Aluminum alloy door and window easy to drain water
Technical Field
The utility model relates to an aluminum alloy door and window technical field especially relates to an aluminum alloy door and window of easy drainage.
Background
An aluminum alloy door and window is a door and window made of aluminum alloy extruded sections as frames, stiles and sash materials, and is called an aluminum alloy door and window, and is called an aluminum door and window for short. Aluminum alloy door and window includes that use the aluminum alloy to make the atress member (the member that bears and transmit dead weight and load) substrate and timber, plastics complex door and window, be called for short aluminum-wood composite door and window, aluminum-plastic composite door and window, when raining in the open air, in order to prevent that the rainwater from flowing to indoor along aluminum alloy door and window, can all set up drainage structures in aluminum alloy door and window inside usually, and current aluminum alloy door and window's drainage mode divide into open drainage and implicit expression drainage, implicit expression drainage makes aluminum alloy door and window whole comparatively pleasing to the eye, the outlet is hidden inside the window frame, but still can't avoid dust in some mosquitos and the air to get into inside aluminum alloy door and window along the outlet, lead to aluminum alloy door and window inside runner jam, be.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the defects existing in the prior art and providing an aluminum alloy door and window easy to drain.
In order to achieve the above purpose, the utility model adopts the technical scheme that: the utility model provides an aluminum alloy door and window of easy drainage, includes side frame, underframe frame, window glass and sets up at inside a plurality of annular holes and a plurality of square holes that leak of underframe frame, fixedly connected with triangle-shaped shell on the position in the corresponding annular hole that leaks of underframe frame inner wall, the triangle-shaped shell is located the below in the annular hole that leaks, and the preceding terminal surface of triangle-shaped shell rotates through coupling mechanism and installs and hide the plate-like shelter from, fixedly connected with triangle-shaped casing on the position in the corresponding square hole that leaks of underframe frame inner wall, the triangle-shaped casing is located the place ahead in square hole that leaks, and rotates between the inside corresponding side edge of triangle-shaped casing and be connected with the cover plate, the inner wall of cover plate and underframe frame is laminated mutually.
Preferably, the connecting mechanism comprises two connecting blocks which are symmetrically arranged, the two connecting blocks are respectively and fixedly connected to the upper edges of the side walls at the two ends of the triangular shell, and the baffle plate is rotatably connected between the two connecting blocks.
Preferably, an integrally formed structure is arranged between the two connecting blocks, the triangular shell and the bottom frame.
Preferably, an integrally formed structure is arranged between the triangular shell and the bottom frame.
Preferably, a plurality of the annular water leakage holes are distributed on the inner wall of the bottom frame in a linear array mode, and a plurality of the square water leakage holes are distributed on the inner wall of the bottom frame in a linear array mode.
Preferably, the shielding plate and the shielding plate are made of plastics.
Compared with the prior art, the utility model discloses following beneficial effect has: by arranging the triangular shell, the connecting mechanism, the shielding plate, the triangular shell and the shielding plate, when raining outdoors, rainwater falling on the concealed drainage aluminum alloy door window can flow out along the annular water leakage hole and the square water leakage hole in the bottom frame, the rainwater flowing out along the annular water leakage hole can flow along the bottom end in the triangular shell, the shielding plate rotatably arranged at the port of the triangular shell is flushed away to enable the rainwater to be discharged outside, the rainwater flowing out along the square water leakage hole can directly flush the shielding plate rotatably connected in the triangular shell to enable the rainwater to be discharged outside, the triangular shell can play a certain role in preventing wind for the shielding plate, the shielding plate can be prevented from blowing the shielding plate in the direction opposite to the flowing direction of the rainwater in the bottom frame when the wind blows the rain, the rainwater is prevented from being discharged slowly, and the shielding plate can seal the port of the triangular shell due to the influence of gravity when the weather is normal, the cover plate can seal the square water leakage hole due to the influence of gravity, dust in mosquitoes and air can be prevented from flowing into the inside of the bottom frame along the annular water leakage hole and the square water leakage hole respectively, so that the effect that dust in mosquitoes and air can be prevented from entering the inside of the aluminum alloy door window along the drainage port in the hidden drainage aluminum alloy door window to cause the blockage of the internal flow channel of the aluminum alloy door window is achieved, and normal drainage of the aluminum alloy door window easy to hidden drainage when rains is achieved.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a view showing the annular water leakage holes and the square water leakage holes of the present invention;
fig. 3 is another perspective view of the present invention;
FIG. 4 is a schematic view of the structure at A in FIG. 3;
fig. 5 is a view showing the triangular shell and the cover plate of the present invention.
