Linear winding device for sanitary product industry
Technical Field
The utility model relates to the technical field of sanitary product processing equipment, in particular to a straight-line winding device in the sanitary product industry.
Background
At present, in the sanitary product industry, a final finished product is required to be completed through a plurality of working procedures, when the working procedures are transferred, materials are generally coiled into a disc shape through circumferential rotation, and the next working procedure is convenient to use, but the single-roll length of the structure is generally not too long, when the structure is used, a new roll is required to be replaced by frequent shutdown, a large amount of production time is required to be spent in the roll replacement working procedure, and the production efficiency is low.
At present, in the existing winding and rolling equipment, part of the winding and rolling equipment is arranged in a T shape, the occupied space is large, the placing requirement is high, coil stripping is double-sided coil stripping, workers need to reciprocate coil stripping on two sides, and the winding and rolling equipment is very inconvenient.
Disclosure of utility model
Aiming at the technical defects in the background technology, the utility model provides the in-line winding device for the sanitary product industry, which solves the technical problems and meets the actual demands, and the specific technical scheme is as follows:
The linear winding and rolling device in the sanitary product industry comprises an equipment main body, a slitting device, a conveying roller set and a rolling device which are sequentially arranged along the length direction of the equipment main body, wherein the rolling device comprises a plurality of linear winding and rolling sets;
The device main body further comprises a conveying frame for fixing the slitting device and the conveying roller set, wherein the conveying roller set comprises a first horizontal conveying roller set, a second horizontal conveying roller set, and a first material stirring roller set and a second material stirring roller set which are arranged between the second horizontal conveying roller set and the slitting device;
The conveying device comprises a conveying roller group, a winding type winding group and a rolling assembly, wherein a rolling assembly attached to the outer edge of the winding type winding group is arranged between the conveying roller group and the winding type winding group, and a reciprocating driving mechanism for bearing and driving the winding type winding group to axially move is arranged at the bottom of the conveying frame.
As an improvement of the above scheme, the winding type winding group comprises a first winding component, a second winding component, a third winding component and a fourth winding component which are sequentially arranged along the material conveying direction;
A first horizontal conveying roller set is arranged between the slitting device and the first winding assembly and between the slitting device and the second winding assembly, and a second horizontal conveying roller set is arranged between the slitting device and the third winding assembly and between the slitting device and the second winding assembly.
As an improvement of the scheme, the first horizontal conveying roller set comprises a first conveying roller set and first deviation correcting mechanisms, wherein the first conveying roller set and the first deviation correcting mechanisms are horizontally arranged along the length direction of the conveying frame, and the number of the first deviation correcting mechanisms is at least two.
As an improvement of the scheme, the second horizontal conveying roller set is arranged above the first horizontal conveying roller set, the second horizontal conveying roller set comprises a second conveying roller set and second deviation correcting mechanisms, the second conveying roller set and the second deviation correcting mechanisms are horizontally arranged along the length direction of the conveying frame, and the number of the second deviation correcting mechanisms is at least two.
As an improvement of the scheme, the first material stirring roller group comprises a first material stirring bracket, and a first material stirring roller and a second material stirring roller which are fixed on the first material stirring bracket, wherein the movable ends of the first material stirring roller and the second material stirring roller are arranged oppositely.
As an improvement of the scheme, the second stirring roller set comprises a second stirring bracket, and a third stirring roller and a fourth stirring roller which are fixed on the second stirring bracket, wherein the movable ends of the third stirring roller and the fourth stirring roller are arranged oppositely.
As the improvement of above-mentioned scheme, roll up the subassembly and include the roll support that presses that sets up along the material width direction, set up press roll support top and with press roll support tip articulated swing arm, set up press roll roller and the setting of swing arm front end are in the straight line drive cylinder of swing arm rear end, the output of straight line drive cylinder with the swing arm rear end articulates, the stiff end of straight line drive cylinder with press roll support and articulated.
As an improvement of the scheme, the reciprocating driving mechanism comprises a bearing table arranged below the winding type winding group and the winding pressing assembly, a guide rail arranged below the bearing table and a guide rod arranged on one side of the bearing table, and a linear driving mechanism for driving the bearing table to reciprocate along the guide rail is arranged at the rear end of the bearing table.
