secondary molding of paper ingots and convenient for the adjustment and maintenance of the various components of the second former; 4. The blowing nozzle stabilizing mechanism is used to firmly install the blowing nozzle mechanism to avoid the dislocation and angle deviation of the blowing nozzle caused by the vibration of the equipment during the production process; 5. The body of the ingot machine is supported by feet, which is beneficial to the horizontal correction and fixation of the ingot machine as a whole, and to cushion the vibration of the equipment; 6. The raw material limiting mechanism is used to support and limit the roll of paper to avoid the raw material paper from scattering or dumping due to the vibration of the equipment during the production process. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0016] Figure 1 This is the structural diagram of the Yuanbao machine;
[0017] Figure 2 This is a structural diagram of the first forming and stabilizing mechanism;
[0018] Figure 3 Schematic diagram of the connection between the double-hole fixing plate of the former and the first former;
[0019] Figure 4 This is a structural diagram of the paper stop stabilizing mechanism;
[0020] Figure 5 This is a structural diagram of the second forming and stabilizing mechanism;
[0021] Figure 6 This is a structural diagram of the middle stabilizing rod II and the rubber wheel of the second molding stabilizing mechanism;
[0022] Figure 7 This is a structural diagram of the mouthpiece stabilizing mechanism;
[0023] Figure 8 This is the structural diagram of the raw material limiting mechanism;
[0024] Figure 9 This is the structural diagram of the level regulator;
[0025] In the figure: 1, machine body, 2, first former, 3, paper stopper, 4, second former, 5, blowing nozzle mechanism, 6, foot, 61, load-bearing plate, 62, horizontal adjustment screw, 63, locking nut, 64, rubber buffer pad, 7, paper roll discharging mechanism, 8, raw material limiting mechanism, 81, mounting part, 82, mounting adjustment part, 83, limiting cylinder, 84, limiting seat, 21, first forming stabilizing mechanism, 211, first stabilizing rod I, 212, first stabilizing rod II, 213, first connecting member, 214, first fixing sleeve I, 215, first fixing sleeve II, 216, former fixing plate, 31, paper stop stabilizing mechanism, 311, paper stop stabilizing mechanism Fixed rod I, 312, paper stop stabilizing rod II, 313, paper stop connecting piece, 314, paper stop fixing sleeve I, 315, paper stop fixing sleeve II, 41, second forming stabilizing mechanism, 411, second stabilizing rod I, 412, second stabilizing rod II, 413, second connecting piece, 414, second fixing sleeve I, 415, second fixing sleeve II, 416, rubber wheel, 417, folding paper board, 418, double-hole auxiliary angle device, 51, mouthpiece stabilizing mechanism, 511, mouthpiece stabilizing rod I, 512, mouthpiece stabilizing rod II, 513, mouthpiece connecting piece, 514, mounting plate, 515, mouthpiece fixing sleeve I, 516, mouthpiece fixing sleeve II, 517 adjusting fixing plate. DETAILED DESCRIPTION
[0026] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention. Example
[0027] A new and stable ingot making machine includes a first former 2, a paper stopper 3, a second former 4 and a blowing mechanism 5. The first former 2, the paper stopper 3, the second former 4, the blowing mechanism 5 and the transmission system, power system, etc. required for the ingot making machine are all structures used by the ingot making machine in the prior art. The above structures are not described in detail in this utility model.
[0028] like Figures 1-9As shown, a new type of stable Yuanbao machine of this embodiment is provided with a first forming position, a paper stopping position, a second forming position and a blowing position on the body 1, the first forming position is provided with a first forming stabilizing mechanism 21, the first former 2 is connected to the connecting part of the first forming stabilizing mechanism 21, and the first former 2 is installed on the body 1 through the first forming stabilizing mechanism 21; the paper stopping position is provided with a paper stopping stabilizing mechanism 31, the paper stopper 3 is connected to the connecting part of the paper stopping stabilizing mechanism 31, and the paper stopper 3 is installed on the body 1 through the paper stopping stabilizing mechanism 31; the second forming position is provided with a second forming stabilizing mechanism 41, the second former 4 is connected to the connecting part of the second forming stabilizing mechanism 41, and the second former 4 is installed on the body 1 through the second forming stabilizing mechanism 41; the blowing position is provided with a nozzle stabilizing mechanism 51, the nozzle mechanism 5 is connected to the connecting part of the nozzle stabilizing mechanism 51, and the nozzle mechanism 5 is installed on the body 1 through the nozzle stabilizing mechanism 51.
