SUMMERY OF THE UTILITY MODEL
The utility model provides a radiation-proof door for medical radiology department for overcome the above-mentioned defect among the prior art.
The utility model relates to a purpose and efficiency of radiation-proof door for medical radiology department are reached by following specific technological means:
a radiation shield door for a medical radiology department, comprising: electronic slide rail, electronic slide rail slidable mounting has the radiation protection body, the radiation protection body is including the radiation protection door plant, be equipped with movable inner chamber in the radiation protection door plant, the radiation protection door plant is equipped with the rearmounted slat of giving vent to anger that can jet gas, the radiation protection body still includes function limit curb plate, function limit curb plate is equipped with the radiation protection inner panel, the radiation protection inner panel slide set up in the intracavity in the activity, anti-overflow gasbag strip is installed to radiation protection inner panel bottom, the avris gas blowing portion that can export the air current is installed to radiation protection inner panel bottom bilateral symmetry, the flexible jar that slides is installed to the radiation protection door plant, the connection piece is installed to function avris board outer wall, flexible jar that slides terminal with connection piece fixed connection, electronic slide rail left side is equipped with the avris deckle board.
Further technical scheme, function curb plate is equipped with interior concave part, the radiation protection inner panel install in interior concave part central point puts, radiation protection door plant end is equipped with evagination cooperation portion, evagination cooperation portion can laminate completely with interior concave part.
According to the further technical scheme, the outer convex matching portion is symmetrically provided with two contraction grooves, shielding telescopic bodies are installed in the contraction grooves, and the tail ends of the shielding telescopic bodies are connected to the inner wall of the inner concave portion.
According to the technical scheme, triangular chutes are formed in two side edges of the movable inner cavity, the rear air outlet strip plate is communicated with the movable inner cavity, and air conveying channel plates are arranged on the side walls of the radiation-proof inner plates and communicated with the side air blowing portions.
A further technical scheme, be equipped with the holding tank in the avris deckle board, the holding tank indent shape with the function avris board evagination shape is the same, the avris deckle board is equipped with the butt joint mounting panel, the butt joint mounting panel with electronic slide rail lateral wall fixed connection, tonifying qi gasbag strip is installed to function avris outer wall, tonifying qi gasbag strip communicate in anti-overflow gasbag strip, be equipped with the extrusion sand grip in the holding tank.
According to the further technical scheme, the inner wall of the movable inner cavity is provided with spring grooves, supporting springs are arranged in the spring grooves in an array mode, and the tail ends of the supporting springs abut against the radiation-proof inner plate.
According to the further technical scheme, limiting sliding grooves are formed in the movable inner cavity in an array mode, protruding sliding bodies are arranged on the side wall of the radiation-proof inner plate in a symmetrical array mode, and the protruding sliding bodies are arranged in the limiting sliding grooves in a sliding mode.
According to a further technical scheme, the outer wall of the functional side frame plate is provided with an embedded door handle, and the outer side of the side frame plate is provided with an electric control plate.
According to a further technical scheme, a mark setting part is arranged outside the radiation-proof door plate.
Compared with the prior art, the utility model discloses following beneficial effect has:
through the cooperation setting of radiation protection door plant and function limit curb plate, there is the clearance at the frame position of function limit curb plate and radiation protection door plant under initial condition, and the setting of cooperation activity inner chamber spring unit, thereby realize that the radiation protection inner panel of function limit curb plate can carry out smooth-going sliding effect in the activity inner chamber, thereby with the cooperation of function limit curb plate, can realize in the door closed link, because be connected the setting for elastic sliding between function limit curb plate and the radiation protection door plant, can realize avoiding the radiation protection door plant to slide in the stroke and so that the radiation protection door plant slides and extrudes its scheduling problem and lead to the door plant loss and have the problem that the hard extrusion of door plant takes place the deformation, start the relative radiation protection door plant of drive function limit curb plate through flexible sliding cylinder and carry out reciprocal sliding, thereby can realize in the closing process function limit curb plate and continuously carry out outwards ejecting and retraction, cooperation function limit curb plate terminal camber and subassembly, can realize retracting the effect of realizing its release sliding stroke of pushing out through repeatedly pushing back to small-size stereoplasm sheltering from the thing and realize avoiding small-size stereoplasm thing and sheltering from the problem that there is sheltered from and is closed smoothly and has hidden danger to door body leakproofness and transmission etc. in the stroke.
