TR2023014424A1 - SHOULDER PAD STRUCTURE FOR RIFLES - Google Patents

SHOULDER PAD STRUCTURE FOR RIFLES

Info

Publication number
TR2023014424A1
TR2023014424A1 TR2023/014424A TR2023014424A TR2023014424A1 TR 2023014424 A1 TR2023014424 A1 TR 2023014424A1 TR 2023/014424 A TR2023/014424 A TR 2023/014424A TR 2023014424 A TR2023014424 A TR 2023014424A TR 2023014424 A1 TR2023014424 A1 TR 2023014424A1
Authority
TR
Turkey
Prior art keywords
shoulder
stock
air
rifles
guard
Prior art date
Application number
TR2023/014424A
Other languages
Turkish (tr)
Inventor
Kepez Hasan
Original Assignee
Retay Silah Otomotiv Insaat Ve Gida Sanayi Ve Ticaret Ltd Sirketi
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Retay Silah Otomotiv Insaat Ve Gida Sanayi Ve Ticaret Ltd Sirketi filed Critical Retay Silah Otomotiv Insaat Ve Gida Sanayi Ve Ticaret Ltd Sirketi
Priority to TR2023/014424A priority Critical patent/TR2023014424A1/en
Priority to EP24163305.6A priority patent/EP4549871A1/en
Priority to US18/640,971 priority patent/US20250146785A1/en
Publication of TR2023014424A1 publication Critical patent/TR2023014424A1/en

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41CSMALLARMS, e.g. PISTOLS, RIFLES; ACCESSORIES THEREFOR
    • F41C23/00Butts; Butt plates; Stocks
    • F41C23/06Stocks or firearm frames specially adapted for recoil reduction
    • F41C23/08Recoil absorbing pads

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Aiming, Guidance, Guns With A Light Source, Armor, Camouflage, And Targets (AREA)
  • Orthopedics, Nursing, And Contraception (AREA)

Abstract

Buluş, omuza dayamak suretiyle atış yapılan yivli, yivsiz, havalı, ateşli ve ateşsiz olmak üzere her türlü tüfekte (200) kullanılan ve tüfeğin (200) kullanıcı omzuna dayanan kısmını oluşturan dipçik (10) içeren omuzluk yapılanması (100) ile ilgilidir. Buluşun özelliği; dipçiğin (10) arka ucuna takılıp çıkarılabilen ve dipçiğin (10) omuza oturmasını sağlayan omuzluk (20), omuzluğun (20) dipçik (10) ile birleşen ön tarafında omuzluk (20) ile birlikte yekpare olarak dipçiğe (10) takılıp çıkarılabilen ve içerisinde hava barındırarak atış esnasında oluşan darbeyi azaltmak suretiyle kullanıcının omzuna yüklenen yükün azaltılmasını sağlayan ve tüfeğin (200) şahlanmasını engelleyen havalı silikon (30) içermesidir.The invention relates to a shoulder guard assembly (100) which includes the stock (10) used in all types of rifles (200) that are rifled, smoothbore, air rifles, firearms and non-firearms, and which forms the part of the rifle (200) that rests on the user's shoulder. The feature of the invention is that it includes a detachable shoulder guard (20) which can be attached to the rear end of the stock (10) and which allows the stock (10) to sit on the shoulder, and an air-filled silicone (30) which can be attached to the stock (10) as a single unit with the shoulder guard (20) at the front where the shoulder guard (20) joins the stock (10) and which reduces the load on the user's shoulder by reducing the impact during shooting and prevents the rifle (200) from rising.

