Disclosure of Invention
The invention aims to provide equipment and a method for uniformly stamping the surface of a conical bottle, which can solve the problems in the prior art.
The device for uniformly stamping the surface of the conical flask comprises a vertical linear module, wherein a transverse linear module is fixedly arranged on a sliding block of the vertical linear module, and is characterized in that a first sliding mechanism is fixedly arranged on the sliding block of the transverse linear module, a first sliding plate is fixedly arranged on the sliding block of the first sliding mechanism, an electric rotary table is fixedly arranged in the first sliding plate, a second sliding plate is fixedly arranged on a rotating shaft of the electric rotary table, a second sliding mechanism is fixedly arranged on the second sliding plate, a sliding plate is fixedly arranged on the sliding block of the second sliding mechanism, a connecting arm is fixedly arranged on one side of the sliding plate, a third sliding mechanism is fixedly arranged on the connecting arm, a gilding paper releasing mechanism is fixedly arranged on one of the third sliding mechanisms, a gilding paper rolling mechanism is arranged between the gilding paper releasing mechanism and the gilding paper rolling mechanism, the clamping mechanism is internally provided with a conical flask, the clamping mechanism is used for enabling the conical flask to swing to the vertical upper end of the conical flask, the sliding plate is fixedly connected with the conical flask, and the connecting arm is fixedly arranged on the conical flask, and the conical flask is fixedly contacted with the surface of the conical flask.
The invention relates to a working method of uniform gold stamping equipment for the surface of a conical bottle, which comprises the following steps that a first sliding mechanism drives an electric rotary table to be positioned on the vertex of the conical surface of the conical bottle, and the rotation axis of the electric rotary table coincides with the vertex of the conical surface; the method comprises the steps of driving a sliding plate, a connecting arm, a gilding paper releasing mechanism and a gilding paper winding mechanism to move back and forth, enabling gilding paper to move to a gilding region on the surface of a conical bottle, driving a transverse linear module and a first sliding mechanism, a second sliding plate, a sliding plate, an electric rotating disc, a connecting arm and a gilding head connected with the transverse linear module to move downwards, enabling a compression roller of the gilding head to contact with the conical surface of the conical bottle, driving the second sliding plate, the connecting arm, the gilding paper releasing mechanism and the gilding paper winding mechanism to rotate along an arc track after the electric rotating disc works, enabling the gilding paper to be released from the gilding paper releasing mechanism and wound on the gilding paper winding mechanism, enabling the gilding head to heat-press the gilding paper and be formed on the outer surface of the conical bottle, enabling the transverse linear module to be driven by a clamping mechanism to rotate clockwise, and driving the transverse linear module and the first sliding mechanism, the second sliding mechanism, the electric rotating disc, the connecting arm and the electric rotating disc to move towards the sliding plate and the conical surface of the conical bottle to rotate along the arc track after the gilding head, and driving the sliding plate to move towards the sliding plate to the connecting arm to the rotary disc and the gilding head to rotate along the arc track.
The working method of the uniform gold stamping equipment for the surface of the cylindrical bottle comprises the steps of firstly, driving a sliding plate, a connecting arm, a gold stamping paper release mechanism and a gold stamping paper winding mechanism to move forwards and backwards through adjustment of a first sliding mechanism and a second sliding mechanism, enabling gold stamping paper to move to a gold stamping area on the surface of the cylindrical bottle, secondly, driving a transverse linear module by a vertical linear module, enabling the first sliding mechanism, the second sliding plate, the sliding plate, an electric rotating disc, the connecting arm and a gold stamping head to move downwards, enabling a pressing roller of the gold stamping head to contact with the surface of the cylindrical bottle, thirdly, releasing the gold stamping paper from the gold stamping paper release mechanism and winding the gold stamping paper on the gold stamping paper winding mechanism, enabling the gold stamping head to form the outer surface of the cylindrical bottle, enabling the cylindrical bottle to be driven to rotate clockwise by a clamping mechanism, and enabling the vertical linear module to drive the transverse linear module, and enabling the first sliding mechanism, the second sliding plate, the electric rotating disc and the connecting arm to move upwards to reset.
