Marine window hopper of rolling slats and sunshade integration
Technical Field
The utility model relates to the technical field of marine window hoppers, in particular to a rolling shutter and sunshade integrated marine window hopper.
Background
In the field of ship design and manufacturing, a ship window bucket is used as an important component of a ship cabin, not only is the ventilation and lighting functions carried, but also the working environment of a crew and the overall aesthetic property of a ship are directly influenced. Conventional marine window hoppers are often of a split design, i.e., the window hopper itself is manufactured and installed separately from a sun or shade system (e.g., window shades, sun shades, etc.).
The installation position and the mode of the traditional sunshade curtain can limit the full play of the functions of shading, sun screening and the like, and particularly the situation that the traditional sunshade curtain is easy to damage or lose the function under severe sea conditions such as strong wind, sea waves and the like.
Disclosure of utility model
(One) solving the technical problems
Aiming at the defects of the prior art, the utility model provides a rolling curtain and sunshade integrated marine window hopper, which solves the problems in the prior art.
(II) technical scheme
The window curtain and shade integrated marine window curtain comprises a window curtain, an integrated cover box, a window curtain mounting strip and a window curtain sealing plate, wherein a plurality of threaded holes are formed in the end face of one side of the window curtain, the window curtain is convenient to mount integrally at the window frame position of a ship body, the window curtain mounting strip is welded on the other side of the window curtain, the window curtain sealing plate is welded on one side of the window curtain mounting strip, an outwards-opened window curtain mounting groove is formed in the window curtain mounting strip, a curtain plate is arranged in the window curtain mounting groove, an outwards-opened window curtain groove is formed in the window curtain, the window curtain groove is communicated with the window curtain mounting groove, a fabric rolling tube is arranged in the curtain plate, a curtain fabric is arranged on the outer end face of the fabric rolling tube, and a bottom rod is arranged at the lower end of the curtain fabric.
Preferably, the two ends of the curtain plate are provided with mounting codes, and the mounting codes on one side are connected with the fabric winding pipe in a mounting way.
Preferably, the installation code on the other side is provided with a winding pipe motor, and the winding pipe motor is connected with the fabric winding pipe.
Preferably, lifting sliding grooves which are vertically arranged are fixedly arranged on two sides of the lower end face of the curtain plate, a vertical sliding rail is formed by the lifting sliding grooves on two sides, and two ends of the bottom rod are in sliding connection with the sliding rails in the lifting sliding grooves.
Preferably, a power-assisted torsion spring is inserted into the fabric coiled pipe, and the power-assisted torsion spring is connected with the installation code in an installation mode.
Preferably, the lifting sliding grooves on the two sides are internally provided with closed cutting bars, and the bottom rod is internally provided with stop rubber.
Preferably, a stainless steel tension spring is arranged at the central position in the bottom rod, steel wire ropes are respectively arranged and connected at two ends of the stainless steel tension spring, the steel wire ropes are inserted into the closed cutting, and bottom rod side covers are arranged at two ends of the bottom rod.
(III) beneficial effects
The utility model provides a rolling shutter and sunshade integrated marine window hopper. The beneficial effects are as follows:
1. This scheme starts and drives the surface fabric reelpipe through the reelpipe motor and rotate, and then drives the extension or the rolling of (window) curtain surface fabric, realizes the lift effect of (window) curtain surface fabric, and the sill bar that the (window) curtain surface fabric is located the lift spout of both sides through the bottom at this moment plays lift direction and removes effect, and then realizes marine window hopper's integration control.
2. According to the scheme, the steel wire ropes on two sides are tensioned through the stainless steel tension springs, the connection stability is improved, when a worker stops moving the bottom rod, the bottom rod can hover at any height below the curtain plate, and then the curtain lifting of the marine window hopper is realized.
Drawings
FIG. 1 is a schematic view of the appearance of a first embodiment of the present utility model;
FIG. 2 is a schematic diagram of a front view structure of the present utility model;
FIG. 3 is a schematic elevational view of the present utility model;
FIG. 4 is a cross-sectional view taken along the direction A-A in FIG. 3 in accordance with the present utility model;
FIG. 5 is a schematic view of a split structure of the present utility model;
fig. 6 is a schematic diagram of an explosion structure of a second embodiment of the present utility model.
101, A window hopper, 102, a window hopper groove, 104, an integrated cover box, 105, a window hopper mounting strip, 106, a window hopper sealing plate, 107, a bottom rod, 108, a curtain fabric, 109, a mounting code, 110, a roller tube motor, 111, a curtain mounting groove, 112, a lifting chute, 113, a power-assisted torsion spring, 115, a steel wire rope, 116, a closed cutting, 117, stop rubber, 118, a bottom rod side cover, 119, a stainless steel tension spring and 120, and a fabric roller tube.