[0029] In the paper ingot machine of this embodiment, the first former 2, the second former 4, the paper stopper 3 and the blowing nozzle mechanism 5 are respectively installed through corresponding stable installation mechanisms. During the production and processing process, the first former 2, the second former 4, the paper stopper 3 and the blowing nozzle mechanism 5 vibrate synchronously with the machine body 1, which effectively avoids the first former 2, the second former 4, the paper stopper 3 and the blowing nozzle mechanism 5 and other components from being relatively displaced with the machine body 1 due to vibration, affecting the cutting accuracy, folding accuracy, blowing accuracy, etc. of the paper ingot, which can not only ensure the production and processing effect of the paper ingot, but also reduce the frequency of maintenance and adjustment of the equipment.
[0030] The first molding stabilizing mechanism 21, the paper-stopping stabilizing mechanism 31, the second molding stabilizing mechanism 41 and the blowing nozzle stabilizing mechanism 51 are stabilizing installation mechanisms, which include stabilizing rods I, connecting parts and stabilizing rods II. Due to the different structural forms of the first former 2, the second former 4, the paper stopper 3 and the blowing nozzle mechanism 5, when the stabilizing installation mechanisms serve as the first molding stabilizing mechanism 21, the paper-stopping stabilizing mechanism 31, the second molding stabilizing mechanism 41 and the blowing nozzle stabilizing mechanism 51, there are some differences in the structures and quantities of stabilizing rods I and stabilizing rods II.
[0031] See also Figure 1-Figure 7The stabilizing rod I and the stabilizing rod II are polygonal rods, and preferably regular polygonal rods. The stabilizing rod I is connected to the frame of the Yuanbao machine. At least one connecting piece is provided on the stabilizing rod I, and the stabilizing rod II is provided on the connecting piece. The stabilizing rod I is connected to the frame to avoid the position offset between the stabilizing rod I and the frame caused by equipment vibration. The connecting piece is connected to the stabilizing rod I and the stabilizing rod I is a polygonal rod, which can avoid the connecting piece from rotating circumferentially relative to the stabilizing rod I. When the stabilizing rod I adopts a regular polygonal rod, the connecting piece has multiple installation directions and is more applicable. The fixing sleeve I provided on the stabilizing rod I cooperates with the connecting piece to avoid the connecting piece from moving axially along the stabilizing rod I, thereby avoiding the position offset of the connecting piece relative to the frame. Similarly, the stabilizing rod II of the polygonal rod is connected and cooperated with the connecting piece to avoid the circumferential rotation of the connecting piece relative to the stabilizing rod II, and the fixing sleeve II on the stabilizing rod II also cooperates with the connecting piece to avoid the connecting piece from moving axially along the stabilizing rod II, ultimately avoiding the position offset of the stabilizing rod II relative to the frame, and ultimately ensuring that the first former 2, the second former 4, the paper stopper 3 or the blowing mechanism 5 connected to the connecting part of the stabilizing rod II are offset relative to the frame.
[0032] There is an angle between the stabilizing rod II and the stabilizing rod I. By adjusting the connecting piece along the stabilizing rod I and the stabilizing rod II, the installation position of the first former 2, the second former 4, the paper stopper 3 or the blowing nozzle mechanism 5 connected to the stabilizing rod II can be adjusted.