According to a further technical scheme, the vertex of the conical surface of the conical bottle refers to the intersection point of oblique lines on two sides of the vertical section of the conical bottle.
Further technical scheme, gilt head include with horizontal sharp module slider fixed connection's connecting seat, connecting seat one side is fixed to be provided with a plurality of polished rods, polished rod surface gliding is provided with the internal thread movable block, polished rod one side is fixed to be provided with the end block, the internal pivoted of end block is provided with the third screw rod, the third screw rod pass after the internal thread movable block with internal thread movable block screw-thread fit connection, internal thread movable block bottom is provided with gilt subassembly.
Further technical scheme, gilt subassembly includes the casing, the pivoted is provided with the compression roller in the casing, be provided with a plurality of heating rods in the casing, casing one side is fixed to be provided with compression roller driving motor, power connection is provided with first sprocket on compression roller driving motor's the output shaft, fixedly is provided with the second sprocket on the compression roller, through chain power connection between second sprocket and the first sprocket.
Further technical scheme, fixture includes the rotation seat, the rotation seat rotation is provided with the normal running fit piece, the normal running fit piece top is fixed to be provided with the cooperation board, the fixed base that is provided with in cooperation board top, base one side is fixed to be provided with bottle rotation motor, the fixed recipient that is provided with on the output shaft of bottle rotation motor, the fixed rotation motor that is provided with in rotation seat one side, rotation motor's output shaft with normal running fit piece power connection makes the normal running fit piece rotates.
Further technical scheme, base one side is fixed to be provided with a plurality of guide arms, the gliding carriage that is provided with on the guide arm, the cooperation board bottom is fixed to be provided with the cylinder, the push rod of cylinder with the fixed cooperation of carriage is connected, the fixed connecting rod that is provided with in both sides of carriage, connecting rod one side is fixed to be provided with the push pedal, pivoted is provided with the absorption thimble in the push pedal.
The invention has the advantages that firstly, the front and back positions of the second sliding plate, the electric turntable, the connecting arm, the gilt paper releasing mechanism and the gilt paper winding mechanism are adjusted through the first sliding mechanism, so that the rotation axis of the winding motor coincides with the vertex of the conical surface of the conical bottle, the gilt paper can move back and forth to the area of the conical bottle to be gilded through the second sliding mechanism, the conical bottle is swung to the upper projection line of the vertical section of the conical surface by the clamping mechanism to coincide with the horizontal plane, so that the part of the conical surface contacted with the horizontal plane is the inclined length of the conical surface, after the conical bottle is continuously driven to rotate by the clamping mechanism, the gilt paper also moves in a sector track around the rotation axis of the electric turntable, and when the gilt paper is pressed and molded on the conical surface by the gilt head, the compression roller of the gilt paper and the conical surface of the conical bottle are in line contact fit, so as to avoid the pattern blurring caused by the relative movement.
2. The first sliding mechanism is favorable for adjusting the position of the rotating axis of the electric rotating disc according to bottles with different conicities, so that the gilt paper forms a circular arc track when rotating around the rotating axis of the electric rotating disc, the circular arc track is just attached to and consistent with the conical surface of the conical bottle in the gilt area, and the phenomenon that the movement included angle is formed with the surface of the conical bottle and the pattern forming is influenced due to tangential operation of the gilt paper is avoided.
3. The clamping mechanism clamps the conical flask to swing so that the outer surface of the conical flask faces upwards, and the waist line at the top end of the conical flask coincides with the horizontal plane, so that an included angle with the gilt paper is avoided, and the pattern forming effect is affected.
4. Through third slide mechanism, can provide wider adjustment distance for gilt paper release mechanism, gilt paper winding mechanism and gilt paper when making the erlenmeyer flask flip-chip, when making the axis of rotation of electric turntable be located the front side position, also can make gilt paper release mechanism, gilt paper winding mechanism and gilt paper be located the erlenmeyer flask surface of rear side position.