The utility model has the advantages that the first winding assembly, the second winding assembly, the third winding assembly and the fourth winding assembly are sequentially arranged according to the in-line layout mode, the material conveying direction starts from the first winding assembly, the material conveying direction gradually faces the direction of the fourth winding assembly along the established path, under the layout, the discharging area and the operation surface are designed on the same side of the equipment, the design not only effectively reduces the occupation rate of the field in the production process, ensures that the space utilization is more efficient, but also greatly facilitates the operation flow of production personnel, compared with the traditional T-shaped winding equipment, the in-line winding assemblies are more convenient and efficient in operation, the operation steps are reduced, the working efficiency is improved, and therefore, the smooth operation of the production line is provided with powerful guarantee.
Drawings
Fig. 1 is a schematic perspective view of a device body according to the present utility model.
Fig. 2 is a schematic side view of the apparatus body of the present utility model.
Fig. 3 is a schematic structural view of the first and second winding assemblies of the present utility model.
Fig. 4 is a schematic structural view of a third winding assembly and a fourth winding assembly of the present utility model.
The device comprises a device main body 1, a slitting device 11, a conveying frame 2, a winding group 3, a first winding assembly 31, a second winding assembly 32, a third winding assembly 33, a fourth winding assembly 34, a first horizontal conveying roller group 4, a first conveying roller group 41, a first deviation correcting mechanism 42, a second horizontal conveying roller group 5, a second conveying roller group 51, a second deviation correcting mechanism 52, a first material stirring roller group 6, a first material stirring bracket 61, a first material stirring roller 62, a second material stirring roller 63, a second material stirring roller group 7, a second material stirring bracket 71, a third material stirring roller 72, a fourth material stirring roller 73, a rolling assembly 8, a rolling bracket 81, a swing arm 82, a rolling roller 83, a linear driving cylinder 84, a reciprocating driving mechanism 9, a bearing table 91, a guide rod 92, a linear driving mechanism 93 and a guide rail 94.
Detailed Description
Embodiments of the present utility model will be described below with reference to the accompanying drawings and examples, but the embodiments of the present utility model are not limited to the following examples, and the present utility model relates to the relevant essential parts in the art, and should be regarded as known and understood by those skilled in the art.
As shown in fig. 1 to 4, a line-shaped winding and rolling device in the sanitary product industry comprises an equipment main body 1, a slitting device 11, a conveying roller set and a rolling device which are sequentially arranged along the length direction of the equipment main body 1, wherein the rolling device comprises a plurality of line-shaped winding and rolling sets 3;
The device main body 1 further comprises a conveying frame 2 for fixing the slitting device 11 and a conveying roller set, wherein the conveying roller set comprises a first horizontal conveying roller set 4, a second horizontal conveying roller set 5, and a first material stirring roller set 6 and a second material stirring roller set 7 which are arranged between the second horizontal conveying roller set 5 and the slitting device 11;
in the technical scheme of the equipment main body 1, materials are cut into four sections of materials through the cutting device 11, two sections of materials adjacent to the middle are respectively conveyed to the first winding assembly 31 and the second winding assembly 32 for winding through the first horizontal conveying roller group 4, two sections of materials on two sides are centered and stirred through the first stirring roller group 6 and the second stirring roller group 7, so that the materials are aligned with the two sections of materials adjacent to the middle, and are conveyed to the second horizontal conveying roller group 5, and are respectively conveyed to the third winding assembly 33 and the fourth winding assembly 34 for winding;
It should be noted that, the conveying roller set with be equipped with between the coiling formula coiling group 3 with the press roll subassembly 8 of coiling formula coiling group 3 outer edge laminating, the material is through press roll subassembly 8 closely laminate on coiling formula coiling group 3 when carrying, the carriage 2 bottom is equipped with bears and drives coiling formula coiling group 3 axial movement's reciprocating drive mechanism 9, reciprocating drive mechanism 9 is in coiling formula coiling group 3 when rolling drive coiling formula coiling group 3 axial reciprocating movement is in coiling formula coiling group 3's surface, increases the rolling length of single book with the material spiral type coiling.
