WO2017024445A1 - 一种腕带式移动设备及其制造方法 - Google Patents

一种腕带式移动设备及其制造方法 Download PDF

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Publication number
WO2017024445A1
WO2017024445A1 PCT/CN2015/086374 CN2015086374W WO2017024445A1 WO 2017024445 A1 WO2017024445 A1 WO 2017024445A1 CN 2015086374 W CN2015086374 W CN 2015086374W WO 2017024445 A1 WO2017024445 A1 WO 2017024445A1
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WO
WIPO (PCT)
Prior art keywords
wristband
mobile device
blank
type mobile
titanium alloy
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PCT/CN2015/086374
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English (en)
French (fr)
Inventor
童恩东
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深圳市大富科技股份有限公司
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 深圳市大富科技股份有限公司 filed Critical 深圳市大富科技股份有限公司
Priority to CN201580079935.6A priority Critical patent/CN107613804A/zh
Priority to PCT/CN2015/086374 priority patent/WO2017024445A1/zh
Publication of WO2017024445A1 publication Critical patent/WO2017024445A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44CPERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
    • A44C5/00Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps
    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B47/00Time-pieces combined with other articles which do not interfere with the running or the time-keeping of the time-piece

Definitions

  • the present invention relates to the field of mechanical processing technologies, and in particular, to a wristband type mobile device and a method of manufacturing the same.
  • a wristband-type mobile device such as a wristwatch or a smart wristband is generally composed of a main body of the device and a wristband.
  • a wristwatch is composed of a dial main body and a strap, and the strap can be divided into a metal strap and a non-metal strap.
  • Common metal straps are generally connected by steel links of up to ten knots, adjacent links are connected by pins, and the strap is connected to the dial by a card.
  • the above-mentioned strap-dial structure has inevitably more connection points in its structure. Due to the excessive connection points, the use of the watch often makes the connection point susceptible to breakage, and the integrity of the strap and the dial structure is not compact. Complete, lack of novelty in appearance.
  • Embodiments of the present invention provide a wristband type mobile device and a manufacturing method thereof, which can improve the durability and aesthetic appearance of the device.
  • An embodiment of the present invention provides a wristband type mobile device, which includes a metal body device and a wristband integrally formed with the device body.
  • the wristband is an integrated structure, and the wristband includes a wristband body and a wristband. Connection part with end.
  • the device body and the wristband are made of titanium alloy.
  • the inner side of the wristband main body is provided with a plurality of slits extending in a width direction thereof, and the opening of the slit is located inside the wristband.
  • the slit has a "T" shape in cross section.
  • the wristband body has a thickness ranging from 1.5 mm to 3 mm, and the slit bottom has a thickness of 0.15 mm to 0.3 mm.
  • the wristband body comprises a thin layer of titanium alloy, and a non-metallic inner liner is fixed on the thin layer of the titanium alloy.
  • the wristband body has a thickness ranging from 1.5 mm to 3 mm, and the titanium alloy thin layer has a thickness of 0.15 mm to 0.3 mm.
  • the wristband is a segment, and one end of the wristband is integrally formed with the device body, and the other end can be fixedly connected to the device body through the connecting member.
  • the wristband is two segments, one end of the wristband is integrally formed with the device body, and the other end can be fixedly connected to each other by the connecting member.
  • the connecting component is a buckle, wherein the buckles of the two sections of the wristband are matched with each other, and the mutual snap connection can be realized.
  • the embodiment of the invention further provides a method for manufacturing a wristband mobile device, comprising:
  • the wristband is slit such that the wristband has a slidable opening.
  • one of the blanks is made of a titanium alloy.
  • the method further comprises:
  • a plurality of slits extending in the width direction thereof are formed on the inner surface layer of the wristband.
  • the method further comprises:
  • a non-metallic liner is embedded in the thin layer of titanium alloy.
  • the incision of the wristband such that the wristband has a foldable opening comprises:
  • the incision of the wristband such that the wristband has a foldable opening comprises:
  • the end of the wristband is cut such that one end of the wristband is separated from the apparatus body.
  • the method further includes:
  • a connecting member is machined at the end at the opening.
  • the upsetting processing of the equipment blank comprises:
  • the metal pier is made according to the specifications required for the wristband type mobile device: cutting, boring, accumulation, forming, chamfering, reducing, and trimming.