Drawings
For ease of illustration, the invention is described in detail by the following specific examples and figures.
FIG. 1 is a schematic view of the mechanisms of the apparatus in a top view;
FIG. 2 is a schematic view of the motorized turntable 76 after the axis of rotation coincides with the apex of the conical surface of the conical flask;
Fig. 3 is a schematic diagram of a motion trace of a gilding region of gilding paper;
FIG. 4 is a schematic view of the bronzing paper of FIG. 3 moving to the right and bronzing;
FIG. 5 is a schematic cross-sectional view of the Erlenmeyer flask, stamping paper and stamping head of FIG. 1 during stamping;
fig. 6 is a schematic diagram of the overall structure of a device for uniformly stamping the surface of a conical flask;
FIG. 7 is a schematic view of the clamping mechanism of FIG. 1;
FIG. 8 is a schematic bottom view of the clamping mechanism of FIG. 7;
FIG. 9 is a schematic view of the stamping head of FIG. 6;
Fig. 10 is a schematic view of the bottom structure of the bronzing head in fig. 9;
fig. 11 is a schematic structural diagram of the release mechanism and the winding mechanism of the gilding paper in fig. 6;
Fig. 12 is a schematic bottom view of the release mechanism and the winding mechanism of fig. 6;
fig. 13 is a schematic diagram of a rear side structure of the release mechanism and the winding mechanism of the gilding paper in fig. 6;
FIG. 14 is a schematic view of the pressing mechanism of FIG. 6;
FIG. 15 is a schematic view of the apparatus of FIG. 1 in a flip-chip vial prior to and after processing;
In the drawing, a vertical linear module 11, a horizontal linear module 12, a clamping mechanism 14, a jacking mechanism 15, a slide bar 16, a threaded shaft 17, a housing 21, a lifting motor 22, a roller 23, a lifting plate 24, a guide slider 25, a gear 26, a rack 27, a push plate 31, a suction ejector pin 32, a pressing cylinder 33, a rotating motor 34, a bottle rotating motor 35, a fitting plate 36, a rotating seat 37, a sliding bracket 38, a guide rod 39, a connecting rod 41, a base 42, a rotating fitting block 43, a cylinder 44, a gold stamping head 53, a second sprocket 54, a heating rod 55, a press roller driving motor 57, a first sprocket 58, a discharge motor 61, a cylinder 62, a first plate 63, a connecting arm 64, a first screw 66, an internal thread block 67, a second slide 68, a first slide 69, a sliding plate 71, a second screw 72, a take-up cylinder 74, a fixed plate 75, an electric rotary disk 76, a transition rod 77, a tensioning cylinder 78, a power cylinder 79, a belt 81, a second synchronous pulley structure 82, a take-up motor 83, a second plate 84, a first synchronous pulley structure 85, a 91, a third synchronous pulley structure 92, a third screw 92, an internal thread block 92, a movable end block 94, a housing 97, and a threaded seat 97.
Detailed Description
For convenience of description, the following orientation will be defined as the vertical, horizontal, front, rear directions which will be described later are identical to the vertical, horizontal, front, rear directions of the projection relationship of FIG. 6 itself, as shown in FIGS. 1-15.
