WO2020133125A1 - 一种转运平车抢救护理装置 - Google Patents

一种转运平车抢救护理装置 Download PDF

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Publication number
WO2020133125A1
WO2020133125A1 PCT/CN2018/124578 CN2018124578W WO2020133125A1 WO 2020133125 A1 WO2020133125 A1 WO 2020133125A1 CN 2018124578 W CN2018124578 W CN 2018124578W WO 2020133125 A1 WO2020133125 A1 WO 2020133125A1
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Prior art keywords
square support
square
rescue
rack
parts
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PCT/CN2018/124578
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English (en)
French (fr)
Inventor
姚勤勤
姚小燕
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姚勤勤
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Application filed by 姚勤勤 filed Critical 姚勤勤
Priority to ZA2020/03572A priority Critical patent/ZA202003572B/en
Publication of WO2020133125A1 publication Critical patent/WO2020133125A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61GTRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
    • A61G1/00Stretchers
    • A61G1/02Stretchers with wheels
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61GTRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
    • A61G1/00Stretchers
    • A61G1/04Parts, details or accessories, e.g. head-, foot-, or like rests specially adapted for stretchers
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09DCOATING COMPOSITIONS, e.g. PAINTS, VARNISHES OR LACQUERS; FILLING PASTES; CHEMICAL PAINT OR INK REMOVERS; INKS; CORRECTING FLUIDS; WOODSTAINS; PASTES OR SOLIDS FOR COLOURING OR PRINTING; USE OF MATERIALS THEREFOR
    • C09D161/00Coating compositions based on condensation polymers of aldehydes or ketones; Coating compositions based on derivatives of such polymers
    • C09D161/04Condensation polymers of aldehydes or ketones with phenols only
    • C09D161/06Condensation polymers of aldehydes or ketones with phenols only of aldehydes with phenols
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09DCOATING COMPOSITIONS, e.g. PAINTS, VARNISHES OR LACQUERS; FILLING PASTES; CHEMICAL PAINT OR INK REMOVERS; INKS; CORRECTING FLUIDS; WOODSTAINS; PASTES OR SOLIDS FOR COLOURING OR PRINTING; USE OF MATERIALS THEREFOR
    • C09D7/00Features of coating compositions, not provided for in group C09D5/00; Processes for incorporating ingredients in coating compositions
    • C09D7/40Additives
    • C09D7/60Additives non-macromolecular
    • C09D7/61Additives non-macromolecular inorganic
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08KUse of inorganic or non-macromolecular organic substances as compounding ingredients
    • C08K3/00Use of inorganic substances as compounding ingredients
    • C08K3/18Oxygen-containing compounds, e.g. metal carbonyls
    • C08K3/20Oxides; Hydroxides
    • C08K3/22Oxides; Hydroxides of metals
    • C08K2003/2237Oxides; Hydroxides of metals of titanium
    • C08K2003/2241Titanium dioxide
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08KUse of inorganic or non-macromolecular organic substances as compounding ingredients
    • C08K3/00Use of inorganic substances as compounding ingredients
    • C08K3/18Oxygen-containing compounds, e.g. metal carbonyls
    • C08K3/24Acids; Salts thereof
    • C08K3/26Carbonates; Bicarbonates
    • C08K2003/265Calcium, strontium or barium carbonate

Definitions

  • the present invention relates to the technical field of medical equipment, and more specifically, it relates to a rescue device for the rescue of a flat car.
  • the bedside of critically ill patients is equipped with monitors, central monitors, multifunctional respiratory therapy machines, anesthesia machines, electrocardiographs, defibrillators, pacemakers, infusion pumps, micro-syringes, tracheal intubations and tracheostomy .
  • a rescue and care device for a transport flat car which can be installed at the edge of the transport flat car when it is used, and can be disassembled and stored when it is not suitable, and can be placed separately for the items needed for rescue after installation.
  • the object of the present invention is to provide a rescue device for the rescue of a flat car, which can be conveniently installed at the edge of the flat car, and after installation, the items required for rescue can be placed in a classified manner, so that they are neatly placed , Brings convenience to patients and medical staff, can be moved horizontally, easy to move to one side when not in use, to avoid occupying the space of the flat car, the angle of the placement frame is easy to adjust, so that the angle of the medical instrument can be adjusted, and the placement frame can be easily adjusted
  • the height can be applied to flat cars of different heights, and can be disassembled and stored when not in use.
  • the present invention provides the following technical solutions:
  • a rescue and care device for a transport flat car includes a square support beam, and two ends of the square support beam are symmetrically installed with fixing bolts through fixing bolts, and the inner bottom of the fixing bolts is provided with fastening bolts.
  • the external sliding sleeve of the square support beam is provided with a square base, the outer side of the square base is provided with a locking bolt, and the inner side of the square base is provided with a clamping slot, and a pad block is welded in the center of the clamping slot, the pad A cover plate is installed on the upper part of the block through a countersunk head bolt, and two sets of sliding units are clamped between the clamping slot and the cover plate, and the upper ends of the two sets of the sliding units are fixedly installed with a vertical rod, and the upper end of the vertical rod
  • the outer part extending to the upper part of the card slot is fixedly connected to the bottom of the square support shell, and the inside of the square support shell is fixedly installed with a cross bar through two first rolling bearings
  • the device can be conveniently installed on the edge of the flat car through the use of quilted block and fastening bolts. After installation, the required items for rescue can be sorted and placed neatly.