  • the wristband device and the manufacturing method provided by the embodiments of the present invention are different from the traditional link wristband (strap).
  • a wristband with an integrated structure is adopted, and the wristband and the device are integrally formed, and the structure is Eliminating the appearance of the connection point, not only makes the equipment more durable, but also has a strong structural integrity, novel appearance and aesthetic appeal.
  • FIG. 1 is a first schematic diagram of a structure of a wristband type mobile device according to an embodiment of the present invention
  • FIG. 2 is a second schematic diagram of a structure of a wristband type mobile device according to an embodiment of the present invention.
  • Figure 3 is an enlarged view of A in Figure 2;
  • FIG. 4 is a third schematic diagram of a structure of a wristband type mobile device according to an embodiment of the present invention.
  • FIG. 5 is a first schematic diagram of a flow of a method for manufacturing a wristband mobile device according to an embodiment of the present invention
  • FIG. 6 is a second schematic diagram of a flow of a method for manufacturing a wristband mobile device according to an embodiment of the present invention.
  • FIG. 7 is a third schematic diagram of a flow of a method for manufacturing a wristband mobile device according to an embodiment of the present invention.
  • FIG. 1 is a schematic diagram of a mechanism of a wristband mobile device according to an embodiment of the present invention.
  • the wristband mobile device 100 may include: a metal body device 10 and a wristband. 20, wherein the device body 10 and the wristband 20 are integrally formed, and the wristband 20 is an integrated structure, and the wristband 20 includes a wristband body 210 and a connecting member 220 of the wristband end.
  • the wristband mobile device 100 can be a wristwatch, a smart watch, a smart wristband, etc., wherein unlike the conventional link wristband (strap), the wrist of the integrated structure is used in this embodiment.
  • the belt and the wristband are integrally formed, which eliminates the appearance of the connection point, which not only makes the equipment more durable, but also has a strong structural integrity, novel appearance and aesthetic appeal.
  • the device body 10 and the wristband 20 are integrally formed by using a metal material, but the wristband type mobile device may further include an electronic module fixed to the inside of the device body 10, a movement, and fixed to the device.
  • a component such as a screen on the surface of the main body, and these components are generally not limited to a metal material.
  • the device body 10 and the wristband 20 can be made of a titanium alloy, and the wristband can be flexibly bent without breaking by using the excellent mechanical properties such as high fatigue strength and high toughness of the titanium alloy.
  • the apparatus body 10 and the wristband 20 can be Ti-1023 titanium alloy, and Ti-1023 is a near-beta titanium alloy, which is widely used in the field of aviation, has high strength, good fracture toughness, and low forging temperature. Tensile stress corrosion resistance is strong.
  • the wristband body 210 may have a thickness of between 1.5 mm and 3 mm, for example 2 mm.
  • the connecting member may be integrally formed with the wristband main body, or may be fixedly mounted at the end of the wristband main body 210.
  • the wristband main body 210 is provided with a plurality of slots 230 extending in the width direction, and the opening 231 of the slot 230 is located at the wrist.
  • the slit 230 includes a bottom groove 231 extending in the width direction of the wristband main body 210, and a straight groove 231 extending perpendicularly to the bottom groove 231, and leading from the inner surface of the wristband main body 210 to the bottom groove 231.
  • the slit 230 may have a "T" shape in cross section, and the bottom thickness of the slit (the thinnest portion of the wristband) may be between 0.15 mm and 0.3 mm, that is, the depth of the slit 230 may be approximately in the thickness of the wristband body. It is about 0.9 times, and of course, the specific depth of the slot 230 is not specifically limited here, and those skilled in the art can set according to actual conditions.
  • the wristband body 210 is machined with a thin layer of titanium alloy 211, a non-metallic liner 212 is fixed on the titanium alloy layer 211, and the non-metallic liner 22 is preferably soft.
  • the non-metallic liner 22 is preferably soft.
  • the titanium alloy thin layer 211 has a thickness of 0.15 mm to 0.3 mm.
  • the thickness of the non-metallic liner 212 is substantially the thickness of the body of the wristband minus the thickness of the thin layer of titanium alloy such that after the non-metallic liner is secured, the wristband is a uniform thickness.