Can carry out reciprocal action of sliding and cooperate the activity intracavity and pass the gas structure through between function limit curb plate and the radiation protection door plant, realize pushing and replenishing the effect to the intracavity air in the activity through reciprocal in-process radiation protection inner panel that slides, push through passing gas structure and radiation protection inner panel, activity inner chamber bottom structure, can realize carrying out atmospheric pressure output to the radiation protection door plant bottom outside through avris gas blowing portion, thereby realize realizing the action of sliding of cooperation function limit curb plates such as dust piece and hard thing that probably exist in the bottom and realize high-efficient blow-off effect, thereby avoid having the accumulation of dust piece and foreign matter in the door plant downside sliding stroke and shelter from the influence that causes the aggravation loss to the door body sliding transmission and slide the process and continuously can reach the effect that reduces door body and bottom plate wearing and tearing and improve the efficiency of sliding by bottom output air current, the rearmounted slat of cooperation can realize carrying out the air current blowout effect in the stroke of sliding backward side simultaneously, can realize avoiding blowing out the problem that the influence of the follow-up door process of opening process is caused to the rear side of sliding stroke by bottom piece is blown to the influence of air current influence by bottom foreign matter in the closing process.
Set up anti-overflow gasbag strip through radiation protection inner panel bottom, the through-door body is closed completely the back extrusion biography gas structure and is realized carrying out atmospheric pressure to anti-overflow gasbag strip and supply to realize that anti-overflow gasbag strip hugs closely the bottom plate, cooperate the effect of accepting of avris deckle board to function limit curb plate, thereby avoid radiation protection door plant bottom and bottom plate and radiation protection door plant and avris to have the problem that the gap leads to the excessive hidden danger of radiation.
Detailed Description
The following describes embodiments of the present invention in further detail with reference to the drawings and examples. The following examples are intended to illustrate the invention, but are not intended to limit the scope of the invention.
In the description of the present invention, "a plurality" means two or more unless otherwise specified; the terms "upper", "lower", "left", "right", "inner", "outer", "front", "rear", "head", "tail", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are merely for convenience of description and simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," "third," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "connected" and "connected" are to be interpreted broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; may be directly connected or indirectly connected through an intermediate. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Example (b):
as shown in figures 1 to 4:
the utility model provides a radiation-proof door for medical radiology departments.
Referring to fig. 1 to 2, including: electronic slide rail 11, electronic slide rail 11 slidable mounting has radiation protection body 15, radiation protection body 15 is including radiation protection door plant 16, be equipped with movable inner chamber 28 in the radiation protection door plant 16, radiation protection door plant 16 is equipped with the rearmounted slat 33 of giving vent to anger that can jet gas, radiation protection body 15 still includes function curb plate 20, function curb plate 20 is equipped with radiation protection inner panel 25, radiation protection inner panel 25 slides and sets up in movable inner chamber 28, anti-overflow gasbag strip 26 is installed to radiation protection inner panel 25 bottom, avris gas blowing portion 27 that can export the air current is installed to radiation protection inner panel 25 bottom bilateral symmetry, flexible sliding cylinder 18 is installed to radiation protection door plant 16, connecting piece 19 is installed to function curb plate 20 outer wall, flexible sliding cylinder 18 is terminal and connecting piece 19 fixed connection, electronic slide rail 11 left side is equipped with avris board 13.
