TW202033008A - Production device for assembling speakers including a conveying module, a guiding module, a fixing module, a blocking module and a return module - Google Patents

Production device for assembling speakers including a conveying module, a guiding module, a fixing module, a blocking module and a return module Download PDF

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TW202033008A
TW202033008A TW108106753A TW108106753A TW202033008A TW 202033008 A TW202033008 A TW 202033008A TW 108106753 A TW108106753 A TW 108106753A TW 108106753 A TW108106753 A TW 108106753A TW 202033008 A TW202033008 A TW 202033008A
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module
conveying
assembly
production equipment
blocking
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TW108106753A
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Chinese (zh)
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TWI703876B (en
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趙書勛
曾昭泉
崔軍強
劉義
羅劍
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富祐鴻科技股份有限公司
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Abstract

A production device for assembling speakers includes a conveying module, a guiding module, a fixing module, a blocking module and a return module. The conveying module has a conveying surface and a conveying direction. The guiding module is arranged on both sides of the conveying surface and sandwiches a conveying channel. The downstream of the conveying channel is provided with a clamping area. The fixing module fixes an assembly fixture to the guiding module. The blocking module blocks the other assembly fixtures on the conveying module and moves a distance backward in the conveying direction. The return module clamps the assembly fixture from the clamping area and the fixing module releases the assembly fixture.

Description

裝配揚聲器的生產設備Production equipment for assembling speakers

本發明係關於一種生產設備,更特別的是關於一種裝配揚聲器的生產設備。The present invention relates to a production equipment, and more particularly to a production equipment for assembling speakers.

揚聲器的尺寸細小,在組裝時係利用組裝治具以承載複數個揚聲器零組件以供後續加工,並利用輸送帶傳送組裝治具。由於揚聲器的生產製造需經多道手續,故組裝治具需要在多個輸送帶之間傳送、轉換。在自一輸送帶轉換到另一輸送帶的過程中,組裝治具須保持靜止。然而,若停止該條輸送帶的運轉,則輸送帶上游的其餘組裝治具的傳送亦一併停止,如此將造成等到輸送帶重新啟動後,還要再等上一段時間讓上游的組裝治具輸送到定點,因此生產效率不佳。除此之外,輸送帶亦不適合往復地開關切換。The size of the speaker is small. When assembling, an assembly jig is used to carry a plurality of speaker components for subsequent processing, and a conveyor belt is used to transport the assembly jig. Since the speaker manufacturing requires multiple procedures, the assembly fixtures need to be transported and converted between multiple conveyor belts. During the transfer from one conveyor belt to another, the assembly jig must remain stationary. However, if the operation of the conveyor belt is stopped, the transmission of the remaining assembly fixtures upstream of the conveyor belt will also stop. This will cause the conveyor belt to restart and wait a while for the upstream assembly fixtures. Transport to a fixed point, so the production efficiency is not good. In addition, the conveyor belt is not suitable for switching back and forth.

因此,為解決習知生產設備的效率差以及其餘的問題,本發明提出一種裝配揚聲器的生產設備。Therefore, in order to solve the poor efficiency of conventional production equipment and other problems, the present invention proposes a production equipment equipped with speakers.

為達上述目的及其他目的,本發明提出一種裝配揚聲器的生產設備,其包含:一輸送模組,具有一輸送面及一輸送方向;一導向模組,設置於該輸送面的二側,該導向模組夾設有一輸送通道,該輸送通道的下游設有一夾取區;一固定模組,設置於該夾取區;一阻擋模組,沿該輸送方向設置於該夾取區的上游位置;以及一回流模組,設置於該夾取區的上方;其中,該固定模組將進入該輸送通道的一組裝治具固定於該導向模組,該阻擋模組阻擋該輸送模組上的其餘組裝治具沿該輸送方向移動,且該阻擋模組將該其餘組裝治具在該輸送方向上倒退一距離,該回流模組自該夾取區夾取該組裝治具且該固定模組釋放該組裝治具。In order to achieve the above and other objectives, the present invention proposes a production equipment for assembling speakers, which includes: a conveying module with a conveying surface and a conveying direction; a guiding module arranged on two sides of the conveying surface, the The guide module clamp is provided with a conveying channel, and a clamping area is arranged downstream of the conveying channel; a fixed module is arranged in the clamping area; a blocking module is arranged in an upstream position of the clamping area along the conveying direction And a backflow module set above the gripping area; wherein the fixing module fixes an assembly jig that enters the conveying channel to the guide module, and the blocking module blocks the conveying module The remaining assembly jigs move along the conveying direction, and the blocking module retreats the remaining assembly jigs by a distance in the conveying direction, the reflow module clamps the assembly jig from the clamping area and the fixed module Release the assembly fixture.

