CN214327761U - Drying device is used in leather products production - Google Patents

Drying device is used in leather products production Download PDF

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Publication number
CN214327761U
CN214327761U CN202023022240.1U CN202023022240U CN214327761U CN 214327761 U CN214327761 U CN 214327761U CN 202023022240 U CN202023022240 U CN 202023022240U CN 214327761 U CN214327761 U CN 214327761U
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leather
negative pressure
drying
vacuum negative
jacking
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吴龙珍
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Abstract

The utility model discloses a drying device for leather production, which comprises a leather drying underframe assembly, the middle part of the leather drying underframe assembly is provided with a leather vacuum negative pressure absorbing and drying table assembly, the top part of the leather drying underframe assembly is provided with a plurality of groups of jacking and conveying roller assemblies, through the elastic jacking of the jacking spring and the driving of the transmission roller driving motor, the roller body of the jacking transmission roller is always elastically jacked on the leather vacuum negative pressure absorbing and drying table component to transmit the leather to roll, when the leather is transmitted to a proper position, the transmission roller driving motor is closed, then the outer end pipe body of the vacuum generating pipe is communicated with external vacuum generating equipment through a hose, the external vacuum generating equipment is started, thereby the upper end table body of the hollow vacuum negative pressure absorbing drying table forms a vacuum negative pressure absorbing drying environment.

