TWI703291B - Bellows device - Google Patents

Bellows device Download PDF

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TWI703291B
TWI703291B TW108142505A TW108142505A TWI703291B TW I703291 B TWI703291 B TW I703291B TW 108142505 A TW108142505 A TW 108142505A TW 108142505 A TW108142505 A TW 108142505A TW I703291 B TWI703291 B TW I703291B
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main pipe
pipe
reinforcement
wave
rings
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TW108142505A
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TW202120853A (en
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陳運慶
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陳運慶
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一種波紋管裝置,包含一本體單元,及一安裝於該本體單元的加強單元。該本體單元包括一主管,及二分別銜接該主管相反兩端的端管。該主管包括多個波峰部、多個銜接部,及多個分別經該等銜接部而與該等波峰部構成波型的波谷部。每一個波谷部與相鄰的二銜接部間界定出一間隔空間。該加強單元包括多個分別設置於該等間隔空間的補強模組、一套設於該主管的網套,及二分別套設於該等端管且用以定位該網套的束環。藉由該等補強模組在該等間隔空間產生支撐效果,配合自外部套覆而產生徑向定位效果的該網套,能防止該等波峰部及該等波谷部產生形變。A corrugated pipe device includes a body unit and a reinforcement unit installed on the body unit. The body unit includes a main pipe and two end pipes respectively connected to opposite ends of the main pipe. The main pipe includes a plurality of crests, a plurality of connecting portions, and a plurality of troughs forming a wave pattern with the crests through the connecting portions. A space is defined between each trough part and two adjacent connecting parts. The reinforcement unit includes a plurality of reinforcement modules respectively arranged in the interval spaces, a set of net sleeves arranged on the main pipe, and two tie rings respectively arranged on the end pipes and used for positioning the net sleeve. The reinforcement modules produce a supporting effect in the spacing spaces, and the mesh sleeve, which is covered from the outside to produce a radial positioning effect, can prevent the wave crests and wave troughs from being deformed.

Description

波紋管裝置Bellows device

本發明是有關於一種用於輸送流體的管件,特別是指一種波紋管裝置。The present invention relates to a pipe fitting for conveying fluid, in particular to a bellows device.

為了因應高壓流體的輸送,需要得以承受一定壓力的輸送管件。參閱圖1,為一現有的波紋管1,包含一管本體11、一包覆該管本體11的網套12、二分別銜接於該管本體11相反兩端的端管13,及二分別連接於該管本體11相反兩端,且用以定位該網套12且銜接該等端管13的套環14。其中,每一個端管13及同側的套環14是透過一個形成於個別的該套環14、個別的該端管13與該管本體11之銜接端的焊點19,使所述端管13與該管本體11相互銜接,並且定位同側的該套環14。In order to cope with the delivery of high-pressure fluids, delivery pipes that can withstand a certain pressure are required. Referring to Fig. 1, there is a conventional corrugated pipe 1, including a pipe body 11, a net sleeve 12 covering the pipe body 11, two end pipes 13 respectively connected to opposite ends of the pipe body 11, and two end pipes respectively connected to The opposite ends of the tube body 11 are used for positioning the net sleeve 12 and connecting the collars 14 of the end tubes 13. Wherein, each end tube 13 and the collar 14 on the same side are formed through a welding point 19 formed at the joint end of the individual collar 14, the individual end tube 13 and the tube body 11, so that the end tube 13 It is connected with the tube body 11 and the collar 14 on the same side is positioned.

該管本體11包括多個交錯連續連接之波峰部118及波谷部119,藉由該等波峰部118及該等波谷部119所共同構成的反覆波型,可達成減震、耐壓,甚至防止熱變形的效果。而該網套12包覆於該管本體11時,是直接接觸該等波峰部118,藉此產生徑向方向的限位效果,能強化該管本體11承受內部壓力及減震的性能。透過該等波峰部118及該等波谷部119所共同構成的反覆波型,能讓該管本體11相較於完全平直之型態提供微幅的伸縮彈性,也藉此產生優化耐壓性能以及減震的效果。The tube body 11 includes a plurality of crest portions 118 and trough portions 119 that are continuously connected in a staggered manner. The repetitive wave type formed by the crest portions 118 and the trough portions 119 can achieve shock absorption, pressure resistance, and even prevent The effect of thermal deformation. When the mesh sleeve 12 is wrapped on the tube body 11, it directly contacts the wave crests 118, thereby generating a radial limit effect, which can strengthen the tube body 11's ability to withstand internal pressure and shock absorption. The repetitive wave type formed by the wave crest parts 118 and the wave trough parts 119 together allows the tube body 11 to provide slight elasticity compared to the completely flat form, thereby generating optimized pressure resistance performance And the effect of shock absorption.