於本發明之一實施例中,該輸送通道的上游設有一導向區,該導向區的寬度沿該輸送方向由寬漸縮。In an embodiment of the present invention, a guide zone is provided upstream of the conveying channel, and the width of the guide zone is tapered from the width along the conveying direction.

於本發明之一實施例中,該夾取區設有夾取槽。In an embodiment of the present invention, the clamping area is provided with a clamping groove.

於本發明之一實施例中,更包含一感測模組,其沿該輸送方向設置於該夾取區的下游位置。In an embodiment of the present invention, a sensing module is further included, which is disposed at a downstream position of the gripping area along the conveying direction.

於本發明之一實施例中,該感測模組為紅外線距離感測器。In an embodiment of the present invention, the sensing module is an infrared distance sensor.

於本發明之一實施例中,更包含一控制模組,其訊號連接該感測模組、該固定模組、該阻擋模組及該回流模組。In an embodiment of the present invention, a control module is further included, the signal of which is connected to the sensing module, the fixed module, the blocking module and the reflow module.

於本發明之一實施例中,該感測模組感測進入該輸送通道的組裝治具的距離,該感測模組與該組裝治具的距離達到一預設值時,該感測模組發出一訊號至該控制模組,該控制模組控制該固定模組將該組裝治具固定於該導向模組,該控制模組並控制該阻擋模組阻擋該其餘組裝治具沿該輸送方向移動,且該阻擋模組將該其餘組裝治具在該輸送方向上倒退一距離,以及該控制模組控制該回流模組自該夾取區夾取該組裝治具且控制該固定模組釋放該組裝治具。In an embodiment of the present invention, the sensing module senses the distance of the assembly jig entering the conveying channel, and when the distance between the sensing module and the assembly jig reaches a preset value, the sensing module The group sends a signal to the control module, the control module controls the fixing module to fix the assembly jig to the guide module, and the control module controls the blocking module to block the other assembly jigs from being transported along the Direction, and the blocking module retreats the remaining assembly jig by a distance in the conveying direction, and the control module controls the reflow module to clamp the assembly jig from the clamping area and controls the fixed module Release the assembly fixture.

於本發明之一實施例中,該固定模組設置於該導向模組的一側,將該組裝治具頂抵固定於該導向模組的另一側。In an embodiment of the present invention, the fixing module is arranged on one side of the guiding module, and the assembly jig is pressed and fixed to the other side of the guiding module.

於本發明之一實施例中,該阻擋模組係設置為在該輸送方向上往復移動以及在垂直該輸送面的方向上往復移動。In an embodiment of the present invention, the blocking module is configured to reciprocate in the conveying direction and in a direction perpendicular to the conveying surface.

於本發明之一實施例中,該回流模組包括一夾取臂及二移動基座,該二移動基座相互連接且分別沿垂直該輸送面的方向上以及垂直該輸送方向的方向上設置,該夾取臂連接沿垂直該輸送面的方向上設置的移動基座。In an embodiment of the present invention, the reflow module includes a clamping arm and two moving bases, the two moving bases are connected to each other and are respectively arranged in a direction perpendicular to the conveying surface and a direction perpendicular to the conveying direction , The gripping arm is connected with a moving base arranged in a direction perpendicular to the conveying surface.

藉此,本發明的裝配揚聲器的生產設備,可在不停止輸送模組的情況下,逐一移動各個組裝治具,不僅生產效率好,移動過程亦保持穩定。As a result, the speaker assembly production equipment of the present invention can move each assembly jig one by one without stopping the conveying module, which not only has good production efficiency, but also maintains a stable movement process.

為充分瞭解本發明,茲藉由下述具體之實施例,並配合所附之圖式,對本發明做一詳細說明。本領域技術人員可由本說明書所公開的內容瞭解本發明的目的、特徵及功效。須注意的是,本發明可透過其他不同的具體實施例加以施行或應用,本說明書中的各項細節亦可基於不同觀點與應用,在不悖離本發明的精神下進行各種修飾與變更。以下的實施方式將進一步詳細說明本發明的相關技術內容,但所公開的內容並非用以限制本發明的申請專利範圍。說明如後:In order to fully understand the present invention, a detailed description of the present invention is given with the following specific embodiments and accompanying drawings. Those skilled in the art can understand the purpose, features and effects of the present invention from the content disclosed in this specification. It should be noted that the present invention can be implemented or applied through other different specific embodiments, and various details in this specification can also be based on different viewpoints and applications, and various modifications and changes can be made without departing from the spirit of the present invention. The following embodiments will further describe the related technical content of the present invention in detail, but the disclosed content is not intended to limit the scope of patent application of the present invention. The description is as follows:

如圖1至圖7所示,本發明實施例之裝配揚聲器的生產設備100其包含: 一輸送模組1、一導向模組2、一固定模組4、一阻擋模組5及一回流模組6。As shown in FIGS. 1 to 7, the production equipment 100 for assembling speakers according to the embodiment of the present invention includes: a conveying module 1, a guiding module 2, a fixing module 4, a blocking module 5, and a reflow mold Group 6.