Detailed Description
The embodiment of the utility model provides a window hopper for a rolling curtain and sun-shading integrated ship, which is a first embodiment of the scheme as shown in fig. 1-5, and comprises a window hopper 101, an integrated cover box 104, a window hopper mounting strip 105 and a window hopper sealing plate 106, wherein a plurality of threaded holes are formed in the end face of one side of the window hopper 101, the window hopper 101 is convenient to mount integrally at a ship window frame position, the window hopper mounting strip 105 is welded on the other side of the window hopper 101, the window hopper sealing plate 106 is welded on one side of the window hopper mounting strip 105, a window curtain mounting groove 111 with an outward opening is formed in the window hopper mounting strip 105, the integrated cover box 104 is arranged in the window curtain mounting groove 111, a window hopper groove 102 with an outward opening is formed in the window hopper 101, the window hopper groove 102 is communicated with the window curtain mounting groove 111, a fabric rolling tube 120 is arranged in the window curtain plate 104, a curtain fabric 108 is arranged on the outer end face of the fabric rolling tube 120, and a bottom rod 107 is arranged at the lower end of the curtain fabric 108.
Further, the two ends of the integrated cover box 104 are provided with mounting codes 109, and the mounting codes 109 on one side are in mounting connection with the fabric coiled pipe 120.
Further, a winding motor 110 is installed on the installation code 109 on the other side, and the winding motor 110 is connected with a fabric winding 120.
It should be further noted that, when the winding motor 110 starts to rotate, the fabric winding 120 can be driven to rotate, and a section of winding motor 110 is provided with a power line connected with an external power source.
Further, two sides of the lower end surface of the integrated cover box 104 are fixedly provided with vertically arranged lifting sliding grooves 112, the lifting sliding grooves 112 on the two sides form a vertical sliding rail, and two ends of the bottom rod 107 are in sliding connection with the sliding rails in the lifting sliding grooves 112.
It should be noted that the lifting chute 112 can be mounted and inserted into the window curtain mounting groove 111.
When the scheme is used, the window bucket 101 is driven to integrally move to the position of the marine window bucket, and after the window bucket is installed and connected with the marine window bucket through the threaded hole on the surface of the window bucket 101, the integrated cover box 104 is inserted into the curtain installation groove 111 to achieve installation and arrangement, and the power line of the winding tube motor 110 is connected with a power supply, after the assembly work is completed, a user can control the starting of the winding tube motor 110 through a remote control device, the winding tube motor 110 is started and drives the fabric winding tube 120 to rotate at the moment, and then the curtain fabric 108 is driven to extend or roll, so that the lifting effect of the curtain fabric 108 is achieved, at the moment, the curtain fabric 108 is located in lifting sliding grooves 112 on two sides through bottom rods 107 at the bottom to achieve lifting and guiding movement effects, and further integrated control of the marine window bucket is achieved.
As shown in fig. 6, in the second embodiment of the present solution, unlike the above embodiment, a booster torsion spring 113 is inserted into the fabric winding tube 120, and the booster torsion spring 113 is mounted and connected with the mounting code 109.
Further, the closing inserts 116 are inserted into the lifting slide grooves 112 on both sides, and the stopper rubber 117 is inserted into the bottom rod 107.
Further, a stainless steel tension spring 119 is arranged at the center position in the bottom rod 107, steel wire ropes 115 are respectively arranged and connected at two ends of the stainless steel tension spring 119, the steel wire ropes 115 are inserted into the closed cutting 116, and bottom rod side covers 118 are arranged at two ends of the bottom rod 107.
It should be further noted that the bottom bar side cover 118 serves to close the mounting of the bottom bar 107.
When the scheme is used, the window hopper 101 is driven to be integrally installed at the position of the window hopper of the ship, after the threaded holes on the surface are connected with the installation of the window hopper of the ship, the integrated cover box 104 is inserted into the curtain installation groove 111 to achieve installation, then, the curtain fabric 108 is manually lifted by a user, at this time, along with lifting of the curtain fabric 108, the power-assisted torsion spring 113 in the fabric winding tube 120 at the top drives to rotate and drive the fabric winding tube 120 to rotate, the curtain fabric 108 winds the outer end face of the fabric winding tube 120, meanwhile, along with the movement of the bottom rod 107, the steel wire ropes 115 on the side are driven to move into the closed cutting 116, the steel wire ropes 115 on the two sides are tightly stretched through the stainless steel tension spring 119, connection stability is improved, and when a worker stops to move the bottom rod 107, the bottom rod 107 can hover at any height below the integrated cover box 104, and further, the curtain lifting of the window hopper of the ship is achieved.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.