WO2024046382A1 - 一种病床dr盒承托结构 - Google Patents

一种病床dr盒承托结构 Download PDF

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Publication number
WO2024046382A1
WO2024046382A1 PCT/CN2023/115884 CN2023115884W WO2024046382A1 WO 2024046382 A1 WO2024046382 A1 WO 2024046382A1 CN 2023115884 W CN2023115884 W CN 2023115884W WO 2024046382 A1 WO2024046382 A1 WO 2024046382A1
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Prior art keywords
plate
sliding
hospital bed
box
sliding plate
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PCT/CN2023/115884
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English (en)
French (fr)
Inventor
郭明球
吴海鹏
梁锋
陈玲
庄小娃
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广州医软智能科技有限公司
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Publication of WO2024046382A1 publication Critical patent/WO2024046382A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B6/00Apparatus or devices for radiation diagnosis; Apparatus or devices for radiation diagnosis combined with radiation therapy equipment
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B6/00Apparatus or devices for radiation diagnosis; Apparatus or devices for radiation diagnosis combined with radiation therapy equipment
    • A61B6/02Arrangements for diagnosis sequentially in different planes; Stereoscopic radiation diagnosis
    • A61B6/03Computed tomography [CT]

Definitions

  • the present application relates to the technical field of medical devices. Specifically, it mainly relates to a hospital bed DR box supporting structure.
  • a hospital bed generally refers to a nursing bed, which is a bed with multiple nursing functions designed according to the patient's treatment needs and bedridden living habits.
  • DR systems In order to facilitate X-ray photography of some bedridden patients for diagnosis and treatment of diseases, some existing hospital beds are integrated with DR systems.
  • the scanning device of the DR system, or DR box, is installed under the backboard where the patient lies. It can facilitate X-ray imaging of lying patients.
  • this application provides a hospital bed DR box supporting structure.
  • This application discloses a hospital bed DR box supporting structure, including: a supporting frame; a supporting plate; the supporting plate is installed on the supporting frame; a sliding plate; the sliding plate is slidingly connected to the supporting plate ; Back support plate; The back support plate is installed on the support frame, and there is a gap between the back support plate, the support plate and the sliding plate.
  • the sliding plate is provided with a connecting plate, and a support roller is installed on the connecting plate; a positioning plate is provided on the supporting plate, and a sliding groove is provided on the positioning plate.
  • the support roller Slidingly connected in the sliding groove.
  • a pull-out member is installed on the sliding plate, a receiving groove is provided on the support frame, and an anti-slip seat for fixing the pull-out member is installed at the receiving groove.
  • an anti-slip pad is installed on the anti-slip seat, and an anti-slip groove is provided on the anti-slip pad for accommodating the pull-out member.
  • the sliding plate is provided with a positioning post
  • the support frame is provided with a positioning hole for the positioning post to pass through, and the positioning hole is opened at the receiving groove.
  • each connecting plate there are two supporting plates, two connecting plates on the sliding plate, and the support rollers on each connecting plate are slidingly connected to one of the positioning plates. in the sliding groove.
  • the pull-out member has two shafts for connecting with the anti-slip seats.
  • the supporting plate is provided with a limiting side plate
  • the sliding plate is provided with a limiting end plate.
  • the anti-slip pad is made of polyurethane.
  • the supporting plate and the sliding plate are provided with grid holes.
  • the position of the DR box can be adjusted by changing the relative position between the sliding plate and the supporting plate, thereby making the DR box
  • the box can accurately correspond to the position of the patient's chest, which solves the problem of offset between the DR box and the chest of patients with different body types during clinical photography through DR.
  • Figure 1 is a schematic diagram of the overall structure of this application.
  • FIG. 2 is a partial structural diagram of the present application
  • FIG. 3 is a schematic diagram 2 of the overall structure of this application.
  • Figure 4 is a partial structural diagram 2 of the present application.
  • Figure 5 is a partial enlarged schematic diagram of position A in Figure 4.
  • 21 Support frame; 211. Inner end beam; 212. Outer end beam; 2121. Accommodation slot; 2122. Positioning Hole; 213, side beam; 22, supporting plate; 221, limit side plate; 222, positioning plate; 2221, sliding groove; 23, sliding plate; 231, limit end plate; 232, connecting plate; 233, support Roller; 234, positioning post; 24, grid hole; 25, pull-out piece; 251, shaft; 26, anti-skid seat; 261, anti-skid pad; 2611, anti-skid groove; 27, back support plate.
  • a hospital bed DR box support structure disclosed in this application includes a support frame 21, a support plate 22, a sliding plate 23, a pull-out part 25, an anti-slip seat 26 and a back support plate 27, where, support frame 21 includes an inner end beam 211, an outer end beam 212 and a side beam 213.
  • the inner end beam 211 and the outer end beam 212 are parallel to each other and perpendicular to the main beam.
  • the beam 212 is connected between the two side beams 213.
  • the inner end beam 211, the outer end beam 212 and the two side beams 213 form a rectangular frame structure.
  • the inner end beam 211 is close to the seat assembly and the outer end beam 212 is away from the seat assembly.
  • the outer end beam 212 is provided with a secondary recessed structure that is recessed twice from the outside to the inside.
  • the internal recessed structure is a receiving groove 2121.