Description

Drying device is used in leather products production
Technical Field
The utility model belongs to the technical field of leather products production, concretely relates to drying device is used in leather products production.
Background
Leather furniture or leather tools made of leather, such as leather sofas, leather chairs, leather beds, leather bags, leather whips, leather gloves and other leather products, and leather products such as leather clothes, leather shoes and the like, wherein the leather products also include a plurality of leather products, such as books, universal manuals, manager bags, briefcases, cases, purses, key bags and other leather products.
The prior art has the following problems: when the leatherware leather material is processed and produced, the drying treatment is needed, the prior leatherware leather material is heated and dried by a baking lamp, the leatherware leather material is easy to chap, a drying device which is safe and convenient to use for the leatherware production is lacked, and the drying treatment of the leatherware leather material is not facilitated.
SUMMERY OF THE UTILITY MODEL
To solve the problems set forth in the background art described above. The utility model provides a drying device for leather products production has safe in utilization and convenient characteristics.
In order to achieve the above object, the utility model provides a following technical scheme: a drying device for leather production comprises a leather drying underframe assembly, wherein a leather vacuum negative pressure sucking and drying table assembly is arranged in the middle of the leather drying underframe assembly, and a plurality of groups of jacking and conveying roller assemblies are arranged at the top of the leather drying underframe assembly;
the leather drying underframe assembly comprises an L-shaped leather drying underframe, an underframe supporting table is fixedly arranged in the middle of the L-shaped leather drying underframe, a plurality of tightening plates are fixedly arranged at the top of the L-shaped leather drying underframe, and through slotted holes are formed in the tightening plates;
the leather vacuum negative pressure absorbing and drying table component comprises a hollow vacuum negative pressure absorbing and drying table, a plurality of vacuum generating pipes are fixedly arranged on the inner side of the hollow vacuum negative pressure absorbing and drying table, a plurality of drain pipes are fixedly arranged on the outer side of the hollow vacuum negative pressure absorbing and drying table, the interior of the hollow vacuum negative pressure absorbing and drying table is blocked by a plurality of partition transverse plates to form a plurality of partition cavities, the vacuum generating pipes and the drain pipes are arranged in the partition cavities, an air-water separation membrane is arranged at the end part of each vacuum generating pipe, a first row of vacuum negative pressure water suction holes and a second row of vacuum negative pressure water suction holes are formed in the table body on the top end face of the hollow vacuum negative pressure absorbing and drying table, the first row of vacuum negative pressure water suction holes and the second row of vacuum negative pressure water suction holes are opposite in staggered mode, and drain valves are fixedly arranged on the drain pipes;
the roof pressure transfer roller subassembly includes U type frame plate, the inside of U type frame plate is rotated and is provided with the roof pressure transfer roller, and the fixed drive roof pressure transfer roller pivoted transfer roller driving motor that is provided with of one end of U type frame plate, the fixed tight guide slide bar in a plurality of tops that is provided with in top of U type frame plate, the fixed spacing bulb that is provided with in top of the tight guide slide bar in top, and the tight guide slide bar in top on the cover be equipped with the tight spring in top.
Preferably, the outer end pipe body of the vacuum generating pipe is communicated with an external vacuum generating device through a hose, so that the upper end surface platform body of the hollow vacuum negative pressure suction drying platform forms a vacuum negative pressure water suction drying environment.
Preferably, through the partition of the partition transverse plate, the hollow vacuum negative pressure suction drying table body forms a plurality of partitioned vacuum negative pressure water suction drying table interfaces, and when the upper part of the partition cavity is not covered by leather, the vacuum negative pressure water suction drying treatment of other partition cavities is not influenced.
Preferably, the air-water separation membrane ensures that air in the partition cavity can only be discharged through the vacuum generating pipe, and water sucked by vacuum negative pressure is discharged through the drain valve and the drain pipe.
Preferably, when the jacking and conveying roller assembly and the leather drying underframe assembly are assembled for use, the rod body of the jacking guide slide bar is in penetrating type sliding connection with the plate body of the jacking plate through the through groove hole, one end of the jacking spring abuts against the U-shaped frame plate, and the other end of the jacking spring abuts against the jacking plate.
Preferably, the roller body of the jacking and conveying roller is always elastically jacked to tightly convey the leather to roll on the leather vacuum negative pressure absorbing and drying table assembly through elastic jacking of the jacking spring and driving of the conveying roller driving motor.
