WO2017215017A1 - 一次性吸收性物品用中包机压缩装置 - Google Patents

一次性吸收性物品用中包机压缩装置 Download PDF

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Publication number
WO2017215017A1
WO2017215017A1 PCT/CN2016/086727 CN2016086727W WO2017215017A1 WO 2017215017 A1 WO2017215017 A1 WO 2017215017A1 CN 2016086727 W CN2016086727 W CN 2016086727W WO 2017215017 A1 WO2017215017 A1 WO 2017215017A1
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WIPO (PCT)
Prior art keywords
compression
plate
panel
disposable absorbent
absorbent articles
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PCT/CN2016/086727
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English (en)
French (fr)
Inventor
陈斌
宋春华
尚涛
姜立志
王名真
Original Assignee
江苏金卫机械设备有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 江苏金卫机械设备有限公司 filed Critical 江苏金卫机械设备有限公司
Priority to GB1707610.0A priority Critical patent/GB2555668B/en
Publication of WO2017215017A1 publication Critical patent/WO2017215017A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B9/00Presses specially adapted for particular purposes
    • B30B9/30Presses specially adapted for particular purposes for baling; Compression boxes therefor
    • B30B9/306Mechanically-driven presses
    • B30B9/3064Mechanically-driven presses by screw means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B63/00Auxiliary devices, not otherwise provided for, for operating on articles or materials to be packaged
    • B65B63/02Auxiliary devices, not otherwise provided for, for operating on articles or materials to be packaged for compressing or compacting articles or materials prior to wrapping or insertion in containers or receptacles

