CN211005972U - Dyeing tank prevents spouting closing cap structure - Google Patents
Dyeing tank prevents spouting closing cap structure Download PDFInfo
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- CN211005972U CN211005972U CN201921822923.XU CN201921822923U CN211005972U CN 211005972 U CN211005972 U CN 211005972U CN 201921822923 U CN201921822923 U CN 201921822923U CN 211005972 U CN211005972 U CN 211005972U
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- cover plate
- dyeing
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- plate cylinder
- dyeing pond
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Abstract
The utility model relates to a dyeing pond is prevented spouting and is penetrated closing cap structure solves traditional panty-hose dyeing pond and is the open structure of rectangle, and heat energy scatters and disappears and lead to the energy consumption height, and has the problem of potential safety hazard. This device is including dyeing pond, and the top in dyeing pond is the arc top cap, and one side of arc top cap is equipped with the ascending rectangle of slope uncovered, its characterized in that: the rectangular opening is buckled with an openable cover plate, the left side surface and the right side surface of the cover plate are respectively provided with a flip mechanism, the arc-shaped top cover is transversely provided with a row of gas drainage holes along the left side and the right side above the rectangular opening, a transversely extending openable turnover plate is arranged above the gas drainage holes, the bottom edge of the turnover plate is provided with a transversely extending swing shaft, and the left side surface and the right side surface of the turnover plate are respectively provided with a turnover plate mechanism for driving the turnover plate to rotate. The utility model discloses utilize the balanced air current of dredging the gas pocket in the dyeing pond, avoid the air current to scald the staff from apron and the open gap department of rectangle outspray, guarantee production safety.
Description
Technical Field
The utility model belongs to dress processing field relates to a panty-hose dyeing apparatus, in particular to dyeing pond prevents spouting and penetrates closing cap structure.
Background
The socks are common clothes worn by people in daily life, and the socks are various and comprise a series of varieties such as ankle socks, stockings, pantyhose and the like. In order to enrich the color types of the socks, the socks produced by some primary color fabrics need to enter a dyeing tank for dyeing. The temperature in the dyeing pond is higher, and traditional dyeing pond is the uncovered formula structure of rectangle, and this kind of structure does not take the closing cap, not only has heat energy loss, and the energy consumption is higher, has certain potential safety hazard moreover.
Disclosure of Invention
The utility model aims to solve traditional panty-hose dyeing pond and be the open structure of rectangle, heat energy scatters and disappears and leads to the energy consumption high, and has the problem of potential safety hazard, provides a dyeing pond prevents spouting and penetrates capping structure. In addition, this structure prevents the apron lock in-process through the setting of dredging the gas pocket, extrudees the high-temperature gas of jet department from the gap, eliminates the potential safety hazard.
The utility model provides a technical scheme that its technical problem adopted is: the utility model provides a closing cap structure is prevented spouting by dyeing pond, includes the dyeing pond, and the top in dyeing pond is the arc top cap, and one side of arc top cap is equipped with the ascending rectangle of slope uncovered, its characterized in that: the rectangular opening is buckled with an openable cover plate, the left side surface and the right side surface of the cover plate are respectively provided with a flip mechanism, the arc-shaped top cover is transversely provided with a row of gas drainage holes along the left side and the right side above the rectangular opening, a transversely extending openable turnover plate is arranged above the gas drainage holes, the bottom edge of the turnover plate is provided with a transversely extending swing shaft, and the left side surface and the right side surface of the turnover plate are respectively provided with a turnover plate mechanism for driving the turnover plate to rotate. The inside temperature of dyeing pond is higher, is a confined environment when the apron lock, therefore the apron in the twinkling of an eye of lock, inside gas receives the extrusion, can follow and outwards spray fast in the gap of apron and spill over, scald the staff easily. In the device, the structure of the gas-distributing hole is added, the turning plate is kept open in the process from opening to buckling of the cover plate, gas extruded by the cover plate can be sent to the gas-distributing hole to be discharged to the top, and when the cover plate is buckled, the cover plate is turned downwards and covers the gas-distributing hole to close the gas-distributing hole; in the process from buckling to opening the cover plate, the turning plate is opened currently, so that the internal pressure and the external pressure are balanced in the opening process, and the air flow is prevented from being sprayed out from the gap of the cover plate.
Preferably, the turning plate mechanism is a turning plate cylinder, the tail end of the turning plate cylinder is pivoted with the side wall of the dyeing pond, and a piston of the turning plate cylinder is pivoted with the top ends of the left side surface and the right side surface of the turning plate.
Preferably, the left side wall and the right side wall of the dyeing tank are provided with a plurality of reinforcing brackets for supporting, and the tail end of the flap cylinder is pivoted on the upward surfaces of the reinforcing brackets.
Preferably, the turning plate is an arc-shaped plate matched with the arc of the arc-shaped top cover.