Description

TARIFNAME TÜFEKLER IÇIN OMUZLUK YAPILANMASI Teknik Alan Bulus, omuza dayamak suretiyle atis yapilan yivli, yivsiz, havali, atesli ve atessiz olmak üzere hertürlü tüfekte kullanilan omuzluk yapilanmasi ile ilgilidir. Bulus özellikle, atis esnasinda omuza yüklenen yükün azaltilmasini saglayan ve tüfegin sahlanmasini engelleyen bir omuzluk yapilanmasi ile ilgilidir. Teknigin Bilinen Durumu Av ve savas silahi olarak kullanilan tüfekler, kullanicinin omzuna dayanmak suretiyle atis yapilmaktadir. Bu oldukça bilinen ve en yaygin türdür. Askeri tüfeklerden avcilik için kullanilan tüfeklere kadar tümünde standart olarak bir dipçik yapisi bulunmaktadir. Mevcut uygulamalarda dipçik arka kisimda (omuza gelen kisimda) yumusak veya sert plastikten olusan bir omuzluk bulunmaktadir. Omuzluk teknik olarak tüfegin ateslenmesi esnasinda olusan geri tepmenin, omuzda absorbe edilmesini saglamaktadir. Bu absorbe etme esnasinda kullanicinin omzuna ciddi oranda yük binmektedir. Bu yük, üst üste atis yapilmasi veya tüfegin omuza tam oturtulmadan atis yapilmasi durumunda, kullanicinin omuz bölgesinde agri olusturmakta ve hatta kullanicinin vücudunda ciddiye varan zararlar vermektedir. Ayrica omuza yüklenen ciddi basinç neticesinde, tüfegin ucu sahlanma yapmaktadir. Sahlanma neticesinde tüfekten çikan mermi hedeften sasabilmekte ve atislarin basarisiz olmasi söz konusudur. Bu nedenle teknigin bilinen durumunda tüfeklerin ateslenmesi esnasinda yasanan sorunlarin ortadan kaldirilmasina ihtiyaç duyulmustur. Literatürde yapilan arastirmada teknigin bilinen durumuna bir örnek olarak edebilen omuzluga haiz dipçik ile ilgilidir. Söz konusu bulusta, sabitIeme elemanlari ve hareket elemanlari vasitasiyla dipçik ana gövdesinde olusturulmus omuzluk yataklari üzerine irtibatIandiriIan ve omuzluk yatagi içerisinde dipçik ana gövdesine göre açili olarak yatay uzakligi ayarlanan bir omuzluktan bahsedilmistir. Söz konusu omuzlugun, dipçik gövdesine göre açili hareket etmesi vasitasiyla atis esnasindaki geri tepme kuvvetinin azaltilmasi saglanmistir. Ancak omuzlugun, dipçik ana gövdesindeki açili hareketi için bir mekanizmaya gerek duyulmakta ve bu da üretim ve montaj maliyetlerini arttirmaktadir. Ayrica atis esnasinda olusan kuvvet, kullanicinin fiziksel özelligine göre açili sekilde ayarlanan omuzluk ile azaltilmaya çalisilmistir. Öte yandan söz konusu dipçigin her türlü tüfek üzerinde kullanimi mümkün degildir. gösterilebilir. Bahsi geçen doküman, dipçik ile ilgilidir. Söz konusu bulusta, ara boru tutucusuna sahip bir dipçik gövdesi içeren bir portatif dipçik, ara boru tutucusuna kayar sekilde monte edilmis bir atesli silah ara borusu, dipçik gövdesi silahin ateslemesi sirasinda ara boruya iliskili ileri-geri hareketi yapmaktadir. Dipçik gövdesi içerisine geri tepmeyi absorbe edici mekanizma yerlestirilmistir ve ara boruya baglanmistir. Kilitleme pimi dipçik gövdesi üzerine konumlandirilmistir ve ara boruya iliskilendirilmistir. Dipçik gövdesi, silahin ateslemesi sirasinda ileri-geri hareketi için ayarlanmistir. Ancak söz konusu dokümanda dipçik içerisinde bir mekanizma kullanilmasi nedeniyle üretim ve montaj maliyetleri yüksektir. Ayrica atis esnasinda olusan kuvvet, kullanicinin fiziksel özelligine göre açili sekilde ayarlanan omuzluk ile azaltilmaya çalisilmistir. Öte yandan söz konusu dipçigin her türlü tüfek üzerinde kullanimi mümkün degildir. Sonuç olarak yukaridaki problemlerin varligi ve mevcut çözümlerin yetersizligi, ilgili teknik alanda bir gelistirme yapmayi zorunlu kilmistir. Bulusun Amaci Mevcut bulus yukarida bahsedilen dezavantajlari ortadan kaldiran ve ilgili teknik alana yeni avantajlar getiren tüfekler için omuzluk yapilanmasi ile ilgilidir. Bulusun ana amaci, atis esnasinda omuza yüklenen yükün azaltilmasini saglayan ve tüfegin sahlanmasini engelleyen bir omuzluk yapilanmasi ortaya koymaktir. Bulusun amaci, dipçik ve omuzluk arasinda yer alan ve içerisinde hava barindiran silikon yapi sayesinde atis esnasinda olusan darbeyi azaltan ve kullanicinin omzuna yüklenen basincin düsmesi sayesinde kullanicinin omzunda veya vücudunda agri veya zedelenmeyi minimum düzeye düsüren bir omuzluk yapilanmasi