EP3717227A1 - Die insertion tool - Google Patents
Die insertion toolInfo
- Publication number
- EP3717227A1 EP3717227A1 EP18825830.5A EP18825830A EP3717227A1 EP 3717227 A1 EP3717227 A1 EP 3717227A1 EP 18825830 A EP18825830 A EP 18825830A EP 3717227 A1 EP3717227 A1 EP 3717227A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- die
- barrel
- tool
- bore
- press
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Withdrawn
Links
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- 230000037431 insertion Effects 0.000 title claims abstract description 149
- 238000000034 method Methods 0.000 claims abstract description 42
- 238000002360 preparation method Methods 0.000 claims description 2
- 238000003825 pressing Methods 0.000 description 17
- 239000000463 material Substances 0.000 description 9
- 230000014759 maintenance of location Effects 0.000 description 8
- 238000007906 compression Methods 0.000 description 4
- 238000012986 modification Methods 0.000 description 4
- 230000004048 modification Effects 0.000 description 4
- 230000006835 compression Effects 0.000 description 3
- 238000004519 manufacturing process Methods 0.000 description 3
- 238000004026 adhesive bonding Methods 0.000 description 2
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- 229920004943 Delrin® Polymers 0.000 description 1
- 235000010210 aluminium Nutrition 0.000 description 1
- 239000002775 capsule Substances 0.000 description 1
- 239000000919 ceramic Substances 0.000 description 1
- 238000004140 cleaning Methods 0.000 description 1
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- 229910003460 diamond Inorganic materials 0.000 description 1
- 239000010432 diamond Substances 0.000 description 1
- 239000003814 drug Substances 0.000 description 1
- 229920006351 engineering plastic Polymers 0.000 description 1
- 239000002360 explosive Substances 0.000 description 1
- 239000008187 granular material Substances 0.000 description 1
- 238000005469 granulation Methods 0.000 description 1
- 230000003179 granulation Effects 0.000 description 1
- 210000001331 nose Anatomy 0.000 description 1
- 239000003758 nuclear fuel Substances 0.000 description 1
- 239000004033 plastic Substances 0.000 description 1
- 229920003023 plastic Polymers 0.000 description 1
- 230000000717 retained effect Effects 0.000 description 1
- 229910001220 stainless steel Inorganic materials 0.000 description 1
- 229940088594 vitamin Drugs 0.000 description 1
- 229930003231 vitamin Natural products 0.000 description 1
- 235000013343 vitamin Nutrition 0.000 description 1
- 239000011782 vitamin Substances 0.000 description 1
- 238000003466 welding Methods 0.000 description 1
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B30—PRESSES
- B30B—PRESSES IN GENERAL
- B30B15/00—Details of, or accessories for, presses; Auxiliary measures in connection with pressing
- B30B15/02—Dies; Inserts therefor; Mounting thereof; Moulds
- B30B15/026—Mounting of dies, platens or press rams
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B30—PRESSES
- B30B—PRESSES IN GENERAL
- B30B11/00—Presses specially adapted for forming shaped articles from material in particulate or plastic state, e.g. briquetting presses, tabletting presses
- B30B11/02—Presses specially adapted for forming shaped articles from material in particulate or plastic state, e.g. briquetting presses, tabletting presses using a ram exerting pressure on the material in a moulding space
- B30B11/08—Presses specially adapted for forming shaped articles from material in particulate or plastic state, e.g. briquetting presses, tabletting presses using a ram exerting pressure on the material in a moulding space co-operating with moulds carried by a turntable
Definitions
- the invention relates to compression machines and, more specifically, to a die insertion tool and methods of inserting a die into a press.
- a compression machine compresses granulation into objects of uniform size and weight.
- a press can be used to manufacture objects of a wide variety of materials, including pharmaceuticals, cleaning products, and cosmetics.
- To form an object in a compression machine granulated material is metered into a cavity formed by two punches and a die. The punches are then pressed together within the die to fuse the material together.
- punches and dies are tailored to each product in order to achieve the desired size and shape of the product.
- a press can be configured for manufacturing a particular product by tooling the press with the appropriate punches and dies. Die to punch alignment is critical to the compression process and must be accurately set during tooling.
- dies are inserted in die tables using a multi-step process during which the die can become misaligned.
- a die is positioned over a die pocket, a working upper punch is inserted into the upper punch guide bore, and the die is shifted around until the tip of the working upper punch inserts in the die cavity. This aligns the die to the punch.
- the upper punch is then remov ed and replaced by a rod that is struck against the top of the die until the die is fully inserted in the die pocket.
- the rod is then removed and the working upper punch is reinserted to check die alignment.
- the die may rotate slightly and be misaligned. If the die is misaligned, the die is tapped back out and the insertion process is repeated.
- a die insertion tool can be used to accurately align and insert a die in a die pocket of a press while maintaining positive engagement between the die insertion tool and the die. By maintaining positive engagement, proper alignment of the die is maintained during insertion of the die in the die pocket.