同時參閱圖1與圖2,當該波紋管1使用於傳輸高壓流體時,在所述流體流動的過程中,承壓力量並不會完全地均勻分布,因此局部的較大承壓力量仍可能使該等波峰部118或該等波谷部119產生形變,因而破壞原本呈現之規律反覆波型的型態。為了避免該等波峰部118或該等波谷部119產生形變,該波紋管1雖然透過該網套12來強化徑向的支撐力,但相較於該等波峰部118而言,未接觸該網套12而無法受到支撐效果的該等波谷部119,仍會有產生形變的現象。特別若當高壓流體的高壓特性而使該等波峰部118產生徑向膨脹,因該等波峰部118外部仍會受到該網套12的支撐,因此承受壓力而產生的形變量將會反應在每一個波峰部118的擴張,而所述的形變量將會連帶影響到該等波谷部119,使得該等波谷部119受到類似自軸向相反兩側向內擠壓的外力,因而產生使波谷呈現更尖銳狀的形變。當任一個波谷部119產生上述形變,不僅會破壞整體的完整波型,也可能因而造成應力集中,輕則使得該波紋管1喪失原本預期的效果,重則會因局部結構無法承受外力而產生斷裂的情況。Referring to Figures 1 and 2 at the same time, when the bellows 1 is used to transmit high-pressure fluid, the pressure bearing capacity will not be completely evenly distributed during the flow of the fluid, so local larger bearing capacity is still possible The wave crests 118 or the wave troughs 119 are deformed, thereby destroying the original regular repetitive wave pattern. In order to prevent the wave crest portions 118 or the wave trough portions 119 from being deformed, although the corrugated tube 1 strengthens the radial support force through the mesh sleeve 12, it does not touch the mesh compared to the wave crest portions 118. The troughs 119 that cannot be supported by the sleeve 12 will still be deformed. Especially if the high pressure characteristics of the high-pressure fluid cause the wave crests 118 to expand radially, because the outside of the wave crests 118 will still be supported by the mesh sleeve 12, the deformation caused by the pressure will be reflected in each wave. The expansion of a crest portion 118, and the aforementioned deformation will affect the trough portions 119 together, so that the trough portions 119 are similarly squeezed inward from the opposite sides of the axial direction, thus causing the trough to appear Sharper deformation. When any of the wave troughs 119 produces the above-mentioned deformation, it will not only destroy the entire complete wave pattern, but may also cause stress concentration. In the slightest, the bellows 1 will lose the originally expected effect, and in the worst case, the local structure will not be able to withstand the external force. Case.

參閱圖3並配合圖1,就該波紋管1的整體強度而言,即便藉由該等波峰部118及該等波谷部119而優化承受壓力的性能,但在每一個端管13、該管本體11之對應端,與同側的該套環14之間,卻僅是依靠單一個焊點19來形成連結關係,在該波紋管1承受壓力的情況下,所述的焊點19必須同時支撐來自多方向的應力,從該處產生毀損的機率也相對提高,耐用度也因而產生疑慮。Referring to Fig. 3 and in conjunction with Fig. 1, in terms of the overall strength of the bellows 1, even if the wave crests 118 and the wave troughs 119 are used to optimize the pressure-bearing performance, at each end pipe 13, the pipe The corresponding end of the body 11 and the collar 14 on the same side only rely on a single solder joint 19 to form a connection. When the bellows 1 is under pressure, the solder joints 19 must be at the same time Supporting stress from multiple directions, the probability of damage from there is relatively increased, and durability is also doubtful.

因此,本發明之目的,即在提供一種能避免產生形變以提高耐用性並優化傳導流體之性能的波紋管裝置。Therefore, the object of the present invention is to provide a bellows device that can avoid deformation to improve durability and optimize the performance of conducting fluid.

於是,本發明波紋管裝置,包含一本體單元,及一安裝於該本體單元上的加強單元。Therefore, the corrugated pipe device of the present invention includes a main body unit and a reinforcement unit installed on the main body unit.