ortaya koymaktir. Bulusun bir diger amaci, atis esnasinda olusan basincin azaltilmasi ile birlikte, tüfegin sahlanma sorununu minimuma indirerek, merminin hedefe daha net ulasmasini saglayan bir omuzluk yapilanmasi ortaya koymaktir. Bulusun bir diger amaci, her türlü tüfege takilip sökülebilme özelligine sahip olan ve bu sayede demonte bir sekilde kullanicilara sunulabilen bir omuzluk yapilanmasi ortaya koymaktir. Bulusun bir diger amaci, ihtiyaç halinde havali silikon içindeki havanin eksilmesine bagli olarak sibop yardimiyla dipçigin havali silikon tarafina manuel hava basimi yapilabilen ve kullanici konforunun arttirilmasini saglayan bir omuzluk yapilanmasi ortaya koymaktir. Yukarida belirtilen ve detayli anlatimdan çikabilecek tüm amaçlari yerine getirebilmek üzere bulus; omuza dayamak suretiyle atis yapilan yivli, yivsiz, havali, atesli ve atessiz olmak üzere her türlü tüfekte kullanilan ve tüfegin kullanici omzuna dayanan kismini olusturan dipçik içeren omuzluk yapilanmasi olup, - dipçigin arka ucuna takilip çikarilabilen ve dipçigin omuza oturmasini saglayan omuzluk, - omuzlugun dipçik ile birlesen ön tarafinda omuzluk ile birlikte yekpare olarak dipçige takilip çikarilabilen ve içerisinde hava barindirarak atis esnasinda olusan darbeyi azaltmak suretiyle kullanicinin omzuna yüklenen yükün azaltilmasini saglayan ve tüfegin sahlanmasini engelleyen havali silikon içermesi ile ilgilidir. Bulusun yapisal ve karakteristik özellikleri ve tüm avantajlari asagida verilen sekiller ve bu sekillere atiflar yapilmak suretiyle yazilan detayli açiklama sayesinde daha net olarak anlasilacaktir. Bu nedenle degerlendirmenin de bu sekiller ve detayli açiklama göz önüne alinarak yapilmasi gerekmektedir. Bulusun Anlasilmasina Yardimci Olacak Sekiller Sekil 1: Bulus konusu omuzluk yapilanmasinin demonte halinin görünümüdür. Sekil 2: Bulus konusu omuzluk yapilanmasina ait omuzluk ve havali silikonun demonte halinin görünümüdür. Sekil 3: Bulus konusu omuzluk yapilanmasina ait omuzluk ve dipçigin demonte halinin görünümüdür. Sekil 4: Bulus konusu omuzluk yapilanmasina ait omuzluk ve dipçigin montajli halinin görünümüdür. Sekil 5: Bulusun alternatif bir yapilanmasinda omuzluk yapilanmasina ait omuzluk, havali silikon ve dipçigin demonte halinin görünümüdür. Sekil 6: Bulus konusu omuzluk yapilanmasina ait dipçigin tüfek üzerine montajli halinin görünümüdür. Parça Referanslarinin Açiklanmasi . Dipçik . Omuzluk . Havali silikon 40. Sibop 50. Sibop kapagi 100. Omuzluk yapilanmasi 200. Tüfek Bulusun Detayli Açiklamasi Bu detayli açiklamada, bulus konusu omuzluk yapilanmasinin (100) tercih edilen alternatifleri, sadece konunun daha iyi anIasiImasina yönelik olarak ve hiçbir sinirlayici etki olusturmayacak sekilde açiklanmaktadir. Sekil 1'de bulusa konu omuzluk yapilanmasinin (100) demonte halinin görünümü verilmistir. Buna göre omuzluk yapilanmasi (100) en temel halinde; tüfegin (200) kullanici omzuna dayanan kismini olusturan dipçik (10), dipçigin (10) arka ucuna takilip çikarilabilen ve dipçigin (10) omuza oturmasini saglayan omuzluk (20), omuzluk (20) ile birlikte dipçige (10) takilip çikarilabilen ve içerisinde hava barindirarak atis esnasinda omuza yüklenen yükün azaltilmasini saglayan ve tüfegin sahlanmasini engelleyen havali silikon (30), havali silikon (30) üzerinde yer alan ve havali silikon (30) içerisine hava basilmasini saglayan sibop (40), sibop (40) üzerine kapatilan sibop kapagi (50) içermektedir. Bulusa konu omuzluk yapilanmasinin (100) ana yapisini olusturan dipçik (10), yivli, yivsiz, havali, atesli ve atessiz olmak üzere her türlü tüfegin (200) kullanici omzuna dayanan kismini olusturmaktadir. Dipçigin (10) arka ucunda, dipçige (10) takilip çikarilabilen bir omuzluk (20) yer almaktadir. Söz konusu omuzluk (20), dipçigin (10) omuza oturmasini saglayan bölümdür. Sekil ?de görüldügü gibi omuzlugun (20) dipçik (10) ile birlesen ön tarafina, içerisinde hava barindiran bir havali silikon (30), tercihen enjeksiyon yöntemi ile sizdirmaz sekilde birlestirilmistir. Böylece sekil 3*te görüldügü gibi havali silikon (30) ile omuzluk (20) yekpare hale getirilmistir. Havali silikon (30), omuzluk (20) ile