  • the receiving groove 2121 is a structure that is recessed toward the bottom of the support frame 21 and is used to install an anti-slip seat. 26.
  • the supporting plate 22 is a rectangular plate, and there are two supporting plates 22.
  • the two supporting plates 22 are fixedly connected between the outer end beam 212 and the inner end beam 211, and the two supporting plates 22 are fixedly connected between the outer end beam 212 and the inner end beam 211.
  • the DR box is arranged on the upper surface of the supporting plate 22 and the sliding plate 23; the supporting plate 22 faces away from the sliding plate 23.
  • the edge of the plate 23 and the edge of the supporting plate 22 away from the outer end beam 212 are fixedly provided with a limiting side plate 221.
  • the limiting side plate 221 is located on one side of the upper surface of the supporting plate 22 and is opposite to the surface of the supporting plate 22.
  • Vertical, used for positioning the DR box; a positioning plate 222 is fixed on the edge of the supporting plate 22 close to the sliding plate 23.
  • the positioning plate 222 is located on one side of the lower surface of the supporting plate 22.
  • the positioning plate 222 is a long strip plate and is connected with the sliding plate 23.
  • the side beams 213 are parallel, and the positioning plate 222 is provided with a long sliding groove 2221.
  • the sliding groove 2221 extends along the length direction of the positioning plate 222 and is used to limit the sliding direction of the sliding plate 23.
  • the sliding plate 23 is a rectangular plate.
  • the sliding plate 23 is installed in the gap between the two supporting plates 22, and a limited end plate 231 is fixedly provided at the edge of the sliding plate 23 close to the inner end beam 211.
  • the limiting end plate 231 is provided above the sliding plate 23, and is used to limit the position of the DR box or push the DR box to move;
  • the sliding plate 23 is fixedly provided with a connecting plate 232 at both edges close to the supporting plate 22, and the connecting plate 232 Set on one side of the lower surface of the sliding plate 23, a support roller 233 is installed on each connection plate 232.
  • the support roller 233 is rotationally supported on the connection plate 232, and the two support rollers 233 are respectively slidingly connected to two
  • the sliding groove 2221 on the positioning plate 222 allows the sliding plate 23 to slide along the direction defined by the sliding groove 2221. Since the DR box is arranged on the sliding plate 23, by sliding the position of the sliding plate 23, it can Drive the DR box to move, thereby adjusting the position of the DR box, so that the DR box can be aligned with the position of the patient's chest, solving the problem of clinical treatment through DR.
  • a plurality of long grid holes 24 are provided on the supporting plate 22 and the sliding plate 23 for convenience. Heat dissipation of DR box.
  • a pull-out piece 25 is fixedly installed on the lower surface of the sliding plate 23.
  • the pull-out piece 25 is a rod-shaped structure.
  • the pull-out piece 25 has two mutually parallel shafts 251.
  • the sides of the shafts 251 are One part is fixed on the lower surface of the sliding plate 23, and the other part extends to the outside of the sliding plate 23, and the ends of the two shafts 251 are connected by connecting rods.
  • the user can drive the sliding part by pulling the pull-out part 25.
  • the plate 23 slides between the two supporting plates 22; the anti-slip seat 26 is a U-shaped sheet structure, and the anti-slip seat 26 is fixed at the receiving groove 2121 of the outer end beam 212.
  • the opening of the anti-slip seat 26 faces upward, and the anti-slip seat 26 is provided with Two, each anti-skid seat 26 is equipped with an anti-skid pad 261.
  • the anti-skid pad 261 is made of polyurethane material.
  • the anti-skid pad 261 is provided with an anti-skid groove 2611.
  • the opening of the anti-skid groove 2611 faces upward.
  • the pull-out part 25 The two shafts 251 are respectively inserted into the two anti-slip grooves 2611. The friction force between the anti-slip pad 261 and the pull-out part 25 can lock the position of the sliding part relative to the support frame 21, and then the DR box can be locked.
  • the outer end beam 212 also has a positioning hole 2122 at the receiving groove 2121.
  • the axis of the positioning hole 2122 is perpendicular to the surface of the supporting plate 22.
  • two positioning holes 2122 are provided.
  • the sliding plate 23 is provided with two positioning posts 234 that can be inserted into the positioning holes 2122.
  • the positioning column 234 can be inserted into the positioning hole 2122, so that the position of the sliding plate 23 can be locked, thereby improving the stability of the sliding plate 23 when the hospital bed is in use, and avoiding The position of the sliding plate 23 moves unnecessarily due to the movement of the hospital bed.
  • the back support plate 27 is installed on the upper part of the support frame 21.
  • the back support plate 27 is used to support the patient's back.
  • the back support plate 27 is arranged between the support plate 22 and the sliding plate 23. There is a gap.
  • the DR box is installed in the gap between the back support plate 27 and the supporting plate 22 and the sliding plate 23.
  • the staff first lifts the pull-out part 25 upwards.
  • the implementation principle and beneficial effect of this application is that by arranging the DR box on the supporting plate 22 and the sliding plate 23, and making the sliding plate 23 and the supporting plate 22 slidingly connected, the relationship between the sliding plate 23 and the supporting plate 22 is changed.
  • the relative position of the DR box can be adjusted, so that the DR box can accurately correspond to the position of the patient's chest, which solves the problem of the problem between the DR box and the chest of patients with different body types during clinical photography through DR. There will be offset problems.

