Garment bagging heat-sealing and cutting mechanism
Technical Field
The utility model relates to the technical field of clothing packaging, in particular to a clothing bagging heat-sealing and cutting mechanism.
Background
In apparel processing, it is often necessary to package the garment. During packaging of garments, it is often necessary to fold the garment in order to bag the garment. At present, in a clothes packing mode, a worker usually places clothes on a clothes folding machine, then folds the clothes by using the clothes folding machine, then takes out the folded clothes and transfers the folded clothes to a packing machine, and the folded clothes are packed in bags by the packing machine. At present, after clothes are packaged, the existing packaging machine is generally required to seal a packaging bag through a sealing mechanism, after the packaging bag is sealed, the packaging bag is transported to the next station, one side of the sealing of the packaging bag is pressed by a pressing mechanism, and redundant sealing edges are cut through a cutting mechanism.
Therefore, it is necessary to provide a garment bagging heat seal cutting mechanism which can improve garment bagging efficiency and is low in cost.
Disclosure of utility model
The utility model aims to provide a garment bagging heat-sealing and cutting mechanism which can improve garment packaging efficiency and is low in cost.
The utility model provides a clothing bagging heat-sealing and cutting mechanism, which comprises a frame, a heat-sealing assembly, a first lifting driving assembly, a supporting assembly, a cutting assembly and a second lifting driving assembly, wherein the heat-sealing assembly is arranged on the frame in a vertically sliding mode, the first lifting driving assembly is arranged on the frame, the output end of the first lifting driving assembly is connected with the heat-sealing assembly, the first lifting driving assembly is used for driving the heat-sealing assembly to slide up and down, the supporting assembly is arranged on the frame and is positioned below the heat-sealing assembly, the supporting assembly is used for supporting a bag opening of a packaging bag, the cutting assembly is arranged on the frame in a vertically sliding mode, the cutting assembly is arranged adjacent to the heat-sealing assembly, the second lifting driving assembly is arranged on the frame, the output end of the second lifting driving assembly is connected with the cutting assembly, the second lifting driving assembly is used for driving the cutting assembly to slide up and down, and when the heat-sealing assembly descends and the packaging bag is used for supporting the bag opening of the packaging bag, and the cutting assembly is driven to cut by the second lifting driving assembly to cut the packaging bag.
Preferably, the heat-sealing assembly comprises a heat-sealing mounting piece and a heat-sealing module, wherein the heat-sealing mounting piece is arranged on the frame in a vertical sliding manner, and the heat-sealing module is arranged on the heat-sealing mounting piece and is positioned above the supporting assembly.
Preferably, a first guide rod is arranged on the frame, a first sliding block is arranged on the heat seal installation piece, and the first sliding block is arranged on the first guide rod in a vertical sliding mode.
Preferably, the cutting assembly comprises a cutting installation piece and a cutting knife, wherein the cutting installation piece is arranged on the frame in a vertical sliding mode, and the cutting knife is arranged on the cutting installation piece.
Preferably, a second guide rod is arranged on the frame, a second sliding block is arranged on the cutting installation piece, and the second sliding block is arranged on the second guide rod in a vertical sliding mode.
The cutting assembly comprises a cutting installation piece, a cutting assembly, a connecting rod, a swinging piece, an elastic piece, a connecting rod and a cutting knife, wherein the cutting assembly further comprises a rotating shaft and the connecting rod, the rotating shaft is rotationally arranged on the cutting installation piece, one end of the rotating shaft penetrates through the cutting installation piece and is fixedly connected with the connecting rod, the cutting knife is arranged on the side edge of the rotating shaft, a sliding groove is formed in the connecting rod, the garment bagging heat-sealing cutting mechanism further comprises the swinging piece and the elastic piece, the swinging piece is rotationally connected onto the frame, the upper end of the elastic piece is connected with the frame, the lower end of the elastic piece is connected with the swinging piece, the connecting rod is slidingly sleeved on the connecting rod through the sliding groove, the cutting knife is driven to rotate under the action of gravity and enables the connecting rod to push the swinging piece to swing, and the swinging piece is provided with a second movement trend which is offset with the first movement trend under the action of the elastic force of the elastic piece.
Preferably, the swinging member is eccentrically provided with a roller wheel at the rotation center, the roller wheel is rotationally arranged on the swinging member, and the connecting rod is sleeved on the roller wheel through the sliding groove.