- the die insertion tool is configured and dimensioned to fit in a press in place of an upper punch of the press. By being configured to fit place of the upper punch during die insertion, the die insertion tool can ensure that the alignment of the die is accurately maintained. Proper die alignment can result in less die wear, punch tip wear, turret damage, and in better formed products.
- a die insertion tool includes a barrel, shaped for positioning the tool within a punch bore of a press, a tip for insertion into a die cavity of a die that is aligned over a die pocket, and a collar located between the barrel and the tip and configured to contact the die when the tip is inserted in the die cavity of the die.
- a driving rod which may be integrated into tire die insertion tool or may be separate, can be moved vertically by the user to strike the end of the bore. The striking force is translated to the die via the collar.
- a die insertion tool for inserting a die into a die pocket of a press includes a barrel shaped for positioning the tool within a punch guide bore of the press, a tip for insertion into a die cavity of the die, and a collar located between the barrel and the tip and configured to contact the die when the tip is inserted in the die cavity.
- the tip may be shaped to fit a shape of the die cavity.
- the barrel may be shaped to match a shape of an upper punch that is configured for use with the die.
- the tool may further include a key extending from a side of the barrel for rotationally positioning the barrel within the punch bore about a longitudinal axis of the punch bore.
- the tip may have a noncircular profile.
- the tip may be exchangeable.
- the tool may further include a driving rod slideahly positioned in a bore of the barrel and the driv ing rod may be configured to drive against an end of the bore for applying an insertion force to the die through the collar.
- the driving rod may extend from an end of the barrel when the driving rod contacts the end of the bore.
- an end portion of an outer surface of the barrel may have a rougher texture than an adjacent portion of the outer surface of the barrel.
- the end portion may be knurled.
- the tool may include a member that extends into or through a longitudinal slot in the driving rod to retain the driving rod hr the bore during use.
- a key may extend from a side of the barrel for rotationally positioning the barrel within the punch bore and the member may be configured to affix the key to the barrel.
- a kit for a press may include at least one die for the press and a die insertion tool that includes: a barrel shaped for positioning the tool within a punch bore of the press, a tip for insertion into a die cavity of the at least one die, and a collar located between the barrel and the tip and configured to contact the at least one die when the tip is inserted in the die cavity.
- the kit may further include at least one upper punch for the press.
- at least a portion of the barrel of the die insertion tool may be shaped to match a corresponding portion of a barrel of the at least one upper punch.
- at least a portion of the tip of the die insertion tool may be shaped to match a corresponding portion of a tip of the at least one upper punch.
- the kit may further include at least one lower punch for the press.
- the die insertion tool may further include a key extending from a side of the barrel for rotationally positioning the barrel within the punch bore about a longitudinal axis of the punch bore.
- the kit may further include a driving rod slideab!y positioned in a bore of the barrel and the driving rod may be configured to drive against an end of the bore for applying an insertion force to the at least one die through the collar
- a method for inserting a die into a die pocket of a press may include positioning the die over the die pocket, sliding a barrel of a die insertion tool into an upper punch bore of the press, inserting a tip of the die insertion tool into a cavity of the die until a collar of the die insertion tool rests against the die, and striking against the barrel so that the collar exerts an insertion force on the die to seat the die within the die pocket.
- the method may further incl ude applying a torque to the barrel about a longitudinal axis of the barrel while driving the rod against the barrel .
- the die pocket may be a die pocket of a rotary press and the torque may be applied in a direction of rotation of the die table in use.
- sliding the die insertion tool into the upper punch bore of the press may include orienting the die insertion tool so that a key of the die insertion tool fits in a keyway in the upper punch bore.
- the barrel may be repeatedly struck to seat the die in the die pocket.
- the method may further include, prior to positioning the die over the die pocket, removing the turret from the press in preparation for inserting the die into a die pocket of the press.
- removing the turret from the press may include removing an upper punch from the upper pimch bore of the press.
- the die insertion tool may include a driving rod slideably positioned within the barrel of the tool, and striking against the barrel rnay include driving the driving rod against the barrel so that the collar exerts an insertion force on the die to seat the die within the die pocket.
- a tool for aligning a die to a die pocket of a press includes a main body that includes a wall having a cylindrical inner surface that defines a passage for receiving the die, a bore extending through the wall, and a shoulder extending inwardly of an outer diameter of the bore, and a die engaging pin slidably positioned in the bore, the die engaging pin comprising a head portion for receiving an external force and a pin portion extending from the head portion, the pin portion having a tip that is configured to push a die against the cylindrical inner surface when the die is located within the passage, wherein an engagement between the head portion and an outer surface of the wall resists inward movement of the die engaging pin in the bore and an engagement between the shoulder of the main body and a recess of the pin portion resists outward movement of the die engaging pin in the bore.