[0033] The connecting member includes a first connecting hole and a second connecting hole. The shape and size of the first connecting hole are adapted to the shape and size of the stabilizing rod I. The stabilizing rod I is arranged to pass through the first connecting hole of each connecting member. When the stabilizing rod I is a regular polygonal rod, the installation direction of each connecting member can be adjusted. The fixing sleeve I sleeved on the stabilizing rod I is in conflict with the connecting member, thereby fixing the position of the connecting member in the axial direction of the stabilizing rod I. The stabilizing rod I is provided with a fixing sleeve I on both sides of each connecting member; the shape and size of the second connecting hole are adapted to the shape and size of the stabilizing rod II. The stabilizing rod II is inserted into the second connecting hole of the corresponding connecting member. The fixing sleeve II sleeved on the stabilizing rod II is in conflict with the connecting member, thereby fixing the position of the connecting member in the axial direction of the stabilizing rod II. The stabilizing rod II is provided with a fixing sleeve II on both sides of the connecting member.
[0034] In a further embodiment, a first fastening hole is provided on the connecting member, the first fastening hole is communicated with the first connecting hole and the length direction of the first fastening hole is perpendicular to the length direction of the first connecting hole; a second fastening hole is provided on the connecting member, the second fastening hole is communicated with the second connecting hole and the length direction of the second fastening hole is perpendicular to the length direction of the second connecting hole, and installation fasteners are provided in the first fastening hole and the second fastening hole, and the installation fasteners are screws, bolts, etc. After the stabilizing rod I is inserted into the first connecting hole and the alignment is adjusted, the installation fastener in the first fastening hole is rotated and the stabilizing rod I is fastened to the connecting member, and after the stabilizing rod II is inserted into the second connecting hole and the alignment is adjusted, the installation fastener in the second fastening hole is rotated and the stabilizing rod II is fastened to the connecting member.
[0035] The fixing sleeve I and the fixing sleeve II can be made of rubber. The fixing sleeve I is provided with a matching hole for the stabilizing rod I to pass through, and the fixing sleeve II is provided with a matching hole for the stabilizing rod II to pass through. The matching holes can be round holes or holes that are adapted to the shape of the stabilizing rod I or the stabilizing rod II. After the fixing sleeve I is sleeved on the stabilizing rod I or the fixing sleeve II is sleeved on the stabilizing rod II, the fixing sleeve I and the fixing sleeve II are tightly sleeved and do not move along the stabilizing rod I or the stabilizing rod II due to vibration. The fixing sleeve I and the fixing sleeve II are tightly fitted to the connecting piece and can also prevent the connecting piece from moving along the stabilizing rod I or the stabilizing rod II.
[0036] As a preferred embodiment, the stabilizing rod I and the stabilizing rod II are perpendicular to each other, and the length direction of the first connecting hole and the length direction of the second connecting hole on the connecting member are perpendicular to each other.
[0037] Since the structures of the first former 2, the paper stopper 3, the second former 4 and the blowing nozzle mechanism 5 are different, the structures of the stable installation mechanism in the first forming stable mechanism 21, the paper stopper stable mechanism 31, the second forming stable mechanism 41 and the blowing nozzle stable mechanism 51 are also different. Specifically:
[0038] See also Figure 2 and Figure 3The first molding stabilization mechanism 21 includes a first stabilization rod I 211, two first stabilization rods II 212 and two first connecting members 213. The first stabilization rod I 211 is a regular hexagonal rod, and the first connecting hole on the first connecting member 213 is a regular hexagonal hole. The first stabilization rod I 211 passes through the first connecting holes of the two first connecting members 213. The first connecting member 213 is installed on the first stabilization rod I 211 and can prevent the first connecting member 213 from rotating around the first stabilization rod I 211 due to vibration during the production process. The first stabilization rod I 211 and the first connecting hole are both regular hexagonal structures, so that the installation directions of the two first connecting members 213 can be the same or there is an angle of 60°, 120° or 180°, so that the two first stabilization rods II 212 respectively installed on the two first connecting members 213 also have the same angle, which is suitable for the installation and connection of each molding component of the first former 2.