該本體單元包括一主管,及二分別銜接於該主管之相反兩端的端管,該主管包括多個波峰部、多個分別銜接於該等波峰部相反兩端且沿徑向延伸的銜接部,及多個分別與該等波峰部經該等銜接部交錯銜接而共同構成連續波型的波谷部。每一個波谷部的外側與相鄰的二個銜接部之間共同界定出一間隔空間。The main body unit includes a main pipe and two end pipes respectively connected to opposite ends of the main pipe. The main pipe includes a plurality of wave crest parts and a plurality of joint parts respectively connected to the opposite ends of the wave crest parts and extending in a radial direction, And a plurality of the wave crest parts are interlaced and connected through the connecting parts to form a continuous wave trough part. The outer side of each wave trough part and two adjacent connecting parts jointly define a space.

該加強單元包括多個分別設置於該等間隔空間的補強模組、一套設於該主管外的網套,及二分別套設於該等端管且用以定位該網套的束環。The reinforcement unit includes a plurality of reinforcement modules respectively arranged in the interval spaces, a set of net sleeves arranged outside the main pipe, and two tie rings respectively arranged on the end pipes and used for positioning the net sleeve.

本發明之功效在於:將該等補強模組分別設置在該等間隔空間中,能對該等波谷部產生支撐效果,配合自外部套覆而產生徑向定位效果的該網套,即可有效防止該等波峰部及該等波谷部產生形變,藉此不但可提高本發明波紋管裝置的可用性及耐用性,並能因整體結構之強化而優化傳輸高壓流體的性能。The effect of the present invention is that the reinforcing modules are respectively arranged in the interval spaces, which can produce a supporting effect on the wave troughs, and the net sleeve that is covered from the outside to produce a radial positioning effect can be effective Preventing the wave crests and the wave troughs from being deformed can not only improve the usability and durability of the bellows device of the present invention, but also optimize the transmission performance of high-pressure fluid due to the strengthening of the overall structure.

參閱圖4,本發明波紋管裝置之一實施例,包含一本體單元2,及一安裝於該本體單元2上的加強單元3。該實施例適用於藉由連接固定式或活動式之法蘭,在完成安裝後構成傳輸流體的路徑,而安裝方式可依照使用環境或者設備條件自由調整,並不以使用法蘭安裝的技術手段為限。Referring to FIG. 4, an embodiment of the corrugated pipe device of the present invention includes a body unit 2 and a reinforcing unit 3 installed on the body unit 2. This embodiment is suitable for connecting fixed or movable flanges to form a fluid transmission path after installation, and the installation method can be adjusted freely according to the use environment or equipment conditions, instead of using the technical means of flange installation Is limited.

同時參閱圖4與圖5,該本體單元2包括一沿一軸向延伸的主管21,及二分別一體銜接於該主管21之相反兩端的端管22。該主管21包括多個波峰部211、多個分別銜接於該等波峰部211相反兩端且沿徑向延伸的銜接部219,及多個分別與該等波峰部211經該等銜接部219交錯銜接的波谷部212。要先行說明的是,每一個波峰部211和每一個波谷部212皆是呈環狀,以該主管21沿徑向之截面觀之,該等波峰部211、該等銜接部219,與該等波谷部212概會共同構成沿軸向行進的連續波型,且該等波峰部211及該等波谷部212會分別實質對應所述連續波型的波峰與波谷。每一個波谷部212的外側與相鄰的二個銜接部219之間共同界定出一間隔空間210,而分別鄰近於該等端管22的該等波谷部212及分別銜接於該等波谷部212的該等銜接部219,分別與該等端管22間隔界定出一端口空間220(繪示於圖8),所述的波谷部212與該端管22相間隔而界定出一連通於該端口空間220的凹口229。Referring to FIGS. 4 and 5 at the same time, the body unit 2 includes a main pipe 21 extending along an axial direction, and two end pipes 22 integrally connected to opposite ends of the main pipe 21 respectively. The main pipe 21 includes a plurality of crest portions 211, a plurality of connecting portions 219 respectively connected to opposite ends of the crest portions 211 and extending in the radial direction, and a plurality of intersecting portions with the crest portions 211 through the connecting portions 219. Converging trough 212. It should be explained first that each wave crest part 211 and each wave trough part 212 are ring-shaped, viewed from the cross section of the main pipe 21 in the radial direction, the wave crest parts 211 and the connecting parts 219, and the The trough portions 212 may collectively form a continuous wave type traveling along the axial direction, and the crest portions 211 and the trough portions 212 substantially correspond to the crests and troughs of the continuous wave type, respectively. The outer side of each wave trough 212 and the two adjacent connecting parts 219 jointly define a space 210, and the wave troughs 212 adjacent to the end pipes 22 are respectively connected to the wave troughs 212 The connecting portions 219 of the two are separated from the end pipes 22 to define a port space 220 (shown in FIG. 8), and the trough portion 212 is spaced from the end pipe 22 to define a port communicating with the port The notch 229 of the space 220.