Definitions

  • the present invention relates to a mid-packaging machine on a product line, and in particular to a center-packaging machine on a disposable absorbent product line.
  • the working process of the medium-charging machine for disposable absorbent products is as follows:
  • the products continuously conveyed on the production line are stacked by the stacker mechanism, and are arranged, arranged, and compressed. After the device is compacted, it is pushed into the package by the pusher group.
  • the utility model of the application No. 200920192 886.9 discloses a diaper packaging machine which adopts a trapezoidal passage opening, and the diaper is pushed in the wider entrance of the trapezoidal passage.
  • the pre-compression device comprises a left and right compression mechanism mounted on the compression bracket, and the left and right compression mechanisms respectively comprise a compression translation mechanism, an upper pressing block and a push-down pressing block, and the upper pressing block and the lower pressing block
  • the push blocks are respectively driven by independent compression and translation mechanisms, thereby preventing the diaper from being caught in the passage due to the deviation from the position, thereby improving the fluency of production;
  • 201210151068.0 discloses a medium-charging machine, which adopts a conveyor belt flow operation, The left and right pressure plates and the pressure plate drive cylinders are arranged on the feeding line, wherein the gas The driving platen is moved to the left and right, and some of the belts are transported by the left and right sides.
  • the product is compacted at the same time of conveying the product, the compaction is stable and does not rebound, and the working noise is small, but it will appear in high-speed compression products or a large number of products at one time.
  • the neat product is squeezed and scattered, and needs to be shut down for cleaning, which affects work efficiency.
  • the compression mechanism adopted by the above prior art is a planar structure, which has a large contact surface with the product, and the frictional force is increased, and the phenomenon of film leakage at both ends is particularly prone to occur, thereby greatly affecting the packaging efficiency and reducing the equipment. stability.
  • the present invention provides a bag machine compression device for a disposable absorbent article, which can significantly enhance the compression force and compression stability.
  • the compression effect is good, the processing speed is fast, there is no leakage on both sides, and the push is smooth.
  • a compensator compression device for a disposable absorbent article comprising a compression bracket, and a compression plate mechanism, a compression translation mechanism mounted on the bracket, wherein:
  • the compression bracket includes a frame formed by a beam and a column, and a panel bracket disposed above the frame
  • the panel bracket is provided with a slide rail.
  • the compression plate mechanism includes a left compression mechanism and a right compression plate mechanism symmetrically disposed on the left and right sides of the panel, and the compression plate mechanism on one side includes a compression plate, a compression bottom plate, and a compression branch which are sequentially connected from the inside to the outside.
  • a product, the product contact surface of the compression plate is a concave curved surface, and an airbag space is formed between the product and the product;
  • the compression plate is provided with a gas path and a uniformly distributed vent hole communicating therewith, The inner diameter of the vent hole is preferably 0.1 mm;
  • the air source inlet is mounted on the compression base plate;
  • the bottom of the compression support plate is slidably connected to the slide rail;
  • the compression translation mechanism includes a ball screw, a screw timing pulley, a timing belt, a motor timing pulley, and a servo motor; the ball screw is connected to the compression support plates on both sides; Under the driving of the synchronous wheel and the synchronous belt, the ball screw drives the compression support plate to translate in the compression direction on the sliding rail.
  • the panel is fixedly connected to the panel bracket by a panel pillar.
  • the compression bottom plate and the compression support plate are connected by a support plate reinforcing strip.
  • the compression plate is provided with a special gas path distribution to meet the requirements of different customers for the product, and the gas path can be outputted in a single channel or in a single channel.
  • both ends of the ball screw are fixed to the bearing seat plate through a bearing end cover and a bearing box, and the bearing seat plate is fixed to both ends of the panel bracket.
  • the ball screw is connected to the compression support plates on both sides by a nut.
  • the ball screw compression action adopts a stepwise compression mode.
  • the studs are provided with short studs for fixed connection.
  • the slide rail is a double slide rail.
  • the present invention Compared with the charter compression device in the prior art-absorbent product, the present invention has the following beneficial technical effects:
  • the compression plate adopts a unique concave arc surface structure, combined with a special gas path design and evenly distributed vent holes, can form a balloon space in contact with the product and form an air friction region at the contact portion.
  • the fluency of the push can be significantly improved, the phenomenon of leakage of the products at both ends can be completely eliminated, and the compression effect is good, and the production process speed is fast.
  • the concave curved surface compression plate is matched with the stepwise compression mode of the ball screw, which significantly enhances the compression torque and the compression stability.
  • the product compressed by this method can effectively eliminate the air in the gap, which is beneficial to further Reduce packaging space and increase processing speed.
  • FIG. 1 is a schematic front view showing the structure of a charter compression device in the embodiment.
  • FIG. 2 is a schematic left side view of FIG. 1.
  • FIG. 3 is a schematic plan view of the top view of FIG. 1.
  • FIG. 4 is a schematic view of the operation of the compression plate.
  • FIG. 5 is a schematic structural diagram of a compression plate in a compression mechanism of a charter in the embodiment.
  • the compression device for a disposable bag for disposable absorbent articles of the present invention comprises a compression bracket, and a compression plate mechanism and a compression translation mechanism mounted on the bracket, wherein:
  • the compression bracket comprises a frame formed by the beam 1 and the column 2, a panel bracket 3 disposed above the frame, and a panel 17 fixedly connected above the bracket 3 for carrying products, the panel 17 passing through the panel pillar 18 and the panel
  • the bracket 3 is fixedly connected; the panel bracket 3 is provided with double slide rails 20; and the pillars 2 are provided with short columns 19 for fixed connection.
  • the compression plate mechanism includes a left compression mechanism and a right compression plate mechanism symmetrically disposed on the left and right sides of the panel 17, and the single-side compression plate mechanism includes a compression plate 26, a compression bottom plate 22, and a support reinforcing bar 10 which are sequentially connected from the inside to the outside.
  • the product contact surface of the compression plate 26 is a concave curved surface, and is in contact with the product 25 to form an air bag space 23;
  • the compression plate 26 is provided with a gas path 27 (multi-channel output) and A uniformly distributed vent hole 28 (inner diameter 0.1 mm) is disposed, and a gas source inlet 24 is mounted on the compression bottom plate 22;
  • a bottom portion of the compression support plate 9 is slidably coupled to the double slide rail 20 through the slider bottom plate 21.
  • the compression translation mechanism includes a ball screw 7, a screw timing pulley 11, a timing belt 12, a motor timing pulley 13, and a servo motor 16. Both ends of the ball screw 7 are fixed to the bearing plate through the bearing end cover 5 and the bearing housing 6. 4, the bearing seat plate 4 is fixed at both ends of the panel bracket 3, the same ball screw 7 and the left and right compression support plates 9 are connected by the ball screw nut 8; the servo motor 16 passes the motor mounting plate 15 and the motor seat plate 14 is fixedly mounted on the compression bracket, and the motor timing pulley 13 is mounted on the shaft end of the motor 16, and the screw timing pulley 11 is driven by the timing belt 12, Driven by the servo motor 16, the lead screw pulley 11, the motor timing pulley 13, and the timing belt 12, the ball screw 7 drives the compression support plate 9 to translate in the compression direction on the double slide rail 20.
  • the disposable absorbent product 25 after the sheet is conveyed is pushed onto the compression device device panel 17 by the pushing device, and the motor timing pulley 13 is driven by the timing belt 12 under the driving of the servo motor 16.
  • the lead screw timing pulley 11 is driven, and the ball screw 7 rotates, thereby driving the double-side compression support plate 9, the compression bottom plate 2, and the compression plate 26 to translate on the double slide rail 20 to the product 25, and further stepwise after contacting the surface thereof.
  • the helium gas is introduced into each of the vent holes 28 through the air source inlet 24 on the compression bottom plate 22, so that an air bag space 23 is formed between the concave curved surface of the compression plate 26 and the product 25, and the compressed product 25 and the compression plate are formed.
  • the contact area forms an air friction zone, which is smooth and push-free, and there is no leakage of the products on both sides.
  • the ball screw 7 adopts a step-by-step compression mode, which significantly enhances the compression force and compression stability, and effectively eliminates air in the product gap. , to reduce the packaging space, has the advantages of good compression effect, fast processing speed and high processing efficiency.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Auxiliary Devices For And Details Of Packaging Control (AREA)
  • Absorbent Articles And Supports Therefor (AREA)