birlikte dipçige (10) takilip çikarilabilmektedir. Sekil 4,te görüldügü gibi omuzlugun (20) dipçige (10) takilmasi ile dipçik (10) ve omuzluk (20) arasinda yer alan havali silikon (30), içerisinde hava barindirmasi sayesinde atis esnasinda olusan darbeyi azaltarak kullanicinin omzuna yüklenen yükü azaltmakta ve tüfegin (200) sahlanmasini engellemektedir. Havali silikon (30) üzerinde, tercihen havali silikon (30) içerisine hava basilmasini saglayan bir sibop (40) bulunabilir ve sibop (40) üzerine, sibop (40) içerisindeki havanin disari çikmasini engellemek üzere bir sibop kapagi (50) kapatilabilir. Böylece ihtiyaç halinde havali silikon (30) içindeki havanin eksilmesine bagli olarak kullanici tarafindan sibop kapagi (50) çikarilarak, sibop (40) vasitasiyla dipçigin (10) havali silikon (40) tarafina manuel hava basimi yapilabilir ve kullanici konforunun arttirilmasi saglanabilir. Bulusun alternatif bir yapilanmasinda omuzluk yapilanmasi (100), sekil 5*te görüldügü gibi havali silikon (30) üzerinde, sibop (40) ve sibop kapagi (50) bulunmadan da kullanilabilir. Bulusa konu omuzluk yapi/anmasinin ( 100) montaji ve kullanimi su sekildedir; Havali silikon (30) ile yekpare yapida olan omuzluk (20), dipçige (10) takilir ve dipçik (10) de sekil Gida görüldügü gibi tüfege (200) takilir. Dipçik (10) ve omuzluk (20) arasinda yer alan havali silikon (30), içerisinde hava barindirmasi sayesinde atis esnasinda olusan darbeyi azaltarak kullanicinin omzuna yüklenen yükü azaltir ve tüfegin (200) sahlanmasini engeller. Bulusun alternatif bir yapilanmasinda havali silikon (30) içindeki havanin eksilmesine bagli olarak omuzluk (20), dipçikten (10) çikarilir ve havali silikondaki (30) silikon kapaginin (50) çikarilmasinin ardindan sibop (40) vasitasiyla dipçigin (10) havali silikon (40) tarafina manuel hava basimi yapilir. Daha sonra sibop kapagi (50), sibop (40) üzerine takilir ve omuzluk (20), dipçik (10) üzerine takilarak tüfek (200) kullanima hazir hale gelir. TR TR TR TRDESCRIPTION OF SHOTGUN SHOULDER RACK CONSTRUCTION Technical Field The invention relates to the shoulder rack construction used in all types of rifles, including rifled, smoothbore, air rifles, firearms, and nonfirearms, fired by resting them on the shoulder. The invention specifically concerns a shoulder rack construction that reduces the load on the shoulder during firing and prevents the rifle from recoiling. State of the Art Rifles used as hunting and combat weapons are fired by resting them on the user's shoulder. This is the most well-known and common type. All rifles, from military rifles to hunting rifles, have a standard stock structure. In current applications, a shoulder rack made of soft or hard plastic is located at the rear of the stock (the part that rests on the shoulder). Technically, a shoulder rest on a rifle absorbs the recoil generated during firing. This absorption places a significant load on the user's shoulder. This load, especially when firing repeatedly or without the rifle properly resting on the shoulder, can cause pain in the shoulder area and even serious injury. Furthermore, the significant pressure on the shoulder causes the muzzle of the rifle to rise. This rise can cause the bullet to miss the target, resulting in unsuccessful shots. Therefore, there was a need to eliminate the problems encountered during the firing of rifles under the known state of the technology. A study in the literature provides an example of a stock with a shoulder rest that can absorb recoil. The invention in question describes a shoulder guard that is connected to the shoulder guard bearings formed in the main stock body via fixing and moving elements, and whose horizontal distance is adjusted at an angle relative to the main stock body within the shoulder guard bearing. The recoil force during firing is reduced by the angled movement of this shoulder guard relative to the stock body. However, a mechanism is required for the angled movement of the shoulder guard in the main stock body, which increases production and assembly costs. Furthermore, the force generated during firing is attempted to be reduced by adjusting the shoulder guard