The radiation-proof door panel 16 is controlled to slide by starting the electric slide rail 11 so as to realize the effect of closing and opening the radiation chamber, the radiation-proof door panel 16 and the functional side plate 20 are arranged in a matched manner, a gap exists between the frame part of the functional side plate 20 and the radiation-proof door panel 16 in an initial state, and the functional side plate 20 is arranged in a matched manner with a spring assembly in the movable inner cavity 28, so that the radiation-proof inner plate 25 of the functional side plate 20 can smoothly slide in the movable inner cavity 28, and is matched with the functional side plate 20, and the door closing link can be realized, because the functional side plate 20 and the radiation-proof door panel 16 are arranged in an elastic sliding connection manner, the problems that the radiation-proof door panel 16 slides in the sliding stroke, the radiation-proof door panel 16 is extruded and the like, so that the door panel loss is caused, and the door panel is hard to be extruded and deform are caused can be solved, meanwhile, the assembly mode of the radiation-proof door panel 16 and the functional side plate 20 is matched with the control effect of the telescopic sliding cylinder 18, so that the functional side plate 20 is driven to slide in a reciprocating manner relative to the radiation-proof door panel 16 by starting the telescopic sliding cylinder 18 in the closing process, the functional side plate 20 can continuously perform outward ejection and retraction actions in the closing process, the tail end arc shape and the assembly of the functional side plate 20 are matched, the effect of pushing out the small hard sheltering object in a sliding stroke by repeatedly pushing and retracting the small hard sheltering object can be realized, the problems of shielding influence on smooth closing, hidden dangers on door body sealing performance, transmission and the like in the sliding stroke of the small hard sheltering object can be solved, the reciprocating sliding action can be performed between the functional side plate 20 and the radiation-proof door panel 16 and the air transmission structure in the movable inner cavity 28 is matched, and the pushing and supplementing effects on the air in the movable inner cavity 28 can be realized by the radiation-proof inner plate 25 in the reciprocating sliding process, the pushing is through passing the gas structure and protecting against radiation the inner panel 25, the activity cavity 28 bottom structure, can realize through the avris portion of blowing 27 to protect against radiation 16 bottom outside carry on the atmospheric pressure output, thereby realize the action of sliding of cooperation function curb plate 20 such as dust piece and hard thing that probably exists in the bottom realizes the high-efficient effect of blowing off, thereby avoid having the accumulation of dust piece and foreign matter sheltering from in the door plant downside sliding stroke and lead to the fact the influence of the transmission of influence aggravation loss to the door body sliding, the process of sliding continues to be can reach the effect that reduces door body and bottom plate wearing and tearing and improve the slip efficiency by the bottom output air current, cooperate the rearmounted air outlet strip 33 to realize carrying on the air current blowout effect to the rear side in the sliding stroke, can realize avoiding blowing off the foreign matter by the bottom and being influenced by the air current and blown to the rear side of sliding stroke and cause the problem of influence to the follow-up door process, and can realize clearing up the dust piece shelter from the existence of the stroke of sliding and the dust piece shelter from the door body in the back in the opening process, set up air bag strip 26 through the bottom of the door body extrusion pass the air conduction structure after the door is closed completely, thereby realize the air bag anti-overflow air bag 26, thereby the door plant bears the radiation function of door panel outside and the radiation bottom plate outside and the radiation bottom plate, thereby there is the radiation bottom plate outside has the radiation problem that there is the radiation hidden danger that the door panel 16 that the radiation bottom board 13 that the radiation hidden danger of the overflow-proof seam exists.
Preferably, referring to fig. 2, the functional side plate 20 is provided with an inner concave portion 35, the radiation-proof inner plate 25 is mounted at the center of the inner concave portion 35, and the end of the radiation-proof door panel 16 is provided with an outer convex matching portion 34, and the outer convex matching portion 34 can be completely attached to the inner concave portion 35.
The functional side plate 20 and the radiation-proof door panel 16 can be completely combined into a whole door panel with a flat surface through the arrangement of the inner concave part 35 and the outer convex matching part 34.