  • Both the patient and the medical staff bring convenience, so that the placing rack can be moved horizontally, it is convenient to move to one side when not in use, to avoid occupying the space of the flat car, the angle of the square support shell can be adjusted by the sliding unit, and then the placing rack angle can be adjusted It is convenient to adjust the angle of the medical instrument placed on the upper part of the placement rack, and it is convenient to drive the screw rod to rotate by operating the handle, thereby adjusting the height of the placement rack, so that the device can be applied to flat cars of different heights, and can be detached and stored when it is not suitable.
  • the sliding unit includes a cylindrical slider whose upper end is in contact with the top wall of the slot and the bottom of the cover plate respectively, and an installation cavity is opened inside the bottom end of the cylindrical slider, and the inner top of the installation cavity
  • a first spring seat is centrally installed at the bottom of the wall, the bottom of the first spring seat is fixedly connected to the upper end of the spring, the spring is disposed inside the installation cavity, and the bottom end of the spring is fixedly connected to the upper part of the second spring seat,
  • the bottom of the second spring seat is fixedly connected to the upper portion of the arc-shaped support block, the upper portion of the arc-shaped support block extends into the bottom of the installation cavity, and the arc-shaped portion of the arc-shaped support block is in contact with the bottom wall of the slot conflict.
  • the square support shell can be rotated, and the angle of the placing rack can be adjusted. Since the spring is provided between the cylindrical slider and the arc-shaped support block, the upper end of the cylindrical slider and the top of the slot are respectively The wall and the bottom of the cover plate conflict with each other, and the arc-shaped portion of the arc-shaped support block conflicts with the bottom wall of the clamping slot, thereby preventing the square support shell from rotating freely on its own, effectively increasing the stability of the device.
  • the upper part of the cylindrical slider is fixedly connected to the bottom end of the upright rod, and a gap for movement of the upright rod is reserved at the edge of the cover plate and the edge of the clamping slot.
  • the outer sleeve of the operation handle is provided with a rubber sleeve.
  • the static friction force between the hand and the operation handle can be increased, thereby preventing slippage between the hand and the operation handle, and making the device operate stably.
  • the placing rack is a box with an open structure on both the upper side and one side, and a partition is fixedly installed in the middle of the placing rack.
  • two through holes are symmetrically opened on the rear side wall of the placing rack, and the two through holes are symmetrically distributed above and below the partition.
  • the upper surface of the placing rack is also provided with a non-slip coating, which is prepared by the following method:
  • step S2 Put the mixed powder material, silane coupling agent and methanol solvent prepared in step S1 in a blender for stirring for 10-20min, and the stirring speed of the blender is set to 300-500r/min;
  • step S3 After the mixer in step S2 stops working, add calcium carbonate powder and titanium dioxide powder, reset the stirring time for 8-12 minutes, the temperature is 50-60°C, and the stirring speed is 400-600r/min to prepare a non-slip coating ;
  • the frequency of the ultrasonic cleaning machine is set to 30-50KHz, and the temperature is set to 50-60°C;
  • step S6 Place the rack after spraying the non-slip paint in step S5 in the drying room, and dry by hot air drying, and the drying temperature is set to 40-60°C.
  • the instrument placed on the upper part of the placing rack is not easy to fall down, thereby preventing the instrument from being broken.
  • the particle diameter of the mixed powder material prepared in step S1 is not greater than 0.06 mm.
  • the present invention mainly has the following beneficial effects:
  • the two ends of the square supporting beam are symmetrically installed with fixing bolts through fixing bolts.
  • the inner bottom of the fixing bolts is provided with fastening bolts, which can be conveniently matched with the fastening bolts.
  • the device is fixedly installed on the edge of the flat car. After installation, it can be classified and placed for rescue items, so that it is neatly placed, which brings convenience to patients and medical staff, and can be disassembled and stored when not in use;
  • a locking bolt is provided on the outer side of the square base, so that the placing rack can be moved horizontally, which is convenient for moving the device to the side when not in use, avoiding Occupy flat car space;
  • two sets of sliding units are clamped between the clamping slot and the cover plate, and the upper ends of the two sets of sliding units are fixedly installed with uprights, and the upper ends of the uprights extend to the upper outside of the clamping slot and the square support shell
  • the bottom of the body is fixedly connected, and the angle of the square support shell can be adjusted by the sliding unit, and then the angle of the placement rack can be adjusted, which is convenient for the adjustment of the angle of the medical instrument placed on the top of the placement rack;
  • a crossbar is fixedly installed inside the square support housing through two first rolling bearings, one end of the crossbar extends to the outside of the square support housing and is fixedly connected to one side of the operating handle, and the crossbar is fixedly installed
  • the driven bevel gears are provided with two, and the upper part of the two driven bevel gears are connected with vertically arranged threaded rods.
  • the threaded rod is fixed on the top wall of the square support shell through the second rolling bearing, the upper end of the threaded rod extends to the upper part of the square support shell, the outer part is screwed inside the sleeve, and the sleeve is provided on the square support Above the casing, and the upper end of the sleeve is fixedly connected to the bottom of the placing frame, it is convenient to drive the screw rod to rotate by operating the handle, and then adjust the height of the placing frame, so that the device can be applied to flat cars of different heights.
  • FIG. 1 is a schematic structural diagram of an embodiment of the present invention
  • FIG. 2 is a schematic sectional view of FIG. 1;
  • FIG. 3 is a schematic diagram of the enlarged structure at A in FIG. 2;
  • Figure 4 is a rear view of Figure 1;
  • FIG. 5 is a schematic structural diagram of a sliding unit according to an embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of a square base according to an embodiment of the present invention.