Compared with the prior art, the beneficial effects of the utility model are that: when the utility model is used, the roller body of the jacking transmission roller is always elastically jacked tightly on the leather vacuum negative pressure absorption drying table component to transmit the rolling of the leather by the elastic jacking of the jacking spring and the driving of the transmission roller driving motor, when the leather is transmitted to a proper position, the transmission roller driving motor is closed, then the outer end pipe body of the vacuum generating pipe is communicated with the external vacuum generating equipment by a hose, the external vacuum generating equipment is opened, so that the upper end surface table body of the hollow vacuum negative pressure absorption drying table forms a vacuum negative pressure water absorption drying environment, then the external vacuum generating equipment is disconnected, the transmission roller driving motor is opened, after one end distance is transmitted, the transmission roller driving motor is re-started, the external vacuum generating equipment is opened, the process is repeated for several times, and the jacking transmission and the vacuum negative pressure water absorption drying treatment of the leather on the leather vacuum negative pressure absorption drying table component are completed, elastic jacking through the jacking spring is tight, the roller body of the jacking conveying roller is always elastically jacked on the leather vacuum negative pressure absorbing and drying table assembly, the leather is always elastically jacked on the leather vacuum negative pressure absorbing and drying table assembly, subsequent vacuum negative pressure water absorbing and drying treatment is facilitated, separation through the partition transverse plate is achieved, the hollow vacuum negative pressure absorbing and drying table body inside the drying table is enabled to form a plurality of separated vacuum negative pressure water absorbing and drying table interfaces, and when some partition cavities are not covered by leather, the vacuum negative pressure water absorbing and drying treatment of other partition cavities is not influenced.
Drawings
Fig. 1 is a perspective view of the present invention;
FIG. 2 is a perspective view of the vacuum negative pressure sucking and drying table assembly for leatherware of the present invention;
FIG. 3 is a perspective view of another view angle of the vacuum negative pressure sucking and drying table assembly for leatherware of the present invention;
FIG. 4 is an enlarged view of a part of the structure of the vacuum negative pressure sucking and drying table assembly for leatherware of the present invention;
FIG. 5 is a perspective view of the bottom frame assembly for drying leather of leather products of the present invention;
fig. 6 is a perspective view of the top pressure transfer roller assembly of the present invention;
in the figure: 1. drying the underframe assembly by leather material of the leather product; 11. an L-shaped leather drying underframe; 12. an underframe support table; 13. a jacking plate; 14. a through slot hole; 2. a leather vacuum negative pressure sucking and drying table component of the leather; 21. a hollow vacuum negative pressure suction drying table; 22. a vacuum generating tube; 23. a drain pipe; 24. a drain valve; 25. a first row of vacuum negative pressure water suction holes; 26. a second row of vacuum negative pressure water suction holes; 27. a partition transverse plate; 28. a partition cavity; 29. a gas-water separation membrane; 3. jacking and pressing the conveying roller assembly; 31. a U-shaped frame plate; 32. jacking and pressing the conveying roller; 33. the conveying roller drives the motor; 34. tightly supporting the guide slide bar; 35. a limiting ball head; 36. and tightly pushing the spring.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-6, the present invention provides the following technical solutions: a drying device for leather production comprises a leather drying underframe assembly 1, wherein a leather vacuum negative pressure sucking and drying table assembly 2 is arranged in the middle of the leather drying underframe assembly 1, and a plurality of jacking and conveying roller assemblies 3 are arranged at the top of the leather drying underframe assembly 1;
the leather drying underframe assembly 1 comprises an L-shaped leather drying underframe 11, an underframe supporting table 12 is fixedly arranged in the middle of the L-shaped leather drying underframe 11, a plurality of jacking plates 13 are fixedly arranged at the top of the L-shaped leather drying underframe 11, and through slotted holes 14 are formed in the jacking plates 13;
the leather vacuum negative pressure absorbing and drying table component 2 comprises a hollow vacuum negative pressure absorbing and drying table 21, a plurality of vacuum generating pipes 22 are fixedly arranged on the inner side of the hollow vacuum negative pressure absorbing and drying table 21, a plurality of drain pipes 23 are fixedly arranged on the outer side of the hollow vacuum negative pressure suction drying table 21, the interior of the hollow vacuum negative pressure suction drying table 21 is blocked by a plurality of blocking transverse plates 27 to form a plurality of blocking cavities 28, the vacuum generating pipe 22 and the drain pipes 23 are both arranged in the blocking cavities 28, the end part of the vacuum generating pipe 22 is provided with a gas-water separation membrane 29, a first row of vacuum negative pressure water suction holes 25 and a second row of vacuum negative pressure water suction holes 26 are formed in the top end table body of the hollow vacuum negative pressure suction drying table 21, the first row of vacuum negative pressure water suction holes 25 and the second row of vacuum negative pressure water suction holes 26 are opposite in a staggered mode, and a drain valve 24 is fixedly arranged on the drain pipes 23;