該加強單元3包括多個分別設置於該等間隔空間210的補強模組31、一套設於該主管21外的網套32、二分別套設於該等端管22且用以定位該網套32的束環33、二分別設置於該等端口空間220的銜接環34、二分別焊接於該等銜接環34與該等端管22之間的內焊料35,及二分別焊接於該等束環33遠離該銜接環34之一端與該網套32之間的外焊料36。The reinforcement unit 3 includes a plurality of reinforcement modules 31 respectively arranged in the spacing spaces 210, a set of net sleeves 32 arranged outside the main pipe 21, and two sets of net sleeves 32 respectively arranged on the end pipes 22 and used for positioning the net The bezels 33 of the sleeve 32, the two adapter rings 34 respectively disposed in the port spaces 220, the two are respectively welded to the inner solder 35 between the adapter rings 34 and the end tubes 22, and the two are respectively welded to the The tie ring 33 is away from the outer solder 36 between one end of the connecting ring 34 and the mesh sleeve 32.

參閱圖5與圖6,每一個補強模組31具有二各自呈C形而分別具有一開口310並能相互對接以共同構成一完整環狀的半環件311,也就是說,每一個補強模組31的該等半環件311以該等開口310朝向彼此的方向相互對接而形成二個連接點41,有利於提高逐一組裝時的作業效率。參閱圖5至圖7,每一個半環件311是由一個內環部312,及一個一體連接於該內環部312徑向外側且寬度漸擴的擴展部313所組成。每一個補強模組31之內環部312的相反兩側分別與相鄰的該等銜接部219相間隔,使得每一個波型仍能存在沿軸向之微幅震動餘裕,以吸收輸送高壓流體產生的震動,藉此達成減震的效果;而每一個擴展部313對應左右兩側相鄰的該等波峰部211,兩側概分別沿著個別的波峰部211之外側圓弧延伸,以對該等波峰部211產生針對性的支撐效果。另外,由於該等補強單元31的該等連接點41沿該主管21之軸向是如圖6所示地相互錯位,藉此使該等連接點41不集中於同一直線的延伸上,藉此分散接點,避免造成受力集中的現象。Referring to FIGS. 5 and 6, each reinforcing module 31 has two C-shaped and respectively having an opening 310 and can be connected to each other to form a complete ring-shaped half-ring 311, that is, each reinforcing module 31 The half-rings 311 of the group 31 are butted with each other in the directions of the openings 310 facing each other to form two connection points 41, which is beneficial to improve the work efficiency when assembling one by one. Referring to FIGS. 5 to 7, each half-ring 311 is composed of an inner ring portion 312 and an expansion portion 313 integrally connected to the radially outer side of the inner ring portion 312 and gradually expanding in width. The opposite sides of the inner ring portion 312 of each reinforcing module 31 are spaced apart from the adjacent connecting portions 219, so that each wave pattern still has a margin of slight vibration along the axial direction to absorb and transport high-pressure fluid The vibration generated thereby achieves the effect of shock absorption; and each expansion portion 313 corresponds to the adjacent crest portions 211 on the left and right sides, and both sides extend along the outer arc of the individual crest portion 211 to match These wave crests 211 produce a targeted supporting effect. In addition, since the connecting points 41 of the reinforcing units 31 are displaced from each other along the axial direction of the main pipe 21 as shown in FIG. 6, the connecting points 41 are not concentrated on the extension of the same straight line. Disperse the contacts to avoid the phenomenon of force concentration.