In the figure: 1. a side frame; 2. a window glass; 3. a window jamb; 4. a bottom frame; 5. an annular water leakage hole; 6. a square water leakage hole; 7. a triangular housing; 8. a shutter plate; 9. connecting blocks; 10. a triangular housing; 11. a cover plate.
Detailed Description
The following description is presented to disclose the invention so as to enable any person skilled in the art to practice the invention. The preferred embodiments in the following description are given by way of example only, and other obvious variations will occur to those skilled in the art.
An aluminum alloy door and window easy for water drainage, as shown in fig. 1-5, including side frame 1, bottom frame 4, window frame 3, window glass 2 and a plurality of annular water leakage holes 5 and a plurality of square water leakage holes 6 of setting inside bottom frame 4, fixedly connected with triangle-shaped shell 7 on the position that bottom frame 4 inner wall corresponds annular water leakage hole 5, triangle-shaped shell 7 is located the below of annular water leakage hole 5, and the preceding terminal surface of triangle-shaped shell 7 rotates through coupling mechanism and installs and hide plate 8, fixedly connected with triangle-shaped casing 10 on the position that bottom frame 4 inner wall corresponds square water leakage hole 6, triangle-shaped casing 10 is located the place ahead of square water leakage hole 6, and rotate between the inside corresponding side edge of triangle-shaped casing 10 and be connected with cover plate 11, cover plate 11 is laminated with the inner wall of bottom frame 4.
The connecting mechanism comprises two connecting blocks 9 which are symmetrically arranged, the two connecting blocks 9 are respectively fixedly connected to the upper edges of the two side walls at the two ends of the triangular shell 7, the baffle plate 8 is rotatably connected between the two connecting blocks 9, and the baffle plate 8 is convenient to rotate and is connected to the port of the triangular shell 7 through the connecting blocks 9.
The two connecting blocks 9, the triangular shell 7 and the bottom frame 4 are of an integrally formed structure, and the stability between the two connecting blocks 9, the triangular shell 7 and the bottom frame 4 is improved.
The triangular shell 10 and the bottom frame 4 are of an integrally formed structure, so that the stability between the triangular shell 10 and the bottom frame 4 is improved.
A plurality of annular water leakage holes 5 linear array are laid on the inner wall of bottom frame 4, a plurality of square water leakage holes 6 linear array are laid on the inner wall of bottom frame 4, a plurality of annular water leakage holes 5 and a plurality of square water leakage holes 6 are evenly distributed on bottom frame 4, and drainage is facilitated.
The shielding plate 8 and the covering plate 11 are made of plastics, the shielding plate 8 and the covering plate 11 are lighter in weight, and rainwater flowing out of the inside of the bottom frame 4 can better separate the shielding plate 8 and the covering plate 11.
The working principle is as follows: by arranging the triangular shell 7, the connecting mechanism, the shielding plate 8, the triangular shell 10 and the covering plate 11, when raining outdoors, rainwater falling on the hidden drainage aluminum alloy door window can flow out along the annular water leakage hole 5 and the square water leakage hole 6 in the bottom frame 4, the rainwater flowing out along the annular water leakage hole 5 can flow along the inner bottom end of the triangular shell 7, the shielding plate 8 rotatably arranged at the port of the triangular shell 7 is flushed away, so that the rainwater is discharged to the outside, the rainwater flowing out along the square water leakage hole 6 can directly flush the covering plate 11 rotatably connected in the triangular shell 10, so that the rainwater is discharged to the outside, the triangular shell 10 can play a certain role of preventing wind for the covering plate 11, the wind force can prevent the covering plate 11 from blowing in the direction opposite to the flowing direction of the rainwater in the bottom frame 4 when the wind blows the raining, the rainwater is prevented from being slowly discharged, and in normal weather, the baffle plate 8 can seal the port of the triangular shell 7 due to the influence of gravity, the cover plate 11 can seal the square water leakage hole 6 due to the influence of gravity, dust in mosquitoes and air can be prevented from flowing into the bottom frame 4 along the annular water leakage hole 5 and the square water leakage hole 6 respectively, and therefore the effect that dust in mosquitoes and air can be prevented from entering the aluminum alloy door and window along the drainage port in the hidden drainage aluminum alloy door and window to block the internal flow channel of the aluminum alloy door and window is achieved, and normal drainage of the hidden drainage aluminum alloy door and window during raining is facilitated.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the principles of the present invention may be applied to any other embodiment without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.