  • a rescue device for transporting flat cars includes a square support beam 1, two ends of the square support beam 1 are symmetrically mounted with fixing bolts 4 through fixing bolts 4
  • the inner bottom of the block 3 is provided with fastening bolts 5
  • the square sliding beam 1 is externally sleeved with a square base 2
  • a locking bolt 14 is provided on the outer side of the square base 2
  • the square base 2 is opened inside
  • a pad 22 is welded in the middle of the clamping slot 23
  • a cover plate 20 is installed on the upper part of the pad 22 through a countersunk bolt 21, and the clamping slot 23 and the cover plate 20 are snap-fitted
  • There are two sets of sliding units 24, and the upper part of the two sets of sliding units 24 are fixedly installed with a pole 6, and the upper end of the pole 6 extends to the outside of the upper part of the slot 23 and is fixedly connected to the bottom of the square support shell 7,
  • a crossbar 9 is fixedly installed inside the square support housing
  • the driven bevel gear 17 is provided with two, and two driven bevel gears
  • the upper part of the bevel gear 17 is connected with a vertically arranged threaded rod 16.
  • the threaded rod 16 is provided with two, and the threaded rod 16 is fixed on the top wall of the square support housing 7 by a second rolling bearing 15.
  • the upper end of the rod 16 extends to the upper part of the square support housing 7 and is screwed inside the sleeve 10.
  • the sleeve 10 is disposed above the square support housing 7, and the upper end of the sleeve 10 and the bottom of the placement frame 11 For fixed connection, the placing rack 11 is arranged above the square support shell 7.
  • the device can be conveniently installed on the edge of the flat car through the quilt-shaped block 3 and the fastening bolt 5, so that it can be placed neatly, which is convenient for patients and medical staff. It can also be disassembled and stored when not in use.
  • the rack 11 can be moved horizontally, and the angle of the square support housing 7 can be adjusted by the sliding unit 24, and then the angle of the placement rack 11 can be adjusted to facilitate the adjustment of the angle of the medical instrument placed on the top of the placement rack 11 and to facilitate the rotation of the threaded rod 16 by operating the handle 8 , And then adjust the height of the placing rack 11 so that the device can be applied to flat cars of different heights.
  • the sliding unit 24 includes a cylindrical slider 25 whose upper end is in contact with the inner top wall of the slot 23 and the bottom of the cover plate 20 respectively, and a mounting cavity 26 is opened inside the bottom end of the cylindrical slider 25,
  • a first spring seat 28 is centrally installed at the bottom of the inner top wall of the installation cavity 26, the bottom of the first spring seat 28 is fixedly connected to the upper end of the spring 30, the spring 30 is disposed inside the installation cavity 26, and the spring
  • the bottom end of 30 is fixedly connected to the upper portion of the second spring seat 29, and the bottom of the second spring seat 29 is fixedly connected to the upper portion of the arc-shaped support block 27, and the upper portion of the arc-shaped support block 27 extends into the installation cavity 26 Inside the bottom, and the arc-shaped portion of the arc-shaped support block 27 is in contact with the bottom wall of the slot 23.
  • the square support housing 7 can be rotated, and the angle of the placement frame 11 can be adjusted. Since the spring 30 is provided between the cylindrical slider 25 and the arc-shaped support block 27, the upper ends of the cylindrical slider 25 and the slot 23 are respectively The top wall and the bottom of the cover plate 20 are in conflict, and the arc-shaped portion of the arc-shaped support block 27 is in conflict with the bottom wall of the clamping groove 23, so that the square support housing 7 cannot rotate at will, effectively increasing the stability of the device.
  • the upper part of the cylindrical slider 25 is fixedly connected to the bottom end of the upright rod 6, and the edge of the cover plate 20 and the edge of the clamping groove 23 are reserved for the movement of the upright rod 6. It is convenient for the vertical rod 6 to move under the guidance of the gap, thereby adjusting and adjusting the angle of the placing rack 11.
  • the outer sleeve of the operation handle 8 is provided with a rubber sleeve.
  • the static friction force between the hand and the operating handle 8 can be increased, thereby preventing slippage between the hand and the operating handle 8 and making the device stable in operation.
  • the placing rack 11 is a box with an open structure on both the upper side and one side, and a partition 13 is fixedly installed in the middle of the placing rack 11.
  • a variety of instruments that need to be used when rescuing patients in the Intensive Care Unit are sorted and placed, so that the surroundings of the flat car are clean and tidy, and at the same time it is convenient for medical personnel to use the corresponding instruments.
  • two through holes 12 are symmetrically opened on the rear side wall of the placing frame 11, and the two through holes 12 are symmetrically distributed above and below the partition 13.
  • the two through-holes 12 are used to insert cables, so that the placement frame 11 will not be entangled with cables everywhere, which is conducive to medical personnel to treat patients smoothly.
  • the upper surface of the placing rack 11 is also provided with a non-slip coating, which is prepared by the following method:
  • step S2 Put the mixed powder material, silane coupling agent and methanol solvent prepared in step S1 in a blender and stir for 10 minutes, the stirring speed of the blender is set to 300 r/min;
  • step S3 After the mixer in step S2 stops working, add calcium carbonate powder and titanium dioxide powder, reset the stirring time for 8 minutes, the temperature is 50°C, and the stirring speed is 400r/min to prepare a non-slip coating;
  • the frequency of the ultrasonic cleaning machine is set to 30KHz and the temperature is set to 50°C;
  • step S6 Place the rack after spraying the non-slip paint in step S5 in the drying room, and dry by hot air drying, and the drying temperature is set to 40°C.
  • the instrument placed on the upper part of the placing rack 11 is not easy to fall down, so that the instrument can be prevented from being broken.
  • the particle diameter of the mixed powder material prepared in step S1 is not greater than 0.06 mm.
  • Example 2 The difference from Example 1 is the preparation of the anti-skid coating.