  • the wristband 20 can be a segment (not shown), that is, one end of the wristband 20 is integrally formed with the device body 10, and the other end is connected with a connecting member. Accordingly, the device body also has a corresponding connection. The component, the device body, and the wristband can be fixedly connected to each other by a connecting component.
  • the wristband 20 can be two segments. One end of each wristband 20 is integrally formed with the device body, and the other end is connected with the connecting component 220.
  • the strap 20 can be fixedly connected by the connecting member 220.
  • connecting members 220 are detachably fixedly connected to realize the removal or wearing of the device on the wrist.
  • the connecting member may be a buckle, such as a hook, a buckle, a butterfly buckle, a belt snap, a folding safety buckle, a folding buckle or a pin buckle.
  • the two buckles of the two wristbands should be matched to each other to achieve a snap connection.
  • FIG. 5 is a schematic flowchart diagram of a method for manufacturing a wristband mobile device according to Embodiment 1 of the present invention. As shown in FIG. 5, the method may include the steps of:
  • the metal material blank is sintered and annealed to form a device blank
  • the billet can be subjected to multiple sintering and annealing heat treatment to reduce the stress of the billet for processing;
  • Sintering with hydrogen or nitrogen can protect the atmosphere from oxidation, prevent certain metal elements from changing, and cool down and protect against oxygen.
  • the step may specifically include: performing the above-mentioned metal pier materials according to the specifications required for the wristband type mobile device: cutting, boring, accumulation, forming, chamfering, reducing diameter, trimming, and the like;
  • Cut the wristband to make the wristband have a slidable opening.
  • the wristband type mobile device obtained by the manufacturing method of the embodiment of the invention adopts an integrated wristband and the wristband and the device are integrally formed, and the structure is eliminated.
  • the appearance of the connection point not only makes the equipment more durable, but also has a strong structural integrity, a novel appearance and an aesthetic appeal.
  • the method may further include:
  • a connecting member is attached to the open end.
  • the billet is made of a titanium alloy material, and the excellent mechanical properties such as high fatigue strength and high toughness of the titanium alloy can be used to flexibly bend and not break the finished device wristband.
  • Ti-1023 titanium alloy is used, and Ti-1023 is a near- ⁇ titanium alloy, which is widely used in the field of aviation, and has high strength, good fracture toughness, low forging temperature and strong tensile stress corrosion resistance.
  • steps of sanding, polishing, etc. may also be included to improve the aesthetic appearance of the wristband mobile device.
  • FIG. 6 is a schematic flowchart diagram of a method for manufacturing a wristband mobile device according to Embodiment 1 of the present invention. As shown in FIG. 6, the method may include the steps of:
  • the metal material blank is sintered and annealed to form a device blank
  • the billet can be subjected to multiple sintering and annealing heat treatment to reduce the stress of the billet for processing;
  • the step may specifically include: performing the above-mentioned metal pier materials according to the specifications required for the wristband type mobile device: cutting, boring, accumulation, forming, chamfering, reducing diameter, trimming, and the like;
  • the inner surface layer of the wristband may be grooved by a wire cutting method, so that the wristband has a plurality of slits extending along a width direction thereof;
  • Cut the wristband to make the wristband have a slidable opening.
  • step 605 can include:
  • the end of the wristband is incised so that one end of the wristband is separated from the apparatus body.
  • the method may further include:
  • a connecting member is attached to the open end.
  • FIG. 7 is a schematic flowchart diagram of a method for manufacturing a wristband mobile device according to Embodiment 1 of the present invention. As shown in FIG. 7, the method may include the steps of:
  • the metal material blank is sintered and annealed to form a device blank
  • the billet can be subjected to multiple sintering and annealing heat treatment to reduce the stress of the billet for processing;
  • the step may specifically include: performing the above-mentioned metal pier materials according to the specifications required for the wristband type mobile device: cutting, boring, accumulation, forming, chamfering, reducing diameter, trimming, and the like;
  • step 706 can include:
  • the end of the wristband is incised so that one end of the wristband is separated from the apparatus body.
  • the method may further include:
  • a connecting member is attached to the open end.
  • the wristband mobile device and the manufacturing method thereof are provided in detail in the above embodiments of the present invention.
  • the principles and embodiments of the present invention are described in the following.