- the mam body may include a resilient band that extends circumferentially around the wall and die shoulder may be a portion of the resilient band.
- the die engaging pin may be biased inwardly by the resilient band.
- the resilient band may be located in a circumferential groove.
- the tip of the pin portion may protrude into the passage when the head portion is engaged with the outer surface of the wall.
- FIG. 1 is a perspective view of a die insertion tool, according to an embodiment
- FIG. 2 is a side view of the die insertion tool of FIG. 1;
- FIG. 3 is an end view of a die insertion tool, showing the orientation of a key with respect to a tip according to an embodiment
- FIG. 4 is an exploded view of a die insertion tool, according to an embodiment:
- FIG. 5 A shows the insertion of a die insertion tool into a punch guide bore of a press, according to some embodiments
- FIG. 5B shows the engagement of a die insertion tool with a die, according to some embodiments
- FIG. 5C shows the withdrawal of a driving rod from the barrel of a die insertion tool for striking, according to some embodiments;
- FIG. 51 shows a die that has been inserted into a die pocket using a die insertion tool, according to some embodiment;
- FIG. 6 is a flow chart illustrating a method for inserting a die in a die pocket, according to some embodiments
- FIG. 7 is a press tooling kit, according to some embodiments.
- FIGS. 8A-8C illustrate a die insertion ring, according to some embodiments.
- a die insertion tool can maintain constant engagement with the die during the insertion process, ensuring that the die maintains its alignment.
- a die insertion tool includes a barrel shaped for positioning the tool within a punch bore of a press, a tip for insertion into a die cavity of a die that is aligned over a die pocket, and a collar located between the barrel and the tip and configured to contact the die when the tip is inserted in tire die cavity of the die.
- a driving rod which may be integrated into the die insertion tool or may be separate, can be used to strike against an end of the bore.
- the striking force is translated to the die via the collar. While the striking force is applied to seat the die in the die pocket, the tip of the tool maintains positive engagement with the die pocket to ensure that the alignment of the die is main tained during insertion.
- Die insertion tools, methods, and kits, according to tire principles described herein can provide improved die insertion by maintaining the positive engagement between an alignment feature and the die throughout the insertion process. Better die alignment achievable using the tools, kits, and methods described herein can result in less die wear, punch tip wear, turret damage, and in better formed products.
- FIGS. 1-4 illustrate a die insertion tool 100, according to some embodiments.
- the die insertion tool 100 is configured to accurately insert a die into a die pocket while maintaining positive engagement between the tool and the die cavity throughout the insertion process to ensure that the die is seated in the pocket in the correct orientation. Since tooling for a press is tailored to the specific product application to produce the desired shape and size of the product, a die insertion tool is generally configured according to a specific configuration of tooling. Die insertion tool 100 is an exemplar - configuration and a person of skill in the art will readily understand from the principles described herein how to configure a die insertion tool to a specific application.
- Die insertion tool 100 includes a barrel 102, a collar 104, a tip 106, and a driving rod 108.
- the barrel 102 provides the main body of the tool and includes a fi rst portion 112 that is configured to slide into an upper punch guide bore of a press and an upper portion 114 that is configured to extend out of the punch guide when the tool is inserted into the punch guide during use.
- the barrel 102 may be shaped and dimensioned according to the particular tooling for which the die insertion tool is configured.
- the first portion 1 12 may be cylindrical in form and may serve as a bearing surface for registering against the guide bore to ensure proper alignment of the tool within the guide bore.
- the first portion 112 may be configured to match a working punch such that it registers to the guide bore as would the working punch, which ensures that the tool inserts the die in the proper orientation for use with the working punch.
- the first portion 112 may have a low roughness surface finish to ensure smooth movement within the guide bore.
- the upper portion 114 may include a textured surface, such as a knurled surface, that is rougher than the lower portion of the barrel to aid a user’s grip during use of the tool, as described further below.
- the upper portion may include a rubber sleeve over the barrel to provide a textured surface.
- the upper portion 114 may take any suitable form and need not be cylindrical.
- the barrel 102 may include a key 110 extending from the side of the barrel.
- the key 110 may be configured to slide into a keyway in the upper punch guide bore of the press to ensure that the tip 106 is oriented in the same manner as the tip of a working punch.
- the key may be positioned in accordance with a predefined orientation about a longitudinal axis 111 of tire barrel 102 with respect to the tip (e.g., with a predefined angle 120 about the longitudinal axis I l l).
- Tire predefined angular orientation may match the orientation of a working punch key to a working punch tip, which may ensure that the die is inserted in the proper angular orientation for use with a working punch.
- the barrel 102 may be configured according to predefined standard sizes.
- tooling for rotary presses may come multiple standard sizes and barrel 102 may be configured according to a standard size.
- standard tooling sizes are size B in which the nominal diameter of the punch barrel is 0.75 inches and size‘D” in which the nominal diameter of the punch barrel is 1 inch.
