Mounting structure for device for removing molded product

The mounting structure for molded product removal devices on molding machines addresses the inefficiencies of traditional methods by allowing operators to tighten screws and adjust frames from a single position, thereby reducing manual effort and improving operational efficiency.

DE102017129610B4Active Publication Date: 2026-02-19YUSHIN PRECISION EQUIP CO LTD
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
DE102017129610
Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
Priority Date
2016-12-22
Filing Date
2017-12-12
Publication Date
2026-02-19
Estimated Expiration
2037-12-12

AI Technical Summary

Technical Problem

Existing mounting structures for molded product removal devices on molding machines require significant manual effort and repetitive ladder climbing for screw tightening and frame positioning, leading to increased operator workload.

Method used

A mounting structure with a support element featuring aligned through holes and working windows allows operators to insert and tighten screws from a single position, reducing the need for ladder use and simplifying the attachment process, and includes locking elements to prevent dust accumulation.

Benefits of technology

Significantly reduces operator workload by enabling screw tightening and frame positioning from a single location, enhancing efficiency and ease of use compared to traditional methods.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 00000000_0000_ABST
    Figure 00000000_0000_ABST
Patent Text Reader

Abstract

Mounting structure for a device for removing a molded product, designed for fixed mounting of the device on a fixed mounting plate (103) of a molding machine (101) or on a mounting base (105) that is fixedly attached to the fixed mounting plate, wherein the device for removing a molded product from the molding machine has a support element (5) for a lateral frame (3), wherein the support element has: a base plate (7) arranged along an upper surface of the fixed mounting plate of the molding machine or an upper surface of the mounting base; a pair of side plates (8, 9) each having an upright wall section (81, 91) and an extended wall section (82, 92), wherein the upright wall sections each extend upright along a pair of opposite sides (7A, 7B) of the base plate and the extended wall sections extend in a lateral direction from the upright wall sections; an upper plate (10) opposite the base plate and connected to the pair of side plates, the lateral frame being supported on the upper plate by the support element; and a first reinforcing plate (11) and a second reinforcing plate (12) arranged at a predetermined distance between them in an arrangement direction of a further pair of opposite sides (7C, 7D) of the base plate, which differ from the one pair of opposite sides, and which are connected at least to the base plate and the upper plate, wherein a first through-hole row (HL1) is formed from a plurality of through-holes and a second through-hole row (HL2) is formed from a plurality of through-holes in the base plate, respectively along the first and second reinforcing plates, wherein the mounting structure for a device for removing a molded product is configured such that the device for removing a molded product is fixedly mounted on the fixed mounting plate of the molding machine or on the mounting base, which is fixedly fastened to the fixed mounting plate, by inserting a plurality of screws (b1) into the plurality of through holes in each of the first and second rows of through holes and a plurality of threaded holes (SH1-SH3, SH11-SH13) formed in the fixed mounting plate or the mounting base to open in the upper surface, wherein the plurality of through holes in each of the first and second rows of through holes are aligned with the plurality of threaded holes, and by screwing threaded sections of the plurality of screws into the threaded holes, wherein: the base plate has a flange section (72) arranged in a direction opposite to the direction in which the extended wall sections of the pair of side plates extend, and which is designed to extend further in the opposite direction from the first reinforcing plate; the first row of through holes is formed in the flange section and the second row of through holes is formed in a section of the base plate along the second reinforcing plate; and the upright wall section of at least one of the pair of side plates is formed with a working window (W1) designed to allow an employee who is at a location where the employee can insert the majority of screws into the majority of through holes in the first through hole row, to insert the majority of screws into the majority of through holes in the second through hole row without changing the employee's location.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL AREA

[0001] The present invention relates to a mounting structure for a device for removing a molded product, which is to be mounted on a clamping plate of a molding machine. TECHNICAL BACKGROUND