[0039] A first fixing sleeve I 214 is provided on the first stabilizing rod I 211 corresponding to each first connecting member 213. The first fixing sleeve I 214 is connected to or interferes with the corresponding first connecting member 213. The first fixing sleeve I 214 fixes the position of the first connecting member 213 in the axial direction of the first stabilizing rod I 211. A first stabilizing rod II 212 is passed through the second connecting hole of each first connecting member 213. A first fixing sleeve II 215 is provided on the first stabilizing rod II 212 at the first connecting member 213. The first fixing sleeve II 215 is connected to or interferes with the first connecting member 213. The first fixing sleeve II 215 fixes the position of the first connecting member 213 in the axial direction of the first stabilizing rod II 212, thereby finally fixing the relative positions of the first stabilizing rod II 212 and the first stabilizing rod I 211.
[0040] A connecting portion is provided on the first stabilizing rod Ⅱ 212, and a connecting pin is provided on the connecting pin. A double-hole fixing plate of the former is provided. The double-hole fixing plate of the former can rotate relative to the connecting pin. An arc-shaped waist hole is provided on the double-hole fixing plate of the former. The connecting pin is located at the center of the arc-shaped waist hole. An adjusting fastener is provided in the arc-shaped waist hole. The adjusting fastener is a bolt or a screw, etc. The adjusting fastener is connected to the preset adjusting fastening hole on the second stabilizing member. The double-hole fixing plate of the former is rotated around the connecting pin to rotate the double-hole fixing plate of the former in the circumferential direction. After the double-hole fixing plate of the former is adjusted into place, the double-hole fixing plate of the former can be fixed by using the adjusting fastener. The double-hole fixing plate of the former is connected to the forming component of the first former 2. The installation angle of each forming component can be further adjusted through the structure of the double-hole fixing plate of the former.
[0041] See also Figure 4The paper stop stabilizing mechanism 31 includes a paper stop stabilizing rod I 311, a paper stop stabilizing rod II 312 and a paper stop connecting piece 313. The paper stop stabilizing rod I 311 and the paper stop stabilizing rod II 312 are square rods. A paper stop connecting piece 313 is provided on the paper stop stabilizing rod I 311. The paper stop stabilizing rod I 311 passes through the first connecting hole of the paper stop connecting piece 313. The paper stop fixing sleeve I 314 provided on the paper stop stabilizing rod I 311 is connected or matched with the paper stop connecting piece 313. The paper stop stabilizing rod II 312 passes through the second connecting hole of the paper stop connecting piece 313. The paper stop fixing sleeve II 315 provided on the paper stop stabilizing rod II 312 is connected or matched with the paper stop connecting piece 313. The connecting part of the paper stop stabilizing rod II 312 is connected to the paper stop 3. The paper stop 3 is stabilized by the paper stop stabilizing mechanism 31 to avoid the position displacement of the paper stop 3 caused by equipment vibration, which affects the cutting accuracy and folding accuracy of the paper.
[0042] See also Figure 5 and Figure 6 The second forming and stabilizing mechanism 41 includes a second stabilizing rod I 411, a second stabilizing rod II 412 and a second connecting member 413. There are three or more second connecting members 413 and a second stabilizing rod II 412. The second stabilizing rod I 411 and the second stabilizing rod II 412 are square rods. The second stabilizing rod I 411 is arranged through the first connecting hole of each second connecting member 413. A second fixing sleeve I 414 is provided on the second stabilizing rod I 411 corresponding to each second connecting member 413. Each second fixing sleeve I 414 is connected to or interferes with the corresponding second connecting member 413, thereby preventing each second connecting member 413 from moving axially along the second stabilizing rod I 411. A second stabilizing rod II 412 is inserted through the second connection hole of each second connecting member 413. A second fixing sleeve II 415 is provided on each second stabilizing rod II 412 at the corresponding second connecting member 413. The second fixing sleeve II 415 is connected to or engages with the second connecting member 413 to prevent the second connecting member 413 from moving axially along the second stabilizing rod II 412. The plurality of second stabilizing rods II 412 are respectively two side stabilizing rods II located on either side, and a middle stabilizing rod II located between the two side stabilizing rods II. Preferably, there are three second stabilizing rods II 412, in which case the three stabilizing rods II 412 are respectively a middle stabilizing rod II located in the middle and two side stabilizing rods II located on either side. The middle stabilizing rod is connected to the rubber wheel 416 of the second former 4, and the side stabilizing rods II are connected to the folding paper board 417 of the second former 4. The two folding paper boards 417 are symmetrically distributed on either side of the rubber wheel 416.