參閱圖8並配合圖4,每一個銜接環34具有一位於該端口空間220中的基部341、一自該基部341以遠離該主管21的方向延伸並搭接於個別之端管22的搭接部342,及一自個別之基部341延伸且定位於該凹口229的卡榫部343。所述銜接環34相較於所述補強模組31,除了設置的位置不同以外,同樣能針對對應該端口空間220的波谷部212產生支撐效果,除此之外,還能藉由搭接於同側之該等端管22的該等搭接部342,以及分別定位於該等凹口229的該等卡榫部343(圖8中僅呈現單一側),發揮優化連結強度的功能。Referring to FIG. 8 and in conjunction with FIG. 4, each adapter ring 34 has a base 341 located in the port space 220, and a lap that extends from the base 341 in a direction away from the main pipe 21 and overlaps the respective end pipe 22 Portion 342, and a tenon portion 343 extending from the respective base portion 341 and positioned in the recess 229. Compared with the reinforcing module 31, the connecting ring 34 can also support the trough 212 corresponding to the port space 220 in addition to the different positions. In addition, it can also be connected to The overlapping portions 342 of the end pipes 22 on the same side, and the tenon portions 343 (only a single side shown in FIG. 8) respectively positioned in the recesses 229 play the function of optimizing the connection strength.

同時參閱圖7與圖8,為了使每一個銜接環34確實發揮良好的固定效果,每一個銜接環34也是以焊接方式定位於個別的端口空間220,具體而言則可在與該主管21連接處,也就是個別的卡榫部343與該主管21之間施行焊接,如圖8所示地形成焊點42。而為了進一步避免該等銜接環34產生應力集中的問題,除了將該銜接環34焊接於該主管21上以外,還在與同側之端管22搭接處形成所述內焊料35。而每一個內焊料35是形成於個別的搭接部342與同側的端管22之間,能使每一個銜接環34與該主管21及同側的該端管22都形成各自的焊接點,藉此分散應力而優化連結的穩定性。Referring to Figures 7 and 8 at the same time, in order to make each adapter ring 34 really exert a good fixing effect, each adapter ring 34 is also positioned in a separate port space 220 by welding, specifically, it can be connected to the main pipe 21 A welding point 42 is formed between the individual latching portion 343 and the main pipe 21 at a location, as shown in FIG. 8. In order to further avoid the stress concentration problem of the adapter rings 34, in addition to welding the adapter ring 34 to the main pipe 21, the inner solder 35 is also formed at the overlap with the end pipe 22 on the same side. Each inner solder 35 is formed between the individual overlapping portion 342 and the end tube 22 on the same side, so that each adapter ring 34 and the main pipe 21 and the end tube 22 on the same side can form a respective welding point , To disperse the stress and optimize the stability of the connection.

要特別說明的是,因施行焊接而相互銜接的材料不同時,容易因不同材料之間的電位差而加快鏽蝕,為了防止焊接處產生鏽蝕,該加強單元3之該等補強模組31的材質與該本體單元2的該主管21相同,且該等銜接環34的材質與該本體單元2之該主管21及該等端管22相同,藉由相互銜接之材質相同的設計,即可防止材料之間產生電位差,特別較佳是採用例如SUS-304、SUS-316等等之不鏽鋼材質,更能有效防止鏽蝕,大幅提高耐用度。It should be particularly noted that when the materials that are connected to each other due to welding are different, it is easy to accelerate corrosion due to the potential difference between the different materials. In order to prevent corrosion at the welding place, the material of the reinforcement modules 31 of the reinforcement unit 3 is The main pipe 21 of the main body unit 2 is the same, and the material of the connecting rings 34 is the same as that of the main pipe 21 and the end pipes 22 of the main body unit 2. There is a potential difference between them, and it is particularly preferable to use stainless steel materials such as SUS-304, SUS-316, etc., which can more effectively prevent corrosion and greatly improve durability.