[0002] Common devices for removing molded products, which are used fixed to a clamping plate of a molding machine, are in Fig. 4 and Fig. 5 of JP 2009-269100 A (Patent Document 1) and a product catalog (Non-Patent Document 1) with devices for removing a molded product, distributed by the applicant under the name Servo Traverse Robots RC, etc. Fig. 8A and Fig. Figure 8B is a perspective view that schematically illustrates how a typical, standard device 1' for removing a molded product is mounted on a fixed mounting plate 103 of a molding machine 101. Fig. Figure 9A is a sectional view of a typical support element 5' of the device for removing a molded product, seen in the horizontal direction. Fig. Figure 9B is a perspective view of the usual support element. The usual device 1' has the support element 5', which supports a lateral frame 3'. The support element 5' comprises: a base plate 7', a pair of side plates 8' and 9', a top plate 10', a first reinforcing plate, and a second reinforcing plate 12'. The base plate 7' is arranged along the upper surface of a mounting base 105. The pair of side plates 8' and 9' each has an upright wall section and an extended wall section. The upright wall sections each extend upright along a pair of opposite sides of the base plate 7'. The extended wall sections extend laterally from the upright wall sections. The top plate 10' is opposite the base plate 7' and is connected to the pair of side plates 8' and 9'.The first reinforcement plate and the second reinforcement plate 12' are arranged at a predetermined distance between them in the orientation of a further pair of opposite sides of the base plate 7', which differ from the first pair of opposite sides, and are connected at least to the base plate 7' and the upper plate 10'. The base plate 7' is provided with flange sections 71' and 72' on the outside of the second reinforcement plate 12' and the first reinforcement plate, respectively. A first row of through holes 61' consisting of a plurality of through holes and a second row of through holes 62' consisting of a plurality of through holes are formed in the flange sections 71' and 72' along the second reinforcement plate 12' and the first reinforcement plate, respectively.The support element 5' is fixed to the mounting base 105 by inserting a plurality of screws into the plurality of through holes and a plurality of threaded holes (not shown) formed in the mounting base 105 to open in the upper surface, wherein the plurality of through holes in each of the through hole rows 61' and 62' is aligned with the plurality of threaded holes, and by screwing threaded sections of the plurality of screws into the threaded holes.

[0003] DE 10 2014 014 265 A1 relates to a handling device for handling a molded part, in particular for handling a molded part produced in a molding machine. JP 2011 - 255 583 A relates to a device for removing a cast product. SUMMARY OF THE INVENTIONAL ENGINEERING TASK

[0004] To insert screws into the majority of through holes in the through hole row 61' formed in a flange section 71' and to tighten the screws, an OP employee sets up a stepladder 107 on one side of the forming machine 101, as shown in Fig. Figure 8A illustrates this, and climbs the stepladder 107 to perform the screw tightening operation. To insert screws into the plurality of through holes in the through hole row 62' formed in the other flange section 72', and to tighten the screws, the OP sets up the stepladder 107 on the other side of the forming machine 101, as shown in Figure 8A. Fig. Figure 8B illustrates the process, and the operator climbs the stepladder 107 to perform the screw tightening operation. Preferably, the screws are tightened in the following steps: inserting screws into some of the through holes in one flange section 71' and tightening these screws; then inserting screws into some of the through holes in the other flange section 72' and tightening these screws; then inserting screws into the remaining through holes in one flange section 71' and tightening these screws; and finally inserting screws into the remaining through holes in the other flange section 72' and tightening these screws. To perform the preferred screw tightening steps, the operator must move the stepladder 107, repeatedly climbing up and down it. Thus, the operator is typically burdened with a considerable amount of work.

[0005] Furthermore, to change the position of the lateral frame, which is screwed to the upper plate 10' of the support element 5', the front end of a wrench with an attached screw is usually inserted into a plurality of through holes 14' formed in a lower plate 13', which is located opposite the upper plate 10' of the support element 5', in order to tighten the screw. This work also requires considerable effort from the operator.

[0006] Accordingly, one object of the present invention is to provide an attachment structure for a device for removing a molded product, wherein the attachment structure is designed to reduce the work effort required for an employee to attach the device for removing a molded product.