As shown in fig. 1, the device for uniformly stamping the surface of the conical flask comprises a vertical linear module 11, wherein a transverse linear module 12 is fixedly arranged on a sliding block of the vertical linear module 11, a first sliding mechanism is fixedly arranged on the sliding block of the transverse linear module 12, a first sliding plate 69 is fixedly arranged on the sliding block of the first sliding mechanism, an electric rotary table 76 is fixedly arranged in the first sliding plate 69, a second sliding plate 68 is fixedly arranged on a rotating shaft of the electric rotary table 76, a second sliding mechanism is fixedly arranged on the second sliding plate 68, a sliding plate 71 is fixedly arranged on the sliding block of the second sliding mechanism, a connecting arm 64 is fixedly arranged on one side of the sliding plate 71, a third sliding mechanism is fixedly arranged on the connecting arm 64, a stamping paper release mechanism is fixedly arranged on one of the third sliding mechanisms, a stamping paper rolling mechanism is fixedly arranged on the other third sliding mechanism, a stamping paper continuously moving stamping paper is arranged in the stamping paper release mechanism and the stamping paper rolling mechanism, the device further comprises a clamping mechanism 14, the conical flask is clamped in the clamping mechanism 14, and a stamping head 53 fixedly connected with the sliding block of the transverse linear module 12 is arranged above the clamping mechanism 14; as shown in fig. 5, the gilt paper moves to the gilt area on the surface of the conical bottle, the compression roller of the gilt paper and the compression roller of the gilt head 53 are in line contact fit with the conical surface of the conical bottle, the clamping mechanism 14 swings the conical bottle to the upper projection line of the vertical section of the conical surface to coincide with the horizontal plane, so that the contact part of the conical surface and the horizontal plane is the inclined length of the conical surface, after the conical bottle is continuously driven to rotate by the clamping mechanism 14, the gilt paper also moves in a fan-shaped track around the rotation axis of the electric turntable 76, when the gilt head 53 presses the gilt paper to form on the conical surface, the compression roller of the gilt paper and the conical surface of the conical bottle are in line contact fit, to avoid blurring of the pattern due to the relative motion.
Advantageously, if there is no conical surface for the cylindrical bottle, the clamping mechanism 14 is used to place the cylindrical bottle flat, and then the first sliding mechanism and the second sliding mechanism are used to adjust the positions of the gilt paper release mechanism, the gilt paper winding mechanism and the gilt paper, so that the gilt paper is located in the gilt area of the cylindrical bottle, and the gilt head 53 is used to apply the device to the gilt function of the cylindrical bottle, so that the electric turntable 76 is not required to drive the gilt paper release mechanism, the gilt paper winding mechanism and the gilt paper to rotate.
As shown in fig. 2, 3 and 4, the method for operating the device for uniformly stamping the surface of the conical bottle comprises the following steps that firstly, the first sliding mechanism drives the electric turntable 76 to be positioned on the conical surface vertex of the conical surface of the conical bottle, and the rotation axis of the electric turntable 76 is coincident with the conical surface vertex; the method comprises the steps of driving a sliding plate 71, a connecting arm 64, a gilding paper release mechanism and a gilding paper winding mechanism to move back and forth to enable gilding paper to move to a gilding region on the surface of a conical bottle, driving a transverse linear module 12 and a first sliding mechanism, a second sliding plate 68, a sliding plate 71, an electric rotary table 76, the connecting arm 64 and a gilding head 53 to move downwards to enable a compression roller of the gilding head 53 to contact with the conical surface of the conical bottle, driving the second sliding plate 68, the sliding plate 71, the connecting arm 64, the gilding paper release mechanism and the gilding paper winding mechanism to rotate along an arc track after the electric rotary table 76 works, simultaneously releasing the gilding paper from the gilding paper release mechanism and winding the gilding paper in the gilding paper winding mechanism, enabling the gilding head 53 to heat-press the gilding paper to be formed on the outer surface of the conical bottle, driving the clamping mechanism 14 to rotate clockwise to achieve a more uniform pattern printing effect, avoiding uneven printing due to the conical surface, and driving the electric rotary table 11, the first linear module 12, the second sliding plate 68, the connecting arm 64, the second sliding plate 64, the upper sliding plate 76 and the upper sliding plate 76 to move upwards, and the electric rotary table 76 to drive the connecting arm 12 to move upwards along an arc track, and the second sliding plate 71 The gilt paper release mechanism and the gilt paper winding mechanism reset and rotate along the arc track.