Preferably, a fixing piece is arranged on the frame, and the upper end of the elastic piece is connected with the fixing piece.
Preferably, the garment bagging heat-sealing and cutting mechanism further comprises a limiting piece, wherein the limiting piece is fixed on the frame and located above the swinging piece, and the limiting piece is used for limiting the maximum position of the swinging piece in an upward rotation mode.
Compared with the prior art, the garment bagging heat-sealing and cutting mechanism has the advantages that the heat-sealing assembly and the cutting assembly are integrated into one mechanism, the cutting assembly and the heat-sealing assembly are arranged adjacently, the first lifting driving assembly drives the heat-sealing assembly to descend, the heat-sealing assembly presses down and heat-seals the bag mouth of the packaging bag positioned on the supporting assembly, and the second lifting driving assembly drives the cutting assembly to descend, so that the cutting assembly cuts redundant seals of the packaging bag. Therefore, the garment bagging heat-sealing and cutting mechanism can cut redundant seals while heat-sealing the packaging bag, so that garment packaging efficiency is greatly improved, a pressing mechanism is not required to be additionally arranged, and the cutting assembly can synchronously cut redundant seals of the packaging bag by using the pressing force applied by the heat-sealing assembly when the bag opening of the packaging bag is heat-sealed, so that equipment cost is effectively reduced.
Drawings
Fig. 1 is a perspective view of a heat-seal cutting mechanism for a garment bag according to the present utility model.
Fig. 2 is a side view of the garment bag heat seal cutting mechanism of the present utility model.
Fig. 3 is a perspective view of a cutting assembly of the garment bag heat seal cutting mechanism of the present utility model.
Fig. 4 is a partial block diagram of a garment bag heat seal cutting mechanism of the present utility model.
Detailed Description
In order to describe the technical content and constructional features of the present utility model in detail, the following description will be made with reference to the embodiments in conjunction with the accompanying drawings.
Referring to fig. 1 and 2, a heat-sealing and cutting mechanism 100 for a clothing bagging according to the present utility model includes a frame 1, a heat-sealing assembly 2, a first lifting driving assembly 3, a supporting assembly 4, a cutting assembly 5 and a second lifting driving assembly 6, wherein the heat-sealing assembly 2 is slidably disposed on the frame 1 up and down, the first lifting driving assembly 3 is disposed on the frame 1, an output end of the first lifting driving assembly 3 is connected with the heat-sealing assembly 2, the first lifting driving assembly 3 is used for driving the heat-sealing assembly 2 to slide up and down, the supporting assembly 4 is disposed on the frame 1 and below the heat-sealing assembly 2, the supporting assembly 4 is used for supporting a bag mouth of a packaging bag, the cutting assembly 5 is slidably disposed on the frame 1 up and down, the cutting assembly 5 is disposed adjacent to the heat-sealing assembly 2, the second lifting driving assembly 6 is disposed on the frame 1, an output end of the second lifting driving assembly 6 is connected with the cutting assembly 5, and the second lifting driving assembly 6 is used for driving the cutting assembly 5 to slide up and down, and the cutting assembly 5 is driven to descend when the heat-sealing assembly 2 descends and heat-seals the bag mouth, so that the packaging bag is sealed by the cutting assembly 5. The first lifting driving assembly 3 and the second lifting driving assembly 6 may all adopt the existing cylinder structure, but are not limited thereto.
According to the garment bagging heat-sealing and cutting mechanism 100, the heat-sealing assembly 2 and the cutting assembly 5 are assembled into one mechanism, meanwhile, the cutting assembly 5 and the heat-sealing assembly 2 are adjacently arranged, and the second lifting driving assembly 6 is utilized to drive the cutting assembly 5 to descend when the first lifting driving assembly 3 drives the heat-sealing assembly 2 to descend and enable the heat-sealing assembly 2 to conduct pressing and heat sealing on a bag mouth of a packaging bag on the supporting assembly 4, so that the cutting assembly 5 cuts redundant seals of the packaging bag.
Referring to fig. 1 and 2, in the present embodiment, the heat seal assembly 2 includes a heat seal mounting member 21 and a heat seal module 22, the heat seal mounting member 21 is slidably disposed on the frame 1, and the heat seal module 22 is disposed on the heat seal mounting member 21 and above the support assembly 4. Specifically, the frame 1 is provided with a first guide rod 11, the heat seal mounting member 21 is provided with a first slider 211, and the first slider 211 is provided on the first guide rod 11 in a vertically sliding manner. The specific structure and principle of the heat-sealing module 22 are well known to those skilled in the art, and thus are not described herein.