重新參閱圖4、圖7、圖8,當本實施例的該等補強模組31及該等銜接環34都安裝完成後,再藉由該等束環33配合該等外焊料36的焊接定位,即可固定該網套32而完成本實施例的組裝。其中,對於位在同一側的該束環33及該銜接環34而論,每一個銜接環34與同側的該端管22之間,形成有所述內焊料35及所述焊點42兩個焊接點,而每一個束環33與該網套32之間也形成有所述外焊料36的焊接點,也就是在該主管21與每一個端管22結合的連接處,實質上有三個焊接點來分散使用時產生的應力,確實可藉此提高結合的穩定性。4, 7, and 8 again, when the reinforcement modules 31 and the connecting rings 34 of this embodiment are all installed, the tie rings 33 are used to match the welding positioning of the outer solder 36 , The net cover 32 can be fixed to complete the assembly of this embodiment. Wherein, for the bezel 33 and the adapter ring 34 located on the same side, the inner solder 35 and the solder joint 42 are formed between each adapter ring 34 and the end tube 22 on the same side. There are three welding points, and the welding points of the outer solder 36 are also formed between each bezel 33 and the mesh sleeve 32, that is, at the joint between the main pipe 21 and each end pipe 22, there are essentially three Welding points to disperse the stress generated during use can indeed improve the stability of the combination.

接著就整體使用強度而言,利用該等補強模組31,能分別支撐對應該等間隔空間210的所述波峰部211及所述波谷部212,而藉由該等銜接環34,則能支撐於對應該等端口空間220的波谷部212,且一併強化銜接該等端管22處的連結強度,避免應力集中。最後,配合提供徑向向內之支撐效果的該網套32,即能整體性地維持該主管21之該等波峰部211與該等波谷部212所構成之連續波型的結構型態,有效防止形變的產生,藉此提高了耐用度及可承受之內部壓力。Then in terms of overall strength, the reinforcement modules 31 can respectively support the crest portion 211 and the trough portion 212 corresponding to the spacing spaces 210, and the connecting rings 34 can support At the trough 212 corresponding to the port spaces 220, the connection strength at the joints of the end pipes 22 is also strengthened to avoid stress concentration. Finally, with the mesh sleeve 32 that provides a radially inward support effect, it can integrally maintain the continuous wave type structure formed by the wave crests 211 and the wave troughs 212 of the main pipe 21, effectively Prevent the generation of deformation, thereby improving the durability and the internal pressure that can withstand.

綜上所述,本發明波紋管裝置,能藉由該加強單元3的該等補強模組31,對該主管21的該等波峰部211及該等波谷部212產生支撐效果,配合該網套32維持該等波峰部211與該等波谷部212所構成之連續波型的結構型態,藉此強化整體的結構強度而避免產生形變,不但提高了可用性及耐用性,也優化了傳輸高壓流體的性能,故確實能達成本發明之目的。In summary, the corrugated pipe device of the present invention can support the wave crests 211 and wave troughs 212 of the main pipe 21 by the reinforcement modules 31 of the reinforcement unit 3, and cooperate with the mesh sleeve 32 Maintain the continuous wave structure formed by the wave crests 211 and the wave troughs 212, thereby strengthening the overall structural strength and avoiding deformation, which not only improves the usability and durability, but also optimizes the transmission of high-pressure fluid The performance of the invention can indeed achieve the purpose of the invention.

惟以上所述者,僅為本發明之實施例而已,當不能以此限定本發明實施之範圍,凡是依本發明申請專利範圍及專利說明書內容所作之簡單的等效變化與修飾,皆仍屬本發明專利涵蓋之範圍內。However, the above are only examples of the present invention. When the scope of implementation of the present invention cannot be limited by this, all simple equivalent changes and modifications made in accordance with the scope of the patent application of the present invention and the content of the patent specification still belong to This invention patent covers the scope.

2:本體單元 21:主管 210:間隔空間 211:波峰部 212:波谷部 219:銜接部 22:端管 220:端口空間 229:凹口 3:加強單元 31:補強模組 310:開口 311:半環件 312:內環部 313:擴展部 32:網套 33:束環 34:銜接環 341:基部 342:搭接部 343:卡榫部 35:內焊料 36:外焊料 41:連接點 42:焊點 2: body unit 21: Supervisor 210: Interval 211: crest 212: trough 219: Connection Department 22: End pipe 220: port space 229: Notch 3: Strengthening unit 31: Reinforcement module 310: open 311: half ring 312: Inner Ring 313: Extension 32: net set 33: Clamping ring 34: Connecting ring 341: base 342: Overlap 343: Tenon 35: inner solder 36: Outer solder 41: Connection point 42: solder joint