- Tip 106 is configured for inserting into a die cavity of a working die.
- the shape of the tip 106 may match the shape of a die cavity.
- the tip 106 may be shaped and dimensioned to closely match the shape and dimensions of a working punch tip associated with a given die such that the tip 106 fits within the die in the same manner as the working punch tip.
- the profile of the tip 106 may match the profile of the die cavity with a predefined clearance.
- the tip 106 may be dimensioned to provide a clearance between the side surface 1 16 of the tip 106 and the walls of the die cavity that is within a predefined tolerance for the clearance between the die and a working punch tip.
- Die cavities are shaped and sized according to tire configuration of the particular product application, and therefore, the tip 106 may be formed according to the particular die configuration.
- the tip 106 may be any suitable size and any suitable shape, including a circular shape or a non-circular shape such as a capsule shape (as shown in FIG. 3), a triangle, an oval, a rectangle, a square, a diamond, etc., and any suitable.
- the tip may be a multi-component tip for use with a multi -cavity die.
- the tip may be oriented about the longitudinal axis 111 of the barrel 102 with respect to the key 1 10 according to a predefined orientation and based on a feature of the non-circular tip.
- the predefined angular orientation may be the angle 120 between a lengthwise midline 121 of the tip to a line extending midway through the key 1 10 from the intersection of the longitudinal axis 111 with the midline 121.
- fins angle 120 may be any angle so long as it matches the corresponding angle of the associated working punch.
- the length of the tip 106 may match the length of a working punch tip or may be shorter or longer.
- Hie end face 118 of the tip 106 can take any form and need not be configured to match the configuration of the end face of a working punch tip.
- Collar 104 is located between the barrel 102 and the fip 106.
- the collar 104 is configured for contacting an end face of the die to impart the insertion force to the die, as described in more detail below.
- the collar 104 may be made of a softer material than the die to prevent the collar from marring the surface of the die during the insertion process.
- the collar may be formed from an FDA approved plastic such as Delrin or from any other suitable material
- driving rod 108 is integrated within the insertion tool and is slideably positioned within a bore of barrel 102.
- FIG. 1 illustrates the driving rod 108 in an extended position with respect to the barrel 102 and
- FIG. 2 illustrates the driving rod 108 in a fully retracted position. In the folly retracted position, the driving rod 108 extends outwardly beyond the upper end 122 of the barrel 102.
- a portion of the driving rod 108 includes a textured surface 124, such as a knurled surface, for easier gripping by a user.
- the driving rod 108 is repeatedly struck against an end of the bore in which it slides while the collar 104 rests against a die that is positioned over a die pocket.
- the striking force is transferred to the die through the collar 104, which forces tire die into the die pocket in the die table.
- FIG. 4 is an exploded view showing the assembly of die insertion tool
- Barrel 102 includes a bore 130 that extends from the upper end 122 of the barrel 102.
- Tire driving rod 108 slides into die bore 130 and rests against a lower end 138 of the bore 130.
- Tire length of driving rod 108 is greater than the length of the bore so that an end 134 of the driving rod 108 extends beyond the barrel 102 when tire opposite end 136 of the driving rod 108 is contacting tire lower end 138 of the bore 130.
- a driving rod retention member 140 may be provided to retain the driving rod 108 in the bore 130. Retention of the driving rod 108 in the bore 130 may be advantageous to prevent a user from fully withdrawing the driving rod as the user slides the driving rod back and forth in the bore during use.
- the retention member 140 is in the form of a fastener that is inserted through a side of the barrel 102 and through a slot 142 that runs partway along the length of the driving rod 108 such that the driving rod 108 can slide along the bore 130 but cannot be removed without removing the fastener.
- the driving rod retention member may take any other suitable form, such as a spring loaded tab or a set screw that extends partway into a groove in the driving rod 108. In some embodiments, no retention member is provided such that the driving rod 108 can be fully withdrawn from the bore 130.
- the retention member 140 may be used to fasten the key 110 to the side of the barrel 102, for example, by direading tire retention member 140 into the key 110.
- the key 110 may be attached to the side of the barrel 102 via any other suitable method, including by welding or gluing.
- the key may tit within a key pocket 144 in the side of the barrel 102, which may pro vide an alignment feature to ensure that the key 110 is accurately angularly oriented about the longitudinal axis 111 of the barrel 102 with respect to tip 106.
- the key 110 is formed along with the barrel 102 from a single block of material.
- Tip 106 is positioned at the end of a neck 148 extending from an end of the barrel 102.
- the barrel, the neck, and the tip are formed as a single piece of material.
- the tip is a separate piece or a part of a separate piece that is permanently or removeably attached to the neck or the barrel.
- the tip of an insertion tool may be an exchangeable tip that can be remov d and replaced with another tip. This may allow for tips of different configuration to be swapped for use with dies of different configuration.