Advantageously, as shown in fig. 15, when the conical flask is inverted back and forth, the conical surface vertex is located at a more front side, the rotation axis of the electric turntable 76 is made to coincide with the conical surface vertex at the more front side by adjusting the first sliding mechanism, and then the positions of the bronzing paper release mechanism, the bronzing paper winding mechanism and the bronzing paper are adjusted back by the second sliding mechanism so as to be located in the bronzing area of the conical flask.
The method for uniformly stamping equipment on the surface of a cylindrical bottle comprises the steps of firstly, driving a sliding plate 71, a connecting arm 64, a stamping paper release mechanism and a stamping paper rolling mechanism to move back and forth through adjustment of a first sliding mechanism and a second sliding mechanism, enabling the stamping paper to move to a stamping area on the surface of the cylindrical bottle, secondly, driving a transverse linear module 12 and the first sliding mechanism, the second sliding mechanism, a second sliding plate 68, the sliding plate 71, an electric rotary table 76, the connecting arm 64 and the stamping head 53 to move downwards through a vertical linear module 11, enabling a compression roller of the stamping head 53 to contact the stamping paper with the surface of the cylindrical bottle, thirdly, releasing the stamping paper from the stamping paper release mechanism and rolling the stamping paper on the stamping paper rolling mechanism, enabling the stamping head 53 to form the outer surface of the cylindrical bottle, enabling the cylindrical bottle to be driven to rotate clockwise by a clamping mechanism 14, and thirdly, enabling the transverse linear module 12 and the first sliding mechanism, the second sliding plate 68, the electric rotary table 71, the electric rotary table 64 and the reset head 53 to move upwards.
Advantageously, as shown in fig. 12, the first sliding mechanism includes a fixing plate 75 fixedly connected to the sliding block of the transverse linear module 12, a first sliding plate 69 is slidably provided on the fixing plate 75 through a guide rail sliding block structure, an internal thread block 67 is fixedly provided on one side of the first sliding plate 69, a first screw 66 is rotatably provided on one side of the fixing plate 75, and the first screw 66 is in threaded fit connection with the internal thread block 67.
Advantageously, as shown in fig. 12, the second sliding mechanism includes a rail-slider structure that connects the second sliding plate 68 and the sliding plate 71 in a sliding fit, and a second screw 72 is rotatably provided on one side of the second sliding plate 68, and the second screw 72 passes through the sliding plate 71 and is connected in a threaded fit therewith.
Advantageously, as shown in fig. 12, the electric turntable 76 is fixedly disposed in the first slide plate 69, and the second slide plate 68 is fixedly disposed on the rotating shaft of the electric turntable 76.
When the first sliding mechanism works, after the first screw 66 is rotated, the first screw 66 is in threaded fit connection with the internal thread block 67, so that the first sliding plate 69 performs front-back sliding adjustment relative to the fixed plate 75 through the guide rail sliding block structure, and the front-back positions of the second sliding plate 68, the sliding plate 71, the electric rotary plate 76, the connecting arm 64, the gilt paper release mechanism and the gilt paper winding mechanism are adjusted, so that the rotation axis of the winding motor 83 coincides with the conical surface top of the conical flask.
When the second sliding mechanism works, after the second screw rod 72 is rotated, the second screw rod 72 is in threaded fit connection with the sliding plate 71, so that the sliding plate 71, the connecting arm 64, the gilt paper releasing mechanism and the gilt paper winding mechanism can slide back and forth relative to the internal thread block 67 through the guide rail sliding block structure, and the gilt paper can move back and forth to the area of the conical flask to be gilt.
Advantageously, as shown in fig. 11, the release mechanism for gilt paper includes a first plate 63 connected to a connecting arm 64, the first plate 63 adjusts the position relative to the connecting arm 64 through a third sliding mechanism, a charging barrel 62 is rotatably disposed in the first plate 63, a discharging motor 61 is fixedly disposed at one side of the first plate 63, and the discharging motor 61 drives the charging barrel 62 to rotate through a first synchronous pulley structure 85.