輸送模組1例如為一輸送帶,具有一輸送面11及一輸送方向12。The conveying module 1 is, for example, a conveying belt, and has a conveying surface 11 and a conveying direction 12.

導向模組2可為設置於輸送面11的二側的平台,導向模組2夾設有一輸送通道21,輸送通道21的下游設有一夾取區22。在本實施例中,夾取區22的尺寸對應於一組裝治具C的尺寸,組裝治具C上乘載有複數個揚聲器零組件S,然而本發明不限於此。The guiding module 2 can be a platform arranged on two sides of the conveying surface 11, a conveying channel 21 is clamped between the guiding module 2, and a clamping area 22 is disposed downstream of the conveying channel 21. In this embodiment, the size of the gripping area 22 corresponds to the size of an assembly jig C, and the assembly jig C carries a plurality of speaker components S, but the present invention is not limited to this.

固定模組4設置於夾取區22,且可設置於導向模組2上。The fixing module 4 is arranged in the clamping area 22 and can be arranged on the guiding module 2.

阻擋模組5沿輸送方向12設置於夾取區22的上游位置,且可設置於導向模組2上。The blocking module 5 is arranged at an upstream position of the clamping area 22 along the conveying direction 12 and can be arranged on the guiding module 2.

回流模組6設置於該夾取區22的上方以在不同生產線之間移動組裝治具C的裝置。The reflow module 6 is arranged above the clamping area 22 to move the device for assembling the fixture C between different production lines.

接下來參考圖2至圖7,說明本發明之裝配揚聲器的生產設備100的生產流程。其中圖2中為使導向區23可完整顯示,因此阻擋模組5與導向模組2係繪製為分離,阻擋模組5與導向模組2的連接示意圖請參考圖1、圖3至圖7。Next, referring to FIGS. 2 to 7, the production process of the speaker assembly production equipment 100 of the present invention will be described. 2 shows that the guide area 23 can be fully displayed, so the blocking module 5 and the guiding module 2 are drawn as separate. For the schematic diagram of the connection between the blocking module 5 and the guiding module 2, please refer to FIGS. 1, 3 to 7 .

首先,如圖2所示,輸送模組1運轉,在輸送面11沿輸送方向12輸送組裝治具C。第一個組裝治具C沿輸送方向12進入導向模組2所夾設的輸送通道21。回流模組6在輸送面11外待機或移動。First, as shown in FIG. 2, the conveying module 1 operates, and the assembly jig C is conveyed along the conveying direction 12 on the conveying surface 11. The first assembly jig C enters the conveying channel 21 sandwiched by the guide module 2 along the conveying direction 12. The reflow module 6 stands by or moves outside the conveying surface 11.

如圖3所示,當組裝治具C進入夾取區22,固定模組4將位於夾取區22的組裝治具C頂抵固定於導向模組2。詳細來說,此時輸送模組1並未停止輸送,因此輸送模組1上游的其他組裝治具仍可沿輸送方向12朝向輸送通道21移動。固定模組4將位於夾取區22的組裝治具C頂抵推向導向模組2的其中一側,藉由組裝治具C與導向模組2之間的摩擦力對抗輸送模組1的傳動力,以使得組裝治具C停留在夾取區22。As shown in FIG. 3, when the assembly jig C enters the clamping area 22, the fixing module 4 pushes and fixes the assembly jig C located in the clamping area 22 to the guide module 2. In detail, the conveying module 1 does not stop conveying at this time, so other assembly jigs upstream of the conveying module 1 can still move along the conveying direction 12 toward the conveying channel 21. The fixed module 4 pushes the assembly jig C located in the clamping area 22 to one side of the guide module 2, and the friction force between the assembly jig C and the guide module 2 opposes the transport module 1 The transmission force makes the assembly jig C stay in the clamping area 22.