- An exchangeable tip may thread onto the neck or may be integrated with the neck and the neck may thread onto the barrel.
- the collar 104 may be formed from two pieces that fit around the neck
- the two pieces of the collar may be held together with an o-ring 150 (see FIG.
- FIGS 5A-5D illustrate the use of a die insertion tool, such as die insertion tool 100, for inserting a die 550 into a die table 580 of a press 500 according to one embodiment.
- Press 500 may be a single punch press or a rotary press, such as a press suitable for use in the pharmaceutical industry, or for use in the production of a variety of different products, including vitamins, pet food, detergents, explosives, ceramics, batteries, balls, bearings, nuclear fuels, etc.
- a die insertion tool may be used to insert dies into a Fette Compacting 3090i Double Rotary Press.
- a die 550 is positioned over a die pocket 552 of a die table 580.
- Die table 580 may be a portion of a turret of a rotar press.
- the die 550 may be positioned over the die pocket 552 using a die insertion ring 554, which may ensure that the die 550 is oriented vertically.
- the die may slide partway into the die pocket if there is sufficient clearance.
- the die and die pocket are configured for an interference fit to ensure that the die maintains a constant position during use. Accordingly, a force is applied to the die by a user through tire die insertion tool 100 to force the die into the die pocket.
- the die insertion tool 100 is inserted into the upper punch guide bore
- the die insertion tool 100 is properly oriented about a longitudinal axis 583 of the guide bore 582.
- the die insertion tool is moved downward within the upper punch guide bore 582 until the tip 106 is inserted into the die cavity 556 of the die 550 and the collar 104 rests against an upper end of the die 550, as shown in FIG 5B.
- the user may need to rotate the die 550 about its vertical axis or translate the die along the die table 580 to align the die cavity 556 with the tip 106 before the tip 106 can be inserted into the die cavity 556.
- the user moves the driving rod 108 upward within the bore 130.
- the user then moves the driving rod 108 downward, striking the driving rod 108 against the lower end 138 of the bore 130.
- the strike force is transferred through the collar 104 to the die 550, which causes the die to move into or further into the die pocket 552.
- the user may repeat the striking operation until tire die 550 is fully seated in the die pocket 552, as shown in FIG. 5D.
- the user may then withdraw the die insertion tool 100 from the upper punch guide bore.
- the die insertion ring 554 may be moved over the die pocket to ensure that the die 550 does not extend above the upper end of tire die pocket 552, which may indicate that the die is fully seated in the pocket. If the die table includes additional die pockets, the die insertion operation may be repeated until a die is inserted into each pocket
- a torque 590 may be applied to the barrel 102 of the die insertion tool 100 during the striking process (see FIG SC) to bias the die cavity in the direction that the tip of a working punch is forced during rotational motion of a die table of a rotary press during use.
- the centrifugal forces on the upper punch will cause a slight rotation of the punch tip in the direction of rotation of the die table.
- the punch tip may also rotate in a clockwise direction about the longitudinal axis of the punch (which is parallel to the axis of rotation of the die table). Biasing the die cavity in the same direction may ensure that the working punch tip inserts smoothly into the die cavity in use.
- the user may apply a torque to the barrel that is in the same direction as the rotation of the die table in use.
- the user may apply a torque in a clockwise direction about a longitudinal axis of the barrel 102.
- the upper portion 114 of the barrel 102 may include a textured surface, such as a knurled surface, to make it easier for a user to apply the torque to the barrel 102.
- FIG. 6 is a flow diagram illustrating a method 600 for inserting a die into a die pocket of a press, according to some embodiments.
- a die is positioned over a die pocket of a press.
- the press may be a rotary press, such as a rotary tablet press, or may be a single punch press.
- a die insertion tool is inserted into an upper punch bore of the press, as shown, for example in FIG 5A.
- the die insertion tool may be inserted such that a key of the tool aligns with and slide into a keyway in the upper punch guide bore to align the tool within the guide bore in the same manner as a working punch.
- a tip of the die insertion tool is inserted into the die cavity of the die until the collar of the die insertion tool rests against the upper surface of the die, as shown, for example, in FIG. 5B In this position, the die is properly aligned.
- the die cavity is properly oriented about a longitudinal axis extending vertically through the punch guide bore such that the tip of a working punch inserted into the punch guide bore can slide freely in and out of the die cavity.
- the barrel is struck from above so that the collar exerts an insertion force on the die to seat the die within the die pocket.
- the barrel is struck using an integrated driving rod that is pulled outward from the barrel, as shown, for example, in FIG. 5C, and struck against the barrel so that the collar exerts an insertion force on the die to seat the die within the die pocket.
- the die insertion tool may not include an integrated driving rod and the barrel may be struck with any other suitable means.
- the upper end of the barrel may be struck directly with a mallet or a rod may be position against the barrel and the rod may be struck by a mallet.