Advantageously, as shown in fig. 11, the gilt paper winding mechanism includes a second plate 84 connected with the connecting arm 64, the second plate 84 adjusts the position relative to the connecting arm 64 through a third sliding mechanism, a receiving cylinder 74 and a power cylinder 79 are rotatably arranged in the second plate 84, a tensioning cylinder 78 positioned at one side of the power cylinder 79 is further arranged in the second plate 84, the tensioning cylinder 78 compresses the gilt paper on the outer surface of the power cylinder 79, a winding motor 83 is arranged at one side of the second plate 84, the winding motor 83 drives the power cylinder 79 to rotate through a second synchronous pulley structure 82, a belt 81 is arranged between the power cylinder 79 and the receiving cylinder 74, and the belt 81 connects the receiving cylinder 74 with the power cylinder 79 in a power manner.
Advantageously, as shown in fig. 11, the third sliding mechanism includes a plurality of sliding rods 16 fixedly disposed on one side of the first plate 63 and the second plate 84, the sliding rods 16 are slidably coupled to the connecting arms 64, a threaded shaft 17 is rotatably disposed on one side of the first plate 63 and the second plate 84, and the threaded shaft 17 is threadedly coupled to the connecting arms 64.
Advantageously, wherein by adjusting the third slide mechanism, the front-to-back position of the bronzing release mechanism, the bronzing winding mechanism, and the bronzing relative to the connecting arm 64 can also be adjusted to accommodate inverted cone bottles or to provide a wider adjustment angle, as shown in fig. 11 and 15.
The connecting arm 64 is further provided with a plurality of transition rods 77, and the gilt paper is released from the gilt paper releasing mechanism, passes through the outer surface of the transition rods 77 and is wound in the gilt paper winding mechanism, and the gilt paper is horizontally arranged between the gilt paper releasing mechanism and the gilt paper winding mechanism.
When the gilt paper releasing mechanism works, the discharging motor 61 and the first synchronous pulley structure 85 work and then drive the charging barrel 62 to rotate, the gilt paper on the outer surface of the charging barrel 62 is released, meanwhile, the gilt paper winding mechanism also works, the gilt paper is wound on the outer surface of the charging barrel 74 through the winding motor 83, the second synchronous pulley structure 82, the belt 81, the charging barrel 74, the power barrel 79 and the tensioning roller 78, and after the gilt paper is guided by the transition rod 77 and tensioned by the tensioning roller 78, the gilt paper is kept flat and horizontally and enters a gilt area.
The stamping head 53 is arranged above the stamping paper, and the position of the pressing roller in the stamping head 53 is also adjustable as shown in fig. 6 and 9, the stamping head 53 comprises a connecting seat 95 fixedly connected with a sliding block of the transverse linear module 12, a plurality of polished rods 91 are fixedly arranged on one side of the connecting seat 95, an internal thread moving block 94 is slidingly arranged on the outer surface of the polished rod 91, an end block 97 is fixedly arranged on one side of the polished rod 91, a third screw 92 is arranged in the end block 97 in a rotating manner, and the third screw 92 is connected with the internal thread moving block 94 in a threaded fit manner after passing through the internal thread moving block 94, and a stamping component is arranged at the bottom of the internal thread moving block 94.
After the third screw 92 is rotated, the third screw 92 is in threaded fit connection with the internal thread moving block 94, so that the internal thread moving block 94 can be driven to slide back and forth on the polished rod 91, and then the internal thread moving block 94 and the gold stamping assembly are driven to move back and forth, so that the gold stamping assembly is adapted to the position of gold stamping paper.
Advantageously, as shown in fig. 9 and 10, the gold stamping assembly includes a housing 96, a press roller rotatably disposed in the housing 96, a plurality of heating rods 55 disposed in the housing 96, a press roller driving motor 57 fixedly disposed on one side of the housing 96, a first sprocket 58 disposed on an output shaft of the press roller driving motor 57 in a power connection manner, a second sprocket 54 fixedly disposed on the press roller, and a chain power connection between the second sprocket 54 and the first sprocket 58.