  • the specific preparation method is as follows: the following raw materials are weighed in parts by weight: 90 parts of phenolic resin, 25 parts of silane coupling agent, 15 parts of polyamide resin, calcium carbonate 10 parts of powder, 4 parts of titanium dioxide powder, 70 parts of methanol solvent;
  • step S2 Put the mixed powder material, silane coupling agent and methanol solvent prepared in step S1 in a blender for 15 minutes, and the stirring speed of the blender is set to 400 r/min;
  • step S3 After the mixer in step S2 stops working, add calcium carbonate powder and titanium dioxide powder, reset the stirring time for 10 minutes, the temperature is 55°C, and the stirring speed is 500r/min to prepare a non-slip coating;
  • the frequency of the ultrasonic cleaning machine is set to 40KHz and the temperature is set to 55°C;
  • step S6 Place the rack after spraying the non-slip paint in step S5 in the drying room, and dry by hot air drying, and the drying temperature is set to 50°C.
  • Example 2 The difference from Example 1 is the preparation of the anti-slip coating.
  • the specific preparation method is as follows: the following raw materials are weighed in parts by weight: 100 parts of phenolic resin, 30 parts of silane coupling agent, 20 parts of polyamide resin, calcium carbonate 12 parts of powder, 5 parts of titanium dioxide powder, 80 parts of methanol solvent;
  • step S2 Put the mixed powder material, silane coupling agent and methanol solvent prepared in step S1 into a blender for stirring for 20 minutes, and the stirring speed of the blender is set to 500 r/min;
  • step S3 After the mixer in step S2 stops working, add calcium carbonate powder and titanium dioxide powder, reset the stirring time for 12 minutes, the temperature is 60°C, and the stirring speed is 600r/min to prepare a non-slip coating;
  • the frequency of the ultrasonic cleaning machine is set to 50KHz and the temperature is set to 60°C;
  • step S6 Place the rack after spraying the non-slip paint in step S5 in the drying room, and dry by hot air drying, and the drying temperature is set to 60°C.
  • This new type of rescue and nursing device is used to fix and install the device on the edge of the flat car through the quilt-shaped block 3 and the fastening bolt 5, and put various instruments and required items inside the placing rack 11
  • the bottom and the upper part of the partition 13 lead the cable connecting the instrument through the two through holes 12 to make the arrangement neat, make the patient's flat car tidy, and bring convenience to patients and medical staff.