[0043] As a preferred embodiment, the middle stabilizing rod II and the wheel frame and wheel body of the rubber wheel 416 are an integrated structure. Figure 6The rubber wheel 416 includes a wheel body and two double-hole anglers 418, each of which is provided with a first through-hole and a second through-hole. The two double-hole anglers 418 are symmetrically located on either side of the connection portion of the intermediate stabilizing rod II. The double-hole anglers 418 are connected to the intermediate stabilizing rod II via bolts inserted through the first through-holes. A gasket is provided on the bolt between the double-hole anglers 418 and the intermediate stabilizing rod II. The rubber wheel 416 is positioned between the two double-hole anglers 418, and the wheel axle of the rubber wheel 416 passes through a reserved through-hole in the intermediate stabilizing rod II and the second through-holes of the two double-hole anglers 418. Gaskets are provided between the two-hole anglers 418 and the intermediate stabilizing rod II. The number of gaskets on each bolt can be adjusted based on the width or number of the wheel body, thereby adjusting the spacing between the two double-hole anglers 418.
[0044] See also Figure 7 The mouthpiece stabilizing mechanism 51 includes a mouthpiece stabilizing rod I 511, a mouthpiece stabilizing rod II 512, a mouthpiece connecting piece 513 and an adjustment fixing plate 517. The mouthpiece stabilizing rod I 511 and the mouthpiece stabilizing rod II 512 are both square rods. A mouthpiece connecting piece 513 is provided on the mouthpiece stabilizing rod I 511. The mouthpiece fixing sleeve I 515 provided on the mouthpiece stabilizing rod I 511 is connected to or interferes with the mouthpiece connecting piece 513. The mouthpiece connecting piece 513 is provided with a mouthpiece stabilizing rod II 512. The mouthpiece fixing sleeve II 516 provided on the mouthpiece stabilizing rod II 512 is connected to or interferes with the mouthpiece connecting piece 513. The mouthpiece of the mouthpiece mechanism 5 is connected to the connecting part of the mouthpiece stabilizing rod II 512.
[0045] The adjusting fixing plate 517 serves as the mounting and connecting structure of the mouthpiece stabilizing rod I 511. The adjusting fixing plate 517 is connected to the body 1. There are two adjusting fixing plates 517. An installation area is set on the body 1 between the two adjusting fixing plates 517. The mouthpiece stabilizing rod I 511 is set in the installation area. Mounting plates 514 are vertically set at both ends. An arc-shaped waist hole is set on the mounting plate 514. A connecting pin is vertically set at the circular part of the arc-shaped waist hole on the mounting plate 514. The connecting pin is connected to the mounting hole reserved on the adjusting fastening plate 517. The mouthpiece stabilizing rod I 511 and the mouthpiece stabilizing mechanism 51 as a whole can be rotated relative to the adjusting fastening plate 517. The rotation axis is the central axis of the connecting pin. A connecting fastener is set in the arc-shaped waist hole of the mounting plate 514. The connecting fastener is a screw, bolt, etc. The connecting fastener is connected to the preset connecting fastening hole on the adjusting fastening plate 517. After the mouthpiece stabilizing mechanism 51 is adjusted into place, the state of the mouthpiece stabilizing mechanism 51 can be fixed by the connecting fastener.
[0046] Since the mouthpiece mechanism 5 generally includes multiple mouthpieces, the angles of the multiple mouthpieces are different and the multiple mouthpieces cooperate with each other to achieve blowing of paper ingots, the multiple mouthpieces have a certain spacing and are installed at different angles. Therefore, each mouthpiece of the mouthpiece mechanism 5 corresponds to a mouthpiece stabilizing mechanism 51 to achieve stabilization of the mouthpiece.
[0047] As a preferred embodiment, a through groove is provided in the mouthpiece stabilizing rod II 512 of each mouthpiece stabilizing mechanism 51, and the air path pipeline of the mouthpiece can be set through the through groove to avoid the complex pipeline arrangement affecting the appearance of the equipment and to avoid the pipeline vibration affecting the angle of the mouthpiece.