[0007] In addition to the above objective, a further objective of the present invention is to provide an attachment structure for a device for removing a molded product, wherein the attachment structure is designed to reduce the work effort required for an employee to change the attachment position of a lateral frame. SOLUTION TO THE TASK

[0008] The present invention relates to a mounting structure designed to attach a device for removing a molded product, fixed to an upper surface of a fixed mounting plate of a molding machine or to a mounting base that is fixed to the fixed mounting plate. The device for removing a molded product, to which the present invention relates, has a support element for a lateral frame. The support element comprises a base plate, a pair of side plates, a top plate, a first reinforcing plate, and a second reinforcing plate. The base plate is arranged along an upper surface of the fixed mounting plate of the molding machine or an upper surface of the mounting base. The pair of side plates each has a vertical wall section and an extended wall section.The upright wall sections each extend vertically along a pair of opposite sides of the base plate. The extended wall sections extend laterally from the upright wall sections. The top plate is opposite the base plate and connected to the pair of side plates. The lateral frame is supported on the top plate by the support element. The first and second reinforcement plates are arranged at a predetermined distance between them in a direction corresponding to another pair of opposite sides of the base plate, which differ from the first pair of opposite sides, and are connected to at least the base plate and the top plate.A first row of through holes, consisting of a plurality of through holes, and a second row of through holes, consisting of a plurality of through holes, are formed in the base plate along the first and second reinforcing plates, respectively. The mounting structure is designed such that the device is fixed to the fixed mounting plate or mounting base by inserting a plurality of screws into the plurality of through holes in each of the first and second rows of through holes and a plurality of threaded holes formed in the fixed mounting plate or mounting base to open into the upper surface, with the plurality of through holes in each of the first and second rows of through holes being aligned with the plurality of threaded holes, and by screwing threaded sections of the plurality of screws into the threaded holes.In the present invention, the base plate has a flanged section arranged in a direction opposite to the direction in which the extended wall sections of the pair of side plates extend, and configured to extend further in the opposite direction from the first reinforcing plate. The first row of through-holes is formed in the flanged section. The second row of through-holes is formed in a section of the base plate along the second reinforcing plate.The upright wall section of at least one of the pair of side plates is formed with a working window designed to allow an employee who is located at a position where the employee can insert the majority of screws into the majority of through holes in the first row of through holes, to insert the majority of screws into the majority of through holes in the second row of through holes without changing the employee's position.

[0009] According to the present invention, an employee can insert a plurality of screws and tighten the plurality of screws through a working window, thus considerably reducing the employee's workload compared to the prior art.

[0010] Even if the support element of the device for removing a molded product is fixed to the rigid mounting plate or mounting base by screwing a plurality of nuts to a plurality of threaded sections of a plurality of mounting screws provided on the rigid mounting plate or mounting base, extending beyond the upper surface, with the plurality of mounting screws being inserted into the plurality of through holes, the operator can screw the plurality of nuts to the plurality of mounting screws passing through the plurality of through holes in the second row of through holes through the working window without changing the operator's position.

[0011] The mounting structure may also include a locking element designed to close the working window after the operator has completed the fixing process. Providing such a locking element can prevent dust from accumulating inside the support element through the working window.

[0012] The extended wall section of at least one of the pair of side plates can be formed with a working aid window if the lateral frame is fixed to the top plate by a plurality of screws being screwed into a plurality of threaded holes formed in a bottom section of the lateral frame, through a plurality of top plate through holes formed in the top plate, a bottom plate designed to be opposite the top plate with a gap between them, is fixed to the pair of extended wall sections of the pair of side plates, and the bottom plate is formed with a plurality of bottom plate through holes such that these are opposite the plurality of top plate through holes formed in the top plate.The work aid window is designed to allow the operator to insert one or both hands to assist in inserting multiple screws into the multiple through-holes formed in the top plate. Providing such a work aid window significantly reduces the operator's workload when tightening the screws with a wrench through the through-holes in the bottom plate.

[0013] Preferably, a cover plate, designed to block both the working window and the auxiliary window, is detachably fixed to the side plate in which the working window and the auxiliary window are provided. In this way, both the working window and the auxiliary window can be blocked with a single cover plate, thus reducing the number of components. BRIEF DESCRIPTION OF THE DRAWINGS Fig. 1A and Fig. Figure 1B is a perspective view illustrating the overall design of a molding system in which a device for removing a molded product is mounted on a mounting base which is attached to a clamping plate of a molding machine by a mounting structure according to a first embodiment of the present invention. Fig. Figure 2 is a perspective view showing a significant section of the mounting structure in which Fig. 1A and Fig. 1B illustrated form system. Fig. 3A is a skeletal view of a support element of the mounting structure, Fig. Figure 3B is a sectional view of the support element of the device for removing a molded product, viewed in the horizontal direction, and Fig. 3C is a plan view of the upper surface of the mounting base. Fig. Figure 4 illustrates the form system in operation. Fig. 5A and Fig. Figure 5B illustrates how to change the mounting position of a lateral frame. Fig. Figures 6A to 6C each represent a work process view illustrating an attachment structure according to a second embodiment of the present invention. Fig. Figures 7A to 7C each represent a work process view illustrating the attachment structure according to the second embodiment. Fig. 8A and Fig. Figure 8B is a perspective view that schematically illustrates how a typical, standard device for removing a molded product is mounted on a fixed mounting plate for a molding machine. Fig. Figure 9A is a sectional view of a typical support element of the device for removing a molded product, viewed in the horizontal direction, and Fig. 9B is a perspective view of the support element. DESCRIPTION OF EXECUTION FORMS