本發明之其他的特徵及功效,將於參照圖式的實施方式中清楚地呈現,其中: 圖1是一示意圖,說明一現有的波紋管; 圖2是一過程示意圖,配合圖1說明該現有的波紋管之一管本體產生形變的情況; 圖3是一局部放大圖,說明該現有的波紋管之結構強度上的缺點; 圖4是一示意圖,說明本發明波紋管裝置的一實施例; 圖5是一局部的立體分解圖,說明該實施例之一加強單元的其中二個補強模組的組裝方式; 圖6是一局部的側視圖,配合圖5說明該等補強模組安裝完成的情況; 圖7是一局部放大的示意圖,說明該等補強模組安裝於該實施例之一本體單元上的情況;及 圖8是一局部放大的示意圖,說明利用該加強單元的其中一個銜接環的安裝方式以及所能產生的效果。 Other features and effects of the present invention will be clearly presented in the embodiments with reference to the drawings, in which: Figure 1 is a schematic diagram illustrating an existing bellows; FIG. 2 is a schematic diagram of the process, which is used in conjunction with FIG. 1 to illustrate the deformation of a tube body of the existing corrugated tube; Figure 3 is a partial enlarged view illustrating the shortcomings in the structural strength of the existing bellows; Figure 4 is a schematic diagram illustrating an embodiment of the bellows device of the present invention; Figure 5 is a partial three-dimensional exploded view illustrating the assembly method of two reinforcement modules of one of the reinforcement units of this embodiment; Figure 6 is a partial side view, in conjunction with Figure 5 to illustrate the completion of the installation of the reinforcement modules; Figure 7 is a partially enlarged schematic diagram illustrating the installation of the reinforcement modules on a body unit of the embodiment; and Fig. 8 is a partially enlarged schematic diagram illustrating the installation method and the effect that can be produced by using one of the adapter rings of the reinforcing unit.

2:本體單元 2: body unit

21:主管 21: Supervisor

211:波峰部 211: crest

212:波谷部 212: trough

219:銜接部 219: Connection Department

22:端管 22: End pipe

3:加強單元 3: Strengthening unit

31:補強模組 31: Reinforcement module

32:網套 32: net set

33:束環 33: Clamping ring

34:銜接環 34: Connecting ring

35:內焊料 35: inner solder

36:外焊料 36: Outer solder

Claims (9)