  • the description of the above embodiments is only used for To help understand the method of the present invention and its core idea; at the same time, for those skilled in the art, according to the idea of the present invention, there will be changes in specific embodiments and application scopes. It should not be construed as limiting the invention.

Abstract

一种腕带式移动设备(100)及制造方法。该移动设备(100)包括金属材质的设备主体(10)以及与设备主体(10)一体成型的腕带(20)。腕带(20)为一体化结构。腕带(20)包括腕带主体(210)以及腕带端部的连接部件(220)。该移动设备(100)从结构上消除了连接点的出现,不仅使得设备更加耐用,而且结构整体性强,外观造型新颖,富有美感。

Description

一种腕带式移动设备及其制造方法
【技术领域】
本发明涉及机械加工技术领域,尤其涉及一种腕带式移动设备及其制造方法。
【背景技术】
手表或智能手环等腕带式移动设备一般是由设备主体和腕带组成,以手表为例,其即由表盘主体和表带组成,表带可分为金属表带和非金属表带。常见的金属表带,一般都是由多达十数节的钢制链节连接而成,相邻的链节之间通过销连接在一起,表带与表盘通过卡针相连。
上述的表带-表盘结构,其结构上不可避免的有较多连接点,因存在过多的连接点,经常使用手表会使连接点容易出现折断现象,且表带与表盘结构整体性不紧凑完整,外观造型缺乏新颖美感。
【发明内容】
本发明实施例提供了一种腕带式移动设备及其制造方法,可以提高设备的耐用度和外观美感。
本发明实施例提供一种腕带式移动设备,包括金属材质的设备主体以及与所述设备主体一体成型的腕带,所述腕带为一体化结构,所述腕带包括腕带主体以及腕带端部的连接部件。
优选的,所述设备主体和腕带为钛合金材质。
优选的,所述腕带主体内侧设有若干个沿其宽度方向延伸的切槽,所述切槽的开口位于所述腕带的内侧。
优选的,所述切槽的横截面呈“T”型。
优选的,所述腕带主体的厚度范围为1.5mm至3mm,所述切槽底部的厚度为0.15 mm至0.3mm。
优选的,所述腕带主体包括一段钛合金薄层,所述钛合金薄层上固定有非金属内衬。
优选的,所述腕带主体厚度范围为1.5mm至3mm,所述钛合金薄层厚度为0.15 mm至0.3 mm。
优选的,所述腕带为一段,所述腕带一端与所述设备主体一体成型,另一端能够通过所述连接部件与所述设备主体固定连接。
优选的,所述腕带为二段,所述腕带一端与所述设备主体一体成型,另一端能够通过所述连接部件相互固定连接。
优选的,所述连接部件为卡扣,其中二段所述腕带的卡扣相互匹配,能够实现相互卡扣连接。
本发明实施例还提供一种腕带式移动设备的制造方法,包括:
将金属材质的坯料进行烧结和退火热处理制成设备毛坯;
将所述设备毛坯进行镦锻加工,加工出带设备主体形状的毛坯;
对所述带设备主体形状的毛坯进行冲孔以形成环状的腕带;
对所述腕带进行切口,使所述腕带具有一可张合的开口。
优选的,一种所述坯料为钛合金材质。
优选的,在所述对所述带设备主体形状的毛坯进行冲孔以形成腕带之后,所述方法还包括:
在所述腕带的内表层加工出多个沿其宽度方向延伸的切槽。
优选的,所述在对所述带设备主体形状的毛坯进行冲孔以形成腕带之后,所述方法还包括:
对所述腕带内侧进行切削,以使所述腕带形成一段钛合金薄层;
在所述钛合金薄层处嵌入非金属内衬。
优选的,所述对所述腕带进行切口,使所述腕带具有一可张合的开口包括:
对所述腕带中部进行切口,将所述腕带切成两段。
优选的,所述对所述腕带进行切口,使所述腕带具有一可张合的开口包括:
对所述腕带端部进行切口,使所述腕带一端与所述设备主体实现分离。
优选的,所述方法还包括:
在所述开口处的端部加工出连接部件。
优选的,所述将所述设备毛坯进行镦锻加工包括:
按照腕带式移动设备所需要的规格对所述金属墩材进行:切料、镦头、聚积、成形、倒角、缩径、切边。
本发明实施例提供的腕带式设备及制造方法,与传统的链结式腕带(表带)不同,本实施中采用了一体化结构的腕带且腕带和设备一体成型,从结构上消除了连接点的出现,不仅使得设备更加耐用,而且结构整体性强,外观造型新颖,富有美感。
【附图说明】
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1 为本发明实施例提供的一种腕带式移动设备的结构第一示意图;
图2 为本发明实施例提供的一种腕带式移动设备的结构第二示意图;
图3 为图2中A处的放大图;
图4 为本发明实施例提供的一种腕带式移动设备的结构第三示意图;
图5 为本发明实施例提供的一种腕带式移动设备的制造方法的流程第一示意图;
图6为本发明实施例提供的一种腕带式移动设备的制造方法的流程第二示意图;
图7为本发明实施例提供的一种腕带式移动设备的制造方法的流程第三示意图。
【具体实施方式】
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1,图1是本发明实施例提供的一种腕带式移动设备的机构示意图,如图1所示,该腕带式移动设备100可以包括:金属材质的设备主体10和腕带20,其中,设备主体10和腕带20是一体加工成型的,并且腕带20为一体化结构,腕带20包括腕带主体210及腕带端部的连接部件220。
本实施例中,腕带式移动设备100可以是手表、智能手表、智能手环等设备,其中与传统的链结式腕带(表带)不同,本实施例中采用了一体化结构的腕带且腕带和设备一体成型,从结构上消除了连接点的出现,不仅使得设备更加耐用,而且结构整体性强,外观造型新颖,富有美感。
需要说明的,本实施例中设备主体10和腕带20是采用金属材质一体加工成型的,但腕带式移动设备还可包括固定在设备主体10内部的电子模块、机芯,以及固定在设备主体表面的屏幕等等部件,这些部件一般不限定为金属材质。
优选的,设备主体10和腕带20可以采用钛合金材质,利用钛合金的高疲劳强度及高韧性等优异的机械性能可使腕带实现灵活弯曲且不断裂。
更优选的,设备主体10和腕带20可以采用Ti-1023钛合金,Ti-1023是一种近β型钛合金,被广泛的采用在航空领域,强度高、断裂韧性好、锻造温度低和抗拉应力腐蚀能力强。
优选的,腕带主体210的厚度可以在1.5mm-3mm之间,例如可以为2mm。
需要说明的是,连接部件可以是与腕带主体一体成型的,也可以是固定安装在腕带主体210端部的。
请参考图2-3,在一种实施方式中,为了提高腕带主体210的柔韧性,腕带主体210上设有若干个沿宽度方向延伸的切槽230,切槽230的开口231位于腕带的内侧。切槽230包括底槽231和直槽232,底槽231沿腕带主体210的宽度方向延伸,直槽231垂直相通于底槽231,从腕带主体210内表面通向底槽231。
优选的,切槽230的横截面可以呈“T”型,切槽底部厚度(腕带最薄处)可以在0.15mm-0.3mm之间,即切槽230的深度可以大约在腕带主体厚度的0.9倍左右,当然此处不对切槽230的具体深度做具体的限制,本领域技术人员可以根据实际情况进行设定。
请参阅图4,在另一种实施方式中,腕带主体210被加工出一段钛合金薄层211,在钛合金薄层211上固定有非金属内衬212,非金属内衬22优选使用软性材料制成,例如塑料、皮革等材料,可以提高佩戴者的舒适度,并降低设备重量。
优选的,钛合金薄层211的厚度为0.15mm-0.3mm ,而非金属内衬212的厚度大致为腕带主体厚度减去钛合金薄层的厚度,使得固定非金属内衬之后,腕带为一厚度均匀的整体。
在一种实施方式中,腕带20可以为一段(图中未示出),即腕带20的一端与设备主体10一体成型,另一端连接有连接部件,相应的,设备主体也有对应的连接部件,设备主体可以和腕带通过连接部件相互固定连接。