the jacking and conveying roller assembly 3 comprises a U-shaped frame plate 31, jacking and conveying rollers 32 are arranged inside the U-shaped frame plate 31 in a rotating mode, a conveying roller driving motor 33 for driving the jacking and conveying rollers 32 to rotate is fixedly arranged at one end of the U-shaped frame plate 31, a plurality of jacking and guiding slide bars 34 are fixedly arranged at the top of the U-shaped frame plate 31, limiting ball heads 35 are fixedly arranged at the tops of the jacking and guiding slide bars 34, and jacking springs 36 are sleeved on the jacking and guiding slide bars 34.
In this embodiment, preferably, the outer end of the vacuum generating tube 22 is connected to an external vacuum generating device through a hose, so that the upper end platform of the hollow vacuum suction drying platform 21 forms a vacuum negative suction drying environment.
In this embodiment, preferably, the partition transverse plate 27 is used for partitioning, so that a plurality of partitioned vacuum negative pressure water absorption drying table interfaces are formed on the table body inside the hollow vacuum negative pressure absorption drying table 21, and when the upper parts of some partition cavities 28 are not covered by leather, the vacuum negative pressure water absorption drying treatment of other partition cavities 28 is not affected.
In this embodiment, it is preferable that only air is discharged through the vacuum generating tube 22 inside the blocking chamber 28 by the air-water separating membrane 29, and water sucked by the vacuum negative pressure is discharged through the drain valve 24 and the drain pipe 23.
In this embodiment, preferably, when the jacking and conveying roller assembly 3 and the leather drying underframe assembly 1 are assembled for use, the rod body of the jacking guide slide bar 34 is in penetrating sliding connection with the plate body of the jacking plate 13 through the through slot hole 14, one end of the jacking spring 36 abuts against the U-shaped frame plate 31, and the other end of the jacking spring 36 abuts against the jacking plate 13.
In this embodiment, preferably, the roller body of the jacking and conveying roller 32 is always elastically jacked to roll on the leather vacuum negative pressure absorbing and drying table assembly 2 for conveying the leather through elastic jacking of the jacking spring 36 and driving of the conveying roller driving motor 33.
The utility model discloses well gas-water separation membrane 29 is the wide application that has disclosed and daily life's known technique, and gas-water separation membrane subassembly comprises plastic casing or stainless steel shell and hollow fiber membrane bundle, and hollow fiber membrane is the porous tubular membrane of constituteing by hydrophobic polypropylene hollow fiber, internal diameter 240 mu m, external diameter 300 mu m, and the fibrous membrane pipe wall is covered with 30 one 40 nanometer micropores, and this fibre hydrophobicity, water can not pass through the micropore, and gas can be followed the hole and passed through.
The utility model discloses a theory of operation and use flow: when the utility model is used, the roller body of the jacking and conveying roller 32 is always elastically jacked to tightly roll the leather vacuum negative pressure absorbing and drying table component 2 through the elastic jacking of the jacking spring 36 and the driving of the conveying roller driving motor 33, when the leather is conveyed to a proper position, the conveying roller driving motor 33 is closed, then the outer end pipe body of the vacuum generating pipe 22 is communicated with the external vacuum generating equipment through a hose, the external vacuum generating equipment is opened, so that the upper end surface table body of the hollow vacuum negative pressure absorbing and drying table 21 forms a vacuum negative pressure water absorbing and drying environment, then the external vacuum generating equipment is disconnected, the conveying roller driving motor 33 is opened, after one end distance is conveyed, the conveying roller driving motor 33 is used again, the external vacuum generating equipment is opened, the process is repeated for several times, the jacking and conveying and the vacuum negative pressure water absorbing and drying treatment of the leather on the leather vacuum negative pressure absorbing and drying table component 2 are completed, elastic jacking through the jacking spring 36 is tight, so that the roller body of the jacking conveying roller 32 always elastically jacks up on the leather vacuum negative pressure absorption drying table assembly 2, so that the leather is always elastically jacked up on the leather vacuum negative pressure absorption drying table assembly 2, subsequent vacuum negative pressure water absorption drying treatment is facilitated, separation through the partition transverse plate 27 is realized, the inside table body of the hollow vacuum negative pressure absorption drying table 21 is formed into a plurality of separated vacuum negative pressure water absorption drying table interfaces, when no leather is covered on the upper portion of some partition cavities 28, the vacuum negative pressure water absorption drying treatment of other partition cavities 28 is not influenced.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a drying device is used in leatherware production, includes leatherware cladding stoving chassis subassembly (1), its characterized in that: the middle part of the leather drying underframe assembly (1) is provided with a leather vacuum negative pressure sucking and drying table assembly (2), and the top of the leather drying underframe assembly (1) is provided with a plurality of groups of jacking and conveying roller assemblies (3);