Abstract

一次性吸收性物品用中包机压缩装置,包括压缩支架以及安装于压缩支架上的压缩板机构和压缩平移机构。压缩支架包括横梁(1)和立柱(2)形成的框架、面板托条(3)以及固定连接于面板托条(3)上方的面板(17),面板托条(3)上设有滑轨。压缩板机构包括在面板左右两侧对称设置的左右压缩机构,单侧压缩板机构由内至外包括依次连接的压缩板(26)、压缩底板(22)和压缩支板(9),压缩板(26)的产品接触面为内凹弧面,压缩板(26)上设有气路(27)及均匀分布的通气孔(28),压缩底板(22)上设有气源入口(24),压缩支板(9)底部与滑轨滑动连接。压缩平移机构包括滚珠丝杆(7)、丝杆同步带轮(11)、同步带(12)、电机同步带轮(13)和伺服电机(16)。该压缩装置可显著增强压缩力和压缩稳定性,无两侧漏片现象,推送流畅,具有压缩效果好、加工速度快之优点。

Description

说明书 发明名称:一次性吸收性物品用中包机压缩装置 技术领域
[0001] 本发明涉及产品生产线上的中包机设备, 具体涉及一次性吸收性产品生产线上 的中包机压缩装置。
背景技术
[0002] 目前, 针对一次性吸收性产品 (如纸尿裤、 卫生巾、 卫生纸等) 的中包机设备 工作流程如下: 将生产线上连续输送的产品通过堆垛机机构堆叠后推出, 整理 排片, 经压缩装置压实后由推动装置分组推送至包装袋中。
[0003]
现有技术中的中包机压实输送机构大都采用运动式压实方式: 申请号 200920192 886.9的实用新型公幵一种尿裤包装机, 采用梯形通道口, 尿布在梯形通道较宽 入口处推入, 在单推手推送过程中压实, 容易造成产品压缩后不整齐, 产品被 挤压变形、 刮伤, 或者推入吋尿布偏离通道入口而卡住, 不能高速输送等问题 ; 申请 201510273284.6的发明专利公幵一种全自动纸尿裤包装生产线, 其预压缩 装置包括安装于压缩支架上的左右压缩机构, 左右压缩机构均包括压缩平移机 构、 上推压块和下推压块, 上推压块和下推压块分别由独立的压缩平移机构驱 动, 因此可防止纸尿裤由于偏离位置而卡在通道内, 提高了生产流畅性; 申请 号 201210151068.0的发明专利公幵一种中包机, 采用输送带流水作业, 在送料流 水线上设置左右压板和压板驱动气缸, 其中气缸驱动压板左右移动, 部分还采 用左右两侧皮带输送, 在输送产品的同吋实现产品压实, 压实稳定不反弹, 工 作噪音小, 但在高速压缩产品或一次压缩较大数量产品吋会出现整齐的产品被 挤压散乱的现象, 需停机清理, 影响了工作效率。
[0004] 此外, 上述现有技术采用的压缩机构为平面结构, 与产品接触面大, 摩擦力 增加, 特别容易出现两端产片漏片的现象, 从而极大影响了包装效率, 降低了 设备稳定性。
技术问题 [0005] 在此处键入技术问题描述段落。
问题的解决方案
技术解决方案
[0006] 针对现有一次性吸收性产品生产线上中包机压缩装置存在的上述缺陷, 本发明 提供一种一次性吸收性物品用中包机压缩装置, 该装可显著增强压缩力和压缩 稳定性, 压缩效果好, 加工速度快, 无两侧漏片现象, 推送流畅。
[0007] 为实现以上技术目的, 本发明采用以下技术方案:
[0008] 一次性吸收性物品用中包机压缩装置, 包括压缩支架, 以及安装于所述支架 上的压缩板机构、 压缩平移机构, 其中:
[0009] 所述压缩支架包括横梁和立柱形成的框架, 设置于所述框架上方的面板托条
, 以及固定连接于所述托条上方用于承载产品的面板; 所述面板托条上设有滑 轨。
[0010] 所述压缩板机构包括所述面板左右两侧对称设置的左压缩机构和右压缩板机 构, 单侧所述压缩板机构由内至外包括依次连接的压缩板、 压缩底板、 压缩支 板, 所述压缩板的产品接触面为内凹弧面, 与产品接触吋二者之间形成一个气 囊空间; 所述压缩板上设有气路及与其相连通的均匀分布的通气孔, 该通气孔 内径优选为 0.1mm; 所述压缩底板上安装有气源入口; 所述压缩支板底部与所述 滑轨滑动连接;
[0011] 所述压缩平移机构包括滚珠丝杆、 丝杆同步带轮、 同步带、 电机同步带轮、 伺服电机; 所述滚珠丝杆与两侧所述压缩支板连接; 在所述伺服电机、 同步轮 及同步带驱动下, 所述滚珠丝杆带动所述压缩支板在所述滑轨上沿压缩方向平 移。
[0012] 进一步地, 所述面板通过面板支柱与所述面板托条固定连接。
[0013] 进一步地, 所述压缩底板和压缩支板之间通过支板加强条连接。
[0014] 具体地, 根据不同包装要求, 压缩板设有特殊的气路分布, 以满足不同客户 对产品的要求, 所述气路可单通道输出, 也可以单通道输出。
[0015] 具体地, 所述滚珠丝杆两端通过轴承端盖和轴承盒固定于轴承座板上, 所述 轴承座板固定于所述面板托条两端。 [0016] 具体地, 所述滚珠丝杆通过螺母与两侧所述压缩支板连接。
[0017] 具体地, 所述滚珠丝杠压缩动作采用逐步压缩模式。
[0018] 优选地, 所述立柱之间设有起固定连接作用的短柱。
[0019] 优选地, 所述滑轨为双滑轨。
[0020] 与现有- 次性吸收性产品中包机压缩装置相比, 本发明具有如下有益技术效 果:
[0021] 1.压缩板采用独特的内凹弧面结构, 结合特殊的气路设计和均匀分布的通气孔 , 可在与产品接触吋与其表面构成一个气囊空间, 在接触处形成一个空气摩擦 区域, 相比于现有技术中的平面式压缩板, 能显著提高推送流畅性, 彻底消除 了两端产品漏片的现象, 具有压缩效果好、 生产加工速度快之优点。
[0022] 2.可根据不同包装要求在压缩板内设计特殊的气路分布, 以满足不同客户对产 品的要求, 灵活性好。
[0023] 3.内凹弧面式压缩板配套滚珠丝杠的逐步压缩模式, 显著增强了压缩力矩和压 缩稳定性, 经该种方式压缩后的产品可有效排除间隙内的空气, 有利于进一步 减小包装空间, 提高加工速率。
发明的有益效果
有益效果
[0024] 在此处键入有益效果描述段落。
对附图的简要说明
附图说明
[0025] 图 1为本实施例中包机压缩装置正视结构示意图。
[0026] 图 2为图 1的左视结构示意图。
[0027] 图 3为图 1的俯视结构示意图。
[0028] 图 4为压缩板工作示意图。
[0029] 图 5为本实施例中包机压缩装置中的压缩板结构示意图。
[0030] 附图标记: 1、 横梁; 2、 立柱; 3、 面板托条; 4、 轴承座板; 5、 轴承端盖 ; 6、 轴承盒; 7、 滚珠丝杆; 8、 滚珠丝杆螺母; 9、 压缩支板; 10、 支板加强 条; 11、 丝杆同步带轮; 12、 同步带; 13、 电机同步带轮; 14、 电机座板; 15 、 电机安装板; 16、 伺服电机; 17、 面板; 18、 面板支柱; 19、 短柱; 20、 双 滑轨; 21、 滑块底板; 22、 压缩底板; 23、 气囊空间; 24、 气源入口; 25、 一 次性吸收性产品; 26、 压缩板; 27、 气路; 28、 通气孔。
实施该发明的最佳实施例
本发明的最佳实施方式
[0031] 在此处键入本发明的最佳实施方式描述段落。
本发明的实施方式
[0032] 下面结合附图, 详细说明本发明的一个具体实施例, 但不对本发明的权利要求 做任何限定。
[0033] 如图 1~5所示, 本实施例一次性吸收性物品用中包机压缩装置, 包括压缩支架 , 以及安装于所述支架上的压缩板机构、 压缩平移机构, 其中:
[0034] 压缩支架包括横梁 1和立柱 2形成的框架, 设置于该框架上方的面板托条 3, 以 及固定连接于托条 3上方用于承载产品的面板 17, 面板 17通过面板支柱 18与面板 托条 3固定连接; 面板托条 3上设有双滑轨 20; 立柱 2之间设有起固定连接作用的 短柱 19。
[0035] 压缩板机构包括面板 17左右两侧对称设置的左压缩机构和右压缩板机构, 单 侧压缩板机构由内至外包括依次连接的压缩板 26、 压缩底板 22、 支板加强条 10 、 压缩支板 9, 压缩板 26的产品接触面为内凹弧面, 与产品 25接触吋二者之间形 成一个气囊空间 23 ; 压缩板 26上设有气路 27 (多通道输出) 及与其相通的均匀 分布的通气孔 28 (内径 0.1mm) , 压缩底板 22上安装有气源入口 24; 压缩支板 9 底部通过滑块底板 21与双滑轨 20滑动连接。
[0036]
压缩平移机构包括滚珠丝杆 7、 丝杆同步带轮 11、 同步带 12、 电机同步带轮 13、 伺服电机 16; 滚珠丝杆 7两端通过轴承端盖 5和轴承盒 6固定于轴承座板 4上, 轴 承座板 4固定于面板托条 3两端, 同吋滚珠丝杆 7与左右两侧压缩支板 9通过滚珠 丝杆螺母 8连接; 伺服电机 16通过电机安装板 15和电机座板 14固定安装于压缩支 架上, 电机 16轴端安装电机同步带轮 13, 通过同步带 12驱动丝杆同步带轮 11, 在伺服电机 16、 丝杆同步带轮 11、 电机同步带轮 13及同步带 12驱动下, 滚珠丝 杆 7带动压缩支板 9在双滑轨 20上沿压缩方向平移。
[0037] 本实施例中包机压缩装置工作过程如下:
[0038] 如图 1~图5所示, 整理排片后的一次性吸收性产品 25通过推手装置推送至压 缩装置装置面板 17上, 在伺服电机 16驱动下, 电机同步带轮 13通过同步带 12驱 动丝杆同步带轮 11, 滚珠丝杆 7回转运动, 进而带动双侧压缩支板 9、 压缩底板 2 2、 压缩板 26在双滑轨 20上向产品 25平移, 与其表面接触后进一步进行逐步压缩 , 此吋气体通过压缩底板 22上的气源入口 24通入各通气孔 28, 使压缩板 26的内 凹弧面与产品 25之间形成一个气囊空间 23, 压缩后的产品 25与压缩板 26接触处 形成一个空气摩擦区域, 推送流畅, 不会发生两侧产品漏片的现象; 滚珠丝杆 7 采用逐步压缩模式, 显著加强了压缩力和压缩稳定性, 可有效排除产品间隙中 的空气, 减小包装空间, 具有压缩效果好、 加工速度快、 加工效率高的优点。
[0039] 可以理解的是, 以上关于本发明的具体描述, 仅用于说明本发明而并非受限 于本发明实施例所描述的技术方案。 本领域的普通技术人员应当理解, 仍然可 以对本发明进行修改或等同替换, 以达到相同的技术效果; 只要满足使用需要 , 都在本发明的保护范围之内。
工业实用性
[0040] 在此处键入工业实用性描述段落。
序列表自由内容
[0041] 在此处键入序列表自由内容描述段落。