  • the device When the device is not in use It can also be disassembled and stored.
  • the placement frame 11 can move horizontally along the square support beam 1, which can avoid occupying the space of the flat car.
  • the square support shell can be adjusted by the sliding unit 24 7 angle, and then adjust the angle of the placement rack 11 to facilitate the adjustment of the angle of the medical instrument placed on the top of the placement rack 11 and to facilitate the rotation of the threaded rod 16 by operating the handle 8 to further adjust the height of the placement rack 11 so that the device can be adapted to different Highly flat car.

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Abstract

一种转运平车抢救护理装置,包括方形支撑梁(1),方形支撑梁(1)的两端通过固定螺栓(4)对称安装有匚形卡块(3),匚形卡块(3)的内部底部设有紧固螺栓(5),方形支撑梁(1)的外部滑动套装有方形底座(2),方形底座(2)的外部一侧设有锁紧螺栓(14),且方形底座(2)的内部开设有卡槽(23),卡槽(23)的内部居中焊接有垫块(22),垫块(22)的上部通过沉头螺栓(21)安装有盖板(20)。该装置可方便的安装在平车的边缘,安装好后可分类放置抢救所需物品,使得摆放比较整齐,给患者和医护人员都带来便利;该装置可水平移动,便于在不用时移动到一侧,避免占用平车的空间。

Description

一种转运平车抢救护理装置 技术领域
本发明涉及医疗器械技术领域,更具体地说,它涉及一种转运平车抢救护理装置。
背景技术
重症病人床边配有监护仪、中心监护仪、多功能呼吸治疗机、麻醉机、心电图机、除颤仪、起搏器、输液泵、微量注射器、气管插管及气管切开所需急救器材。
在抢救重症患者时需要携带多种仪器,例如心电监护仪等,由于仪器较多,无专门放置的位置,导致摆放混乱,很多仪器设备直接放置在平车上,给转运患者带来极大地不便。为此,提出一种转运平车抢救护理装置,使用时可安装在转运平车边缘,不适用时可拆卸存放,安装好后可分类放置抢救所需物品。
发明内容
针对现有技术存在的不足,本发明的目的在于提供一种转运平车抢救护理装置,其可方便的安装在平车的边缘,安装好后可分类放置抢救所需物品,使得摆放比较整齐,给患者和医护人员都带来便利,可水平移动,便于在不用时移动到一侧,避免占用平车的空间,放置架的角度便于调节,从而实现调整医用仪器的角度,便于调节放置架的高度,可适用于不同高度的平车,不用时也可拆卸存放。
为实现上述目的,本发明提供了如下技术方案:
一种转运平车抢救护理装置,包括方形支撑梁,所述方形支撑梁的两端通过固定螺栓对称安装有匚形卡块,所述匚形卡块的内部底部设有紧固螺栓,所述方形支撑梁的外部滑动套装有方形底座,所述方形底座的外部一侧设有锁紧螺栓,且方形底座的内部开设有卡槽,所述卡槽的内部居中焊接有垫块,所述垫块的上部通过沉头螺栓安装有盖板,所述卡槽与盖板之间卡接有两组滑动单元,两组所述滑动单元 的上部均固定安装有立杆,所述立杆的上端延伸至卡槽的上部外部与方形支撑壳体的底部固定连接,所述方形支撑壳体的内部通过两个第一滚动轴承固定安装有横杆,所述横杆的一端延伸至方形支撑壳体的外部与操作手柄的一侧固定连接,且横杆上固定安装有两个主动锥齿轮,两个所述主动锥齿轮均与从动锥齿轮相互啮合,所述从动锥齿轮设有两个,两个所述从动锥齿轮的上部均连接有竖直设置的螺纹杆,所述螺纹杆设有两个,且螺纹杆通过第二滚动轴承固定在方形支撑壳体的顶壁上,所述螺纹杆的上端延伸至方形支撑壳体的上部外部螺接在套筒的内部,所述套筒设置在方形支撑壳体的上方,且套筒的上端与放置架的底部固定连接,所述放置架设置在方形支撑壳体的上方。
通过采用上述技术方案,使用时,可方便的通过匚形卡块配合紧固螺栓将该装置固定安装在平车的边缘,安装好后可分类放置抢救所需物品,使得摆放比较整齐,给患者和医护人员都带来便利,使得放置架可水平移动,便于在不用时移动到一侧,避免占用平车的空间,可通过滑动单元调节方形支撑壳体的角度,进而调节放置架的角度,便于放置架上部放置的医用仪器调整角度,便于通过操作手柄驱动螺纹杆转动,进而调节放置架的高度,使得该装置可适用于不同高度的平车,不适用时可拆卸存放。
进一步地,所述滑动单元包括上端分别与卡槽内顶壁和盖板底部相抵触的圆柱型滑块,所述圆柱型滑块的底端内部开设有安装腔,所述安装腔的内顶壁底部居中安装有第一弹簧座,所述第一弹簧座的底部与弹簧的上端固定连接,所述弹簧设置在安装腔的内部,且弹簧的底端与第二弹簧座的上部固定连接,所述第二弹簧座的底部与弧形支撑块的上部固定连接,所述弧形支撑块的上部伸入安装腔的底部内部,且弧形支撑块的弧形部与卡槽的底壁相抵触。