- Tire striking of the barrel may be repeated until the die is seated in the die pocket, for example, as shown in FIG. 51).
- a torque may be applied to the barrel about the longitudinal axis of the barrel during staking of the driving rod.
- fins may take up clearance between the key and the keyway, which biases the die in the direction of torque application.
- Method 600 may be repeated as necessary to insert dies into any additional die pockets.
- Method 600 may be performed with a die table in-place in the press.
- an access area of the press may be used to position the die over the die pocket and to withdraw an upper punch from the turret of the press so that the die insertion tool may be inserted in the upper punch guide bore in place of the upper punch for insertion of the die.
- method 600 is performed with the die table disassembled from the press.
- a turret of a rotary press may be removed from the press for die insertion. Dies may then be inserted into the die table of the turret using the die insertion tool, according to method 600.
- the turret may be reassembled into the press.
- the upper and/or lower punches are removed from the turret. The upper and/or lower punches may then be reinserted into the turret once the turret is reassembled into the press.
- a tooling kit for a press may include a die insertion tool that is configured for use with the tooling.
- FIG. 7 illustrates an exemplar ⁇ kit 700 that includes a die insertion tool, according to some embodiments.
- Kit 700 includes an upper punch 702, a die 704, and a die insertion tool 708.
- the upper punch 702 is configured for use with the die 704.
- the barrel 710 of the die insertion tool 708 has a diameter that matches the diameter of the barrel 712 of the upper punch 702, and the profi le of the tip 714 of the die insertion tool 708 is shaped in accordance with the profile of the tip 716 of the upper punch 702 to fit into the die cavity 706 of the die 704.
- a kit may include at least one die and a die insertion tool with a tip matched to the die. In some embodiments, a kit may also include one or more upper punches and/or one or more lower punches.
- a kit may include a die, upper and lower punches configured for use with the die, and a die insertion tool configured for use with the die and the press for which the upper and lower punches are configured.
- a kit may include a full set of upper and lower punches and dies for a press, such as a rotary press, along with a die insertion tool for inserting the dies in the press.
- FIGS. 8A-8C illustrate an improved die insertion ring 800.
- Die insertion ring 800 provides a user with the ability to not only position a die over a die pocket (similarly to die insertion ring 554 in FIGS. 5A-5D) but to also angularly orient the die so that the die cavity is angularly aligned with the die insertion tool.
- Die insertion ring 800 improves the die to pocket alignment procedure by- providing a manner in which to grip the die with the die insertion tool so that the die can be rotated in position over the pocket.
- die insertion ring 800 includes a die centering p 804 for pushing the die up against the inner side of the die insertion ring 800.
- a user can angularly position the die by simply rotating the die insertion ring 800, which may be useful for orienting a non- cylindricai die cavity for initial alignment with a tip of a die insertion tool (e.g., tip 106 of die insertion tool 100).
- FIGS. 8A and 8B are a side and top views, respectively, of die insertion ring 800 with an exemplary die 550 positioned within.
- FIG. 8C is an enlarged cross sectional view through line A-A in FIG. 8B.
- die insertion ring 800 includes a mam body 802 and a die centering pin 804.
- Main body 802 may include a ring- shaped wall 803 that has a cylindrical inner surface.
- the cylindrical inner surface provides a cylindrical central passage 812 for accommodating a die, such as die 550 of FIGS. 5A-5D.
- the cylindrical inner surface is oriented perpendicularly to the bottom side surface 834 of the main body 802 so that when the die insertion ring 800 is located on a die table, the die is oriented perpendicularly to the die table.
- the diameter of the cylindrical inner surface of the passage 812 may be selected to provide a clearance between the inner surface and the outer surface of the die so that the die can easily slide into and out of the passage 812.
- An exemplary clearance 830 is indicated in FIG. 8C.
- An outer surface 814 of the main body 802 may be configured for improved gripping, such as by having a knurled surface, a rubberized coating, or a rubber sleeve.
- the improved gripping can enable a user to more easily rotate the die insertion ring 800 in use.
- the main body 802 includes at least one cylindrical bore 820 for receiving the die centering pin 804.
- the bore 820 may extend through the wall 803 of the main body 802 from the outer surface 814 to the central passage 812.
- the bore 820 may extend perpendicularly to the longitudinal axis of the cylindrical passage.
- the main body 802 may include a shoulder 813 that extends inwardly of an outer diameter of the bore 820.
- the main body 802 includes an o-ring 806 that extends circumferentially around the wall 803 of the main body 802, and the portion of the o-ring 806 at the bore 820 provides tire shoulder 813
- the o-ring is just one example of a resilient band that may be used to provide the shoulder.
- a ri ng-shaped spring may be provided.
- the main body 802 may include a groove 832 that extends
- a pin portion 810 of the die centering pin 804 is slidably positioned in the bore 820 in the main body 802 such that the pin portion 810 can slide inward and outward within the bore 820.