at an angle according to the user's physical characteristics. On the other hand, this stock is not suitable for use on all types of rifles. The document mentioned relates to the stock. The invention in question consists of a portable stock with a buttstock body featuring a receiver, a firearm receiver mounted to the receiver in a sliding manner, and a buttstock body that moves back and forth in relation to the receiver during firing. A recoil-absorbing mechanism is placed inside the buttstock body and connected to the receiver. A locking pin is located on the buttstock body and connected to the receiver. The buttstock body is adjustable for back-and-forth movement during firing. However, the use of a mechanism inside the buttstock results in high production and assembly costs. Furthermore, the force generated during firing is attempted to be reduced by an angled shoulder pad that can be adjusted according to the user's physical characteristics. On the other hand, this buttstock is not suitable for all types of rifles. Consequently, the existence of the aforementioned problems and the inadequacy of current solutions have made it necessary to develop a new system in the relevant technical field. The Purpose of the Invention: This invention relates to a shoulder guard structure for rifles that eliminates the aforementioned disadvantages and introduces new advantages to the relevant technical field. The main purpose of the invention is to create a shoulder guard structure that reduces the load on the shoulder during shooting and prevents the rifle from recoiling. The aim of the invention is to create a shoulder guard structure that, thanks to a silicone structure containing air located between the stock and the shoulder guard, reduces the impact during shooting and minimizes pain or injury to the user's shoulder or body by reducing the pressure on the user's shoulder. Another aim of the invention is to create a shoulder guard structure that reduces the pressure generated during firing, minimizes the problem of rifle recoil, and ensures that the bullet reaches the target more accurately. Another aim of the invention is to create a shoulder guard structure that can be attached to and removed from any type of rifle, thus allowing it to be presented to users in a disassembled state. A third aim of the invention is to create a shoulder guard structure that allows for manual air injection into the air-filled silicone side of the stock via a valve, if needed, depending on the air pressure inside the silicone, thereby increasing user comfort. In order to fulfill all the aims mentioned above and those that can be derived from the detailed description, the invention; This invention is a shoulder guard system used on all types of firearms—rifled, smoothbore, airgun, firearm, and nonfirearm—that are fired by resting them on the shoulder. It consists of: a shoulder guard that attaches to the rear end of the stock and secures it to the shoulder; and a detachable air-filled silicone insert at the front of the shoulder guard, which is integrated with the stock and contains air to reduce the impact during firing, thereby decreasing the load on the user's shoulder and preventing the rifle from rising. The structural and characteristic features and all the advantages of this invention will be more clearly understood through the figures and detailed explanations provided below. Therefore, the evaluation should also be made taking these figures and detailed explanations into account. Figures to Aid Understanding the Invention Figure 1: View of the shoulder guard assembly in its disassembled state. Figure 2: View of the shoulder guard and air-cushioned silicone part of the shoulder guard assembly in its disassembled state. Figure 3: View of the shoulder guard and stock of the shoulder guard assembly in its disassembled state. Figure 4: View of the shoulder guard and stock of the shoulder guard assembly in its assembled state. Figure 5: View of the shoulder guard, air-cushioned silicone part and stock of the shoulder guard assembly in its disassembled state in an alternative configuration of the invention. Figure 