通过采用上述技术方案,使得方形支撑壳体可以转动,进而调节放置架的角度,由于圆柱型滑块和弧形支撑块之间设置有弹簧,使得 圆柱型滑块的上端分别与卡槽内顶壁和盖板底部相抵触,弧形支撑块的弧形部与卡槽的底壁相抵触,进而使得方形支撑壳体不能自行随意转动,有效增加了该装置的稳定性。
进一步地,所述圆柱型滑块的上部与立杆的底端固定连接,所述盖板的边缘处与卡槽的边缘处预留有用于立杆活动的缝隙。
通过采用上述技术方案,便于立杆在缝隙的导向下进行移动,从而实现调节调节放置架的角度。
进一步地,所述操作手柄的外部套设有橡胶套。
通过采用上述技术方案,可以增大手部与操作手柄之间的静摩擦力,从而防止手部与操作手柄之间发生打滑现象,使得该装置操作稳定。
进一步地,所述放置架为上部和一侧面均为开口结构的箱体,且放置架的内部居中固定安装有隔板。
通过采用上述技术方案,便于症监护室抢救患者时需要使用的多种仪器分类放置,从而使得平车周围整洁,同时便于医护人员使用相应的仪器。
进一步地,所述放置架的后侧壁上对称开设有两个通孔,两个所述通孔对称分布在隔板的上方和下方。
通过采用上述技术方案,两个通孔用于穿插线缆,从而使得放置架不会缠绕的到处都是线缆,有利于医护人员顺利的救治患者。
进一步地,所述放置架的上表面还设有防滑涂层,所述防滑涂层由如下方法制备:
取以下原料按重量份称量:酚醛树脂80-100份、硅烷偶联剂20-30份、聚酰胺树脂10-20份、碳酸钙粉末8-12份、二氧化钛粉末3-5份、甲醇溶剂60-80份;
S1、将称量好的酚醛树脂和聚酰胺树脂放入粉碎机中进行粉碎,制得混合粉末物料;
S2、将步骤S1中制得的混合粉末物料、硅烷偶联剂和甲醇溶剂放入搅拌机中进行搅拌10-20min,搅拌机的搅拌速度设置为300-500r/min;
S3、在步骤S2中的搅拌机停止工作后,加入碳酸钙粉末和二氧化钛粉末,重新设定搅拌时间8-12分钟,温度为50-60℃,搅拌速度为400-600r/min,制得防滑涂料;
S4、将放置架放入超声波清洗机中进行清洗,超声波清洗机的频率设置为30-50KHz,温度设置为50-60℃;
S5、将清洗后的放置架进行烘干,然后将烘干的放置架的上表面利用高压喷雾器喷枪进行喷涂步骤S3中的防滑涂料;
S6、将步骤S5喷涂防滑涂料后的放置架放置在烘干室内,利用热空气干燥进行干燥,干燥温度设置为40-60℃。
通过采用上述技术方案,使得放置在放置架上部的仪器不容易滑落,从而可防止仪器被摔坏的情况发生。
进一步地,所述步骤S1中制得的混合粉末物料的颗粒直径不大于0.06mm。
通过采用上述技术方案,使得防滑涂层的喷涂效果较好。
综上所述,本发明主要具有以下有益效果:
1、本发明,在方形支撑梁的两端通过固定螺栓对称安装有匚形卡块,匚形卡块的内部底部设有紧固螺栓,可方便的通过匚形卡块配合紧固螺栓将该装置固定安装在平车的边缘,安装好后可分类放置抢救所需物品,使得摆放比较整齐,给患者和医护人员都带来便利,不用时也可拆卸存放;
2、本发明,通过在方形支撑梁的外部滑动套装有方形底座,方形底座的外部一侧设有锁紧螺栓,使得放置架可水平移动,便于在不用时将该装置移动到一侧,避免占用平车的空间;
3、本发明,通过在卡槽与盖板之间卡接有两组滑动单元,两组 滑动单元的上部均固定安装有立杆,立杆的上端延伸至卡槽的上部外部与方形支撑壳体的底部固定连接,可通过滑动单元调节方形支撑壳体的角度,进而调节放置架的角度,便于放置架上部放置的医用仪器调整角度;
4、本发明,方形支撑壳体的内部通过两个第一滚动轴承固定安装有横杆,横杆的一端延伸至方形支撑壳体的外部与操作手柄的一侧固定连接,且横杆上固定安装有两个主动锥齿轮,两个主动锥齿轮均与从动锥齿轮相互啮合,从动锥齿轮设有两个,两个从动锥齿轮的上部均连接有竖直设置的螺纹杆,螺纹杆设有两个,且螺纹杆通过第二滚动轴承固定在方形支撑壳体的顶壁上,螺纹杆的上端延伸至方形支撑壳体的上部外部螺接在套筒的内部,套筒设置在方形支撑壳体的上方,且套筒的上端与放置架的底部固定连接,便于通过操作手柄驱动螺纹杆转动,进而调节放置架的高度,使得该装置可适用于不同高度的平车。
附图说明
图1为本发明一种实施方式的结构示意图;
图2为图1的剖视结构示意图;
图3为图2中A处的放大结构示意图;
图4为图1的后视图;
图5为本发明一种实施方式的滑动单元的结构示意图;
图6为本发明一种实施方式的方形底座的结构示意图。
图中:1、方形支撑梁;2、方形底座;3、匚形卡块;4、固定螺栓;5、紧固螺栓;6、立杆;7、方形支撑壳体;8、操作手柄;9、横杆;10、套筒;11、放置架;12、通孔;13、隔板;14、锁紧螺栓;15、第二滚动轴承;16、螺纹杆;17、从动锥齿轮;18、第一滚动轴承;19、主动锥齿轮;20、盖板;21、沉头螺栓;22、垫块;23、卡 槽;24、滑动单元;25、圆柱型滑块;26、安装腔;27、弧形支撑块;28、第一弹簧座;29、第二弹簧座;30、弹簧。
具体实施方式
实施例1:
以下结合附图1-6对本发明作进一步详细说明。