The press roller is driven to rotate by the press roller driving motor 57, the second chain wheel 54, the first chain wheel 58 and the chain, the heating rod 55 generates heat to heat the press roller, so that the press roller is used for hot-pressing the gilding paper to form patterns on the bottle, a die is generally arranged on the press roller, the die is used for directly hot-pressing the gilding paper onto the bottle, and then the gilding paper is formed into patterns on the bottle according to the shape on the die.
Advantageously, as shown in fig. 6, 7 and 8, the clamping mechanism 14 is disposed on the lower side of the gilding paper, and is mounted on a frame of an external space during actual mounting, the clamping mechanism 14 includes a rotating seat 37, a rotating matching block 43 is rotationally disposed on the rotating seat 37, a matching plate 36 is fixedly disposed on the top of the rotating matching block 43, a base 42 is fixedly disposed on the top of the matching plate 36, a bottle rotating motor 35 is fixedly disposed on one side of the base 42, an extrusion cylinder 33 is fixedly disposed on an output shaft of the bottle rotating motor 35, a rotating motor 34 is fixedly disposed on one side of the rotating seat 37, an output shaft of the rotating motor 34 is in power connection with the rotating matching block 43 to rotate the rotating matching block 43, a plurality of guide rods 39 are fixedly disposed on one side of the base 42, a sliding bracket 38 is slidably disposed on the guide rods 39, a cylinder 44 is fixedly disposed on the bottom of the matching plate 36, a push rod of the cylinder 44 is fixedly coupled with the sliding bracket 38, a connecting rod 41 is fixedly disposed on two sides of the sliding bracket 38, a push plate 31 is fixedly disposed on one side of the connecting rod 41, and an adsorption thimble 32 is rotatably disposed on the push plate 31.
After the bottle is placed between the adsorption thimble 32 and the extrusion barrel 33, the cylinder 44 works to drive the sliding support 38, the connecting rod 41, the push plate 31 and the adsorption thimble 32 to move, so that the adsorption thimble 32 presses the bottle on one side of the extrusion barrel 33, the bottle rotating motor 35 drives the bottle to rotate through the extrusion barrel 33, and the rotating motor 34 works to drive the rotating fit block 43, the fit plate 36, the sliding support 38, the base 42, the guide rod 39, the connecting rod 41, the bottle rotating motor 35, the extrusion barrel 33, the adsorption thimble 32 and the push plate 31 to rotate, and the clamping mechanism 14 swings the conical bottle to enable an upper projection line of a vertical section of the conical surface to coincide with a horizontal plane.
Advantageously, as shown in fig. 6 and 14, a pushing mechanism 15 for pushing bottles upwards is further arranged below the clamping mechanism 14, the pushing mechanism 15 comprises a shell 21, two guide sliding blocks 25 are fixedly arranged in the shell 21, racks 27 are slidably arranged in the guide sliding blocks 25, a lifting plate 24 is fixedly arranged at the top of the racks 27, a plurality of rollers 23 are rotatably arranged at the top of the lifting plate 24, two gears 26 meshed with each other are rotatably arranged in the shell 21, the gears 26 are meshed with the racks 27, a lifting motor 22 is fixedly arranged at the rear side of the shell 21, and the lifting motor 22 is in power connection with one of the gears 26.
One of the gears 26 is driven to rotate by the lifting motor 22, and the other gear 26 is also driven to rotate due to the fact that the gears 26 are meshed with each other, and the rack 27 is driven to move upwards in the guide sliding block 25 due to the fact that the gears 26 are meshed with the rack 27, and the roller 23 is driven to push upwards due to the fact that the rack 27 is fixedly connected with the lifting plate 24, so that the bottle is pushed to offset downward pushing force on the bottle during gold stamping.