[0048] See also Figure 1 and Figure 9 In some embodiments, a level adjuster is provided at the bottom of the machine body 1, and the level adjuster is used to adjust the level of the machine body 1 to reduce the shaking intensity of the machine body 1 during the production process. As a specific example, the level adjuster includes a plurality of feet 6, which are adjustable feet and include a load-bearing plate 61 and a level adjustment screw 62. A rubber buffer pad 64 is provided at the bottom of the load-bearing plate 61, and a level adjustment screw 62 is vertically provided on the load-bearing plate 61. The level adjustment screw 62 is rotatably connected to the load-bearing plate 61, and a locking nut 63 is provided on the level adjustment screw 62. The top of the level adjustment screw 62 is threadedly connected to the machine body 1. By rotating the level adjustment screw 62, the height of the machine body 1 at the foot can be adjusted, thereby achieving the adjustment of the level of the machine body 1. After the level adjustment screw 62 is rotated and adjusted, the locking nut 63 is rotated and the locking nut 63 is in close contact with the machine body 1 to achieve the fixation of the foot support height.
[0049] See also Figure 1 and Figure 8 The machine body 1 is also provided with a raw material loading station, where a paper roll discharging mechanism 7 is located. This mechanism 7 includes a paper roll discharging shaft, which is mounted on the machine body 1 via a bearing structure and driven by a drive structure consisting of a rotary drive motor, a clutch, and other components. During the production process, the rolled raw material paper is placed on the paper roll discharging shaft, which rotates as the paper is transported into the machine. To prevent the paper roll from spreading or falling due to vibration of the machine, a raw material limiting mechanism 8 is also provided at the raw material loading station.
[0050] See also Figure 8The raw material limiting mechanism 8 includes a mounting member 81, a mounting adjustment member 82 and a roll paper limiting member. The mounting member 81 is arranged on the machine body 1, and the mounting adjustment member 82 is arranged on the mounting member 81 and can be moved and adjusted relative to the mounting member 81. The adjustment direction of the mounting adjustment member 82 is parallel to the axial direction of the roll paper discharge shaft. The roll paper limiting member includes a limiting cylinder 83 and a limiting seat 84. The limiting seat 84 is connected to the mounting adjustment member 82 by a hinge or other form of flip connection member. The limiting seat 84 can be flipped relative to the mounting adjustment member 82, and the flip axis of the limiting seat 84 is perpendicular to the roll paper discharge shaft; the limiting cylinder 83 The paper roll holder 81 is fixed to the paper discharging mechanism 7 so that the paper roll can be easily loaded and unloaded.
[0051] The new and stable ingot making machine of the present invention utilizes the first forming stabilizing mechanism 21 to firmly install the first former 2, utilizes the second forming stabilizing mechanism 41 to firmly install the second former 4, utilizes the paper stop stabilizing mechanism 31 to firmly install the paper stop 3, utilizes the blowing nozzle stabilizing mechanism 51 to firmly install the blowing nozzle mechanism 5, utilizes the raw material limiting mechanism 8 to stabilize the paper roll of the paper discharging mechanism 7, and adopts the foot at the same time, finally realizes the firm installation of each component of the ingot making machine, effectively avoids the position displacement of each component due to vibration during the production process, affects the production accuracy of paper ingots, and can also effectively reduce the probability of equipment maintenance and adjustment.
[0052] Throughout this specification, references to terms such as "one embodiment," "example," or "specific example" indicate that the specific features, structures, materials, or characteristics described in conjunction with that embodiment or example are included in at least one embodiment or example of the present invention. In this specification, schematic representations of these terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0053] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A new and stable ingot machine, comprising a first former (2), a paper stopper (3), a second former (4) and a blowing mechanism (5), characterized in that: The bottom of the body (1) of the Yuanbao machine is provided with a horizontal regulator, and the horizontal regulator includes a plurality of feet (6) installed at the bottom of the body (1). The body (1) is provided with a first forming position, a paper stop position, a second forming position and a blowing position. The first forming position is provided with a first forming stabilizing mechanism (21), the first former (2) is connected to the connecting portion of the first forming stabilizing mechanism (21), the paper stop position is provided with a paper stop stabilizing mechanism (31), the paper stop (3) is connected to the connecting portion of the paper stop stabilizing mechanism (31), the second forming position is provided with a second forming stabilizing mechanism (41), the second former (4) is connected to the connecting portion of the second forming stabilizing mechanism (41), the blowing position is provided with a nozzle stabilizing mechanism (51), and the nozzle mechanism (5) is connected to the connecting portion of the nozzle stabilizing mechanism (51).