[0014] A mounting structure for a device for removing a molded product according to embodiments of the present invention is described in detail below with reference to the accompanying drawings. <Ausbildung einer Vorrichtung zum Entnehmen von Formprodukt>

[0015] Fig. 1A and Fig. Figures 1B are perspective views illustrating the overall design of a molding system in which a device 1 for removing a molded product is mounted on a mounting base 105, which is attached to a clamping plate 103 of a molding machine 101 by a mounting structure according to a first embodiment of the present invention. The device 1 is a crosshead-type device for removing a molded product. A support element 5 is mounted on the mounting base 105, which is attached to the fixed clamping plate 103 of the molding machine 101. The in Fig. The illustrated device 1 comprises a lateral frame 3, a first transfer body 15, an ejection frame 17, a sprue lifting unit 18, and a molded product suction lifting unit 19. The lateral frame 3 has a cantilever structure, extending in the X-direction, which is horizontal and orthogonal to the longitudinal direction of the molding machine (not shown). The first transfer body 15 is supported by the lateral frame 3 and is advanced and retracted in the X-direction along the lateral frame 3 by a drive source, which is an AC servomotor contained in a servomechanism. The ejection frame 17 is provided on the first transfer body 15 and extends in the Y-direction, which is parallel to the longitudinal direction of the molding machine.The sprue lifting unit 18 and the molded product suction lifting unit 19 are supported by the pull-out frame 17 in such a way that they are movable in the Y direction by a drive source formed by an AC servo motor contained in the servo mechanism. <Anbringungsstruktur der ersten Ausführungsform>

[0016] The following describes a mounting structure of a first embodiment for the device 1. Fig. Figure 2 is a perspective view showing an essential section of an attachment structure of the first embodiment in the Fig. 1A and Fig. 1B illustrated form system. Fig. Figure 3A is a skeletal view of the support element 5 of the mounting structure. The support element 5 comprises a base plate 7, a pair of side plates 8 and 9, a top plate 10, a first reinforcing plate 11, a second reinforcing plate 12, and a bottom plate 13. The base plate 7 is arranged along an upper surface of the mounting base 105, which is fixed to the fixed mounting plate 103 by means of screws B. The pair of side plates 8 and 9 each has an upright wall section 81, 91 and an extended wall section 82, 92. The upright wall sections 81 and 91 each extend upright along a pair of opposite sides 7A and 7B of the base plate 7. The extended wall sections 82 and 92 extend laterally from the upright wall sections 81 and 91, respectively. The upper plate 10 is opposite the base plate 7 and is connected to the pair of side plates 8 and 9.The first reinforcement plate 11 and the second reinforcement plate 12 are arranged at a predetermined distance between them in the direction of arrangement of a further pair of opposite sides 7C and 7D of the base plate 7, which differ from the one pair of opposite sides 7A and 7B, and are connected at least to the base plate 7 and the upper plate 10. In the embodiment, the first reinforcement plate 11 and the second reinforcement plate 12 are also connected to the pair of upright wall sections 81 and 91.