the leather drying chassis assembly (1) comprises an L-shaped leather drying chassis (11), a chassis supporting table (12) is fixedly arranged in the middle of the L-shaped leather drying chassis (11), a plurality of tightening plates (13) are fixedly arranged at the top of the L-shaped leather drying chassis (11), and through slotted holes (14) are formed in the tightening plates (13);
leather products cladding vacuum negative pressure absorbs stoving platform subassembly (2) includes cavity type vacuum negative pressure and absorbs stoving platform (21), the inboard of cavity type vacuum negative pressure absorption stoving platform (21) is fixed to be provided with a plurality of vacuum generator pipe (22), and the outside of cavity type vacuum negative pressure absorption stoving platform (21) is fixed to be provided with a plurality of drain pipes (23), the inside of cavity type vacuum negative pressure absorption stoving platform (21) is separated by a plurality of wall diaphragms (27) and is formed a plurality of wall chambeies (28), vacuum generator pipe (22) and drain pipe (23) all set up in wall chamber (28), the tip of vacuum generator pipe (22) is provided with gas-water separation membrane (29), cavity type vacuum negative pressure absorbs and has seted up first vacuum negative pressure suction hole (25) and second vacuum negative pressure suction hole (26) on the top terminal surface stage body of stoving platform (21), the hole bodies of the first row of vacuum negative pressure water suction holes (25) and the second row of vacuum negative pressure water suction holes (26) are opposite in a staggered mode, and a drain valve (24) is fixedly arranged on the drain pipe (23);
roof pressure conveying roller subassembly (3) are including U type frame board (31), the inside rotation of U type frame board (31) is provided with roof pressure transfer roller (32), and the one end of U type frame board (31) is fixed and is provided with drive roof pressure transfer roller (32) pivoted transfer roller driving motor (33), the fixed tight guide slide bar (34) in a plurality of tops that is provided with in top of U type frame board (31), the fixed spacing bulb (35) that is provided with in top of the tight guide slide bar (34) in top, and the cover is equipped with tight spring (36) in top on the tight guide slide bar (34) in top.
2. The drying device for leather products production of claim 1, wherein: the outer end pipe body of the vacuum generating pipe (22) is communicated with external vacuum generating equipment through a hose, so that the upper end surface platform body of the hollow vacuum negative pressure suction drying platform (21) forms a vacuum negative pressure water absorption drying environment.
3. The drying device for leather products production of claim 1, wherein: through the separation of cutting off diaphragm (27), make the inside stage body of cavity type vacuum negative pressure absorption drying stage (21) forms a plurality of divided vacuum negative pressure and absorbs water the drying stage interface, some when cutting off chamber (28) upper portion and not having the cladding of leather products and covering, do not influence the vacuum negative pressure that other cut off chamber (28) and absorb water the stoving and handle.
4. The drying device for leather products production of claim 1, wherein: the air-water separation membrane (29) ensures that only air in the partition cavity (28) can be discharged through the vacuum generating pipe (22), and water sucked by vacuum negative pressure is discharged through the drain valve (24) and the drain pipe (23).
5. The drying device for leather products production of claim 1, wherein: when the jacking conveying roller assembly (3) and the leather drying underframe assembly (1) are assembled for use, the rod body of the jacking guide slide rod (34) is in penetrating type sliding connection with the plate body of the jacking plate (13) through the through groove hole (14), one end of the jacking spring (36) is abutted against the U-shaped frame plate (31), and the other end of the jacking spring (36) is abutted against the jacking plate (13).
6. The drying device for leather products production of claim 1, wherein: through the elastic jacking of the jacking spring (36) and the driving of the conveying roller driving motor (33), the roller body of the jacking conveying roller (32) is always elastically jacked to roll on the leather vacuum negative pressure absorbing and drying table assembly (2) for conveying leather.
CN202023022240.1U 2020-12-15 2020-12-15 Drying device is used in leather products production Active CN214327761U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023022240.1U CN214327761U (en) 2020-12-15 2020-12-15 Drying device is used in leather products production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023022240.1U CN214327761U (en) 2020-12-15 2020-12-15 Drying device is used in leather products production

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CN214327761U true CN214327761U (en) 2021-10-01

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CN202023022240.1U Active CN214327761U (en) 2020-12-15 2020-12-15 Drying device is used in leather products production

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114083590A (en) * 2021-11-25 2022-02-25 安徽五源食品有限公司 Beef product dicing device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114083590A (en) * 2021-11-25 2022-02-25 安徽五源食品有限公司 Beef product dicing device

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