如圖4所示,阻擋模組5阻擋輸送模組1上的其餘組裝治具沿輸送方向12移動。詳細來說,在本實施例中,阻擋模組5在輸送方向12(X軸的正方向)上移動到固定位置(即,夾取區22上游的位置),接著朝向輸送面11下降(Z軸的負方向)阻擋模組5朝Z軸的負方向凸伸的二止擋件51,以在最小的接觸面積下止擋其餘組裝治具沿輸送方向12移動。組裝治具C可具有對應止擋件51插入的凹孔或凹槽,然而本發明不限於此。As shown in FIG. 4, the blocking module 5 blocks the remaining assembly jigs on the conveying module 1 from moving along the conveying direction 12. In detail, in this embodiment, the blocking module 5 moves in the conveying direction 12 (the positive direction of the X axis) to a fixed position (ie, a position upstream of the gripping zone 22), and then descends toward the conveying surface 11 (Z The negative direction of the axis) the two stoppers 51 that block the module 5 protruding in the negative direction of the Z axis to stop the remaining assembly jigs from moving in the conveying direction 12 with the smallest contact area. The assembly jig C may have a concave hole or groove corresponding to the insertion of the stopper 51, but the present invention is not limited thereto.

如圖5所示,在阻擋模組5阻擋其餘的組裝治具後,阻擋模組5在輸送方向12上倒退一距離,以使得位於夾取區22的組裝治具C與上游的其餘組裝治具相隔一段間距。此時回流模組6朝向輸送模組1移動(Y軸的正方向)。As shown in FIG. 5, after the blocking module 5 blocks the remaining assembly jigs, the blocking module 5 retreats a distance in the conveying direction 12, so that the assembly jig C located in the clamping area 22 and the remaining assembly jigs upstream With a distance apart. At this time, the reflow module 6 moves toward the transport module 1 (the positive direction of the Y axis).

如圖6所示,回流模組6移動到位置對應夾取區22後下降(Z軸的負方向)使回流模組6自夾取區22夾取組裝治具C,且固定模組4釋放組裝治具C。由於組裝治具C與上游的其餘組裝治具相隔有間距,因此組裝治具C被夾取後,其餘的上游的組裝治具並不受組裝治具C的移動而被牽動。As shown in Figure 6, the reflow module 6 moves to the position corresponding to the clamping area 22 and then descends (the negative direction of the Z axis) so that the reflow module 6 clamps the assembly jig C from the clamping area 22, and the fixed module 4 is released Assembly fixture C. Since the assembly jig C is separated from the other upstream assembly jigs, after the assembly jig C is clamped, the remaining upstream assembly jigs are not affected by the movement of the assembly jig C.

如圖7所示,回流模組6移動組裝治具C,阻擋模組5上升(Z軸的正方向),則上游的組裝治具繼續受到輸送模組1的輸送而進入夾取區22,而可執行新一輪的夾取作業。As shown in Fig. 7, the reflow module 6 moves the assembly jig C to prevent the module 5 from rising (the positive direction of the Z axis), and the upstream assembly jig continues to be transported by the conveying module 1 and enters the clamping area 22. A new round of clamping operation can be performed.

藉此,裝配揚聲器的生產設備100可在不停止輸送模組1的情況下,逐一移動各個組裝治具C,不僅效率好,移動過程亦保持穩定。Thereby, the production equipment 100 for assembling speakers can move each assembly jig C one by one without stopping the conveying module 1, which not only has high efficiency, but also maintains a stable moving process.

進一步地,在本實施例中,如圖2所示,輸送通道21的上游設有一導向區23,導向區23的寬度沿該輸送方向12由寬漸縮,以引導組裝治具C進入輸送通道21。因此,即使組裝治具C在輸送面11上有些偏離或歪斜,仍可以藉由由寬漸縮的導向區23將組裝治具C導向至夾取區22。Further, in this embodiment, as shown in FIG. 2, a guide zone 23 is provided upstream of the conveying channel 21, and the width of the guide zone 23 is tapered from the width along the conveying direction 12 to guide the assembly jig C into the conveying channel twenty one. Therefore, even if the assembly jig C is slightly deviated or skewed on the conveying surface 11, the assembly jig C can still be guided to the gripping area 22 by the wide and tapered guide area 23.

進一步地,在本實施例中,如圖2至圖6所示,夾取區22設有複數個夾取槽221,固定模組4位於其中二個夾取槽221之間。夾取槽221供回流模組6置放其夾取臂,再藉由緊縮夾取臂以夾取夾取臂中間的組裝治具C。藉此,可在不影響固定模組4頂抵固定組裝治具C的情況下,使回流模組6夾取組裝治具C。Furthermore, in this embodiment, as shown in FIGS. 2 to 6, the clamping area 22 is provided with a plurality of clamping grooves 221, and the fixed module 4 is located between two of the clamping grooves 221. The clamping groove 221 is used for the reflux module 6 to place its clamping arm, and then the assembly jig C in the middle of the clamping arm is clamped by tightening the clamping arm. In this way, the reflow module 6 can clamp the assembly jig C without affecting the fixing module 4 against the fixing assembly jig C.