[0017] As in Fig. As illustrated in Figure 3B, the base plate 7 has a flanged section 72 arranged in a direction opposite to the direction in which the extended wall sections 82 and 92 of the pair of side plates 8 and 9 extend, and is formed such that it extends further in the opposite direction from the first reinforcing plate 11. A first row of through holes HL1 consisting of three through holes H1 to H3 is formed in the flanged section 72. A second row of through holes HL2 consisting of three through holes H11 to H13 is formed in a portion of the base plate 7 along the second reinforcing plate 12. The support element 5 is fixed to the mounting base 105 by inserting screws B1 to B3 and B11 to B13 into the through holes H1 to H3 and H11 to H13 and a plurality of threaded holes SH1 to SH3 and SH11 to SH13. Fig. 3C], which are formed in the mounting base 105 to open in an upper surface 105A, wherein the through holes H1 to H3 and H11 to H13 are aligned with the majority of threaded holes SH1 to SH3 and SH11 to SH13 [ Fig. 3C], and by screwing threaded sections B11 to B13 of the screws into the threaded holes SH1 to SH3 and SH11 to SH13.

[0018] The lateral frame 3 is fixed to the upper plate 12 by a plurality of screws b1 being screwed into a plurality of threaded holes (not shown) formed in a bottom section of the lateral frame 3 through a plurality of top plate through holes h1 formed in the upper plate 10. The lower plate 13, configured to face the upper plate 10 with a space between them, is fixed to the pair of extended wall sections 82 and 92 of the pair of side plates 8 and 9. The lower plate 13 is formed with a plurality of bottom plate through holes h2, such that it faces the plurality of top plate through holes h1 formed in the upper plate. By inserting a wrench through the bottom plate through holes h2 and tightening the screws b1, an operator secures the lateral frame 3 to the upper plate.

[0019] In this embodiment, the upright wall sections 81 and 91 of the pair of side plates 8 and 9 are each formed with a working window W1, and the extended wall sections 82 and 92 are each formed with an auxiliary working window W2. The working window W1 has a substantially rectangular profile, and the auxiliary working window W2 has a triangular profile. As shown in Fig. As illustrated in Figure 4, the work window W1 is sized to allow an employee positioned where they can insert screws B1 to B3 into the three through holes H1 to H3 in the first row of through holes to insert screws B11 to B13 into the three through holes H11 to H13 in the second row of through holes without changing their position. With the work window W1 in place, the employee can insert and tighten screws B11 to B13 through the work window W1, thus completing the installation work without having to descend a stepladder 107.

[0020] The work aid window W2 is used to tighten the screws b1 in an area where the distance between the upper plate 10 and the lower plate 13 is long. This means that the operator provisionally tightens the screws b1 in this area by inserting one or both hands through the work aid window W2 and then fully tightens them by inserting a wrench through the through-holes h2 in the lower plate. This significantly increases the operator's ease of use when tightening the screws. If the screws are not provisionally tightened, the operator can tighten them while looking through the work aid window W2 into the support element 5, thus considerably simplifying the tightening process compared to the prior art.Even after the device 1 is attached to the forming machine 101, the mounting position of the lateral frame 3 is occasionally changed so that the lateral frame 3 does not come into contact with a structure in the surrounding area due to a change in the factory layout, etc. Fig. 5A and Fig. Figure 5B illustrates a state in which the mounting position of the lateral frame 3 has been changed. The work of changing the mounting position is carried out using a stepladder placed under the support element 5. <Anbringungsstruktur der zweiten Ausführungsform>

[0021] Fig. Figures 6A to 6C and 7A to 7C each represent a work process view illustrating an attachment structure of a second embodiment of the present invention. Unlike the attachment structure of the first embodiment, which is shown in Fig. 1, Fig. 2, Fig. 3, Fig. 4 to Fig.As illustrated in Figure 5, in the mounting structure of the second embodiment, the support element 5 is fixed to the mounting base 105 by screwing six nuts N1 to N3 and N11 to N13 to threaded sections of six mounting screws FB1 to FB3 and FB11 to FB13, which are provided on the mounting base 105 so that they extend beyond the upper surface 105A, with the mounting screws FB1 to FB3 and FB11 to FB13 being inserted into the through holes H1 to H13 formed in the base plate 7 of the support element 5. In this case as well, an operator can screw the nuts N11 to N13 through the working window W1 to the three mounting screws FB11 to FB13, which pass through the three through holes H11 to H13 in the second row of through holes, without changing the operator's position. <abwandlungen>

[0022] In the embodiments described above, the support element 5 of the device for removing a molded product is mounted on the mounting base 105, which is attached to the fixed clamping plate 103. Of course, however, the mounting structure of the first embodiment and the mounting structure of the second embodiment described above can also be used when the support element 5 of the device for removing a molded product is mounted directly on the fixed clamping plate 103.