6: View of the stock of the shoulder guard assembly mounted on the rifle. Explanation of Part References . Stock . Shoulder Guard . Air silicone 40. Valve 50. Valve cap 100. Shoulder strap assembly 200. Detailed Description of the Rifle Invention In this detailed description, the preferred alternatives of the shoulder strap assembly (100) of the invention are explained only for the purpose of better understanding the subject and without creating any limiting effect. Figure 1 shows the appearance of the shoulder strap assembly (100) of the invention in its disassembled state. Accordingly, the shoulder strap assembly (100) in its most basic form is; The rifle (200) consists of the stock (10), which forms the part of the rifle that rests on the user's shoulder, the shoulder pad (20), which can be attached to the rear end of the stock (10) and which allows the stock (10) to sit on the shoulder, the air-filled silicone (30), which can be attached to the stock (10) together with the shoulder pad (20) and which contains air to reduce the load on the shoulder during shooting and prevent the rifle from recoiling, the valve (40) located on the air-filled silicone (30) and which allows air to be pumped into the air-filled silicone (30), and the valve cap (50) which is closed on the valve (40). The stock (10), which forms the main structure of the shoulder guard assembly (100) in question, constitutes the part of all types of rifles (200), including rifled, smoothbore, air, firearm and non-firearm, that rests on the user's shoulder. At the rear end of the stock (10), there is a shoulder guard (20) that can be attached to and removed from the stock (10). This shoulder guard (20) is the part that allows the stock (10) to sit on the shoulder. As seen in Figure 3, an air-filled silicone (30) containing air is joined to the front of the shoulder guard (20) where it joins the stock (10), preferably by injection method in a leak-proof manner. Thus, as seen in Figure 3, the air-filled silicone (30) and the shoulder guard (20) are made one piece. The air-filled silicone (30) can be attached to and removed from the stock (10) together with the shoulder pad (20). As shown in Figure 4, when the shoulder pad (20) is attached to the stock (10), the air-filled silicone (30) located between the stock (10) and the shoulder pad (20) reduces the impact during firing by containing air, thus reducing the load on the user's shoulder and preventing the rifle (200) from rising. The air-filled silicone (30) may preferably have a valve (40) that allows air to be pumped into the air-filled silicone (30), and a valve cap (50) can be placed on the valve (40) to prevent the air inside the valve (40) from escaping. Thus, if needed, depending on the loss of air in the air silicone (30), the user can remove the valve cap (50) and manually inflate the air silicone (40) side of the stock (10) via the valve (40), thereby increasing user comfort. In an alternative configuration of the invention, the shoulder strap configuration (100) can be used on the air silicone (30) without the valve (40) and valve cap (50), as shown in Figure 5*. The assembly and use of the shoulder strap configuration (100) of the invention is as follows; The shoulder strap (20), which is in a one-piece structure with the air silicone (30), is attached to the stock (10), and the stock (10) is attached to the rifle (200) as shown in Figure 5. The air-filled silicone (30), located between the stock (10) and the shoulder rest (20), reduces the impact during shooting by containing air, thus reducing the load on the user's shoulder and preventing the rifle (200) from rising. In an alternative configuration of the invention, the shoulder rest (20) is removed from the stock (10) depending on the decrease in air inside the air-filled silicone (30), and after removing the silicone cap (50) from the air-filled silicone (30), manual air is pumped into the air-filled silicone (40) side of the stock (10) via the valve (40). Then the valve cap (50) is attached to the valve (40) and the shoulder rest (20) is attached to the stock (10), making the rifle (200) ready for use.