一种转运平车抢救护理装置,如图1-6所示,包括方形支撑梁1,所述方形支撑梁1的两端通过固定螺栓4对称安装有匚形卡块3,所述匚形卡块3的内部底部设有紧固螺栓5,所述方形支撑梁1的外部滑动套装有方形底座2,所述方形底座2的外部一侧设有锁紧螺栓14,且方形底座2的内部开设有卡槽23,所述卡槽23的内部居中焊接有垫块22,所述垫块22的上部通过沉头螺栓21安装有盖板20,所述卡槽23与盖板20之间卡接有两组滑动单元24,两组所述滑动单元24的上部均固定安装有立杆6,所述立杆6的上端延伸至卡槽23的上部外部与方形支撑壳体7的底部固定连接,所述方形支撑壳体7的内部通过两个第一滚动轴承18固定安装有横杆9,所述横杆9的一端延伸至方形支撑壳体7的外部与操作手柄8的一侧固定连接,且横杆9上固定安装有两个主动锥齿轮19,两个所述主动锥齿轮19均与从动锥齿轮17相互啮合,所述从动锥齿轮17设有两个,两个所述从动锥齿轮17的上部均连接有竖直设置的螺纹杆16,所述螺纹杆16设有两个,且螺纹杆16通过第二滚动轴承15固定在方形支撑壳体7的顶壁上,所述螺纹杆16的上端延伸至方形支撑壳体7的上部外部螺接在套筒10的内部,所述套筒10设置在方形支撑壳体7的上方,且套筒10的上端与放置架11的底部固定连接,所述放置架11设置在方形支撑壳体7的上方。可方便的通过匚形卡块3配合紧固螺栓5将该装置固定安装在平车的边缘,使得摆放比较整齐,给患者和医护人员都带来便利,不用时也可拆卸存放,使得放置架11可水平移动,可 通过滑动单元24调节方形支撑壳体7的角度,进而调节放置架11的角度,便于放置架11上部放置的医用仪器调整角度,便于通过操作手柄8驱动螺纹杆16转动,进而调节放置架11的高度,使得该装置可适用于不同高度的平车。
较佳地,所述滑动单元24包括上端分别与卡槽23内顶壁和盖板20底部相抵触的圆柱型滑块25,所述圆柱型滑块25的底端内部开设有安装腔26,所述安装腔26的内顶壁底部居中安装有第一弹簧座28,所述第一弹簧座28的底部与弹簧30的上端固定连接,所述弹簧30设置在安装腔26的内部,且弹簧30的底端与第二弹簧座29的上部固定连接,所述第二弹簧座29的底部与弧形支撑块27的上部固定连接,所述弧形支撑块27的上部伸入安装腔26的底部内部,且弧形支撑块27的弧形部与卡槽23的底壁相抵触。使得方形支撑壳体7可以转动,进而调节放置架11的角度,由于圆柱型滑块25和弧形支撑块27之间设置有弹簧30,使得圆柱型滑块25的上端分别与卡槽23内顶壁和盖板20底部相抵触,弧形支撑块27的弧形部与卡槽23的底壁相抵触,进而使得方形支撑壳体7不能自行随意转动,有效增加了该装置的稳定性。
较佳地,所述圆柱型滑块25的上部与立杆6的底端固定连接,所述盖板20的边缘处与卡槽23的边缘处预留有用于立杆6活动的缝隙。便于立杆6在缝隙的导向下进行移动,从而实现调节调节放置架11的角度。
较佳地,所述操作手柄8的外部套设有橡胶套。可以增大手部与操作手柄8之间的静摩擦力,从而防止手部与操作手柄8之间发生打滑现象,使得该装置操作稳定。
较佳地,所述放置架11为上部和一侧面均为开口结构的箱体,且放置架11的内部居中固定安装有隔板13。便于症监护室抢救患者时需要使用的多种仪器分类放置,从而使得平车周围整洁,同时便于 医护人员使用相应的仪器。
较佳地,所述放置架11的后侧壁上对称开设有两个通孔12,两个所述通孔12对称分布在隔板13的上方和下方。两个通孔12用于穿插线缆,从而使得放置架11不会缠绕的到处都是线缆,有利于医护人员顺利的救治患者。
较佳地,所述放置架11的上表面还设有防滑涂层,所述防滑涂层由如下方法制备:
取以下原料按重量份称量:酚醛树脂80份、硅烷偶联剂20份、聚酰胺树脂10份、碳酸钙粉末8份、二氧化钛粉末3份、甲醇溶剂60份;
S1、将称量好的酚醛树脂和聚酰胺树脂放入粉碎机中进行粉碎,制得混合粉末物料;
S2、将步骤S1中制得的混合粉末物料、硅烷偶联剂和甲醇溶剂放入搅拌机中进行搅拌10min,搅拌机的搅拌速度设置为300r/min;
S3、在步骤S2中的搅拌机停止工作后,加入碳酸钙粉末和二氧化钛粉末,重新设定搅拌时间8分钟,温度为50℃,搅拌速度为400r/min,制得防滑涂料;
S4、将放置架放入超声波清洗机中进行清洗,超声波清洗机的频率设置为30KHz,温度设置为50℃;
S5、将清洗后的放置架进行烘干,然后将烘干的放置架的上表面利用高压喷雾器喷枪进行喷涂步骤S3中的防滑涂料;
S6、将步骤S5喷涂防滑涂料后的放置架放置在烘干室内,利用热空气干燥进行干燥,干燥温度设置为40℃。
使得放置在放置架11上部的仪器不容易滑落,从而可防止仪器被摔坏的情况发生。
较佳地,所述步骤S1中制得的混合粉末物料的颗粒直径不大于0.06mm。
实施例2
与实施例1的不同之处在于防滑涂层的制备,其具体制备方法如下:取以下原料按重量份称量:酚醛树脂90份、硅烷偶联剂25份、聚酰胺树脂15份、碳酸钙粉末10份、二氧化钛粉末4份、甲醇溶剂70份;
S1、将称量好的酚醛树脂和聚酰胺树脂放入粉碎机中进行粉碎,制得混合粉末物料;
S2、将步骤S1中制得的混合粉末物料、硅烷偶联剂和甲醇溶剂放入搅拌机中进行搅拌15min,搅拌机的搅拌速度设置为400r/min;
S3、在步骤S2中的搅拌机停止工作后,加入碳酸钙粉末和二氧化钛粉末,重新设定搅拌时间10分钟,温度为55℃,搅拌速度为500r/min,制得防滑涂料;
S4、将放置架放入超声波清洗机中进行清洗,超声波清洗机的频率设置为40KHz,温度设置为55℃;
S5、将清洗后的放置架进行烘干,然后将烘干的放置架的上表面利用高压喷雾器喷枪进行喷涂步骤S3中的防滑涂料;
S6、将步骤S5喷涂防滑涂料后的放置架放置在烘干室内,利用热空气干燥进行干燥,干燥温度设置为50℃。
实施例3
与实施例1的不同之处在于防滑涂层的制备,其具体制备方法如下:取以下原料按重量份称量:酚醛树脂100份、硅烷偶联剂30份、聚酰胺树脂20份、碳酸钙粉末12份、二氧化钛粉末5份、甲醇溶剂80份;
S1、将称量好的酚醛树脂和聚酰胺树脂放入粉碎机中进行粉碎,制得混合粉末物料;
S2、将步骤S1中制得的混合粉末物料、硅烷偶联剂和甲醇溶剂放入搅拌机中进行搅拌20min,搅拌机的搅拌速度设置为500r/min;
S3、在步骤S2中的搅拌机停止工作后,加入碳酸钙粉末和二氧化钛粉末,重新设定搅拌时间12分钟,温度为60℃,搅拌速度为600r/min,制得防滑涂料;
S4、将放置架放入超声波清洗机中进行清洗,超声波清洗机的频率设置为50KHz,温度设置为60℃;
S5、将清洗后的放置架进行烘干,然后将烘干的放置架的上表面利用高压喷雾器喷枪进行喷涂步骤S3中的防滑涂料;
S6、将步骤S5喷涂防滑涂料后的放置架放置在烘干室内,利用热空气干燥进行干燥,干燥温度设置为60℃。