[0023] In the embodiments described above, the working window W1 and the auxiliary working window W2 are provided together in the support element 5. However, it is not necessary to always provide the working window W1 and the auxiliary working window W2 together. In the embodiments described above, a pair of working windows W1 and a pair of auxiliary working windows S2 are provided in the support element 5. However, it is not necessary to always provide such windows in pairs, and such windows can also be provided individually.

[0024] The mounting structure can further include a locking element designed to close the working window W1 after the operator has completed the fixing process. Providing this locking element prevents dust from accumulating inside the support element through the working window W1. A cover plate, designed to lock both the working window W1 and the auxiliary window W2, can be detachably fixed to the side plate in which the working window W1 and the auxiliary window W2 are located. This allows both the working window and the auxiliary window to be locked with a single cover plate, thus reducing the number of components. COMMERCIAL APPLICABILITY

[0025] According to the present invention, an employee can insert a plurality of screws and tighten the plurality of screws through a working window, thus considerably reducing the workload for the employee compared to the prior art. REFERENCE MARK LIST 1 and 1' Device for removing molded products 3 and 3' lateral frame 5 and 5' support element 7 and 7' base plate 7A and 7B opposite sides 7C and 7D opposite sides 8 and 9, 8 'and 9' side plates 10 and 10' top plate 11 Reinforcement plate 12 and 12' second reinforcement plate 13 and 13' lower plate 14' through holes 15 first transfer body 17 Pull-out frame 18 - Sprue lifting unit 19 Molded product suction lifting unit 61' 62' first through-hole row 62' - second through-hole row 72, 71 and 72' flange section 81 and 91 upright wall section 82 and 92 extended wall sections 101 Forming machine 103 fixed clamping plate 105 - Attachment basic 105A upper surface 107 Step ladder H1 - H13 - Through holes HL1 first through-hole row HL2 second row of through holes B1-B13 screws SH1 - SH3 and SH11 - SH13 threaded holes h1 Top plate through holes h2 Subplate through-holes b1 screws W1 work window W2 Work aid window FB1 - FB3 and FB11- FB13 mounting screws N1-N3 and N11-N13 nuts Operating room staff< / abwandlungen>