Preferably, the cover turning mechanism is a four-bar linkage mechanism, the outer wall of the dyeing tank is provided with a reinforcing bracket, and the four-bar linkage mechanism has the following structure: an upper rotating shaft and a lower rotating shaft are respectively arranged on the outer side surface of the reinforcing support, an upper connecting rod is arranged between the upper rotating shaft and the upper end of the side surface of the cover plate, a lower connecting rod is arranged between the lower rotating shaft and the lower end of the side surface of the cover plate, and the upper connecting rod and the lower connecting rod are equal in length and are parallel to each other; one end of the upper connecting rod connected with the upper rotating shaft spans the upper rotating shaft to extend to form a driving arm, the end part of the driving arm is connected with a cover plate cylinder, the tail end of the cover plate cylinder is pivoted on a cover plate cylinder seat, the cover plate cylinder seat is arranged on the outer wall of the dyeing tank, and a piston of the cover plate cylinder is connected with the driving arm.
Preferably, the periphery of the bottom surface of the cover plate is provided with a sealing strip matched with the rectangular open frame.
Preferably, the lower side of the cover plate is provided with an elastic flanging which is arranged on the frame at the bottom of the rectangular opening in a pressing mode in an extending mode.
Preferably, the flip mechanism is disposed further outside than the flap mechanism in the left-right direction. The flip mechanism and the flip mechanism are arranged in a left-right staggered manner, so that mutual interference is avoided.
The utility model discloses at the uncovered lock of dyeing pond rectangle and the in-process of opening, through opening and shutting of turning over the board, utilize and dredge the balanced air current of gas pocket, avoid the air current to spray outward from apron and the open gap of rectangle and scald the staff, guarantee production safety.
Drawings
Fig. 1 is a schematic view of a cover plate fastening structure of the present invention.
Fig. 2 is a schematic view of a cover plate opening structure of the present invention.
Fig. 3 is a schematic structural diagram of a in fig. 2 according to the present invention.
In the figure: 1. dyeing tank, 2, arc top cap, 3, rectangle are uncovered, 4, apron, 5, lower connecting rod, 6, lower pivot, 7, upper connecting rod, 8, last pivot, 9, actuating arm, 10, apron cylinder, 11, apron cylinder block, 12, strengthen the support, 13, turn over the board, 14, turn over the board cylinder, 15, turn over board cylinder block, 16, sealing strip, 17, elasticity turn-ups, 18, dredge the gas pocket, 19, swing axle.
Detailed Description
The present invention will be further described with reference to the following specific embodiments and accompanying drawings.
Example (b): a spray-proof cover sealing structure of a dyeing tank, which is shown in figures 1 and 2. This device is including dyeing pond 1, and the top in dyeing pond is arc top cap 2, and one side of arc top cap is equipped with the uncovered 3 of the ascending rectangle of slope. An openable cover plate 4 is buckled at the rectangular opening 3, and a sealing strip 16 matched with the frame of the rectangular opening is arranged on the periphery of the bottom surface of the cover plate 4. The lower side of the cover plate is provided with an elastic flanging 17 which is arranged on the bottom frame of the rectangular opening 3 in a pressing mode in an extending mode. The left and right sides face of the cover plate 4 is symmetrically provided with a flip mechanism respectively, the flip mechanism is a four-bar mechanism, the outer wall of the dyeing tank 1 is provided with an h-shaped reinforcing support 12, and the four-bar mechanism has the following structure: an upper rotating shaft 8 and a lower rotating shaft 6 are respectively arranged on the outer side surface of the reinforcing support 12, an upper connecting rod 7 is arranged between the upper rotating shaft 8 and the upper end of the side surface of the cover plate 4, a lower connecting rod 5 is arranged between the lower rotating shaft 6 and the lower end of the side surface of the cover plate 4, and the upper connecting rod 7 and the lower connecting rod 5 are equal in length and are parallel to each other. One end of the upper connecting rod 7 connected with the upper rotating shaft 8 strides over the upper rotating shaft to extend to form a driving arm 9, the end part of the driving arm is pivoted with a cover plate cylinder 10, the tail end of the cover plate cylinder 10 is pivoted on a cover plate cylinder seat 11, the cover plate cylinder seat is arranged on the outer wall of the dyeing tank 1, and a piston of the cover plate cylinder is connected with the driving arm.
As shown in fig. 1-3, a row of air-releasing holes 18 are transversely arranged on the upper side of the rectangular opening 3 of the arc top cover 2 along the left and right sides, a transversely extending openable turning plate 13 is arranged on the upper side of the air-releasing holes, and the turning plate is an arc plate matched with the radian of the arc top cover. The bottom edge of the turning plate is provided with a swing shaft 19 which extends transversely, and the left side surface and the right side surface of the turning plate are respectively provided with a turning plate mechanism which drives the turning plate to rotate. The turning plate mechanism is a turning plate cylinder 14, the tail end of the turning plate cylinder is pivoted on the horizontal plane of the waist part of the h-shaped reinforcing bracket 12 through a turning plate cylinder seat 15, and a piston of the turning plate cylinder 14 is pivoted with the top ends of the left side surface and the right side surface of the turning plate. In the left and right direction, the flip mechanism is arranged more outside than the flip mechanism, and the flip mechanism does not interfere with each other during operation.