進一步地,在本實施例中,如圖1至圖7所示,更可包含一感測模組3,其沿該輸送方向12設置於該夾取區22的下游位置,用以感測組裝治具C的距離,感測模組3可設置於導向模組2上。Further, in this embodiment, as shown in FIGS. 1 to 7, a sensing module 3 may be further included, which is disposed at a downstream position of the gripping area 22 along the conveying direction 12 for sensing assembly For the distance of the jig C, the sensing module 3 can be arranged on the guiding module 2.

進一步地,在本實施例中,感測模組3為紅外線距離感測器,例如紅外光雷射。藉此,可容易、低成本且低耗能地測定組裝治具C的距離。Further, in this embodiment, the sensing module 3 is an infrared distance sensor, such as an infrared laser. Thereby, the distance of the assembly jig C can be measured easily, at low cost, and with low energy consumption.

進一步地,在本實施例中,如圖1至圖7所示,更可包含一控制模組7,其訊號連接感測模組3、固定模組4、阻擋模組5及回流模組6,控制模組7可為具有處理器、記憶體及控制電路…等的控制裝置。如圖3所示,感測模組3感測進入輸送通道21的組裝治具C的距離,感測模組3與組裝治具C的距離達到一預設值(可為0~5公釐,或其他適合的預定距離值)時,感測模組3發出一訊號至控制模組7,控制模組7在接受到感測模組3發出的訊號後,控制模組7控制固定模組4將位於夾取區22的組裝治具C頂抵固定於導向模組2。詳細來說,此時輸送模組1並未停止輸送,因此輸送模組1上游的其他組裝治具仍可沿輸送方向12朝向輸送通道21移動。固定模組4將位於夾取區22的組裝治具C頂抵推向導向模組2的其中一側,藉由組裝治具C與導向模組2之間的摩擦力對抗輸送模組1的傳動力,以使得組裝治具C停留在夾取區22。如圖4所示,控制模組7並控制阻擋模組5阻擋輸送模組1上的其餘組裝治具沿輸送方向12移動。詳細來說,在本實施例中,阻擋模組5在輸送方向12(X軸的正方向)上移動到固定位置(即,夾取區22上游的位置),接著朝向輸送面11下降(Z軸的負方向)阻擋模組5朝Z軸的負方向凸伸的二止擋件51,以在最小的接觸面積下止擋其餘組裝治具沿輸送方向12移動。組裝治具C可具有對應止擋件51插入的凹孔或凹槽,然而本發明不限於此。如圖5所示,在阻擋模組5阻擋其餘的組裝治具後,阻擋模組5在輸送方向12上倒退一距離,以使得位於夾取區22的組裝治具C與上游的其餘組裝治具相隔一段間距。此時回流模組6朝向輸送模組1移動(Y軸的正方向)。如圖6所示,於回流模組6移動到位置對應夾取區22後,控制模組7控制回流模組6下降(Z軸的負方向)使回流模組6自夾取區22夾取組裝治具C,且控制模組7控制固定模組4釋放組裝治具C。由於組裝治具C與上游的其餘組裝治具相隔有間距,因此組裝治具C被夾取後,其餘的上游的組裝治具並不受組裝治具C的移動而被牽動。如圖7所示,回流模組6移動組裝治具C,阻擋模組5上升(Z軸的正方向),則上游的組裝治具繼續受到輸送模組1的輸送而進入夾取區22,而可執行新一輪的夾取作業。Further, in this embodiment, as shown in FIGS. 1 to 7, a control module 7 may be further included, the signal of which is connected to the sensing module 3, the fixing module 4, the blocking module 5 and the return module 6. , The control module 7 can be a control device with a processor, a memory, a control circuit, etc. As shown in Figure 3, the sensing module 3 senses the distance of the assembly jig C entering the conveying channel 21, and the distance between the sensing module 3 and the assembly jig C reaches a preset value (may be 0~5 mm , Or other suitable predetermined distance values), the sensing module 3 sends a signal to the control module 7. After the control module 7 receives the signal from the sensing module 3, the control module 7 controls the fixed module 4 Push and fix the assembly jig C located in the clamping area 22 to the guide module 2. In detail, the conveying module 1 does not stop conveying at this time, so other assembly jigs upstream of the conveying module 1 can still move along the conveying direction 12 toward the conveying channel 21. The fixed module 4 pushes the assembly jig C located in the clamping area 22 to one side of the guide module 2, and the friction force between the assembly jig C and the guide module 2 opposes the transport module 1 The transmission force makes the assembly jig C stay in the clamping area 22. As shown in FIG. 4, the control module 7 also controls the blocking module 5 to block the remaining assembly jigs on the conveying module 1 from moving along the conveying direction 12. In detail, in this embodiment, the blocking module 5 moves in the conveying direction 12 (the positive direction of the X axis) to a fixed position (ie, a position upstream of the gripping zone 22), and then descends toward the conveying surface 11 (Z The negative direction of the axis) the two stoppers 51 that block the module 5 protruding in the negative direction of the Z axis to stop the remaining assembly jigs from moving in the conveying direction 12 with the smallest contact area. The assembly jig C may have a concave hole or groove corresponding to the insertion of the stopper 51, but the present invention is not limited thereto. As shown in FIG. 5, after the blocking module 5 blocks the remaining assembly jigs, the blocking module 5 retreats a distance in the conveying direction 12, so that the assembly jig C located in the clamping area 22 and the remaining assembly jigs upstream With a distance apart. At this time, the reflow module 6 moves toward the conveying module 1 (the positive direction of the Y axis). As shown in Figure 6, after the recirculation module 6 moves to the position corresponding to the clamping area 22, the control module 7 controls the recirculation module 6 to descend (the negative direction of the Z axis) so that the recirculation module 6 is clamped from the clamping area 22 The fixture C is installed, and the control module 7 controls the fixing module 4 to release the assembly fixture C. Since the assembly jig C is separated from the other upstream assembly jigs, after the assembly jig C is clamped, the remaining upstream assembly jigs are not affected by the movement of the assembly jig C. As shown in Fig. 7, the reflow module 6 moves the assembly jig C to prevent the module 5 from rising (the positive direction of the Z axis), and the upstream assembly jig continues to be transported by the conveying module 1 and enters the clamping area 22. A new round of clamping operation can be performed.