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Medical Informatics (AREA)
  • Engineering & Computer Science (AREA)
  • Radiology & Medical Imaging (AREA)
  • Molecular Biology (AREA)
  • Biophysics (AREA)
  • Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
  • Optics & Photonics (AREA)
  • Pathology (AREA)
  • Physics & Mathematics (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
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  • Apparatus For Radiation Diagnosis (AREA)

Abstract

一种病床DR盒承托结构,包括:支撑架(21);承托板(22);承托板(22)安装在支撑架(21)上;滑动板(23);滑动板(23)与承托板(22)滑动连接;背支板(27);背支板(27)安装在支撑架(21)上,背支板(27)与承托板(22)、滑动板(23)之间设置有间隙。通过设置有能够与承托板(22)相对滑动的滑动板(23),使得DR盒通过调整后,能够准确地与病患胸部的位置相对应,解决了临床上通过DR进行摄影时,DR盒与不同体型的病患的胸部之间会产生偏移的问题。

Description

一种病床DR盒承托结构 技术领域
本申请涉及医疗器械的技术领域,具体地,主要涉及一种病床DR盒承托结构。
背景技术
病床一般指护理床,是根据病人的治疗需要和卧床生活习性而设计的具有多项护理功能的床。
为了方便对一些卧床的病人进行X射线摄影,以对疾病进行诊断和治疗,现有的一些病床集成了DR系统,其在病人躺卧的背板下方安装了DR系统的扫描装置即DR盒,可以方便对躺卧的病人进行X射线成像。
但是,由于不同的病人身材具有差异,其躺卧于病床上时,背部容易与DR系统的DR盒的位置产生偏移,从而给DR摄影工作带来不便,因此,需要对现有的病床结构进行改进。
申请内容
针对现有技术的不足,本申请提供一种病床DR盒承托结构。
本申请公开的一种病床DR盒承托结构,包括:支撑架;承托板;所述承托板安装在所述支撑架上;滑动板;所述滑动板与所述承托板滑动连接;背支板;所述背支板安装在所述支撑架上,所述背支板与所述承托板、所述滑动板之间设置有间隙。
优选地,所述滑动板上设置有连接板,所述连接板上安装有支撑滚子;所述承托板上设置有定位板,所述定位板上设置有滑动槽,所述支撑滚子滑动连接在所述滑动槽内。
优选地,所述滑动板上安装有抽拉件,所述支撑架上设置有容纳槽,所述容纳槽处安装有用于固定所述抽拉件的防滑座。
优选地,所述防滑座上安装有防滑垫块,所述防滑垫块上设置有用于容纳所述抽拉件的防滑槽。
优选地,所述滑动板上设置有定位柱,所述支撑架上开设有用于使所述定位柱穿过的定位孔,所述定位孔开设在所述容纳槽处。
优选地,所述承托板设置有两个,所述滑动板上的所述连接板设置有两个,每个所述连接板上的所述支撑滚子各滑动连接在一个所述定位板上的所述滑动槽内。
优选地,所述防滑座设置有两个,所述抽拉件具有两个用于与所述防滑座相连接的杆身。
优选地,所述承托板上设置有限位侧板,所述滑动板上设置有限位端板。
优选地,所述防滑垫块采用聚氨酯材质。
优选地,所述承托板和所述滑动板上开设有栅孔。
本申请的有益效果在于:
通过将DR盒设置在承托板与滑动板上,并使滑动板与承托板滑动连接,改变滑动板与承托板之间的相对位置即可对DR盒的位置进行调整,从而使得DR盒能够准确地与病患胸部的位置相对应,解决了临床上通过DR进行摄影时,DR盒与不同体型的病患的胸部之间会产生偏移的问题。
附图说明
此处所说明的附图用来提供对本申请的进一步理解,构成本申请的一部分,本申请的示意性实施例及其说明用于解释本申请,并不构成对本申请的不当限定。在附图中:
图1为本申请的整体结构示意图一;
图2为本申请的部分结构示意图一;
图3为本申请的整体结构示意图二;
图4为本申请的部分结构示意图二;
图5为图4中A处的局部放大示意图。
附图标记说明:
21、支撑架;211、内端梁;212、外端梁;2121、容纳槽;2122、定位
孔;213、侧梁;22、承托板;221、限位侧板;222、定位板;2221、滑动槽;23、滑动板;231、限位端板;232、连接板;233、支撑滚子;234、定位柱;24、栅孔;25、抽拉件;251、杆身;26、防滑座;261、防滑垫块;2611、防滑槽;27、背支板。
具体实施方式
以下将以图式揭露本申请的多个实施方式,为明确说明起见,许多实务上的细节将在以下叙述中一并说明。然而,应了解到,这些实务上的细节不应用以限制本申请。也就是说,在本申请的部分实施方式中,这些实务上的细节是非必要的。此外,为简化图式起见,一些习知惯用的结构与件在图式中将以简单的示意的方式绘示之。
需要说明,本申请实施例中所有方向性指示诸如上、下、左、右、前、后……仅用于解释在某一特定姿态如附图所示下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
另外,在本申请中如涉及“第一”、“第二”等的描述仅用于描述目的,并非特别指称次序或顺位的意思,亦非用以限定本申请,其仅仅是为了区别以相同技术用语描述的件或操作而已,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
为能进一步了解本申请的申请内容、特点及功效,兹例举以下实施例,并配合附图详细说明如下:
参照图1-5,为本申请公开的一种病床DR盒承托结构,包括支撑架21、承托板22、滑动板23、抽拉件25、防滑座26和背支板27,其中,支撑架 21包括内端梁211、外端梁212和侧梁213,内端梁211和外端梁212相互平行并均与主梁相垂直,侧梁213设置有两个,内端梁211和外端梁212连接在两个侧梁213之间,内端梁211、外端梁212和两个侧梁213围成矩形框架结构,内端梁211靠近坐板组件而外端梁212远离坐板组件,外端梁212上设置有由外到内凹陷两次的二级凹陷结构,其中内部的凹陷结构为容纳槽2121,容纳槽2121为一向支撑架21的下方凹陷的结构,用于安装防滑座26。
参照图2和图3,承托板22为矩形板,承托板22设置有两个,两个承托板22固定连接在外端梁212和内端梁211之间,且两个承托板22之间设置有间隙,该间隙处用于安装滑动板23,在对病患进行X射线摄像时,DR盒设置在承托板22与滑动板23的上表面上;承托板22背离滑动板23的边缘,以及承托板22背离外端梁212的边缘均固定设置有限位侧板221,限位侧板221位于承托板22上表面的一侧并与承托板22的表面相垂直,用于DR盒的定位;承托板22靠近滑动板23的边缘固定设置有定位板222,定位板222位于承托板22下表面的一侧,定位板222为长条形板并与侧梁213相平行,定位板222上开设有长条形的滑动槽2221,滑动槽2221沿着定位板222的长度方向延伸,用于限定滑动板23的滑动方向。