Referring to fig. 1 to 3, in the present embodiment, the cutting assembly 5 includes a cutting mounting member 51 and a cutting blade 52, the cutting mounting member 51 is disposed on the frame 1 in a vertically sliding manner, and the cutting blade 52 is disposed on the cutting mounting member 51. Specifically, the frame 1 is provided with a second guide rod 12, the cutting and mounting member 51 is provided with a second slider 511, and the second slider 511 is disposed on the second guide rod 12 in a vertically sliding manner.
Referring to fig. 1 to 4, in the present embodiment, the cutting assembly 5 further includes a rotating shaft 53 and a connecting rod 54, the rotating shaft 53 is rotatably disposed on the cutting installation member 51, one end of the rotating shaft 53 passes through the cutting installation member 51 and is fixedly connected with the connecting rod 54, the cutting blade 52 is mounted on a side of the rotating shaft 53, a sliding groove 541 is disposed on the connecting rod 54, the garment bagging heat-seal cutting mechanism 100 further includes a swinging member 7 and an elastic member 8, the swinging member 7 is rotatably connected to the frame 1, an upper end of the elastic member 8 is connected to the frame 1, a lower end of the elastic member 8 is connected to the swinging member 7, the connecting rod 54 is slidably sleeved on the connecting rod 54 through the sliding groove 541, the cutting blade 52 has a first movement trend M that drives the connecting rod 54 to rotate and enables the connecting rod 54 to push the swinging member 7 to swing under the action of gravity, and the swinging member 7 has a second movement trend N that is offset from the first movement trend M under the action of the elastic force of the elastic member 8. That is, under the first movement direction M, the swinging member 7 has a movement direction of swinging counterclockwise and downward and has a direction of pulling the elastic member 8, and at this time, the swinging member 7 will receive the elastic force of the elastic member 8 to have a movement direction of swinging clockwise and upward, that is, a second movement direction N, which counteracts the first movement direction M. The first movement trend M is offset by the second movement trend N, so that the cutting knife 52 can be always in a vertical state in the process of moving up and down, and the cutting knife 52 can effectively cut redundant seals of the packaging bag when descending. Further, a roller 71 is eccentrically provided on the swinging member 7 at the rotation center thereof, and the roller 71 is rotatably provided on the swinging member 7, and the connecting rod 54 is sleeved on the roller 71 through the sliding groove 541. By providing the roller 71, the sliding friction is changed into rolling friction, and the friction force applied to the connecting rod 54 is reduced.
Referring to fig. 1 and 4, in the present embodiment, a fixing member 13 is disposed on the frame 1, and an upper end of the elastic member 8 is connected to the fixing member 13.
Referring to fig. 1 and 4, in the present embodiment, the heat-sealing and cutting mechanism 100 for clothing bagging further includes a limiting member 9, wherein the limiting member 9 is fixed on the frame 1 and located above the swinging member 7, and the limiting member 9 is used for limiting the maximum position of the swinging member 7 to rotate upwards. Specifically, the stopper 9 serves to restrict the swinging member 7 from swinging clockwise toward the upward maximum position.
In summary, in the garment bagging heat-seal cutting mechanism 100 of the present utility model, the heat-seal assembly 2 and the cutting assembly 5 are assembled into one mechanism, and the cutting assembly 5 is arranged adjacent to the heat-seal assembly 2, and the second lifting driving assembly 6 is used to drive the cutting assembly 5 to descend while the first lifting driving assembly 3 drives the heat-seal assembly 2 to descend and heat-seal the bag mouth of the packaging bag located on the supporting assembly 4, so that the cutting assembly 5 cuts the redundant seal of the packaging bag. Therefore, the garment bagging heat-sealing and cutting mechanism 100 can cut redundant seals while heat-sealing the packaging bag, so that garment packaging efficiency is greatly improved, a pressing mechanism is not needed, and the cutting assembly 5 can cut redundant seals of the packaging bag synchronously by using the pressing force applied by the heat-sealing assembly 2 when the bag opening of the packaging bag is heat-sealed, so that equipment cost is effectively reduced.
The foregoing disclosure is only illustrative of the preferred embodiments of the present utility model and is not to be construed as limiting the scope of the utility model, which is defined by the appended claims.