Claims

权利要求书
[权利要求 1] 一次性吸收性物品用中包机压缩装置, 包括压缩支架, 以及安装于所 述支架上的压缩板机构、 压缩平移机构, 其特征在于:
所述压缩支架包括横梁和立柱形成的框架, 设置于所述框架上方的 面板托条, 以及固定连接于所述托条上方用于承载产品的面板; 所述 面板托条上设有滑轨。
所述压缩板机构包括所述面板左右两侧对称设置的左压缩机构和右 压缩板机构, 单侧所述压缩板机构由内至外包括依次连接的压缩板、 压缩底板、 压缩支板, 所述压缩板的产品接触面为内凹弧面, 与产品 接触吋二者之间形成一个气囊空间; 所述压缩板上设有气路及均匀分 布的通气孔; 所述压缩底板上设有气源入口; 所述压缩支板底部与所 述滑轨滑动连接;
所述压缩平移机构包括滚珠丝杆、 丝杆同步带轮、 同步带、 电机同 步带轮、 伺服电机; 所述滚珠丝杆与两侧所述压缩支板连接; 在所述 伺服电机、 同步轮及同步带驱动下, 所述滚珠丝杆带动所述压缩支板 在所述滑轨上沿压缩方向平移。
[权利要求 2] 根据权利要求 1所述的一次性吸收性物品用中包机压缩装置, 其特征 在于: 所述面板通过面板支柱与所述面板托条固定连接。
[权利要求 3] 根据权利要求 1所述的一次性吸收性物品用中包机压缩装置, 其特征 在于: 所述压缩底板和压缩支板之间通过支板加强条连接。
[权利要求 4] 根据权利要求 1所述的一次性吸收性物品用中包机压缩装置, 其特征 在于: 所述气路为单通道输出或多通道输出。
[权利要求 5] 根据权利要求 1所述的一次性吸收性物品用中包机压缩装置, 其特征 在于: 所述滚珠丝杆两端通过轴承端盖和轴承盒固定于轴承座板上, 所述轴承座板固定于所述面板托条两端。
[权利要求 6] 根据权利要求 1所述的一次性吸收性物品用中包机压缩装置, 其特征 在于: 所述滚珠丝杆通过螺母与两侧所述压缩支板连接。
[权利要求 7] 根据权利要求 1所述的一次性吸收性物品用中包机压缩装置, 其特征 在于: 所述滚珠丝杠压缩动作采用逐步压缩模式。
[权利要求 8] 根据权利要求 1所述的一次性吸收性物品用中包机压缩装置, 其特征 在于: 所述立柱之间设有起固定连接作用的短柱。
[权利要求 9] 根据权利要求 1所述的一次性吸收性物品用中包机压缩装置, 其特征 在于: 所述滑轨为双滑轨。
[权利要求 10] 根据权利要求 1所述的一次性吸收性物品用中包机压缩装置, 其特征 在于: 所述通气孔内径为 0.1mm。
PCT/CN2016/086727 2016-06-16 2016-06-22 一次性吸收性物品用中包机压缩装置 WO2017215017A1 (zh)

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