進一步地,在本實施例中,如圖3所示,固定模組4設置於導向模組2的一側,將組裝治具C頂抵固定於導向模組2的另一側。藉此,固定模組4只要小幅度地沿Y軸往復移動,即可固定進入夾取區22的組裝治具C。固定模組4可具有第一線性馬達41及頂抵塊體42,第一線性馬達41可驅動頂抵塊體42頂抵組裝治具C。Furthermore, in this embodiment, as shown in FIG. 3, the fixing module 4 is disposed on one side of the guiding module 2, and the assembly jig C is pressed and fixed to the other side of the guiding module 2. Thereby, the fixing module 4 only needs to move back and forth along the Y-axis in a small range to fix the assembly jig C entering the clamping area 22. The fixed module 4 may have a first linear motor 41 and an abutting block 42, and the first linear motor 41 may drive the abutting block 42 to abut the assembly jig C.

進一步地,在本實施例中,如圖2至圖7所示,阻擋模組5係設置為在輸送方向12上往復移動(X軸)以及在垂直輸送面11的方向上往復移動(Z軸)。藉此,阻擋模組5在固定的位置、路徑上往復移動,減少生產過程的複雜度,提升阻擋的可靠度。阻擋模組5可具有第二線性馬達52、第三線性馬達53及二止擋件51,第二線性馬達52可驅動第三線性馬達53在輸送方向12上往復移動,第三線性馬達53可驅動該等止擋件51在垂直輸送面11的方向上往復移動。Further, in this embodiment, as shown in FIGS. 2 to 7, the blocking module 5 is arranged to reciprocate in the conveying direction 12 (X axis) and to reciprocate in the direction perpendicular to the conveying surface 11 (Z axis) ). In this way, the blocking module 5 reciprocates on a fixed position and path, reducing the complexity of the production process and improving the reliability of blocking. The blocking module 5 can have a second linear motor 52, a third linear motor 53, and two stoppers 51. The second linear motor 52 can drive the third linear motor 53 to reciprocate in the conveying direction 12, and the third linear motor 53 can The stoppers 51 are driven to reciprocate in the direction perpendicular to the conveying surface 11.