- the die centering pin 804 includes a pressing portion 808 that has a larger diameter than the bore 820 and that is configured for receiving a force, such as a press from a user.
- the pin portion 810 of the die centering pin 804 may include a recess 822 for receiving a portion of the o-ring 806. As mentioned above, the o-ring 806 serves as the shoulder 813 that extends into the recess 822 for resisting outward motion of the die centering pin 804.
- the pm portion 810 of the die centering pin 804 is located partially in the bore 820 in the main body 802 with the recess 822 of the die centering pin 804 remaining out of the bore 820.
- the o-ring 60 is stretched around the outer surface 814 of the main body 802 until it snaps into the groove 832 in the outer surface 814 of the main body and into the recess 822 in the pin portion 810 of the die centering pin 804.
- the o-ring 806 may pull the pin portion 810 of the die cen tering pin 804 further into the bore 820 due to the engagement between the o-ring 806 and the recess 822 of the pin portion 810.
- the pressing portion 808 of the die centering p 804 may serve as a stop for limiting inward movement of the die centering pin 804.
- the tip 818 of the pin portion 810 of the die centering pin 804 protrudes inwardly of the surface of the central passage 812 of the main body.
- the pressing portion 808 is spaced from the outer surface 814 of the main body 802 (as illustrated in FIGS. 8B and 8C) so that a pressing force by a user on the pressing portion 808 will be transferred by the tip 818 to the die.
- a user slides the die into the central passage 812 of the main body 802 of the die insertion ring 800.
- the central passage 812 is oversized to accommodate the die with some amount of clearance 830.
- the die may contact the tip 818 of the die centering pin 804 and push the die centering pin 804 outwardly within the bore 820.
- the o-ring 806 may act against this outward movement of the die centering pin 804 through the engagement of the o-ring 806 with the wall of the recess 822 of the die centering pin 804.
- the o-ring 806 may elastically deform as the die centering p is pushed outwardly resulting in a counteracting inwardly directed force that causes the tip 818 to push against the outer surface of the die. This may push the die against the side 816 of the central passage 812 opposite the die centering pin 804, which‘centers” the die in the sense that tire die registers in the die insertion ring 800 in a repeatable position. Further, by pushing the die up against the side wall 816, the die is positioned so that its longitudinal axis is parallel with the longitudinal axis of the passage 812. This can ensure that the die is not cocked as it enters the die pocket.
- a user may press the pressing portion 808 of the die centering pin 804 to provide additional force for holding the die against the side 816 of the central passage 812 In doing so, the user is essentially gripping the die and can manipulate the die as needed.
- the user may slide the die insertion ring 800 across tire die table to the appropriate die pocket and, once over the die pocket, may reduce the pressing force applied to the pressing portion 808 to allow the die to slide downwardly somewhat into the die pocket (the die and/or die pocket may be chamfered and/or filleted to allow an initial seating), thus locating the die in the proper planar position.
- the user may apply additional pressure to the pressing portion to once again grip the die so that the die can be rotated for orienting the die cavity (e g., die cavity 556) in the correct orientation with respect to the die insertion tool 100.
- the die cavity e g., die cavity 556
- a user may bring the tip 106 of the die insertion tool downward until it reaches the die cavity. If the die cavity is not aligned with the tip 106, the user can then apply pressure to the pressing portion to grip the die and then rotate the die insertion ring 800 to rotate the die until the die cavity aligns with the tip 106.
- the die insertion ring 800 is configured such that the inwardly directed force applied by die centering pm 804 to the die through the elasticity of the o-ring 806 is sufficient to hold the die in the central passage 812 so that the user need not press on the pressing portion during the alignment process. In some embodiments, force provided by the o-ring 806 is sufficient to hold tire die against its own weight, and thus, the die can be lifted by lifting the die insertion ring 800. In some embodiments, the die insertion ring 800 is configured so that the die centering pin 804 does not apply a force to the die until the user presses on the pressing portion 808. [0085] In some embodiments, the die insertion ring 800 includes multiple die centering pins 804. For example, two die centering pins 804 located on opposite sides of the main body 802 could be provided
- the die centering pin may be retained within the bore 820 without requiring o-ring 806.
- the die centering pin may be retained within the bore 820 without requiring o-ring 806.
- the shoulder 813 is provided by a stepped portion of the bore that engages with a portion of tire die centering pin for retention.
- the pin portion 810 of the die centering pin 804 may be a separate piece from the pressing portion 808 so that the pin portion can be inserted into the bore 820 from the inner side.
- the bore 820 may be stepped to a smaller diameter (i.e., a stepped portion) providing a shoulder for extending into the recess 822 of the pin portion 810 to serve as a stop for outward movement of the pin portion.
- the pressing portion 808 may be threaded onto a thread fonned into the end of the pin portion 810.