一種波紋管裝置,包含:一本體單元,包括一主管,及二分別銜接於該主管之相反兩端的端管,該主管包括多個波峰部、多個分別銜接於該等波峰部相反兩端且沿徑向延伸的銜接部,及多個分別與該等波峰部經該等銜接部交錯銜接而共同構成連續波型的波谷部,每一個波谷部的外側與相鄰的二個銜接部之間共同界定出一間隔空間;及一加強單元,安裝於該本體單元上,並包括多個分別設置於該等間隔空間的補強模組、一套設於該主管外的網套,及二分別套設於該等端管且用以定位該網套的束環,每一個補強模組具有二各自呈C形而分別具有一開口並能相互對接以共同構成一完整環狀的半環件,每一個半環件是由一個內環部,及一個一體連接於該內環部徑向外側且寬度漸擴的擴展部所組成。 A bellows device includes: a body unit, including a main pipe, and two end pipes respectively connected to opposite ends of the main pipe. The main pipe includes a plurality of wave crest parts, a plurality of wave crest parts respectively connected to the opposite ends of the wave crest parts and The connecting parts extending in the radial direction, and a plurality of the wave crest parts intersectingly connected through the connecting parts to form a continuous wave trough part. The outside of each trough part is between two adjacent connecting parts Jointly define an interval space; and a reinforcement unit installed on the main body unit, and includes a plurality of reinforcement modules respectively arranged in the interval spaces, a net sleeve arranged outside the main pipe, and two separate sets The binding rings arranged on the end pipes and used for positioning the net sleeve, each reinforcing module has two C-shaped half-rings each having an opening and can be connected to each other to form a complete ring. A half ring is composed of an inner ring part and an expansion part which is integrally connected to the radial outside of the inner ring part and has a gradually expanding width. 如請求項1所述的波紋管裝置,其中,每一個補強模組的該等半環件以該等開口朝向彼此的方向相互對接而形成二個連接點,至少有二個補強單元的該等連接點沿該主管之軸向是相互錯位。 The corrugated pipe device according to claim 1, wherein the half-rings of each reinforcing module are butted with each other in the directions of the openings facing each other to form two connection points, and the two connecting points of at least two reinforcing units The connection points are misaligned along the axial direction of the main pipe. 如請求項1至2任一項所述的波紋管裝置,其中,該加強單元的每一個補強模組的相反兩側分別與相鄰的該等銜接部相間隔。 The bellows device according to any one of claims 1 to 2, wherein the opposite sides of each reinforcing module of the reinforcing unit are spaced apart from the adjacent connecting portions. 如請求項1至2任一項所述的波紋管裝置,其中,該加強單元之該等補強模組的材質與該本體單元的該主管相同。 The bellows device according to any one of claims 1 to 2, wherein the material of the reinforcement modules of the reinforcement unit is the same as that of the main pipe of the body unit. 如請求項1所述的波紋管裝置,其中,該主管鄰近於該等端管的兩端分別與該等端管間隔界定出一端口空間,該加強單元還包括二分別設置於該等端口空間的銜接環。 The corrugated pipe device according to claim 1, wherein the main pipe is adjacent to the two ends of the end pipes to define a port space separated from the end pipes, and the reinforcing unit further includes two ports respectively arranged in the port spaces The convergence loop. 如請求項5所述的波紋管裝置,其中,每一個端口空間是由該主管鄰近於個別之端管的該波谷部、銜接於該波谷部的銜接部,與個別之端管所圍繞界定而成,所述波谷部與該端管相間隔而界定出一連通於該端口空間的凹口,該加強單元的每一個銜接環具有一位於該端口空間中的基部、一自該基部以遠離該主管的方向延伸並搭接於個別之端管的搭接部,及一自個別之基部延伸且定位於該凹口的卡榫部。 The bellows device according to claim 5, wherein each port space is defined by the main pipe adjacent to the trough portion of the respective end pipe, the connecting portion connected to the trough portion, and the respective end pipe. The wave trough is spaced from the end tube to define a notch communicating with the port space, and each of the connecting rings of the reinforcing unit has a base located in the port space and a distance away from the base. The direction of the main pipe extends and overlaps the overlap portion of the individual end pipe, and a tenon portion extending from the individual base portion and positioned in the recess. 如請求項6所述的波紋管裝置,其中,該加強單元還包括二分別焊接於該等銜接環的該等搭接部與該等端管之間的內焊料。 The bellows device according to claim 6, wherein the reinforcement unit further comprises two inner solders respectively welded between the overlapping parts of the connecting rings and the end pipes. 如請求項5至7任一項所述的波紋管裝置,其中,該加強單元之該等銜接環的材質與該本體單元之該主管及該等端管相同。 The bellows device according to any one of claims 5 to 7, wherein the material of the connecting rings of the reinforcing unit is the same as the main pipe and the end pipes of the body unit. 如請求項1所述的波紋管裝置,其中,該加強單元還包括二分別焊接於該等束環遠離該本體單元之一端與該網套之間的外焊料。 The corrugated pipe device according to claim 1, wherein the reinforcement unit further includes two outer solders respectively welded between an end of the tie rings away from the body unit and the mesh sleeve.
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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10246374A (en) * 1997-02-28 1998-09-14 Toyox Co Ltd Connection structure of spiral reinforcing hose
DE102007017008A1 (en) * 2007-04-11 2008-10-16 Veritas Ag Stabilizing device for corrugated hose, has two stabilizing segments detachably connected with each other for closing at periphery of corrugated hose, and contour at side of each segment brought into contact at hose
CN106641527A (en) * 2017-02-22 2017-05-10 陆子万 All-metal air conditioner hose assembly for automobile and processing method
TWM592483U (en) * 2019-11-22 2020-03-21 陳運慶 Bellows device

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10246374A (en) * 1997-02-28 1998-09-14 Toyox Co Ltd Connection structure of spiral reinforcing hose
DE102007017008A1 (en) * 2007-04-11 2008-10-16 Veritas Ag Stabilizing device for corrugated hose, has two stabilizing segments detachably connected with each other for closing at periphery of corrugated hose, and contour at side of each segment brought into contact at hose
CN106641527A (en) * 2017-02-22 2017-05-10 陆子万 All-metal air conditioner hose assembly for automobile and processing method
TWM592483U (en) * 2019-11-22 2020-03-21 陳運慶 Bellows device

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