Claims (1)

1.1.
TR2023/014424A 2023-11-06 2023-11-06 SHOULDER PAD STRUCTURE FOR RIFLES TR2023014424A1 (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
TR2023/014424A TR2023014424A1 (en) 2023-11-06 2023-11-06 SHOULDER PAD STRUCTURE FOR RIFLES
EP24163305.6A EP4549871A1 (en) 2023-11-06 2024-03-13 Recoil pad embodiment for rifles
US18/640,971 US20250146785A1 (en) 2023-11-06 2024-04-19 Recoil pad embodiment for rifles

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TR2023/014424A TR2023014424A1 (en) 2023-11-06 2023-11-06 SHOULDER PAD STRUCTURE FOR RIFLES

Publications (1)

Publication Number Publication Date
TR2023014424A1 true TR2023014424A1 (en) 2025-05-21

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TR2023/014424A TR2023014424A1 (en) 2023-11-06 2023-11-06 SHOULDER PAD STRUCTURE FOR RIFLES

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US (1) US20250146785A1 (en)
EP (1) EP4549871A1 (en)
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Family Cites Families (25)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US544269A (en) * 1894-09-24 1895-08-06 Jacob Winters Recoil-pad for guns
US837455A (en) * 1905-12-11 1906-12-04 Arthur Thompson Duncan Cushioned butt-plate.
US1246117A (en) * 1916-12-01 1917-11-13 Paul J Krueger Recoil-pad.
US1774060A (en) * 1929-02-26 1930-08-26 Allan C Hodge Firearm cushion
US2438142A (en) * 1945-02-22 1948-03-23 Watson C Brower Air cushion pad for gunstocks
US4683671A (en) * 1985-09-25 1987-08-04 Farrar Frank W Recoil shock pad
US5461813A (en) * 1993-08-13 1995-10-31 Mazzola; Anthony H. Air coil
US5555710A (en) * 1994-07-28 1996-09-17 Smith; Scott C. Inflatable saddle support apparatus
US6311423B1 (en) * 1998-11-19 2001-11-06 Kenneth L. Graham Stockbutt system
DE10060906B4 (en) * 2000-12-07 2007-03-29 Heckler & Koch Gmbh Rebound damping device
US6976333B2 (en) * 2001-01-11 2005-12-20 Steven Sims Recoil reducing accessories for firearms
US6658827B2 (en) * 2001-08-15 2003-12-09 Alan W. Brownlie Interface pads
US20060254112A1 (en) * 2005-05-13 2006-11-16 Snoderly Russell M Double air valve recoil dampener for firearms
US7774866B2 (en) * 2006-02-16 2010-08-17 Xenith, Llc Impact energy management method and system
US8713716B2 (en) * 2007-07-25 2014-05-06 Wesley W. O. Krueger Impact reduction system
US9451795B2 (en) * 2007-07-25 2016-09-27 Wesley W. O. Krueger Impact reduction system
US8347421B2 (en) * 2007-07-25 2013-01-08 Body Armour Technology, Llc Impact reduction system
US7823313B2 (en) 2009-03-12 2010-11-02 Sagi Faifer Gunstock
US9314118B2 (en) * 2011-07-19 2016-04-19 Jiajing Usa, Inc. Comfort customizable pillow
US9021727B2 (en) * 2013-01-14 2015-05-05 Lawrence V. Butler Recoil pads including gas chambers, firearms including such recoil pads, and related methods
US9974342B1 (en) * 2015-03-26 2018-05-22 Matthew Kriesel Firearm recoiling absorbing system
US10512301B2 (en) * 2015-08-06 2019-12-24 Nike, Inc. Cushioning assembly for an article of footwear
EP3462955B1 (en) * 2016-05-26 2023-11-08 Airnoggin, Inc. Inflatable safety helmet
CN210043597U (en) * 2019-01-25 2020-02-11 贝尔格莱维亚伍德有限公司 Air mattress device
US20230234685A1 (en) * 2019-11-04 2023-07-27 Crusoe Survival, Llc Multi-chamber inflatable device

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US20250146785A1 (en) 2025-05-08

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