- a head end of the pin portion 810 may include a recess that leads to a threaded portion that is configured to thread into corresponding threads on a stepped portion of the bore.
- the pin portion 810 is threaded into the stepped portion until the threads on stepped portion clear the threads on the pm portion and enter into the recess at the head end of the pin portion 810.
- the recess is wide enough to allow the pin portion to slide within the bore.
- one or more detent balls may be captured within the wall 803 and may extend inwardly of the outer diameter of the bore to provide the shoulder 813
- the one or more detent balls are captured in one or more recesses 822 of the pin portion 810 and the detent balls tit into recesses in the wall of tire bore that serves as the shoulder 813 for resisting outward sliding of the die centering pm 804.
- any other suitable means for retaining a pin within a shaft may be used, such as springs, ball Plungers, push buttons, indexing plungers, spring plungers, hand -retractable spring plungers, side thrust pins, quick release pins, balls and noses, etc.
- the recess 822 may be a circumferential recess and a spring may be located in the recess between the step of the bore 820 and the wall of the recess to provide an inward bias to the die centering pm 804.
- a spring is provided between the pressing portion and the outer surface of the main body 802 to provide an outward bias to the die centering pin 804. This may ensure that the tip 818 of the pin portion does not interfere with the sliding of die within the passage 812.
- the spring can be configured so that the outward bias can be easily overcome by a user's press on the pressing portion
- the mam body 802 and die centering pin 804 may be made from any suitable material or materials, including stainless steels, aluminums, engineering plastics, etc.
- the die centering pin 804 is made from a softer material than that of the die so as to not mar the die when a user presses on the die centering pin 804.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Automatic Assembly (AREA)
- Mounting, Exchange, And Manufacturing Of Dies (AREA)
- Hand Tools For Fitting Together And Separating, Or Other Hand Tools (AREA)
- Moulds For Moulding Plastics Or The Like (AREA)
Abstract
Description
Claims
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US201762592675P | 2017-11-30 | 2017-11-30 | |
| US201862677420P | 2018-05-29 | 2018-05-29 | |
| PCT/US2018/062515 WO2019108498A1 (en) | 2017-11-30 | 2018-11-27 | Die insertion tool |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP3717227A1 true EP3717227A1 (en) | 2020-10-07 |
Family
ID=64755717
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP18825830.5A Withdrawn EP3717227A1 (en) | 2017-11-30 | 2018-11-27 | Die insertion tool |
Country Status (5)
| Country | Link |
|---|---|
| EP (1) | EP3717227A1 (en) |
| CN (1) | CN111372763A (en) |
| CA (1) | CA3083739A1 (en) |
| MX (1) | MX2020005633A (en) |
| WO (1) | WO2019108498A1 (en) |
Family Cites Families (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2000015496A (en) * | 1998-06-26 | 2000-01-18 | Kiso Kogyo Kk | Press forming die device and its press forming method |
| US6830442B2 (en) * | 2001-08-09 | 2004-12-14 | William Alvin Cecil | Rotary tablet press |
| JP3906054B2 (en) * | 2001-10-24 | 2007-04-18 | 株式会社アマダ | Press brake lower mold fixing device |
| US6877353B2 (en) * | 2003-05-13 | 2005-04-12 | Kegar Technologies, Llc | Die button extractor |
| CN201124207Y (en) * | 2007-11-23 | 2008-10-01 | 江苏金方圆数控机床有限公司 | Demoding auxiliary device |
| EP2607067B1 (en) * | 2011-12-21 | 2014-06-25 | I Holland Limited | Punch for a tablet press and method for manufacturing such a punch |
| CN205042991U (en) * | 2015-07-29 | 2016-02-24 | 长钰模具(苏州)有限公司 | Take strong many steps mould of drawing of patterns |
| CN107520350A (en) * | 2016-06-21 | 2017-12-29 | 张家港市思杰五金工具有限公司 | Inner ring die guide |
| CN106964708B (en) * | 2017-05-26 | 2019-01-18 | 佛山市顺德区骏达电子有限公司 | A kind of installation and application of mold time dress automatic correction device and the device |
-
2018
- 2018-11-27 CA CA3083739A patent/CA3083739A1/en active Pending
- 2018-11-27 MX MX2020005633A patent/MX2020005633A/en unknown
- 2018-11-27 WO PCT/US2018/062515 patent/WO2019108498A1/en not_active Ceased
- 2018-11-27 CN CN201880077476.1A patent/CN111372763A/en active Pending
- 2018-11-27 EP EP18825830.5A patent/EP3717227A1/en not_active Withdrawn
Also Published As
| Publication number | Publication date |
|---|---|
| CA3083739A1 (en) | 2019-06-06 |
| CN111372763A (en) | 2020-07-03 |
| MX2020005633A (en) | 2020-08-20 |
| WO2019108498A1 (en) | 2019-06-06 |
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