参照图2-图5,滑动板23为矩形板,滑动板23安装在两个承托板22之间的间隙处,且滑动板23靠近内端梁211的边缘处固定设置有限位端板231,限位端板231设置在滑动板23的上方,用于限定DR盒的位置或推动DR盒移动;滑动板23靠近承托板22的两边缘处均固定设置有连接板232,连接板232设置在滑动板23下表面的一侧,每个连接板232上均安装有支撑滚子233,支撑滚子233转动支撑在连接板232上,且两个支撑滚子233分别滑动连接在两个定位板222上的滑动槽2221内,使得滑动板23能够沿着滑动槽2221所限定的方向滑动,由于DR盒设置在滑动板23上,因此,通过对滑动板23的位置进行滑动,即能够带动DR盒移动,从而对DR盒的位置进行调整,进而使得DR盒能够对准病患胸部的位置,解决了临床上通过DR进 行摄影时,DR盒与不同体型的病患的胸部之间会产生偏移的问题;此外,承托板22和滑动板23上均开设有多个长条状的栅孔24,用于方便DR盒的散热。
参照图2-图5,滑动板23的下表面上还固定安装有抽拉件25,抽拉件25为杆状结构,抽拉件25具有两个相互平行的杆身251,杆身251的一部分固定在滑动板23的下表面上,另一部分伸到滑动板23的外侧,且两个杆身251的端部之间通过连杆相连接,使用人员通过拉动抽拉件25即可带动滑动板23在两个承托板22之间滑动;防滑座26为U形片状结构,防滑座26固定在外端梁212的容纳槽2121处,防滑座26的开口朝上,防滑座26设置有两个,每个防滑座26内均安装有防滑垫块261,防滑垫块261采用聚氨酯材料制作,防滑垫块261上开设有防滑槽2611,防滑槽2611的开口朝上,抽拉件25的两个杆身251分别插设在两个防滑槽2611内,通过防滑垫块261与抽拉件25之间的摩擦力可对滑动件相对于支撑架21的位置进行锁定,进而可对DR盒的位置进行锁定;此外,当使用人员拉动抽拉件25使滑动板23从两个承托板22之间划出,且整个支撑架21处于倾斜状态时,由于杆身251与防滑槽2611之间具有摩擦力,因此滑动板23不会在重力的作用下向两个承托板22之间的间隙处滑动,从而实现了支撑架21在倾斜状态下也能够进行DR摄影的目的。
参照图4和图5,外端梁212在容纳槽2121处还开设有定位孔2122,定位孔2122的轴线垂直于承托板22的表面,在本实施方式中,定位孔2122设置有两个,相应地,滑动板23上设置有两个能够插设在定位孔2122内的定位柱234,当滑动板23处于两个承托板22之间,且滑动板23上的限位端板231处于与内端梁211相贴的极限位置时,定位柱234能够插设在定位孔2122内,使得滑动板23的位置能够被锁定,从而提高了病床在使用时滑动板23的稳定性,避免因病床的移动而导致滑动板23的位置发生不必要的移动。
参照图2-图5,背支板27安装在支撑架21的上部,背支板27用于对病患的背部进行支撑,背支板27与承托板22、滑动板23之间均设置有间隙,在使用时,DR盒安装在背支板27与承托板22、滑动板23之间的间隙内,当需要将DR盒从此处取出时,工作人员首先向上抬起抽拉件25,使得滑动板23以支撑滚子233为转动中心向上转动,从而使得定位柱234从定位孔2122内脱出,接着向背离内端梁211的方向拉动抽拉件25,即能够将滑动板23从背支板27和两个承托板22之间拉出,滑动板23及其上的限位端板231能够带动DR盒随滑动板23移出,之后工作人员即可将DR盒取出。
本申请的实施原理和有益效果是,通过将DR盒设置在承托板22与滑动板23上,并使滑动板23与承托板22滑动连接,改变滑动板23与承托板22之间的相对位置即可对DR盒的位置进行调整,从而使得DR盒能够准确地与病患胸部的位置相对应,解决了临床上通过DR进行摄影时,DR盒与不同体型的病患的胸部之间会产生偏移的问题。
上仅为本申请的实施方式而已,并不用于限制本申请。对于本领域技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原理的内所作的任何修改、等同替换、改进等,均应包括在本申请的权利要求范围之内。