Claims

[1] Mounting structure for a device for removing a molded product, designed for fixed mounting of the device on a fixed mounting plate (103) of a molding machine (101) or on a mounting base (105) which is fixedly attached to the fixed mounting plate, wherein the device for removing a molded product from the molding machine has a support element (5) for a lateral frame (3), wherein the support element has: a base plate (7) arranged along an upper surface of the fixed mounting plate of the molding machine or an upper surface of the mounting base; a pair of side plates (8, 9) each having an upright wall section (81, 91) and an extended wall section (82, 92), wherein the upright wall sections each extend upright along a pair of opposite sides (7A, 7B) of the base plate and the extended wall sections extend in a lateral direction from the upright wall sections; an upper plate (10) opposite the base plate and connected to the pair of side plates, the lateral frame being supported on the upper plate by the support element; and a first reinforcing plate (11) and a second reinforcing plate (12) arranged at a predetermined distance between them in an arrangement direction of a further pair of opposite sides (7C, 7D) of the base plate, which differ from the one pair of opposite sides, and which are connected at least to the base plate and the upper plate, wherein a first through-hole row (HL1) is formed from a plurality of through-holes and a second through-hole row (HL2) is formed from a plurality of through-holes in the base plate, respectively along the first and second reinforcing plates, wherein the mounting structure for a device for removing a molded product is configured such that the device for removing a molded product is fixedly mounted on the fixed mounting plate of the molding machine or on the mounting base, which is fixedly fastened to the fixed mounting plate, by inserting a plurality of screws (b1) into the plurality of through holes in each of the first and second rows of through holes and a plurality of threaded holes (SH1-SH3, SH11-SH13) formed in the fixed mounting plate or the mounting base to open in the upper surface, wherein the plurality of through holes in each of the first and second rows of through holes are aligned with the plurality of threaded holes, and by screwing threaded sections of the plurality of screws into the threaded holes, wherein: the base plate has a flange section (72) arranged in a direction opposite to the direction in which the extended wall sections of the pair of side plates extend, and which is designed to extend further in the opposite direction from the first reinforcing plate; the first row of through holes is formed in the flange section and the second row of through holes is formed in a section of the base plate along the second reinforcing plate; and the upright wall section of at least one of the pair of side plates is formed with a working window (W1) designed to allow an employee who is at a location where the employee can insert the majority of screws into the majority of through holes in the first through hole row, to insert the majority of screws into the majority of through holes in the second through hole row without changing the employee's location. [2] Mounting structure for a device for removing a molded product, designed for fixed mounting of the device on a fixed mounting plate (103) of a molding machine (101) or on a mounting base (105) which is fixedly attached to the fixed mounting plate, wherein the device for removing a molded product from the molding machine has a support element (5) for a lateral frame (3), wherein the support element has: a base plate (7) arranged along an upper surface of the fixed mounting plate of the molding machine or an upper surface of the mounting base; a pair of side plates (8, 9) each having an upright wall section (81, 91) and an extended wall section (82, 92), wherein the upright wall sections each extend upright along a pair of opposite sides (7A, 7B) of the base plate and the extended wall sections extend in a lateral direction from the upright wall sections; an upper plate (10) opposite the base plate and connected to the pair of side plates, the lateral frame being supported on the upper plate by the support element; and a first reinforcing plate (11) and a second reinforcing plate (12) arranged at a predetermined distance between them in an arrangement direction of a further pair of opposite sides (7C, 7D) of the base plate, which differ from the one pair of opposite sides, and which are connected at least to the base plate and the upper plate, wherein a first through-hole row (HL1) is formed from a plurality of through-holes and a second through-hole row (HL2) is formed from a plurality of through-holes in the base plate, respectively along the first and second reinforcing plates, wherein the mounting structure for a device for removing a molded product is designed such that the device for removing a molded product is fixedly mounted on the fixed mounting plate of the molding machine or on the mounting base, which is fixedly fastened to the fixed mounting plate, by screwing a plurality of nuts (N1-N3, N11-N13) to a plurality of threaded sections of a plurality of mounting screws (FB1-FB3, FB11-FB13) provided on the fixed mounting plate or the mounting base, such that the latter extend beyond the upper surface, wherein the plurality of mounting screws are inserted into the plurality of through holes, wherein: the base plate has a flange section (72) arranged in a direction opposite to the direction in which the extended wall sections of the pair of side plates extend, and which is designed to extend further in the opposite direction from the first reinforcing plate; the first series of through holes is formed in the flange section and the second series of through holes is formed in a section of the base plate along the second reinforcement plate and the upright wall section of at least one of the pair of side plates is formed with a working window (W1) designed to allow an employee who is at a location where the employee can screw the majority of nuts to the majority of mounting screws passing through the majority of through holes in the first through hole row, to screw the majority of nuts (N11, N13) to the majority of mounting screws (F11-F13) passing through the majority of through holes in the second through hole row, without changing the employee's location. [3] Mounting structure for a device for removing a molded product according to claim 1 or 2, further comprising: a locking element designed to block the working window after the employee has finished the work of fixing. [4] Mounting structure for a device for removing a molded product according to claim 1 or 2, wherein: the lateral frame is fixed to the top plate by screwing a plurality of screws into a plurality of threaded holes formed in a bottom section of the lateral frame through a plurality of top plate through holes (h1) formed in the top plate; a lower plate (13) designed to be positioned opposite the upper plate with a gap between them, and fixed to the pair of extended wall sections of the pair of side plates; the lower plate is formed with a plurality of lower plate through-holes (h2) such that these are opposite the plurality of upper plate through-holes formed in the upper plate; and the extended wall section is formed by at least one of the pair of side plates with a working aid window (W2) designed to allow the worker to insert one or both hands to assist in the work of inserting the plurality of screws into the plurality of top plate through holes formed in the top plate. [5] Mounting structure for a device for removing a molded product according to claim 4, wherein a cover plate configured to block both the working window and the auxiliary working window is detachably fixed to the side plate in which the working window and the auxiliary working window are provided.

Citation Information

Patent Citations

  • Handling device for a forming machine

    DE102014014265A1

  • Molded article take-out machine with cantilever

    JP2009269100A

  • Machine for taking out resin molding

    JP2011255583A

  • JP002009269100A

  • JP002011255583A