In the process from opening to buckling of the cover plate, the turning plate is kept open, gas extruded by the cover plate can be delivered to the gas-distributing holes to be discharged to the top, and after the cover plate is buckled, the cover plate is turned downwards and covers the gas-distributing holes to close the gas-distributing holes; in the process from buckling to opening the cover plate, the turning plate is opened currently, so that the internal pressure and the external pressure are balanced in the opening process, and the air flow is prevented from being sprayed out from the gap of the cover plate.
Claims (8)
1. The utility model provides a closing cap structure is prevented spouting by dyeing pond, includes the dyeing pond, and the top in dyeing pond is the arc top cap, and one side of arc top cap is equipped with the ascending rectangle of slope uncovered, its characterized in that: the rectangular opening is buckled with an openable cover plate, the left side surface and the right side surface of the cover plate are respectively provided with a flip mechanism, the arc-shaped top cover is transversely provided with a row of gas drainage holes along the left side and the right side above the rectangular opening, a transversely extending openable turnover plate is arranged above the gas drainage holes, the bottom edge of the turnover plate is provided with a transversely extending swing shaft, and the left side surface and the right side surface of the turnover plate are respectively provided with a turnover plate mechanism for driving the turnover plate to rotate.
2. The dyeing bath blowout prevention capping structure according to claim 1, wherein: the turning plate mechanism is a turning plate cylinder, the tail end of the turning plate cylinder is pivoted with the side wall of the dyeing pond, and a piston of the turning plate cylinder is pivoted with the top ends of the left side surface and the right side surface of the turning plate.
3. The dyeing bath blowout prevention capping structure according to claim 2, wherein: the left side wall and the right side wall of the dyeing tank are provided with a plurality of reinforcing supports used as supports, and the tail end of the turning plate cylinder is pivoted on the upward surfaces of the reinforcing supports.
4. A dye-bath blowout-preventing capping structure according to claim 1, 2 or 3, wherein: the turning plate is an arc-shaped plate matched with the arc of the arc-shaped top cover.
5. The structure of the dyeing bath blowout-preventing cover sealing structure according to claim 1 or 2, characterized in that: the flip mechanism is a four-bar mechanism, the outer wall of the dyeing pond is provided with a reinforcing support, and the four-bar mechanism has the following structure: an upper rotating shaft and a lower rotating shaft are respectively arranged on the outer side surface of the reinforcing support, an upper connecting rod is arranged between the upper rotating shaft and the upper end of the side surface of the cover plate, a lower connecting rod is arranged between the lower rotating shaft and the lower end of the side surface of the cover plate, and the upper connecting rod and the lower connecting rod are equal in length and are parallel to each other; one end of the upper connecting rod connected with the upper rotating shaft spans the upper rotating shaft to extend to form a driving arm, the end part of the driving arm is connected with a cover plate cylinder, the tail end of the cover plate cylinder is pivoted on a cover plate cylinder seat, the cover plate cylinder seat is arranged on the outer wall of the dyeing tank, and a piston of the cover plate cylinder is connected with the driving arm.
6. A dye-bath blowout-preventing capping structure according to claim 1, 2 or 3, wherein: and sealing strips matched with the rectangular open frames are arranged on the periphery of the bottom surface of the cover plate.
7. A dye-bath blowout-preventing capping structure according to claim 1, 2 or 3, wherein: the lower side of the cover plate is provided with an elastic flanging which is arranged on the frame at the bottom of the rectangular opening in a pressing mode in an extending mode.
8. A dye-bath blowout-preventing capping structure according to claim 1, 2 or 3, wherein: in the right-left direction, the flip mechanism is disposed more outside than the flap mechanism.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921822923.XU CN211005972U (en) | 2019-10-28 | 2019-10-28 | Dyeing tank prevents spouting closing cap structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921822923.XU CN211005972U (en) | 2019-10-28 | 2019-10-28 | Dyeing tank prevents spouting closing cap structure |
Publications (1)
Publication Number | Publication Date |
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CN211005972U true CN211005972U (en) | 2020-07-14 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201921822923.XU Active CN211005972U (en) | 2019-10-28 | 2019-10-28 | Dyeing tank prevents spouting closing cap structure |
Country Status (1)
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CN (1) | CN211005972U (en) |
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2019
- 2019-10-28 CN CN201921822923.XU patent/CN211005972U/en active Active
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