Claims (10)

  1. 一种病床DR盒承托结构,其特征在于,包括:
    支撑架(21);
    承托板(22);所述承托板(22)安装在所述支撑架(21)上;
    滑动板(23);所述滑动板(23)与所述承托板(22)滑动连接;
    背支板(27);所述背支板(27)安装在所述支撑架(21)上,所述背支板(27)与所述承托板(22)、所述滑动板(23)之间设置有间隙。
  2. 根据权利要求1所述的病床DR盒承托结构,其特征在于,所述滑动板(23)上设置有连接板(232),所述连接板(232)上安装有支撑滚子(233);
    所述承托板(22)上设置有定位板(222),所述定位板(222)上设置有滑动槽(2221),所述支撑滚子(233)滑动连接在所述滑动槽(2221)内。
  3. 根据权利要求2所述的病床DR盒承托结构,其特征在于,所述滑动板(23)上安装有抽拉件(25),所述支撑架(21)上设置有容纳槽(2121),所述容纳槽(2121)处安装有用于固定所述抽拉件(25)的防滑座(26)。
  4. 根据权利要求3所述的病床DR盒承托结构,其特征在于,所述防滑座(26)上安装有防滑垫块(261),所述防滑垫块(261)上设置有用于容纳所述抽拉件(25)的防滑槽(2611)。
  5. 根据权利要求4所述的病床DR盒承托结构,其特征在于,所述滑动板(23)上设置有定位柱(234),所述支撑架(21)上开设有用于使所述定位柱(234)穿过的定位孔(2122),所述定位孔(2122)开设在所述容纳槽(2121)处。
  6. 根据权利要求2-5任一所述的病床DR盒承托结构,其特征在于,所述承托板(22)设置有两个,所述滑动板(23)上的所述连接板(232)设置有两个,每个所述连接板(232)上的所述支撑滚子(233)各滑动连接在一个所述定位板(222)上的所述滑动槽(2221)内。
  7. 根据权利要求3-5任一所述的病床DR盒承托结构,其特征在于,所 述防滑座(26)设置有两个,所述抽拉件(25)具有两个用于与所述防滑座(26)相连接的杆身(251)。
  8. 根据权利要求1-5任一所述的病床DR盒承托结构,其特征在于,所述承托板(22)上设置有限位侧板(221),所述滑动板(23)上设置有限位端板(231)。
  9. 根据权利要求4或5所述的病床DR盒承托结构,其特征在于,所述防滑垫块(261)采用聚氨酯材质。
  10. 根据权利要求1-5任一所述的病床DR盒承托结构,其特征在于,所述承托板(22)和所述滑动板(23)上开设有栅孔(24)。
PCT/CN2023/115884 2022-09-02 2023-08-30 一种病床dr盒承托结构 WO2024046382A1 (zh)

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