对实施例1-3中的防滑涂层利用同一台动静摩擦力测试仪在相同的条件下对其静摩擦系数进行测定比较结果如下表:
  静摩擦系数
实施例1 0.59
实施例2 0.62
实施例3 0.57
工作原理:该新型抢救护理装置,使用时,通过匚形卡块3配合紧固螺栓5将该装置固定安装在平车的边缘,将各种仪器和所需物品摆放在放置架11的内部底部以及隔板13的上部,将连接仪器的线缆通过两个通孔12引出,使得摆放比较整齐,使得患者的平车比较整洁,给患者和医护人员都带来便利,该装置不用时也可拆卸存放,在使用过程中,通过拧松锁紧螺栓14,使得放置架11可沿着方形支撑梁1水平移动,可避免占用平车的空间,可通过滑动单元24调节方形支撑壳体7的角度,进而调节放置架11的角度,便于放置架11上 部放置的医用仪器调整角度,便于通过操作手柄8驱动螺纹杆16转动,进而调节放置架11的高度,使得该装置可适用于不同高度的平车。
本具体实施例仅仅是对本发明的解释,其并不是对本发明的限制,本领域技术人员在阅读完本说明书后可以根据需要对本实施例做出没有创造性贡献的修改,但只要在本发明的权利要求范围内都受到专利法的保护。

Claims (8)

  1. 一种转运平车抢救护理装置,包括方形支撑梁(1),其特征在于:所述方形支撑梁(1)的两端通过固定螺栓(4)对称安装有匚形卡块(3),所述匚形卡块(3)的内部底部设有紧固螺栓(5),所述方形支撑梁(1)的外部滑动套装有方形底座(2),所述方形底座(2)的外部一侧设有锁紧螺栓(14),且方形底座(2)的内部开设有卡槽(23),所述卡槽(23)的内部居中焊接有垫块(22),所述垫块(22)的上部通过沉头螺栓(21)安装有盖板(20),所述卡槽(23)与盖板(20)之间卡接有两组滑动单元(24),两组所述滑动单元(24)的上部均固定安装有立杆(6),所述立杆(6)的上端延伸至卡槽(23)的上部外部与方形支撑壳体(7)的底部固定连接,所述方形支撑壳体(7)的内部通过两个第一滚动轴承(18)固定安装有横杆(9),所述横杆(9)的一端延伸至方形支撑壳体(7)的外部与操作手柄(8)的一侧固定连接,且横杆(9)上固定安装有两个主动锥齿轮(19),两个所述主动锥齿轮(19)均与从动锥齿轮(17)相互啮合,所述从动锥齿轮(17)设有两个,两个所述从动锥齿轮(17)的上部均连接有竖直设置的螺纹杆(16),所述螺纹杆(16)设有两个,且螺纹杆(16)通过第二滚动轴承(15)固定在方形支撑壳体(7)的顶壁上,所述螺纹杆(16)的上端延伸至方形支撑壳体(7)的上部外部螺接在套筒(10)的内部,所述套筒(10)设置在方形支撑壳体(7)的上方,且套筒(10)的上端与放置架(11)的底部固定连接,所述放置架(11)设置在方形支撑壳体(7)的上方。
  2. 根据权利要求1所述的一种转运平车抢救护理装置,其特征在于:所述滑动单元(24)包括上端分别与卡槽(23)内顶壁和盖板(20)底部相抵触的圆柱型滑块(25),所述圆柱型滑块(25)的底端内部开设有安装腔(26),所述安装腔(26)的内顶壁底部居中安装有第一弹簧座(28),所述第一弹簧座(28)的底部与弹簧(30)的上端固定连接,所述弹簧(30)设置在安装腔(26)的内部,且弹簧(30) 的底端与第二弹簧座(29)的上部固定连接,所述第二弹簧座(29)的底部与弧形支撑块(27)的上部固定连接,所述弧形支撑块(27)的上部伸入安装腔(26)的底部内部,且弧形支撑块(27)的弧形部与卡槽(23)的底壁相抵触。
  3. 根据权利要求2所述的一种转运平车抢救护理装置,其特征在于:所述圆柱型滑块(25)的上部与立杆(6)的底端固定连接,所述盖板(20)的边缘处与卡槽(23)的边缘处预留有用于立杆(6)活动的缝隙。
  4. 根据权利要求1所述的一种转运平车抢救护理装置,其特征在于:所述操作手柄(8)的外部套设有橡胶套。
  5. 根据权利要求1所述的一种转运平车抢救护理装置,其特征在于:所述放置架(11)为上部和一侧面均为开口结构的箱体,且放置架(11)的内部居中固定安装有隔板(13)。
  6. 根据权利要求5所述的一种转运平车抢救护理装置,其特征在于:所述放置架(11)的后侧壁上对称开设有两个通孔(12),两个所述通孔(12)对称分布在隔板(13)的上方和下方。
  7. 根据权利要求1所述的一种转运平车抢救护理装置,其特征在于:所述放置架(11)的上表面还设有防滑涂层,所述防滑涂层由如下方法制备:
    取以下原料按重量份称量:酚醛树脂80-100份、硅烷偶联剂20-30份、聚酰胺树脂10-20份、碳酸钙粉末8-12份、二氧化钛粉末3-5份、甲醇溶剂60-80份;
    S1、将称量好的酚醛树脂和聚酰胺树脂放入粉碎机中进行粉碎,制得混合粉末物料;
    S2、将步骤S1中制得的混合粉末物料、硅烷偶联剂和甲醇溶剂放入搅拌机中进行搅拌10-20min,搅拌机的搅拌速度设置为300-500r/min;
    S3、在步骤S2中的搅拌机停止工作后,加入碳酸钙粉末和二氧化钛粉末,重新设定搅拌时间8-12分钟,温度为50-60℃,搅拌速度为400-600r/min,制得防滑涂料;
    S4、将放置架放入超声波清洗机中进行清洗,超声波清洗机的频率设置为30-50KHz,温度设置为50-60℃;
    S5、将清洗后的放置架进行烘干,然后将烘干的放置架的上表面利用高压喷雾器喷枪进行喷涂步骤S3中的防滑涂料;
    S6、将步骤S5喷涂防滑涂料后的放置架放置在烘干室内,利用热空气干燥进行干燥,干燥温度设置为40-60℃。
  8. 根据权利要求7所述的一种防滑涂层的制备方法,其特征在于:所述步骤S1中制得的混合粉末物料的颗粒直径不大于0.06mm。
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