Further, in the above-mentioned scheme, the winding type winding group 3 includes a first winding assembly 31, a second winding assembly 32, a third winding assembly 33 and a fourth winding assembly 34 sequentially arranged along the material conveying direction, and the material slit by the slitting device 11 is wound by the first winding assembly 31, the second winding assembly 32, the third winding assembly 33 and the fourth winding assembly 34 respectively;
a first horizontal conveying roller set 4 is arranged between the slitting device 11 and the first winding assembly 31 and the second winding assembly 32, and a second horizontal conveying roller set 5 is arranged between the slitting device 11 and the third winding assembly 33 and the fourth winding assembly 34.
Further, in the above-mentioned scheme, the first horizontal conveying roller set 4 includes a first conveying roller set 41 and a first deviation rectifying mechanism 42 that are horizontally disposed along the length direction of the conveying frame 2, the number of the first deviation rectifying mechanisms 42 is at least two, and the first deviation rectifying mechanisms 42 are correspondingly disposed at the upper stations of the first winding assembly 31 and the second winding assembly 32, so as to wind the cloth wound by the first winding assembly 31 and the second winding assembly 32.
Further, in the above-mentioned scheme, the second horizontal conveying roller set 5 is disposed above the first horizontal conveying roller set 4, the second horizontal conveying roller set 5 includes a second conveying roller set 51 and a second deviation rectifying mechanism 52 that are horizontally disposed along the length direction of the conveying frame 2, the number of the second deviation rectifying mechanisms 52 is at least two, and the second deviation rectifying mechanisms 52 are correspondingly disposed at the upper stations of the third winding assembly 33 and the fourth winding assembly 34, so as to wind the cloth wound by the third winding assembly 33 and the fourth winding assembly 34.
Further, in the above-mentioned solution, the first material stirring roller set 6 includes a first material stirring bracket 61, and a first material stirring roller 62 and a second material stirring roller 63 fixed on the first material stirring bracket 61, where movable ends of the first material stirring roller 62 and the second material stirring roller 63 are disposed opposite to each other;
Further, in the above-mentioned solution, the second material stirring roller set 7 includes a second material stirring bracket 71, and a third material stirring roller 72 and a fourth material stirring roller 73 fixed on the second material stirring bracket 71, where movable ends of the third material stirring roller 72 and the fourth material stirring roller 73 are oppositely disposed;
Among the cut materials, the distance between the two outermost materials is larger, the first material stirring is performed by the first stirring roller 62 and the second stirring roller 63 on the first stirring roller set 6, and the second material stirring is performed by the third stirring roller 72 and the fourth stirring roller 73 on the second stirring roller set 7, so that the two outermost materials are shifted in centering during conveying, namely, move transversely in opposite directions, and are vertically aligned with the two adjacent materials in the middle, and the second horizontal conveying roller set 5 is convenient for conveying the translated materials to the third winding assembly 33 and the fourth winding assembly 34 for winding.
Further, in the above-mentioned scheme, the rolling assembly 8 includes a rolling support 81 disposed along the width direction of the material, a swing arm 82 disposed at the top end of the rolling support 81 and hinged to the end of the rolling support 81, a rolling roller 83 disposed at the front end of the swing arm 82, and a linear driving cylinder 84 disposed at the rear end of the swing arm 82, wherein the output end of the linear driving cylinder 84 is hinged to the rear end of the swing arm 82, and the fixed end of the linear driving cylinder 84 is hinged to the rolling support 81;
When the winding type winding group 3 winds, the linear driving cylinder 84 drives one end of the swing arm 82 to rotate, so that the winding roller 83 at the other end of the swing arm 82 presses down on the wound material, and the wound material is prevented from being wrinkled;
Further, in the above-mentioned scheme, the reciprocating driving mechanism 9 includes a bearing table 91 disposed below the winding group 3 and the pressing winding component 8, a guide rail 94 disposed below the bearing table 91, and a guide rod 92 disposed at one side of the bearing table 91, a linear driving mechanism 93 for driving the bearing table 91 to reciprocate along the guide rail 94 is disposed at the rear end of the bearing table 91, and the reciprocating driving mechanism 9 drives the bearing table 91 to drive the winding group 3 and the pressing winding bracket 81 to reciprocate along the axial direction when the winding group 3 winds, so that the material is spirally wound on the outer surface of the winding group 3, and the winding length of the single winding is increased.
The foregoing is merely a preferred embodiment of the present utility model and it should be noted that modifications and adaptations to those skilled in the art may be made without departing from the principles of the present utility model, which are intended to be comprehended within the scope of the present utility model.