在另一种实施方式中,如图1-3所示,腕带20可以为二段,每段腕带20的一端均与设备主体一体成型,另一端连接有连接部件220,则二段腕带20可以通过连接部件220实现固定连接。
需要说明的是,通过上述连接部件220实现的均是可分开的固定连接,以实现设备在腕部的取下或戴上。
举例来说,上述连接部件可以是卡扣,例如钩扣、暗扣、蝴蝶扣、皮带按扣、折叠安全扣、折叠扣或者针扣等。以腕带为两段为例,两段腕带两段连接的卡扣应当是相互匹配的,能够实现卡扣连接。
请参阅图5,图5为本发明实施例一提供的一种腕带式移动设备的制造方法的流程示意图。如图5所示,该方法可以包括步骤:
501、将金属材质的坯料进行烧结和退火热处理制成设备毛坯;
优选的,可以对坯料进行多次烧结和退火热处理,降低坯料的应力便于加工;
可以使用氢气或氮气进行烧结可保护气氛防氧化、防止某些金属元素变价、降温冷却保护降低氧含量;
502、将上述设备毛坯进行镦锻加工,加工出带设备主体形状的毛坯;
举例来说,本步骤可以具体包括:按照腕带式移动设备所需要的规格对上述金属墩材进行:切料、镦头、聚积、成形、倒角、缩径、切边等加工操作;
503、对上述带设备主体形状的毛坯进行冲孔以形成环状的腕带;
504、对上述腕带进行切口,使上述腕带具有一可张合的开口。
采用本发明实施例提供的制造方法得到的腕带式移动设备相比现有技术中的腕带式移动设备,采用了一体化结构的腕带且腕带和设备一体成型,从结构上消除了连接点的出现,不仅使得设备更加耐用,而且结构整体性强,外观造型新颖,富有美感。
优选的,在步骤504之后还可以包括:
在开口端部加工出连接部件;或者,
在开口端部安装连接部件。
优选的,坯料采用钛合金材质,利用钛合金的高疲劳强度及高韧性等优异的机械性能可使制成的设备腕带实现灵活弯曲且不断裂。
更优选的,采用Ti-1023钛合金,Ti-1023是一种近β型钛合金,被广泛的采用在航空领域,其强度高、断裂韧性好、锻造温度低和抗拉应力腐蚀能力强。
优选的,在步骤504之后,还可以包括打磨、抛光等步骤,以提高腕带式移动设备的外观美感。
请参阅图6,图6是本发明实施例一提供的一种腕带式移动设备的制造方法的流程示意图。如图6所示,该方法可以包括步骤:
601、将金属材质的坯料进行烧结和退火热处理制成设备毛坯;
优选的,可以对坯料进行多次烧结和退火热处理,降低坯料的应力便于加工;
602、将上述设备毛坯进行镦锻加工,加工出带设备主体形状的毛坯;
举例来说,本步骤可以具体包括:按照腕带式移动设备所需要的规格对上述金属墩材进行:切料、镦头、聚积、成形、倒角、缩径、切边等加工操作;
603、对上述带设备主体形状的毛坯进行冲孔以形成环状的腕带;
604、在上述腕带的内表层加工出多个沿其宽度方向延伸的切槽;
具体的,可以是对上述腕带的内表层通过线切割方式进行剔槽,以使上述腕带具有多个沿其宽度方向延伸的切槽;
605、对上述腕带进行切口,使上述腕带具有一可张合的开口。
其中步骤605可以包括:
对上述腕带中部进行切口,将上述腕带切成两段;或者,
对上述腕带端部进行切口,使上述腕带一端与上述设备主体实现分离。
优选的,优选的,在步骤605之后还可以包括:
在开口端部加工出连接部件;或者,
在开口端部安装连接部件。
请参阅图7,图7是本发明实施例一提供的一种腕带式移动设备的制造方法的流程示意图。如图7所示,该方法可以包括步骤:
701、将金属材质的坯料进行烧结和退火热处理制成设备毛坯;
优选的,可以对坯料进行多次烧结和退火热处理,降低坯料的应力便于加工;
702、将上述设备毛坯进行镦锻加工,加工出带设备主体形状的毛坯;
举例来说,本步骤可以具体包括:按照腕带式移动设备所需要的规格对上述金属墩材进行:切料、镦头、聚积、成形、倒角、缩径、切边等加工操作;
703、对上述带设备主体形状的毛坯进行冲孔以形成环状的腕带;
704、对上述腕带内侧进行切削,以使上述腕带形成一段钛合金薄层;
705、在上述钛合金薄层处嵌入非金属内衬;
706、对上述腕带进行切口,使上述腕带具有一可张合的开口。