2. A new and stable ingot machine according to claim 1, characterized in that: The first forming stabilizing mechanism (21), the paper blocking stabilizing mechanism (31), the second forming stabilizing mechanism (41) and the blowing nozzle stabilizing mechanism (51) are stabilizing installation mechanisms, and the stabilizing installation mechanisms include a stabilizing rod I, a connecting piece and a stabilizing rod II. The stabilizing rod I and the stabilizing rod II are polygonal rods. The stabilizing rod I is connected to the frame and at least one connecting piece is provided on the stabilizing rod I. A fixing sleeve I is provided at each corresponding connecting piece on the stabilizing rod I. The fixing sleeve I cooperates with the corresponding connecting piece. A stabilizing rod II is provided on each connecting piece. The stabilizing rod II is perpendicular to the stabilizing rod I and a connecting portion is provided on the stabilizing rod II. The fixing sleeve II is provided on the stabilizing rod II and the fixing sleeve II cooperates with the connecting piece.
3. A new and stable ingot machine according to claim 2, characterized in that: A first connecting hole and a second connecting hole are provided on the connecting piece, and a stabilizing rod I passes through the first connecting hole of each connecting piece, and a fixing sleeve I is provided on the stabilizing rod I corresponding to each connecting piece, and the fixing sleeve I is in conflict with the corresponding connecting piece; a stabilizing rod II is passed through the second connecting hole of each connecting piece, and a fixing sleeve II is provided on the stabilizing rod II and the fixing sleeve II is in conflict with the connecting piece.
4. A new and stable ingot machine according to claim 3, characterized in that: A first fastening hole is provided on the connecting member, the first fastening hole is communicated with the first connecting hole and the length direction of the first fastening hole is perpendicular to the length direction of the first connecting hole; a second fastening hole is provided on the connecting member, the second fastening hole is communicated with the second connecting hole and the length direction of the second fastening hole is perpendicular to the length direction of the second connecting hole, and mounting fasteners are provided in the first fastening hole and the second fastening hole.
5. A new and stable ingot machine according to claim 3, characterized in that: Stabilizing rod I and stabilizing rod II are regular polygonal rods.
6. A new and stable ingot machine according to claim 5, characterized in that: The first forming and stabilizing mechanism (21) includes a first stabilizing rod I (211), a first stabilizing rod II (212) and a first connecting member (213). The first stabilizing rod I (211) is a regular hexagonal rod. Two first connecting members (213) are provided on the first stabilizing rod I (211). A first fixing sleeve I (214) is provided on the first stabilizing rod I (211) corresponding to each first connecting member (213). A first stabilizing rod II (212) is provided on each first connecting member (213). A first fixing sleeve II (215) is provided at a connecting member (213), and a connecting pin is provided at the connecting portion of each first stabilizing rod II (212). A former fixing plate (216) is provided on the connecting pin, and the former fixing plate (216) rotates relative to the connecting pin. An arc-shaped waist hole is provided on the former fixing plate (216), and an adjusting fastener is provided in the arc-shaped waist hole. The adjusting fastener is connected to the adjusting fastening hole provided on the first stabilizing rod II (212), and the former fixing plate (216) is connected to the forming component of the first former (2).