進一步地,在本實施例中,如圖1所示,回流模組6包括一夾取臂61及二移動基座62、63,二移動基座62、63相互連接且分別沿垂直輸送面11的方向上(Z軸)以及垂直輸送方向12的方向上(Y軸)設置,夾取臂61連接沿垂直該輸送面11的方向上設置的移動基座62。在本實施例中夾取臂61連接移動基座62。藉此,可使回流模組6夾取組裝治具C並在不同的輸送模組之間往復移動。移動基座63可為第四線性馬達以驅動移動基座62在垂直輸送方向12的路徑上往復移動,移動基座62可為第五線性馬達以驅動夾取臂61在垂直輸送面11的路徑上往復移動,夾取臂61可藉由第六線性馬達611而開合。Further, in this embodiment, as shown in FIG. 1, the reflow module 6 includes a clamping arm 61 and two moving bases 62, 63. The two moving bases 62, 63 are connected to each other and are respectively along the vertical conveying surface 11. The gripping arm 61 is connected to the moving base 62 arranged in the direction perpendicular to the conveying surface 11 (Z axis) and the direction perpendicular to the conveying direction 12 (Y axis). In this embodiment, the clamping arm 61 is connected to the moving base 62. Thereby, the reflow module 6 can clamp the assembly jig C and move back and forth between different conveying modules. The moving base 63 may be a fourth linear motor to drive the moving base 62 to reciprocate on a path in the vertical conveying direction 12, and the moving base 62 may be a fifth linear motor to drive the gripping arm 61 on the path of the vertical conveying surface 11 Moving upward and downward, the gripping arm 61 can be opened and closed by the sixth linear motor 611.

本發明在上文中已以實施例揭露,然熟習本項技術者應理解的是,該實施例僅用於描繪本發明,而不應解讀為限制本發明之範圍。應注意的是,舉凡與該實施例等效之變化與置換,均應設為涵蓋於本發明之範疇內。因此,本發明之保護範圍當以申請專利範圍所界定者為準。The present invention has been disclosed in the above embodiments. However, those skilled in the art should understand that the embodiments are only used to describe the present invention and should not be interpreted as limiting the scope of the present invention. It should be noted that all changes and substitutions equivalent to this embodiment should be included in the scope of the present invention. Therefore, the protection scope of the present invention should be defined by the scope of the patent application.

100:裝配揚聲器的生產設備 1:輸送模組 11:輸送面 12:輸送方向 2:導向模組 21:輸送通道 22:夾取區 221:夾取槽 23:導向區 3:感測模組 4:固定模組 41:第一線性馬達 42:頂抵塊體 5:阻擋模組 51:止擋件 52:第二線性馬達 53:第三線性馬達 6:回流模組 61:夾取臂 611:第六線性馬達 62:移動基座 63:移動基座 7:控制模組 C:組裝治具 S:揚聲器零組件 100: Production equipment for assembling speakers 1: Conveying module 11: Conveying surface 12: Conveying direction 2: Guide module 21: Conveying channel 22: gripping area 221: Grip Groove 23: Orientation zone 3: Sensing module 4: Fixed module 41: The first linear motor 42: Against the block 5: Blocking module 51: stop 52: The second linear motor 53: The third linear motor 6: Reflow module 61: Clamping arm 611: The sixth linear motor 62: mobile base 63: mobile base 7: Control module C: Assembly fixture S: Speaker components

圖1係為根據本發明實施例之裝配揚聲器的生產設備之立體示意圖;以及 圖2至圖7為根據本發明實施例之裝配揚聲器的生產設備之生產流程示意圖。Figure 1 is a three-dimensional schematic diagram of a production equipment for assembling speakers according to an embodiment of the present invention; and 2 to 7 are schematic diagrams of the production process of the speaker assembly production equipment according to the embodiment of the present invention.

100:裝配揚聲器的生產設備 100: Production equipment for assembling speakers

1:輸送模組 1: Conveying module

11:輸送面 11: Conveying surface

12:輸送方向 12: Conveying direction

2:導向模組 2: Guide module

3:感測模組 3: Sensing module

4:固定模組 4: Fixed module

5:阻擋模組 5: Blocking module

6:回流模組 6: Reflow module

61:夾取臂 61: Clamping arm

62:移動基座 62: mobile base

63:移動基座 63: mobile base

7:控制模組 7: Control module

C:組裝治具 C: Assembly fixture

S:揚聲器零組件 S: Speaker components

Claims (10)