其中步骤706可以包括:
对上述腕带中部进行切口,将上述腕带切成两段;或者,
对上述腕带端部进行切口,使上述腕带一端与上述设备主体实现分离。
优选的,在步骤706之后还可以包括:
在开口端部加工出连接部件;或者,
在开口端部安装连接部件。
以上对本发明实施例所提供的一种腕带式移动设备及其制造方法进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本发明的限制。

Claims (18)

  1. 一种腕带式移动设备,其特征在于,包括金属材质的设备主体以及与所述设备主体一体成型的腕带,所述腕带为一体化结构,所述腕带包括腕带主体以及腕带端部的连接部件。
  2. 根据权利要求1所述的腕带式移动设备,其特征在于,所述设备主体和腕带为钛合金材质。
  3. 根据权利要求2所述的腕带式移动设备,其特征在于,所述腕带主体内侧设有若干个沿其宽度方向延伸的切槽,所述切槽的开口位于所述腕带的内侧。
  4. 根据权利要求3所述的腕带式移动设备,其特征在于,所述切槽的横截面呈“T”型。
  5. 根据权利要求4所述的腕带式移动设备,其特征在于,所述腕带主体的厚度范围为1.5mm至3mm,所述切槽底部的厚度为0.15 mm至0.3mm。
  6. 根据权利要求2所述的腕带式移动设备,其特征在于,所述腕带主体包括一段钛合金薄层,所述钛合金薄层上固定有非金属内衬。
  7. 根据权利要求6所述的腕带式移动设备,其特征在于,所述腕带主体厚度范围为1.5mm至3mm,所述钛合金薄层厚度为0.15 mm至0.3 mm。
  8. 根据权利要求1-6任一项所述的腕带式移动设备,其特征在于,所述腕带为一段,所述腕带一端与所述设备主体一体成型,另一端能够通过所述连接部件与所述设备主体固定连接。
  9. 根据权利要求1-6任一项所述的腕带式移动设备,其特征在于,所述腕带为二段,所述腕带一端与所述设备主体一体成型,另一端能够通过所述连接部件相互固定连接。
  10. 根据权利要求9所述的腕带式移动设备,其特征在于,所述连接部件为卡扣,其中二段所述腕带的卡扣相互匹配,能够实现相互卡扣连接。
  11. 一种腕带式移动设备的制造方法,其特征在于,包括:
    将金属材质的坯料进行烧结和退火热处理制成设备毛坯;
    将所述设备毛坯进行镦锻加工,加工出带设备主体形状的毛坯;
    对所述带设备主体形状的毛坯进行冲孔以形成环状的腕带;
    对所述腕带进行切口,使所述腕带具有一可张合的开口。
  12. 根据权利要求11所述的方法,其特征在于,所述坯料为钛合金材质。
  13. 根据权利要求12所述的方法,其特征在于,在所述对所述带设备主体形状的毛坯进行冲孔以形成腕带之后,所述方法还包括:
    在所述腕带的内表层加工出多个沿其宽度方向延伸的切槽。
  14. 根据权利要求12所述的方法,其特征在于,所述在对所述带设备主体形状的毛坯进行冲孔以形成腕带之后,所述方法还包括:
    对所述腕带内侧进行切削,以使所述腕带形成一段钛合金薄层;
    在所述钛合金薄层处嵌入非金属内衬。
  15. 根据权利要求11-14任一项所述的方法,其特征在于,所述对所述腕带进行切口,使所述腕带具有一可张合的开口包括:
    对所述腕带中部进行切口,将所述腕带切成两段。
  16. 根据权利要求11-14任一项所述的方法,其特征在于,所述对所述腕带进行切口,使所述腕带具有一可张合的开口包括:
    对所述腕带端部进行切口,使所述腕带一端与所述设备主体实现分离。
  17. 根据权利要求11-14任一项所述的方法,其特征在在于,所述方法还包括:
    在所述开口处的端部加工出连接部件。
  18. 根据权利要求11-14任一项所述的方法,其特征在于:所述将所述设备毛坯进行镦锻加工包括:
    按照腕带式移动设备所需要的规格对所述金属墩材进行:切料、镦头、聚积、成形、倒角、缩径、切边。
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