7. A new and stable ingot machine according to claim 5, characterized in that: The paper stop stabilizing mechanism (31) includes a paper stop stabilizing rod I (311), a paper stop stabilizing rod II (312) and a paper stop connecting member (313). The paper stop stabilizing rod I (311) is provided with a paper stop connecting member (313). A paper stop fixing sleeve I (314) is provided on the paper stop fixing rod I at a position corresponding to the paper stop connecting member (313). The paper stop stabilizing rod II (312) is provided on the paper stop connecting member (313). A paper stop fixing sleeve II (315) is provided on the paper stop stabilizing rod II (312) at the position of the paper stop connecting member (313). The connecting portion of the paper stop stabilizing rod II (312) is connected to the paper stopper (3).
8. A new and stable ingot machine according to claim 5, characterized in that: The second forming and stabilizing mechanism (41) includes a second stabilizing rod I (411), a second stabilizing rod II (412) and a second connecting member (413). The second stabilizing rod I (411) is provided with a plurality of second connecting members (413). A second fixing sleeve I (414) is provided on the second stabilizing rod I (411) at a position corresponding to each second connecting member (413). A second stabilizing rod II (412) is provided on each second connecting member (413). 413) is provided with a second fixing sleeve II (415); the second stabilizing rod II (412) on each second connecting member (413) is respectively located at two side stabilizing rods II on the two side edges and a middle stabilizing rod II located between the two side stabilizing rods II, and a rubber wheel (416) is provided on the middle stabilizing rod II, and the rubber wheel (416) and the middle stabilizing rod II are an integrated structure, and a folding paper board (417) is provided on the two side stabilizing rods II, and the two folding paper boards (417) are symmetrically arranged on both sides of the rubber wheel (416).
9. A new and stable ingot machine according to claim 5, characterized in that: The mouthpiece stabilizing mechanism (51) includes a mouthpiece stabilizing rod I (511), a mouthpiece stabilizing rod II (512), a mouthpiece connecting member (513) and an adjusting fixing plate, wherein the adjusting fixing plate is connected to the machine body, and a mounting plate (514) is vertically provided at the end of the mouthpiece stabilizing rod I (511), an arc-shaped waist hole is provided on the mounting plate (514), and a connecting pin is provided at the center of the arc-shaped waist hole on the mounting plate (514), wherein the connecting pin is connected to the mounting hole provided on the adjusting fixing plate (517), and the mouthpiece stabilizing rod I (511) rotates relative to the adjusting fixing plate (517), and a connecting fastener is provided in the arc-shaped waist hole, and the connecting fastener is connected to the adjusting fixing plate (517). The nozzle fixing rod (511) is connected to the nozzle fixing plate (517) by a connecting fastening hole provided on the nozzle fixing plate (517); a nozzle connecting piece (513) is provided on the nozzle fixing rod (511); a nozzle fixing sleeve (515) is provided on the nozzle fixing rod (511) at the nozzle connecting piece (513); a nozzle fixing rod (512) is provided on the nozzle connecting piece (513); a nozzle fixing sleeve (516) is provided on the nozzle fixing rod (512) at the nozzle connecting piece (513); the nozzle of the nozzle mechanism (5) is connected to the connecting portion of the nozzle fixing rod (512); a through groove for the nozzle pipe to pass through is provided in the nozzle fixing rod (512).
10. A new and stable ingot machine according to claim 1, characterized in that: The machine body (1) is provided with a raw material loading position, and the raw material loading position is provided with a roll paper discharging mechanism (7), the roll paper discharging mechanism (7) includes a roll paper discharging shaft, the roll paper discharging shaft is installed on the machine body (1) and rotates relative to the machine body (1); the raw material loading position is also provided with a raw material limiting mechanism (8), the raw material limiting mechanism (8) includes a mounting member (81), a mounting adjustment member (82) and a roll paper limiting member, the mounting member (81) is provided on the machine body (1), the mounting adjustment member (82) and the roll paper limiting member The node (82) is arranged on the mounting member (81) and is adjusted along the axial movement of the roll paper discharge shaft. The roll paper limiting member includes a limiting cylinder (83) and a limiting seat (84). The limiting seat (84) is arranged on the mounting adjustment member (82) and flips between the standby position and the limiting top paper position relative to the mounting adjustment member (82). The limiting cylinder (83) is arranged on the limiting seat (84) and rotates relative to the limiting seat (84). The limiting cylinder (83) is perpendicular to the roll paper discharge shaft.