一種裝配揚聲器的生產設備,其包含: 一輸送模組,具有一輸送面及一輸送方向; 一導向模組,設置於該輸送面的二側,該導向模組夾設有一輸送通道,該輸送通道的下游設有一夾取區; 一固定模組,設置於該夾取區; 一阻擋模組,沿該輸送方向設置於該夾取區的上游位置;以及 一回流模組,設置於該夾取區的上方; 其中,該固定模組將進入該輸送通道的一組裝治具固定於該導向模組,該阻擋模組阻擋該輸送模組上的其餘組裝治具沿該輸送方向移動,且該阻擋模組將該其餘組裝治具在該輸送方向上倒退一距離,該回流模組自該夾取區夾取該組裝治具且該固定模組釋放該組裝治具。A production equipment for assembling speakers, which includes: A conveying module with a conveying surface and a conveying direction; A guide module set on two sides of the conveying surface, the guide module is clamped with a conveying channel, and a clamping area is arranged downstream of the conveying channel; A fixed module set in the clamping area; A blocking module arranged at an upstream position of the gripping area along the conveying direction; and A reflow module set above the clamping area; Wherein, the fixing module fixes an assembly jig that enters the conveying channel to the guide module, the blocking module blocks the remaining assembly jigs on the conveying module from moving along the conveying direction, and the blocking module The other assembling jigs are backed a distance in the conveying direction, the reflow module clamps the assembling jig from the clamping area and the fixing module releases the assembling jig. 如請求項1所述之裝配揚聲器的生產設備,其中該輸送通道的上游設有一導向區,該導向區的寬度沿該輸送方向由寬漸縮。The production equipment equipped with speakers as described in claim 1, wherein a guide area is provided upstream of the conveying channel, and the width of the guide area is tapered from the width along the conveying direction. 如請求項1所述之裝配揚聲器的生產設備,其中該夾取區設有夾取槽。The production equipment for assembling speakers as described in claim 1, wherein the clamping area is provided with a clamping groove. 如請求項1所述之裝配揚聲器的生產設備,其中更包含一感測模組,其沿該輸送方向設置於該夾取區的下游位置。The production equipment equipped with speakers according to claim 1, which further includes a sensing module, which is arranged at a downstream position of the gripping area along the conveying direction. 如請求項4所述之裝配揚聲器的生產設備,其中該感測模組為紅外線距離感測器。The production equipment for assembling speakers as described in claim 4, wherein the sensing module is an infrared distance sensor. 如請求項4所述之裝配揚聲器的生產設備,其中更包含一控制模組,其訊號連接該感測模組、該固定模組、該阻擋模組及該回流模組。According to claim 4, the speaker assembly production equipment further includes a control module whose signals are connected to the sensing module, the fixing module, the blocking module and the reflow module. 如請求項6所述之裝配揚聲器的生產設備,其中該感測模組感測進入該輸送通道的組裝治具的距離,該感測模組與該組裝治具的距離達到一預設值時,該感測模組發出一訊號至該控制模組,該控制模組控制該固定模組將該組裝治具固定於該導向模組,該控制模組並控制該阻擋模組阻擋該其餘組裝治具沿該輸送方向移動,且該阻擋模組將該其餘組裝治具在該輸送方向上倒退一距離,以及該控制模組控制該回流模組自該夾取區夾取該組裝治具且控制該固定模組釋放該組裝治具。The production equipment for assembling speakers according to claim 6, wherein the sensing module senses the distance of the assembly jig entering the conveying channel, and when the distance between the sensing module and the assembly jig reaches a preset value , The sensing module sends a signal to the control module, the control module controls the fixing module to fix the assembly jig to the guide module, and the control module controls the blocking module to block the remaining assembly The jig moves along the conveying direction, and the blocking module retreats the remaining assembly jigs by a distance in the conveying direction, and the control module controls the return module to clamp the assembly jig from the clamping area and Control the fixed module to release the assembly jig. 如請求項1所述之裝配揚聲器的生產設備,其中該固定模組設置於該導向模組的一側,將該組裝治具頂抵固定於該導向模組的另一側。The production equipment for assembling speakers according to claim 1, wherein the fixing module is arranged on one side of the guide module, and the assembly jig is pressed and fixed on the other side of the guide module. 如請求項1所述之裝配揚聲器的生產設備,其中該阻擋模組係設置為在該輸送方向上往復移動以及在垂直該輸送面的方向上往復移動。The production equipment equipped with speakers as described in claim 1, wherein the blocking module is set to reciprocate in the conveying direction and to reciprocate in a direction perpendicular to the conveying surface. 如請求項1所述之裝配揚聲器的生產設備,其中該回流模組包括一夾取臂及二移動基座,該等移動基座相互連接且分別沿垂直該輸送面的方向上以及垂直該輸送方向的方向上設置,該夾取臂連接沿垂直該輸送面的方向上設置的移動基座。The production equipment for assembling speakers according to claim 1, wherein the recirculation module includes a gripping arm and two moving bases, and the moving bases are connected to each other and respectively along a direction perpendicular to the conveying surface and perpendicular to the conveying The gripping arm is connected to a moving base arranged in a direction perpendicular to the conveying surface.
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