Preferably, referring to fig. 2, the male fitting portion 34 is symmetrically provided with two contracting grooves 36, a shielding telescopic body 37 is installed in the contracting grooves 36, and the end of the shielding telescopic body 37 is connected to the inner wall of the female portion 35.
The shielding of the internal structure is realized by the shielding telescopic body 37, the aesthetic degree is improved, and the functional side plate 20 and the radiation-proof door panel 16 can be contracted in the convex matching part 34 after being combined, so that the combination of the functional side plate 20 and the radiation-proof door panel 16 is not influenced.
Preferably, referring to fig. 2, triangular chutes 31 are provided on both sides of the movable cavity 28, the rear air outlet strip plate 33 is communicated with the movable cavity 28, an air channel plate 32 is provided on the side wall of the radiation-proof inner plate 25, and the air channel plate 32 is communicated with the side blowing part 27.
The triangular chute 31 is arranged to realize that part of the air flow can be poured to the outer side of the radiation-proof door panel 16 through the side blowing part 27 and the triangular chute 31 in the sliding process of the radiation-proof inner panel 25 in the movable inner cavity 28, and meanwhile, the triangular chute 31 can avoid the problem that the air flow output efficiency is influenced by the attachment of the side blowing part 27 and the inner wall of the movable inner cavity 28.
Preferably, referring to fig. 4, a holding groove 40 is provided in the side frame plate 13, the concave shape of the holding groove 40 is the same as the convex shape of the functional side plate 20, the side frame plate 13 is provided with a butt joint mounting plate 42, the butt joint mounting plate 42 is fixedly connected with the side wall of the electric slide rail 11, an air supply airbag strip 21 is mounted on the outer wall of the functional side plate 20, the air supply airbag strip 21 is communicated with the anti-overflow airbag strip 26, and an extrusion protruding strip 41 is provided in the holding groove 40.
Can realize stretching into the sealed effect in back to it through holding tank 40 to the effect that holds of 20 limit curb plates of function limit curb plate, in function limit curb plate 20 got into holding tank 40 simultaneously, tonifying qi gasbag strip 21 offseted with extrusion sand grip 41, realized with tonifying qi gasbag strip 21 internal gas pressure push in anti-overflow gasbag strip 26 to realize improving sealed anti-overflow effect.
Preferably, referring to fig. 2, the inner wall of the movable inner cavity 28 is provided with a spring groove 38, support springs 39 are mounted in the spring groove 38 in an array manner, and the ends of the support springs 39 abut against the radiation-proof inner plate 25.
The problem of hard extrusion collision is solved by realizing the function of the initial state through the supporting spring 39, and realizing the elastic arrangement through the gap between the side plate 20 and the radiation-proof door panel 16.
Preferably, referring to fig. 2 and fig. 3, the movable inner cavity 28 is provided with a limiting sliding groove 29 in an array, the side wall of the radiation-proof inner plate 25 is provided with a protruding sliding body 30 in a symmetrical array, and the protruding sliding body 30 is slidably disposed in the limiting sliding groove 29.
The sliding stability and smoothness of the functional side plates 20 and the radiation-proof inner plates 25 are improved by the inlaid sliding arrangement of the limiting sliding grooves 29 and the protruding sliding bodies 30.
Preferably, referring to fig. 1, the functional side panel 20 is provided with an embedded door handle 22 on the outer wall thereof, and an electric control panel 14 is provided on the outer side of the side frame 13.
Preferably, referring to fig. 1, the radiation-proof door panel 16 is externally provided with a sign setting part 17.
The embodiments of the present invention have been presented for purposes of illustration and description, and are not intended to be exhaustive or limited to the invention in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiment was chosen and described in order to best explain the principles of the invention and the practical application, and to enable others of ordinary skill in the art to understand the invention for various embodiments with various modifications as are suited to the particular use contemplated.